Unveiling the Potential of Aloe vera Gel Supplementation in a Cooling Extender: A Breakthrough in Enhancing Rooster Sperm Quality and Fertility Ability
Abstract
:Simple Summary
Abstract
1. Introduction
2. Materials and Methods
2.1. Chemicals
2.2. Aloe vera Gel Preparation
2.3. Antioxidant Property of AV Gel
2.3.1. Determination of Total Phenolic Content
2.3.2. Determination of Total Triterpenoid Content
2.3.3. Total Polysaccharide Content
2.3.4. Antioxidant Capacity Measurement Using DPPH Assay
2.4. Rooster Semen Collection, Dilution, and Semen Storage
2.5. Experimental Design
2.6. Evaluation of Sperm Quality
2.7. Fertility
2.8. Statistical Analysis
3. Results
3.1. Bioactive and Antioxidant Capacity of Aloe vera Gel
3.2. Effects of Different AV Gel Level Supplementation on Cooling Semen Quality during Storage
3.3. Effects of the Best Extender on Fertility and Hatchability
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Mussa, N.J.; Kibonde, S.F.; Boonkum, W.; Chankitisakul, V. The Comparison between Tanzanian Indigenous (Ufipa Breed) and Commercial Broiler (Ross Chicken) Meat on the Physicochemical Characteristics, Collagen and Nucleic Acid Contents. Food Sci. Anim. Resour. 2022, 42, 833–848. [Google Scholar] [CrossRef]
- Juiputta, J.; Chankitisakul, V.; Boonkum, W. Appropriate Genetic Approaches for Heat Tolerance and Maintaining Good Productivity in Tropical Poultry Production: A Review. Vet. Sci. 2023, 10, 591. [Google Scholar] [CrossRef]
- Damaziak, K.; Musielak, M.; Musielak, C.; Riedel, J.; Gozdowski, D.; Grzybek, W. Effect of Different Rearing System on Eggs Production, Hatchability, and Offspring Quality in Layer Breeders. Poult. Sci. 2021, 100, 101101. [Google Scholar] [CrossRef]
- Bekele, F.; Tafese, L.; Demsash, A.W.; Tesfaye, H.; Labata, B.G.; Fekadu, G. Adherence to Self-Care Practices and Associated Factors among Heart Failure Patients in Ethiopia: A Systematic Review and Meta-Analysis. PLoS ONE 2023, 18, e0288824. [Google Scholar] [CrossRef]
- Lake, P.E.; Stewart, J.M. Preservation of Fowl Semen in Liquid Nitrogen—An Improved Method. Br. Poult. Sci. 1978, 19, 187–194. [Google Scholar] [CrossRef]
- Gibb, Z.; Aitken, R.J. The Impact of Sperm Metabolism during In Vitro Storage: The Stallion as a Model. BioMed Res. Int. 2016, 2016, 9380609. [Google Scholar] [CrossRef]
- Chankitisakul, V.; Boonkum, W.; Kaewkanha, T.; Pimprasert, M.; Ratchamak, R.; Authaida, S.; Thananurak, P. Fertilizing Ability and Survivability of Rooster Sperm Diluted with a Novel Semen Extender Supplemented with Serine for Practical Use on Smallholder Farms. Poult. Sci. 2022, 101, 102188. [Google Scholar] [CrossRef]
- Iaffaldano, N.; Rosato, M.P.; Manchisi, A.; Centoducati, G.; Meluzzi, A. Comparison of Different Extenders on the Quality Characteristics of Turkey Semen during Storage. Ital. J. Anim. Sci. 2005, 4, 513–515. [Google Scholar] [CrossRef]
- Donoghue, A.M.; Wishart, G.J. Storage of Poultry Semen. Anim. Reprod. Sci. 2000, 62, 213–232. [Google Scholar] [CrossRef]
