Phenanthroindolizidine Alkaloids Secondary Metabolites Diversity in Medicinally Viable Plants of the Genus Tylophora
Abstract
:1. Introduction
2. Taxonomy of Genus Tylophora
2.1. Geographic Distribution
2.2. Morphological Description
3. Traditional Phytomedicinal Uses of Genus Tylophora Plants
4. Chemotaxonomy of the Genus Tylophora, Phenanthroindolizidine, and Secophenanthroindolizidine Alkaloids
5. Biogenesis of Genus Tylophora Alkaloids
6. Biotechnical Production of Tylophorine
6.1. Production of Tylophorine and Agrobacterium-Mediated Transformation
6.2. Extraction from Suspension Cultures Callus, and Dried Leaves
7. Biological Activities
7.1. Biological Activities of Genus Tylophora
7.2. Structure-Activity Relationship (SAR) of Tylophorine
8. Clinical Trials on Genus Tylophora and Its Compounds
9. Cultivation Potential of Tylophora indica
10. Commercial Potential of Genus Tylophora
11. Conclusions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Anwar, S.; Almatroudi, A.; Alsahli, M.A.; Khan, M.A.; Khan, A.A.; Rahmani, A.H. Natural Products: Implication in Cancer Prevention and Treatment through Modulating Various Biological Activities. Anti-Cancer Agents Med. Chem. 2020, 20, 2025–2040. [Google Scholar] [CrossRef] [PubMed]
- Mohammed, H.A. The Valuable Impacts of Halophytic Genus Suaeda; Nutritional, Chemical, and Biological Values. Med. Chem. 2020, 16, 1044–1057. [Google Scholar] [CrossRef]
- Amin, E.; Abdel-Bakky, M.S.; Mohammed, H.A.; Hassan, M.H.A. Chemical Profiling and Molecular Docking Study of Agathophora alopecuroides. Life 2022, 12, 1852. [Google Scholar] [CrossRef] [PubMed]
- Atanasov, A.G.; Zotchev, S.B.; Dirsch, V.M.; Supuran, C.T. Natural Products in Drug Discovery: Advances and Opportunities. Nat. Rev. Drug Discov. 2021, 20, 200–216. [Google Scholar] [CrossRef] [PubMed]
- Harvey, A.L. Natural Products in Drug Discovery. Drug Discov. Today 2008, 13, 894–901. [Google Scholar] [CrossRef]
- Mohammed, H.A.; Khan, R.A.; Abdel-Hafez, A.A.; Abdel-Aziz, M.; Ahmed, E.; Enany, S.; Mahgoub, S.; Al-Rugaie, O.; Alsharidah, M.; Aly, M.S.A. Phytochemical Profiling, in Vitro and in Silico Anti-Microbial and Anti-Cancer Activity Evaluations and Staph GyraseB and h-TOP-IIβ Receptor-Docking Studies of Major Constituents of Zygophyllum coccineum L. Aqueous-Ethanolic Extract and Its Subsequent Fra. Molecules 2021, 26, 577. [Google Scholar] [CrossRef]
- Mohammed, H.A.; Ali, H.M.; Qureshi, K.A.; Alsharidah, M.; Kandil, Y.I.; Said, R.; Mohammed, S.A.A.; Al-Omar, M.S.; Al Rugaie, O.; Abdellatif, A.A.H. Comparative Phytochemical Profile and Biological Activity of Four Major Medicinal Halophytes from Qassim Flora. Plants 2021, 10, 2208. [Google Scholar] [CrossRef]
- Al-Omar, M.S.; Mohammed, H.A.; Mohammed, S.A.A.; Abd-Elmoniem, E.; Kandil, Y.I.; Eldeeb, H.M.; Chigurupati, S.; Sulaiman, G.M.; Al-Khurayyif, H.K.; Almansour, B.S.; et al. Anti-Microbial, Anti-Oxidant, and α-Amylase Inhibitory Activity of Traditionally-Used Medicinal Herbs: A Comparative Analyses of Pharmacology, and Phytoconstituents of Regional Halophytic Plants’ Diaspora. Molecules 2020, 25, 5457. [Google Scholar] [CrossRef]
- Munir, S.; Shahid, A.; Aslam, B.; Ashfaq, U.A.; Akash, M.S.H.; Ali, M.A.; Almatroudi, A.; Allemailem, K.S.; Rajoka, M.S.R.; Khurshid, M. The Therapeutic Prospects of Naturally Occurring and Synthetic Indole Alkaloids for Depression and Anxiety Disorders. Evid.-Based Complement. Altern. Med. 2020, 2020, 8836983. [Google Scholar] [CrossRef]
- El-Sakka, M.A. Phytochemistry (3) Alkaloids; Al Azhar University, Faculty of Pharmacy, Department of Pharmacognosy: Cairo, Egypt, 2010. [Google Scholar]
- Rasingam, L.; Swamy, J.; Nagaraju, S. Notes on the Genus Tylophora R. Br. (Asclepiadaceae) of India. Bangladesh J. Plant Taxon. 2018, 25, 51–56. [Google Scholar] [CrossRef]
- Drew, R.A.I.; Hancock, D.L. Phylogeny of the Tribe dacini (Dacinae) Based on Morphological, Distributional, and Biological Data. In Fruit Flies (Tephritidae); CRC Press: Boca Raton, FL, USA, 1999; pp. 509–522. ISBN 0429124678. [Google Scholar]
- Ridley, H.N. The Flora of the Malay Peninsula: Polypetalae; L. Reeve & Company, Ltd.: London, UK, 1922; Volume 1. [Google Scholar]
- Rani, A.S.; Patnaik, S.; Sulakshanaand, G.; Saidulu, B. Review of Tylophora indica—An Antiasthmatic Plant. FS J. Res. Basic Appl. Sci. 2012, 1, 20–21. [Google Scholar]
- Maheshwari, M.; Vijayarengan, P. Phytochemical Screening and GC-MS Analysis of Tylophora indica. Int. J. Bot. Stud. 2020, 5, 255–275. [Google Scholar]
- Balasubramanian, B.; Dhanabal, M.; Perumal, A.; George, S. Studies on the Antibacterial Activity and Phytochemical Screening of Tylophora indica Linn on Opportunistic Bacterial Pathogens Coinfected with HIV. Drug Invent. Today 2010, 2, 402–404. [Google Scholar]
- Rajavel, L.; Stephan, R. Low Cost In Vitro Propagation of Tylophora indica (Burm f.) Merrill. Using Different Carbon Sources. J. Acad. Ind. Res. 2014, 3, 221–224. [Google Scholar]
- Silver, R.J. Ayurvedic 6 Principles and Practices. In Veterinary Herbal Medicine; Elsevier: St. Louis, MO, USA, 2006; pp. 59–83. [Google Scholar]
- Chaudhry, B. A Handbook of Common Medicinal Plants Used in Ayurveda; Kojo Press: New Delhi, India, 2019; ISBN 8193380576. [Google Scholar]
- Shahzad, A.; Upadhyay, A.; Sharma, S.; Saeed, T. Tylophora indica (Burm. f.) Merrill: Medicinal Uses, Propagation, and Replenishment. In Biotechnological Strategies for the Conservation of Medicinal and Ornamental Climbers; Springer: Berlin/Heidelberg, Germany, 2016; pp. 239–258. [Google Scholar]
- Vishal, R. Protective Role of Indian Medicinal Plants against Liver Damage. J. Phytopharm. 2013, 2, 1–3. [Google Scholar] [CrossRef]
- Gujrati, V.; Patel, N.; Rao, V.N.; Nandakumar, K.; Gouda, T.S.; Shalam, M.D.; Kumar, S.M.S. Hepatoprotective Activity of Alcoholic and Aqueous Extracts of Leaves of Tylophora indica (Linn.) in Rats. Indian J. Pharmacol. 2007, 39, 43–47. [Google Scholar]
- Jain, S.K.; Rajvaidy, S.; Desai, P.; Singh, G.K.; Nagori, B.P. Herbal Extract as Hepatoprotective-A Review. J. Pharmacogn. Phytochem. 2013, 2, 170–175. [Google Scholar]
- Nazar, S.; Hussain, M.A.; Khan, A.; Muhammad, G.; Bukhari, S.N.A. Alkaloid-Rich Plant Tylophora indica; Current Trends in Isolation Strategies, Chemical Profiling and Medicinal Applications. Arab. J. Chem. 2020, 13, 6348–6365. [Google Scholar] [CrossRef]
- Gururani, R.; Patel, S.; Yaduvanshi, N.; Dwivedi, J.; Paliwal, S.; Sharma, S. Tylophora indica (Burm. f.) Merr: An Insight into Phytochemistry and Pharmacology. J. Ethnopharmacol. 2020, 262, 113122. [Google Scholar] [CrossRef]
- Bach, D.-H.; Lee, S.K. The Potential Impacts of Tylophora Alkaloids and Their Derivatives in Modulating Inflammation, Viral Infections, and Cancer. Curr. Med. Chem. 2019, 26, 4709–4725. [Google Scholar] [CrossRef]
- Haranath, P.; Shyamalakumari, S. Experimental Study on Mode of Action of Tylophora. Indian J. Med. Res. 1975, 63, 661–670. [Google Scholar] [PubMed]
- Kaushik, A.; Gurnani, C.; Sunder, S.; Dhingra, A.; Chimpa, V. Biochemical Assessment of in Vitro and in Vivo Culture of Tylophora indica (Burm. f.) Merr. Kathmandu Univ. J. Sci. Eng. Technol. 2010, 6, 1–5. [Google Scholar]
- Nayak, C.; Singh, V.; Singh, K.; Chakraborty, P.S.; Kaushik, S.; Ray, R.K.; Yadav, R.P.; Rai, M.K. Tylophora indica—A Multicentric Clinical Verification Study. Indian J. Res. Homoeopath. 2010, 4, 12–18. [Google Scholar] [CrossRef]
- Sunila, K.; Priya, S. Tylophora indica an Indian Ipecacuahna: A Review. Int. J. Phytother. Res 2012, 2, 1–14. [Google Scholar]
- Joshi, G.S.; Trivedi, N.H.; Maurya, J.U.; Upadhyay, U.M. Tylophora indica—A review. Pharma Sci. Monit. 2012, 3, 49–108. [Google Scholar]
- Shyamjith, M.; Joy, A.E.; Thyagaraju, B.M.; Rao, S.N. Effect of Tylophora indica on Haloperidol Induced Catalepsy in Experimental Animal Models. Drug Invent. Today 2012, 4, 652–654. [Google Scholar]
- Govindachari, T.R. Tylophora Alkaloids. In The Alkaloids: Chemistry and Physiology; Elsevier: Amsterdam, The Netherlands, 1967; Volume 9, pp. 517–528. ISBN 1876-0813. [Google Scholar]
- Karnick, C.R. Phytochemical Investigations of Some Tylophora Species Found in India. Planta Med. 1975, 27, 333–336. [Google Scholar] [CrossRef]
- Chaturvedi, P.; Chowdhary, A. Enhancement of Antioxidant Compound in Tylophora indica (Asclepeadaceae) Callus. Adv. Appl. Sci. Res. 2013, 4, 325–330. [Google Scholar]
- Reddy, B.U. Antimicrobial Activity of Datura stramonium L. and Tylophora indica (Burm. F.) Merr. Pharmacologyonline 2009, 1, 1293–1300. [Google Scholar]
- Patel, S.R. Studies for Developing Shoot Cultures of Leptadenia reticulata (Retz.) Wight and Arn and Tylophora indica (Burm. F.) Merrill with Phytochemical Analysis. Ph.D. Thesis, Maharaja Sayajirao University of Baroda, Vadodara, India, 2021. [Google Scholar]
- Bhardwaj, S.; Kaur, A.; Kaur, M.; Singh, J.P.; Kaur, J.; Nammi, S. Evaluation of Anti-Inflammatory Activity of Tylophora asthmatica. Curr. Trends Biotechnol. Pharm. 2021, 15, 90–95. [Google Scholar]
- Gupta, R.; Datta, A.; Shri, R. Extraction Process Optimization of Tylophorine from Tylophora asthmatica Wight & Arn. Pharmacogn. J. 2012, 4, 19–23. [Google Scholar]
- Ying, Z.Y.; Shi, H.X.; De Quan, Y.U.; Shan, Y.U.S. Antitumor Alkaloids Isolated from Tylophora ovata. J. Integr. Plant Biol. 2002, 44, 349–353. [Google Scholar]
- Dhiman, M.; Khanna, A.; Manju, S. A New Phenanthroindolizidine Alkaloid from Tylophora indica. Chem. Pap. 2013, 67, 245–248. [Google Scholar] [CrossRef]
- Lee, Y.-Z.; Huang, C.-W.; Yang, C.-W.; Hsu, H.-Y.; Kang, I.-J.; Chao, Y.-S.; Chen, I.-S.; Chang, H.-Y.; Lee, S.-J. Isolation and Biological Activities of Phenanthroindolizidine and Septicine Alkaloids from the Formosan Tylophora ovata. Planta Med. 2011, 77, 1932–1938. [Google Scholar] [CrossRef] [Green Version]
- Meve, U.; Liede, S. Floristic Exchange between Mainland Africa and Madagascar: Case Studies in Apocynaceae–Asclepiadoideae. J. Biogeogr. 2002, 29, 865–873. [Google Scholar] [CrossRef]
- Vivean, P.R.; Kumar, V.; Manigandan, L.S.; Sasikala, M.; Parthibhan, P. Tylophora indica—A Mini Review. Int. J. Front. Sci. Technol. 2014, 2, 58–66. [Google Scholar]
- Forster, P.I. The Distribution and Synonymy of Tylophora biglandulosa (Asclepiadaceae). Kew Bull. 1991, 46, 563–567. [Google Scholar] [CrossRef]
- Sharma, O.P. Plant Taxonomy; Tata McGraw-Hill Education: New York, NY, USA, 1993; ISBN 0074603736. [Google Scholar]
- Gupta, M.; Singh, M.; Mukhtar, H.; Ahmad, S. Pharmacognostical Evaluation of Tylophora indica (Burm. F.) Merill. by Quality Control Parameters. Int. J. Pharmacogn. Phytochem. Res. 2010, 2, 64–69. [Google Scholar]
- Huft, M.J. The World Flora Online. 2021. Available online: http://www.worldfloraonline.org/ (accessed on 1 January 2023).
- Starlin, T.; Gopalakrishnan, V.K. Enzymatic and Non-Enzymatic Antioxidant Properties of Tylophora Pauciflora Wight and Arn.—An in Vitro Study. Asian J. Pharm. Clin. Res 2013, 6, 68–71. [Google Scholar]
- Faisal, M.; Singh, S.; Anis, M. In Vitro Regeneration and Plant Establishment of Tylophora indica (Burm. f.) Merrill: Petiole Callus Culture. Vitr. Cell. Dev. Biol. 2005, 41, 511–515. [Google Scholar] [CrossRef]
- Dahanukar, S.A.; Thatte, U.M. Therapeutic Approaches in Ayurveda Revisited. Poppular Prakashan Mumbai 1989, 582, 10–42. [Google Scholar]
- Ignacimuthu, S.; Ayyanar, M.; Sankarasivaraman, K. Ethnobotanical Study of Medicinal Plants Used by Paliyar Tribals in Theni District of Tamil Nadu, India. Fitoterapia 2008, 79, 562–568. [Google Scholar] [CrossRef] [PubMed]
- Reddy, B.K.; Balaji, M.; Reddy, P.U.; Sailaja, G.; Vaidyanath, K.; Narasimha, G. Antifeedant and Antimicrobial Activity of Tylophora indica. Afr. J. Biochem. Res. 2009, 3, 393–397. [Google Scholar]
- Udupa, A.L.; Udupa, S.L.; Guruswamy, M.N. The Possible Site of Anti-Asthmatic Action of Tylophora asthmatica on Pituitary-Adrenal Axis in Albino Rats. Planta Med. 1991, 57, 409–413. [Google Scholar] [CrossRef]
- Bashir, A.; Ali, N.; Bashir, S.; Choudhary, M. Biological Activities of Aerial Parts of Tylophora hirsuta Wall. Afr. J. Biotechnol. 2009, 8, 4627–4631. [Google Scholar]
- Ruyani, A.; Sinta, B.D.; Anansyah, F.; Putri, S.R.; Sundaryono, A. Preliminary Studies on Therapeutic Effect of Ethanolic Extract of Tylophora Villosa Leaves against Paracetamol-Induced Hepatotoxicity in Mice. J. Tradit. Complement. Med. 2019, 9, 285–296. [Google Scholar] [CrossRef]
- Kumar, K.; Fateh, V.; Verma, B.; Pandey, S. Some Herbal Drugs Used for Treatment of Diabetes. Int. J. Res. Dev. Pharm. Life Sci. 2014, 3, 1116–1120. [Google Scholar]
- Pande, P.C.; Tiwari, L.; Pande, H.C. Ethnoveterinary Plants of Uttaranchal—A Review. Indian J. Tradit. Knowl. 2007, 6, 444–458. [Google Scholar]
- Ahmad, M.; Qureshi, R.; Arshad, M.; Khan, M.A.; Zafar, M. Traditional Herbal Remedies Used for the Treatment of Diabetes from District Attock (Pakistan). Pak. J. Bot. 2009, 41, 2777–2782. [Google Scholar]
- Sathyabama, S.; Sankaranarayanan, S.; Bama, P.; Ramachandran, J.; Bhuvaneswari, N.; Jayasurya Kingsley, S. Antibacterial Activity of Medicinal Plants Used as Ethnomedicine by the Traditional Healers of Musiri Thaluk, Trichy District Tamil Nadu, India. J. Med. Plants Res 2013, 7, 1452–1460. [Google Scholar]
- MS, V.; More, V.S.; Zameer, F.; Muddapur, U.; More, S.S. Ethnomedicinal Plants and Isolated Compounds against Snake Venom Activity: A Review. Indian J. Nat. Prod. Resour. 2022, 12, 491–505. [Google Scholar]
- Panda, T.; Padhy, R.N. Ethnomedicinal Plants Used by Tribes of Kalahandi District, Orissa. Indian J. Tradit. Knowl. 2008, 7, 242–249. [Google Scholar]
- Hasan, M.N.; Azam, N.K.; Ahmed, M.N.; Hirashima, A. A Randomized Ethnomedicinal Survey of Snakebite Treatment in Southwestern Parts of Bangladesh. J. Tradit. Complement. Med. 2016, 6, 337–342. [Google Scholar] [CrossRef] [Green Version]
- Rahman, M.A.; Begum, K.; Rashid, M.E.; Rashid, H. Medicinal Plant Diversity in the Flora of Bangladesh and Their Conservation: 2. A Report on Ten Angiosperm Families. Plant Arch. 2012, 12, 1023–1035. [Google Scholar]
- Chen, C.-Y.; Bai, L.-P.; Ke, Z.-F.; Liu, Y.; Wang, J.-R.; Jiang, Z.-H. G-Quadruplex DNA-Binding Quaternary Alkaloids from Tylophora atrofolliculata. RSC Adv. 2016, 6, 114135–114142. [Google Scholar] [CrossRef]
- Huang, X.; Gao, S.; Fan, L.; Yu, S.; Liang, X. Cytotoxic Alkaloids from the Roots of Tylophora atrofolliculata. Planta Med. 2004, 70, 441–445. [Google Scholar]
- Huang, A.-C.; Chen, C.-Y.; Wang, J.-R.; Jiang, Z.-H. Three New C21 Steroidal Glycosides from Tylophora atrofolliculata. Phytochem. Lett. 2020, 36, 111–114. [Google Scholar] [CrossRef]
- Chen, C.-Y.; Zhu, G.-Y.; Xie, T.-G.; Jiang, P.-C.; Wang, J.-R.; Jiang, Z.-H. A Phenanthroindolizidine Glycoside with HIF-1 Inhibitory Activity from Tylophora atrofolliculata. Phytochem. Lett. 2019, 31, 39–42. [Google Scholar] [CrossRef]
- Kong, Y.C.; Jing-Xi, X.; But, P.P.-H. Fertility Regulating Agents from Traditional Chinese Medicines. J. Ethnopharmacol. 1986, 15, 1–44. [Google Scholar] [CrossRef]
- Phillipson, J.D.; Tezcan, I.; Hylands, P.J. Alkaloids of Tylophora Species from Sri Lanka. Planta Med. 1974, 25, 301–309. [Google Scholar] [CrossRef]
- Gellert, E. The Indolizidine Alkaloids. J. Nat. Prod. 1982, 45, 50–73. [Google Scholar] [CrossRef]
- Russel, J.H. Alkaloids of Ficus Species. Occurrence of Indolizidine Alkaloids in Ficus Septica. Naturwissenschaften 1963, 50, 443–444. [Google Scholar] [CrossRef]
- Abe, F.; Hirokawa, M.; Yamauchi, T.; Honda, K.; Hayashi, N.; Ishil, M.; Imagawa, S.; Iwahana, M. Further Investigation of Phenanthroindolizidine Alkalodis from Tylophora tanakae. Chem. Pharm. Bull. 1998, 46, 767–769. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Abe, F.; Iwase, Y.; Yamauchi, T.; Honda, K.; Hayashi, N. Phenanthroindolizidine Alkaloids from Tylophora tanakae. Phytochemistry 1995, 39, 695–699. [Google Scholar] [CrossRef]
- Mostafa, E.M.; Mohammed, H.A.; Musa, A.; Abdelgawad, M.A.; Al-Sanea, M.M.; Almahmoud, S.A.; Ghoneim, M.M.; Gomaa, H.A.M.; Rahman, F.E.-Z.S.A.; Shalaby, K. In Vitro Anti-Proliferative, and Kinase Inhibitory Activity of Phenanthroindolizidine Alkaloids Isolated from Tylophora indica. Plants 2022, 11, 1295. [Google Scholar] [CrossRef]
- Gellert, E.; Rudzats, R.; Craig, J.C.; Roy, S.K.; Woodard, R.W. The Absolute Configuration of Cryptopleurine and Tylocrebrine. Aust. J. Chem. 1978, 31, 2095–2097. [Google Scholar] [CrossRef] [Green Version]
- Bhakuni, D.S.; Mangla, V.K. Biosynthesis of Tylophorine and Tylophorinine. Tetrahedron 1981, 37, 401–407. [Google Scholar] [CrossRef]
- Ali, M.; Bhutani, K.K. Alkaloids from Tylophora indica. Phytochemistry 1989, 28, 3513–3517. [Google Scholar] [CrossRef]
- Gao, W.; Chen, A.P.-C.; Leung, C.-H.; Gullen, E.A.; Fürstner, A.; Shi, Q.; Wei, L.; Lee, K.-H.; Cheng, Y.-C. Structural Analogs of Tylophora Alkaloids May Not Be Functional Analogs. Bioorg. Med. Chem. Lett. 2008, 18, 704–709. [Google Scholar] [CrossRef] [Green Version]
- Ali, M.; Bhutani, K.K. Minor Alkaloids of Tylophora hirsuta. Phytochemistry 1987, 26, 2089–2092. [Google Scholar] [CrossRef]
- Bhutani, K.K.; Ali, M.; Atal, C.K. 13a-Hydroxytylophorine from Tylophora hirsuta. Phytochemistry 1985, 24, 2778–2780. [Google Scholar] [CrossRef]
- Mulchandani, N.B.; Venkatachalam, S.R. Tylophorinicine, a Phenanthroindolizidine Alkaloid from Tylophora asthmatica and Pergularia Pallida. Phytochemistry 1984, 23, 1206. [Google Scholar] [CrossRef]
- Ali, M.; Ansari, S.H.; Qadry, J.S. Rare Phenanthroindolizidine Alkaloids and a Substituted Phenanthrene, Tyloindane, from Tylophora indica. J. Nat. Prod. 1991, 54, 1271–1278. [Google Scholar] [CrossRef]
- Bhutani, K.K.; Ali, M.; Atal, C.K. Alkaloids from Tylophora hirsuta. Phytochemistry 1984, 23, 1765–1769. [Google Scholar] [CrossRef]
- Mulchandani, N.B.; Iyer, S.S.; Badheka, L.P. Incorporation of Tyrosine-2-14C into Tylophorine. Phytochemistry 1969, 8, 1931–1935. [Google Scholar] [CrossRef]
- Mulchandani, N.B.; Iyer, S.S.; Badheka, L.P. Incorporation of Phenylalanine-2-14C into Tylophorine. Phytochemistry 1971, 10, 1047–1050. [Google Scholar] [CrossRef]
- Mulchandani, N.B.; Iyer, S.S.; Badheka, L.P. Incorporation of Cinnamic Acid-2-[14C] into Tylophorine. Phytochemistry 1976, 15, 1697–1699. [Google Scholar] [CrossRef]
- Chandra, S. Natural Plant Genetic Engineer Agrobacterium Rhizogenes: Role of T-DNA in Plant Secondary Metabolism. Biotechnol. Lett. 2012, 34, 407–415. [Google Scholar] [CrossRef]
- Supriya, R.; Kala, R.G.; Thulaseedharan, A. Hairy Root Culture: Secondary Metabolite Production in a Biotechnological Perspective. In Plant Metabolites: Methods, Applications and Prospects; Springer: Berlin/Heidelberg, Germany, 2020; pp. 89–110. [Google Scholar]
- Chaudhuri, K.N.; Ghosh, B.; Jha, S. The Root: A Potential New Source of Competent Cells for High-Frequency Regeneration in Tylophora indica. Plant Cell Rep. 2004, 22, 731–740. [Google Scholar]
- Chaudhuri, K.N.; Ghosh, B.; Tepfer, D.; Jha, S. Genetic Transformation of Tylophora indica with Agrobacterium Rhizogenes A4: Growth and Tylophorine Productivity in Different Transformed Root Clones. Plant Cell Rep. 2005, 24, 25–35. [Google Scholar] [CrossRef]
- Cyriac, A.; Thomas, T.; Thomas, T.D. Tylophorine: Sources, Properties, Applications and Biotechnological Production. In Plant-Derived Bioactives; Springer: Berlin/Heidelberg, Germany, 2020; pp. 167–176. [Google Scholar]
- Anand, M.; Kaur, H.; Goyal, D. A Micropropagation System for Tylophora indica and Extraction and Purification of Tylophorine from Cultures and in Vitro Regenerated Plants. Proc. Int. Conf. Environ. Biomed. Biotechnol. IPCBEE 2012, 41, 14–17. [Google Scholar]
- Harmanjit, K.; Manju, A.; Dinesh, G. Extraction of Tylophorine from in Vitro Raised Plants of Tylophora indica. J. Med. Plants Res. 2011, 5, 729–734. [Google Scholar]
- Gopalakrishnan, C.; Shankaranarayanan, D.; Nazimudeen, S.K.; Kameswaran, L. Effect of Tylophorine, a Major Alkaloid of Tylophora indica, on Immunopathological and Inflammatory Reactions. Indian J. Med. Res. 1980, 71, 940–948. [Google Scholar] [PubMed]
- Gupta, S.; George, P.; Gupta, V.; Tandon, V.R.; Sundaram, K.R. Tylophora indica in Bronchial Asthma—A Double Blind Study. Indian J. Med. Res. 1979, 69, 981–989. [Google Scholar]
- Ganguly, T.; Sainis, K.B. Inhibition of Cellular Immune Responses by Tylophora indica in Experimental Models. Phytomedicine 2001, 8, 348–355. [Google Scholar] [CrossRef]
- Yamaguchi, H. Immunomodulation by Medicinal Plants. Microb. Infect. 1992, 319, 287–297. [Google Scholar]
- Samy, R.P.; Thwin, M.M.; Gopalakrishnakone, P.; Ignacimuthu, S. Ethnobotanical Survey of Folk Plants for the Treatment of Snakebites in Southern Part of Tamilnadu, India. J. Ethnopharmacol. 2008, 115, 302–312. [Google Scholar] [CrossRef]
- Balasubramanian, G.; Sarathi, M.; Kumar, S.R.; Hameed, A.S.S. Screening the Antiviral Activity of Indian Medicinal Plants against White Spot Syndrome Virus in Shrimp. Aquaculture 2007, 263, 15–19. [Google Scholar] [CrossRef]
- Pratheesh, K.V.; Shine, V.J.; Emima, J.; Renju, G.L.; Rajesh, R. Study on the Anti-Cancer Activity of Tylophora indica Leaf Extracts on Human Colorectal Cancer Cells. Int. J. Pharmacogn. Phytochem. Res. 2014, 6, 355–361. [Google Scholar]
- Rao, K.V.; Wilson, R.A.; Cummings, B. Alkaloids of Tylophora III: New Alkaloids of Tylophora indica (Burm) Merrill and Tylophora dalzellii Hook. F. J. Pharm. Sci. 1971, 60, 1725–1726. [Google Scholar] [CrossRef]
- Kathuria, V.; Kaushik, N. Feeding Inhibition of Helicoverpa armigera (Hübner) by Eucalyptus camaldulensis and Tylophora indica Extracts. Insect Sci. 2005, 12, 249–254. [Google Scholar] [CrossRef]
- Arulmozhi, S.; Mazumder, P.M.; Ashok, P.; Narayanan, L.S. Pharmacological Activities of Alstonia scholaris Linn.(Apocynaceae)—A Review. Pharmacogn. Rev. 2007, 1, 163–170. [Google Scholar]
- Gupta, M.; Mukhtar, H.M.; Ahmad, S. In-vitro evaluation of antioxidant activity and total phenolic content of Tylophora indica (burm f.) Merill. Int. J. Pharm. Sci. Res. 2011, 2, 121–126. [Google Scholar]
- Dhiman, M.; Naik, V.; Kshirsagar, R.; Chandrakant, D.D.; Manju, S.L. Antioxidant Activity of Hydrochloride Salt of Tylophorinidine and Tylophorinine Isolated from Aerial Parts of Tylophora indica. Int. J. Res. Ayurveda Pharm. 2012, 3, 121–124. [Google Scholar]
- Mujeeb, M.; Aeri, V.; Bagri, P.; Khan, S.A. Hepatoprotective Activity of the Methanolic Extract of Tylophora indica (Burm. f.) Merill. Leaves. Int. J. Green Pharm. 2009, 3, 125–127. [Google Scholar] [CrossRef]
- Jahas, J.; Ranjita, K.; Manikkoth, S.; Rao, S.N. Protective Role of Tylophora indica Ethanolic Extract on Artesunate Induced Liver Toxicity. Int. J. App. Bio. Pharma. Tech. 2014, 5, 206–210. [Google Scholar]
- Shyamjith, M.; Rao, S.N. Effect of Ethanolic Extract of Phyllanthus Amarus and Tylophora indica on Isoniazid Induced Hepatic Injury in Wistar Albino Rats. Int. J. App. Biol. Pharma. Tech. 2013, 4, 141–149. [Google Scholar]
- Patel, N.; Gujrati, V.; Gouda, T.S.; VenkatRao, N.; Nandakumar, K.; Shalam, M.; Kumar, S.M.S. Hepatoprotective Effect of Root Extracts of Tylophora indica (Wight & Arn) against Ethanol Induced Liver Damage in Rats. Toxicol. Int. 2007, 14, 57–62. [Google Scholar]
- Shrivijayakirubha, T.; Nagavalli, D.; Hemalatha, S. Evaluation of Hepatoprotective Activity of Leaves of Tylophora indica Linn. Hamdard Med. 2009, 52, 102–107. [Google Scholar]
- Parekh, J.; Chanda, S. Antibacterial Activities of Aqueous and Alcoholic Extracts of 34 Indian Medicinal Plants against Some Staphylococcus Species. Turk. J. Biol. 2008, 32, 63–71. [Google Scholar]
- Vanitha, A.; Vijayakumar, S.; Ranjitha, V.; Kalimuthu, K. Phytochemical Screening and Antimicrobial Activity of Wild and Tissue Cultured Plant Extracts of Tylophora indica. Asian J. Pharm. Pharmacol. 2019, 5, 21–32. [Google Scholar] [CrossRef]
- Kaur, H.; Singh, K. A Brief Phytopharmacological Overview of Tylophora indica—An Endangered Medicinal Plant. Int. J. Pharm. Sci. Res. 2012, 3, 4073–4076. [Google Scholar]
- Ranemma, M.; Nagendram, E.; Niranjan, S.; Reddy, A.N.; Mohan, C.H. Phytochemical Analysis, Antibacterial and Antioxidant Activity of Tylophora indica. Int. J. Curr. Microbiol. App. Sci 2017, 6, 487–493. [Google Scholar] [CrossRef] [Green Version]
- Mahishi, P.; Srinivasa, B.H.; Shivanna, M.B. Medicinal Plant Wealth of Local Communities in Some Villages in Shimoga District of Karnataka, India. J. Ethnopharmacol. 2005, 98, 307–312. [Google Scholar] [CrossRef]
- Samy, R.P.; Pushparaj, P.N.; Gopalakrishnakone, P. A Compilation of Bioactive Compounds from Ayurveda. Bioinformation 2008, 3, 100–110. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Savithramma, N.; Sulochana, C.; Rao, K.N. Ethnobotanical Survey of Plants Used to Treat Asthma in Andhra Pradesh, India. J. Ethnopharmacol. 2007, 113, 54–61. [Google Scholar] [CrossRef]
- Goun, E.; Cunningham, G.; Chu, D.; Nguyen, C.; Miles, D. Antibacterial and Antifungal Activity of Indonesian Ethnomedical Plants. Fitoterapia 2003, 74, 592–596. [Google Scholar] [CrossRef]
- Uniyal, M.R.; Billora, K. V Tylophora Hirsute Wight—An Indigenous Drug for Inducing Abortion. J. Res. Indian Med. 1973, 8, 95–96. [Google Scholar]
- Duke, J.A.; Ayensu, E.S. Medicinal Plants of China; Reference Publications: Algonac, MI, USA, 1985; Volume 4, ISBN 0917256204. [Google Scholar]
- Gao, W.; Bussom, S.; Grill, S.P.; Gullen, E.A.; Hu, Y.-C.; Huang, X.; Zhong, S.; Kaczmarek, C.; Gutierrez, J.; Francis, S. Structure–Activity Studies of Phenanthroindolizidine Alkaloids as Potential Antitumor Agents. Bioorg. Med. Chem. Lett. 2007, 17, 4338–4342. [Google Scholar] [CrossRef]
- Gao, W.; Lam, W.; Zhong, S.; Kaczmarek, C.; Baker, D.C.; Cheng, Y.-C. Novel Mode of Action of Tylophorine Analogs as Antitumor Compounds. Cancer Res. 2004, 64, 678–688. [Google Scholar] [CrossRef] [Green Version]
- Mostafa, E.M. Insecticidal Plant Constituents: Isolation, Structure Elucidation, and Biological Testing. Ph.D. Thesis, Al-Azhar University, Cairo, Egypt, 2009. [Google Scholar]
- Wang, K.; Hu, Y.; Liu, Y.; Mi, N.; Fan, Z.; Liu, Y.; Wang, Q. Design, Synthesis, and Antiviral Evaluation of Phenanthrene-Based Tylophorine Derivatives as Potential Antiviral Agents. J. Agric. Food Chem. 2010, 58, 12337–12342. [Google Scholar] [CrossRef]
- Yang, C.-W.; Lee, Y.-Z.; Kang, I.-J.; Barnard, D.L.; Jan, J.-T.; Lin, D.; Huang, C.-W.; Yeh, T.-K.; Chao, Y.-S.; Lee, S.-J. Identification of Phenanthroindolizines and Phenanthroquinolizidines as Novel Potent Anti-Coronaviral Agents for Porcine Enteropathogenic Coronavirus Transmissible Gastroenteritis Virus and Human Severe Acute Respiratory Syndrome Coronavirus. Antiviral Res. 2010, 88, 160–168. [Google Scholar] [CrossRef]
- Wang, Y.; Lee, S.; Ha, Y.; Lam, W.; Chen, S.-R.; Dutschman, G.E.; Gullen, E.A.; Grill, S.P.; Cheng, Y.; Fürstner, A. Tylophorine Analogs Allosterically Regulates Heat Shock Cognate Protein 70 and Inhibits Hepatitis C Virus Replication. Sci. Rep. 2017, 7, 1–11. [Google Scholar] [CrossRef] [Green Version]
- Nayampalli, S.S.; Sheth, U.K. Evaluation of Anti-Allergic Activity of Tylophora indica Using Rat Lung Perfusion. Indian J. Pharmacol. 1979, 11, 229–232. [Google Scholar]
- Saraswati, S.; Kanaujia, P.K.; Kumar, S.; Kumar, R.; Alhaider, A.A. Tylophorine, a Phenanthraindolizidine Alkaloid Isolated from Tylophora indica Exerts Antiangiogenic and Antitumor Activity by Targeting Vascular Endothelial Growth Factor Receptor 2–Mediated Angiogenesis. Mol. Cancer 2013, 12, 1–16. [Google Scholar] [CrossRef] [Green Version]
- Meera, R.; Devi, P.; Muthumani, P.; Kameswari, B.; Eswarapriya, B. Evaluation of Diuretic Activity from Tylophora indica Leaves Extracts. J. Pharm. Sci. Res. 2009, 1, 112–116. [Google Scholar]
- You, X.; Pan, M.; Gao, W.; Shiah, H.; Tao, J.; Zhang, D.; Koumpouras, F.; Wang, S.; Zhao, H.; Madri, J.A. Effects of a Novel Tylophorine Analog on Collagen-induced Arthritis through Inhibition of the Innate Immune Response. Arthritis Rheum. 2006, 54, 877–886. [Google Scholar] [CrossRef]
- Mendie, L.E.; Hemalatha, S. Molecular Docking of Phytochemicals Targeting GFRs as Therapeutic Sites for Cancer: An In Silico Study. Appl. Biochem. Biotechnol. 2022, 194, 215–231. [Google Scholar] [CrossRef]
- Shivpuri, D.N.; Menon, M.P.S.; Prakash, D. A Crossover Double-Blind Study on Tylophora indica in the Treatment of Asthma and Allergic Rhinitis. J. Allergy 1969, 43, 145–150. [Google Scholar] [CrossRef]
- Shivpuri, D.N.; Singhal, S.C.; Parkash, D. Treatment of Asthma with an Alcoholic Extract of Tylophora indica: A Cross-over, Double-Blind Study. Ann. Allergy 1972, 30, 407–412. [Google Scholar]
- Herbpthay. Uses-and-Benefits-of-Tylophora-Indica. Available online: https://herbpathy.com/Uses-and-Benefits-of-Tylophora-Indica-Cid1640 (accessed on 8 February 2023).
- WebMD. Tylophora—Uses, Side Effects, and More. Available online: https://www.webmd.com/vitamins/ai/ingredientmono-1524/tylophora (accessed on 8 February 2023).
Plant Species | Synonym |
---|---|
Tylophora anomala (NE Br.) | |
Tylophora anthopotamica (Hand-Mazz.) | |
Tylophora apiculata (Schum K.) | |
Tylophora arachnoidea (Goyder) | |
Tylophora arenicola (Merr.) | |
Tylophora astephanoides (Tsiang-PT Li) | |
Tylophora asthmatica (Wight Lf) | |
Tylophora augustiniana W Craib (Hemsl.) | |
Tylophora auriculata (Makino) | Vincetoxicum sublanceolatum vr. auriculata (Franch.-Sav) |
Tylophora badia (E. Mey.) Schltr. | Tylophora badia vr. badia |
Tylophora brevipes (Turcz.) Fern.-Vill. | |
Tylophora brownii (Hayata) | Tylophora ovata vr. brownii Tsiang & P.T. Li (Hayata) |
Tylophora cameroonica (NE Br.) | |
Tylophora chingtungensis (Tsiang-PT Li) | |
Tylophora cinerascens P Forst (R. Br.) | Marsdenia cinerascens (R Br) Pergularia cinerascens Spreng (R Br) |
Tylophora coddii (Bulloc) | |
Tylophora congoensis (Schltr) | |
Tylophora congolana (Baill, Bulloc) | |
Tylophora conspicua (NE Br.) | |
Tylophora cordata (Druce) | Tylophora syringaefolia (E Mey) |
Tylophora costantiniana MG. Gilbert, WD. Stevens (Tsiang) | |
Tylophora cycleoides (Tsiang) | |
Tylophora dahomensis (K Schum) | |
Tylophora dickinsii Makino (Franch. & Sav.) | Vincetoxicum sublanceolatum var. dickinsii Franch. & Sav. |
Tylophora erubescens (Meve & Liede) | |
Tylophora flanaganii (Schltr) | |
Tylophora fleckii (Schltr, NE Br.) | Tylophoropsis fleckii (Schltr) |
Tylophora flexuosa RBr. | Hoya flexuosa (R. Br.) Spreng., Tylophora carnosa (Wal ex Wight.), Tylophora tenuissima (Roxb, Wight-Arn), Tylophora tetrapetala (Dennst-Suresh), Vincetoxicum flexuosum (R. Br-Kuntze), Tylophora dielsii (H Lév Hu.), Tylophora tenuis (Blume) |
Tylophora floribunda (Miq) | Tylophora chungii (Merr), Vincetoxicum floribundum (Miq; Franch, Sav), Tylophora shikokiana (Matsumone) |
Tylophora forrestii ME. (Gilbert-PT-Li) | |
Tylophora gilletii (Wild) | |
Tylophora glabra (Costantin) | Tylophora renchangii (Tsiang), Tylophora renchangii (Tsiang) |
Tylophora glabriflora (Warb, Schltr) | |
Tylophora glauca (Bullock) | |
Tylophora govanii (Wight-Arn) Decne. | |
Tylophora gracilenta (Tsiang-PT Li) | |
Tylophora gracilis (Wild) | |
Tylophora gracillima (Mark.) | |
Tylophora henryi (Warb) | |
Tylophora heterophylla (Rich A.) | |
Tylophora hirsuta (Wight) | Diplolepis apiculata (Lindl) |
Tylophora hui (Tsiang) | |
Tylophora indica (Burm.f.-Merr.) | |
Tylophora inhambanensis (Schltr) | |
Tylophora insulana (Tsiang-PT Li) | |
Tylophora iringensis (Goyder-Markgr) | Pentarrhinum iringense (Markgr) |
Tylophora javanica (Boerl-Hassk) | Hybanthera javanica (Hassk) |
Tylophora kerrii (Craib WG) | Tylophora balansae (Costantin) |
Tylophora koi (Mer) | Tylophora taiwanensis (Hatus), Tylophora sootepensis (Craib WG) |
Tylophora leptantha (Tsiang) | |
Tylophora longifolia (Wight) | |
Tylophora longipedunculata (Schweinfurth-Hoehnel, Schltr) | Gymnema longepedunculatum Schweinfurth-Hoehnel, Sphaerocodon longipedunculatum (Schweinfurth-Hoehnel) K. Schum. |
Tylophora lugardae (Bullock) | |
Tylophora lycioides (Decne, E Mey.) | |
Tylophora membranacea (Tsiang-PT Li) | |
Tylophora merrillii (Schltr) | |
Tylophora multiflora (Alston, Wight-Arn) | Iphisia multiflora Wight & Arn. |
Tylophora nana (Schneid CK) | Tylophora nana vr. gansuensis (Wang LC-Sun XG) |
Tylophora nikoensis Matsum (Franch-Sav) | Vincetoxicum nikoense (Franch-Sav) |
Tylophora oblonga NE Br. | Tylophora liberica NE Br., Tylophora anfracta NE.Br. |
Tylophora obtusula (Tanaka ex Franchet & Savatier) Makino | Vincetoxicum sublanceolatum vr. obtusulum (Tanaka) |
Tylophora oculata NE Br. | |
Tylophora oligophylla (Tsiang-Gilbert MG., Stevens WD.) | |
Tylophora oshimae (Hayata) | |
Tylophora ovata (Hook-Lindl.) | Tylophora atrofolliculata F.P. Metcalf, Tylophora hispida vr. (brownie-Hayata), Tylophora jacquemontii (Decne), Tylophora lanyuensis Lu & Liu, Tylophora hispida (Decne), Tylophora mollissima (Wall), Tylophora panzhutenga (Zhu ZY), Tylophora ovata vr. ovata |
Tylophora picta Tsiang | |
Tylophora plagiopetala (Schum K. & Schltr) | |
Tylophora rockii (PT Li & Gilbert MG) | |
Tylophora rotundifolia (Ham-Buch.) | Tylophora trichophylla (Tsiang) |
Tylophora secamonoides (Tsiang) | |
Tylophora silvestrii (Tsiang-PT Li, Pamp.) | Henrya silvestrii (Pamp.) Henryastrum silvestrii (Happ-Pamp.) |
Tylophora simiana (Schltr) | |
Tylophora stenoloba (NE Br.-Schum K) | |
Tylophora subnuda (Sm. AC-Gray A) | |
Tylophora sylvatica (Decne) | Tylophora bojeriana (Decne) Vincetoxicum sylvaticum (Kuntze, Decne) |
Tylophora tenerrima (Wight) | |
Tylophora tengii (Tsiang) | |
Tylophora tenuipedunculata (Schum K.) | |
Tylophora tsiangii (PT Li & Gilbert MG) | Vincetoxicum tsiangii (PT Li) |
Tylophora tuberculata (PT Li & Gilbert MG) | |
Tylophora umbellata (Schltr) | |
Tylophora uncinata (PT Li & Gilbert MG) | |
Tylophora urceolata (Meve) | |
Tylophora velutina G. Don (R Br.) | Pergularia velutina (R Br.) Spreng, Marsdenia velutina R Br. |
Tylophora yunnanensis (Schltr) | |
Tylophora zenkeri (Schltr) |
Tylophora Species | Ethno-Medicinal Applications | Location | Reference |
---|---|---|---|
T. asthinatica | Treatment of bronchial asthma and allergy | India, Pakistan, and Indonesia | [54,55] |
T. villosa | Treatment of liver disorders | Indonesia | [56] |
T. hirsuta | Treatment of diabetes, treatment of eye diseases in veterinary medicine | India and Pakistan | [57,58,59] |
T. indica | Treatment of asthma, dermatitis, constipation (flower part), dysentery, cough, snake poison, and rheumatic conditions. The plant is also used as an expectorant, diaphoretic, and emetic agent. | Bangladesh, India (Orissa state) | [60,61,62,63,64] |
T. fasciculata | Treatment of fever and body pain | Orissa | [62] |
T. atrofolliculata | Treatment of rheumatoid arthritis | China | [65,66,67,68] |
T. ovata | Treatment of rheumatism, asthma, and traumatic injury | China, and Taiwan | [42] |
T. floribunda | Treatments of irregular menses | Chania and Hong Kong | [69] |
T. barbata | Treatments of inflammation | Australia | [69] |
T. perrottetiana | Treatments of wounds | Sri Lanka | [70] |
Cpd | Trivial Name | Plant Name | R1 | R2 | R3 | R4 | R5 | R6 | R7 | R8 | 13a | Reference | ||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
1 | Isotylocrebrine | T. tanakae T. indica | H | OCH3 | OCH3 | H | OCH3 | OCH3 | - | - | S | [73,74,75] | ||||
2 | Tylophorine | T. tanaka, T. indica T. crebriflora | OCH3 | OCH3 | H | H | OCH3 | OCH3 | - | - | R | [73,74,75,76] | ||||
3 | 3-dimethyl isotylocrebrine | T.tanakae | H | OH | OCH3 | H | OCH3 | OCH3 | - | - | S | [73,74] | ||||
4 | 3-demethyl tylophorinidine | T. atrofolliculata | H | OH | H | H | OH | OCH3 | - | α-OH | S | [65] | ||||
5 | 3-demethyl-14α-hydroxy isotylocrebrine | T. tanakae | H | OH | OCH3 | H | OCH3 | OCH3 | - | α-OH | S | [73,74] | ||||
6 | Isotylocrebrine N-Oxide | T. tanakae | H | OCH3 | OCH3 | H | OCH3 | OCH3 | O | - | S | [73,74] | ||||
7 | 14α-hydroxy isotylocrebrine N-Oxide | T. tanakae | H | OCH3 | OCH3 | H | OCH3 | OCH3 | O | α-OH | S | [73,74] | ||||
8 | 3-demethyl-14α-hydroxy isotylocrebrine N-Oxide | T. tanakae | H | OH | OCH3 | H | OCH3 | OCH3 | O | α-OH | S | [73,74] | ||||
9 | 6-demethyltylocrebrine | T. tanakae | OCH3 | OCH3 | H | OCH3 | OH | H | - | - | S | [73,74] | ||||
10 | Tylophorinine | T. indica and T. asthmatica | H | OCH3 | H | H | OCH3 | OCH3 | - | α-OH | S | [75,77,78] | ||||
11 | Tylophorinine N-Oxide | T. tanakae and T. atrofolliculata | H | OCH3 | H | H | OCH3 | OCH3 | O | α-OH | S | [66,73,74] | ||||
12 | 7-demethyltylophorine | T. tanakae | OCH3 | OCH3 | H | H | OCH3 | OH | - | - | R | [73,74] | ||||
13 | Tylophorine N-Oxide | T. tanakae | OCH3 | OCH3 | H | H | OCH3 | OCH3 | O | - | R | [73,74] | ||||
14 | 7-demethyltylophorine-N-Oxide | T. tanakae | OCH3 | OCH3 | H | H | OCH3 | OH | O | - | R | [73,74] | ||||
15 | Antofine | T. crebriflora | OCH3 | OCH3 | H | H | OCH3 | H | - | - | R | [76,79] | ||||
16 | 14α-hydroxy isotylocrebrine | T. indica and T. hirsuta | H | OCH3 | OCH3 | H | OCH3 | OCH3 | - | α-OH | S | [78,80] | ||||
17 | 4-demethyl isotylocrebrine | T. hirsuta | H | OCH3 | OH | H | OCH3 | OCH3 | - | - | S | [80] | ||||
18 | 3,6 Didemethyl isotylocrebrine | T. tanakae | H | OH | OCH3 | H | OH | OCH3 | - | - | α-OH | [73] | ||||
19 | 14-α-Hydroxy 3,6 didemethyl isotylocrebrine | T. tanakae | H | OH | OCH3 | H | OH | OCH3 | - | α-OH | α-OH | [73] | ||||
20 | Tylocrebrine | T. indica and T crebriflora | OCH3 | OCH3 | H | OCH3 | OCH3 | H | - | - | S | [75,76] | ||||
21 | Tylophorinidine | T. indica and T. atrofolliculata | H | OCH3 | H | H | OH | OCH3 | - | α-OH | S | [66,75] | ||||
22 | 5-hydroxy-O-methyltylophorinidine | T. indica and T. hirsuta | H | OCH3 | H | OH | OCH3 | OCH3 | - | α-OH | S | [78,80] | ||||
23 | Tylophorinidine N-Oxide | T. atrofolliculata | H | OCH3 | H | H | OH | OCH3 | O | α-OH | S | [66] | ||||
24 | 13 α-Hydroxytylophorine | T. hirsuta | OCH3 | OCH3 | H | H | OCH3 | OCH3 | - | - | R | [81] | ||||
25 | 6-demethyltylophorine | T.indica | OCH3 | OCH3 | H | H | OH | OCH3 | - | - | R | [78] | ||||
26 | 4&6-desmethyl isotylocrebrine | T.indica | H | OCH3 | OH | H | OH | OCH3 | - | - | S | [78] | ||||
27 | Tyloindicine A | T.indica | H | OCH3 | OCH3 | OCH3 | OCH3 | H | - | - | S | [78] | ||||
28 | Tyloindicine D | T.indica | H | OCH3 | OCH3 | OH | OCH3 | OCH3 | - | - | S | [78] | ||||
29 | Tyloindicine E | T.indica | H | OCH3 | H | H | OH | OCH3 | - | - | S | [78] | ||||
30 | Cryptopleurine | T. crebriflora | OCH3 | OCH3 | H | H | OCH3 | H | - | - | R | [76] | ||||
31 | Tylophorinicine | T.asthmatica | OCH3 | OCH3 | H | H | OCH3 | OCH3 | - | β-OH | R | [82] | ||||
Compound | Trivial name | Plant name | R1 | R2 | R3 | Reference | ||||||||||
32 | Tyloindicine G | T.indica | OCH3 | H | OH | [83] | ||||||||||
33 | Tyloindicine H | T.indica | H | OH | H | [83] | ||||||||||
Compound | Trivial name | Plant name | R1 | R2 | Reference | |||||||||||
34 | Tylohirsutinine | T. hirsuta | OCH3 | H | [84] | |||||||||||
35 | Tylohirsutinidine | T. hirsuta | OH | αOH | [84] | |||||||||||
Compound | Trivial name | Plant name | R1 | R2 | R3 | R4 | R5 | Reference | ||||||||
36 | Tyloindicine C | T. indica | OCH3 | OH | OH | OCH3 | - | [78] | ||||||||
37 | 13a-Methyltlohirsutine | T. hirsuta | OCH3 | OCH3 | OCH3 | OCH3 | - | [84] | ||||||||
38 | 13a-Methyltyl-ohirsutinidine | T. hirsuta | OCH3 | OH | OCH3 | OCH3 | α-OH | [84] | ||||||||
Tylophoridicine D | T. atrofolliculata | [66] | ||||||||||||||
Tyloindane | T. indica | [83] |
Compound | Trivial Name | Plant Name | R1 | R2 | R3 | Reference | |
---|---|---|---|---|---|---|---|
1 | Tyloindicine I | T. indica | OCH3 | OH | OCH3 | [83] | |
2 | Tyloindicine J | T. indica | H | H | OCOCH3 | [83] | |
Compound | Trivial name | Plant name | R | Reference | |||
3 | Septicine | T. Tanakae and T. indica | H | [73,75] | |||
4 | 13a-Hydroxysepticine | T. hirsuta | OH | [84] | |||
Compound | Trivial name | Plant name | R1 | R2 | Reference | ||
5 | Tylohirsuticine | T. hirsuta | OCH3 | OCH3 | [80] | ||
6 | Tyloindicine B | T. indica | H | OCOCH3 | [78] | ||
Tyloindicine F | T. indica | [83] |
Plant Species | Uses/Biological Properties | Reference(s) |
---|---|---|
Tylophora indica | Asthma | [82,83,84,85,86,87,95,96] |
Anti-inflammatory, and anti-arthritic | [95] | |
Suppress cellular immune responses | [97,98] | |
Anti-snake-bite | [99] | |
Anti-viral | [100] | |
Antitumor | [14,25,101,102] | |
Insecticide | [103] | |
Free radical scavenging activity | [32,104,105,106] | |
Hepato-protective activity | [22,107,108,109,110,111] | |
Anti-bacterial | [36,53,112,113,114,115] | |
Tylophora asthmatica | Asthma and dry cough | [116,117] |
Anti-snake-bite | [118] | |
Jaundice/Liver protective | [116] | |
Anti-bacterial and Anti-fungal activity | [119] | |
Tylophora hirsute | Abortifacients (abortion inducer) | [120] |
Tylophora floribunda | Anti-cancer | [121] |
Tylophora tanakae | Cytotoxic, Insecticide | [72,73] |
Tylophora dalzellii | Anti-tumor | [102] |
Tylophora atrofolliculata | Anti-tumor | [122] |
Tylophora pauciflora | Anti-tumor, anti-viral, anti-fungal, anti-bacterial, anti-amoebic activities, anti-inflammatory, and antibiotic; insecticidal | [49,123] |
Active Constituent | Tylophora Species | Uses | Reference |
---|---|---|---|
Tylophorine (its structure is shown in Figure 1) | Tylophora indica | Cytotoxic activity | [124] |
Insecticidal activity | [124] | ||
Anti-inflammatory | [42] | ||
Stimulant to adrenal Cortex | [54] | ||
Anti-feedant activity | [53] | ||
Anti-viral activities | [125,126,127] | ||
Anti-bacterial | [53] | ||
Anti-amoebic | [81] | ||
Anti-fungal | [53] | ||
Hepato-protective activity | [22] | ||
Anti-allergic activity | [97,128] | ||
Anti-angiogenic | [129] | ||
Diuretic activity | [130] | ||
Inhibition of cellular immune responses | [97] | ||
Arthritis | [131] | ||
Tylophora asthmatica | Asthma | [116,117] | |
Tylophorinicine | Tylophora indica | Cytotoxic activity Insecticidal activity | [116,117,130,131] |
Tylophora asthmatica | Asthma | ||
Tylophorinine | Tylophora indica | Cytotoxic activity Insecticidal activity | [124] |
Tylophora atrofolliculata | Cytotoxic activity on HCT-8 cell | [66] | |
Tylophorinine-N-Oxide | Tylophora indica | Cytotoxic activity Insecticidal activity | [124] |
Tylophorinidine | Tylophora indica | Cytotoxic activity Insecticidal activity | [124] |
Tylophora atrofolliculata | Cytotoxic activity on HCT-8 cell | [66] | |
Tylophorinidine-N-Oxide | Tylophora indica | Cytotoxic activity Insecticidal activity | [124] |
3-Demethyltylophorinidine | |||
Septicine | Tylophora indica | ||
3,6-Didemethyl isotylocrebrine | Tylophora tanakae | Cytotoxic activity | [73] |
14-α-Hydroxy 3,6 didemethyl isotylocrebrine | |||
Tylophoridicines C-F | Tylophora atrofolliculata | Cytotoxic activity on HCT-8 cell | [66] |
R-(+)-Deoxytylophorinidine | Tylophora atrofolliculata |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Mostafa, E.M.; Musa, A.; Mohammed, H.A.; Alzarea, A.I.; Abdelgawad, M.A.; Al-Sanea, M.M.; Ismail, A.; Zafar, A.; Elmowafy, M.; Selim, S.; et al. Phenanthroindolizidine Alkaloids Secondary Metabolites Diversity in Medicinally Viable Plants of the Genus Tylophora. Plants 2023, 12, 1143. https://doi.org/10.3390/plants12051143
Mostafa EM, Musa A, Mohammed HA, Alzarea AI, Abdelgawad MA, Al-Sanea MM, Ismail A, Zafar A, Elmowafy M, Selim S, et al. Phenanthroindolizidine Alkaloids Secondary Metabolites Diversity in Medicinally Viable Plants of the Genus Tylophora. Plants. 2023; 12(5):1143. https://doi.org/10.3390/plants12051143
Chicago/Turabian StyleMostafa, Ehab M., Arafa Musa, Hamdoon A. Mohammed, Abdulaziz Ibrahim Alzarea, Mohamed A. Abdelgawad, Mohammad M. Al-Sanea, Ahmed Ismail, Ameeduzzafar Zafar, Mohammed Elmowafy, Samy Selim, and et al. 2023. "Phenanthroindolizidine Alkaloids Secondary Metabolites Diversity in Medicinally Viable Plants of the Genus Tylophora" Plants 12, no. 5: 1143. https://doi.org/10.3390/plants12051143
APA StyleMostafa, E. M., Musa, A., Mohammed, H. A., Alzarea, A. I., Abdelgawad, M. A., Al-Sanea, M. M., Ismail, A., Zafar, A., Elmowafy, M., Selim, S., & Khan, R. A. (2023). Phenanthroindolizidine Alkaloids Secondary Metabolites Diversity in Medicinally Viable Plants of the Genus Tylophora. Plants, 12(5), 1143. https://doi.org/10.3390/plants12051143