- Tangjitjareonkun, J.; Supabphol, R. Application of Aloe vera on Wound Healing. J. Med. Health Sci. 2015, 22, 53–67. [Google Scholar]
- Lawrence, R.; Tripathi, P.; Jeyakumar, E. Isolation, Purification and Evaluation of Antibacterial Agents from Aloe vera. Braz. J. Microbiol. Publ. Braz. Soc. Microbiol. 2009, 40, 906–915. [Google Scholar] [CrossRef]
- Baqir, M.; Fakhrildin, M.; Sodani, I. Effect of Aloe vera Extracts on in Vitro Human Sperm Parameters for Asthenozoospermic Patients. J. Thi-Qar Sci. 2014, 5, 8–13. [Google Scholar]
- Souza, A.L.P.; Lima, G.L.; Peixoto, G.C.X.; Silva, A.M.; Oliveira, M.F.; Silva, A.R. Use of Aloe vera-Based Extender for Chilling and Freezing Collared Peccary (Pecari tajacu) Semen. Theriogenology 2016, 85, 1432–1438. [Google Scholar] [CrossRef] [PubMed]
- Agarwal, S.; Singh, P.; Singh, H.; Verma, P.; Pandey, A.; Kumar, S. Antioxidant Effects of Aloe vera as Semen Additive in Cryopreservation of Cattle Bull Semen. Int. J. Curr. Microbiol. Appl. Sci. 2020, 9, 1625–1635. [Google Scholar] [CrossRef]
- Adebiyi, O.E.; Olayemi, F.O.; Ning-Hua, T.; Guang-Zhi, Z. In Vitro Antioxidant Activity, Total Phenolic and Flavonoid Contents of Ethanol Extract of Stem and Leaf of Grewia carpinifolia. Beni-Suef Univ. J. Basic Appl. Sci. 2017, 6, 10–14. [Google Scholar] [CrossRef]
- Chang, C.L.; Lin, C.S.; Lai, G.H. Phytochemical Characteristics, Free Radical Scavenging Activities, and Neuroprotection of Five Medicinal Plant Extracts. Evid. Based Complement. Altern. Med. ECAM 2012, 2012, 984295. [Google Scholar] [CrossRef] [PubMed]
- Pawar, H.A.; D’Mello, P.M. Spectrophotometric Estimation of Total Polysaccharides in Cassia Tora Gum. J. Appl. Pharm. Sci. 2011, 30, 93–95. [Google Scholar]
- Xiao, X.; Ren, W.; Zhang, N.; Bing, T.; Liu, X.; Zhao, Z.; Shangguan, D. Comparative Study of the Chemical Constituents and Bioactivities of the Extracts from Fruits, Leaves and Root Barks of Lycium Barbarum. Molecules 2019, 24, 1585. [Google Scholar] [CrossRef]
- Surai, P.F.; Wishart, G.J. Poultry Artificial Insemination Technology in the Countries of the Former USSR. Worlds Poult. Sci. J. 1996, 52, 27–43. [Google Scholar] [CrossRef]
- Lukaszewicz, E.; Jerysz, A.; Partyka, A.; Siudzińska, A. Efficacy of Evaluation of Rooster Sperm Morphology Using Different Staining Methods. Res. Vet. Sci. 2008, 85, 583–588. [Google Scholar] [CrossRef]
- Chauychu-Noo, N.; Thananurak, P.; Boonkum, W.; Vongpralub, T.; Chankitisakul, V. Effect of Organic Selenium Dietary Supplementation on Quality and Fertility of Cryopreserved Chicken Sperm. Cryobiology 2021, 98, 57–62. [Google Scholar] [CrossRef] [PubMed]
- Debnath, B.; Singh, W.S.; Das, M.; Goswami, S.; Singh, M.K.; Maiti, D.; Manna, K. Role of Plant Alkaloids on Human Health: A Review of Biological Activities. Mater. Today Chem. 2018, 9, 56–72. [Google Scholar] [CrossRef]
- Quispe, C.; Villalobos, M.; Bórquez, J.; Simirgiotis, M. Chemical Composition and Antioxidant Activity of Aloe vera from the Pica Oasis (Tarapacá, Chile) by UHPLC-Q/Orbitrap/MS/MS. J. Chem. 2018, 2018, 6123850. [Google Scholar] [CrossRef]
- Zareie, A.; Soleimani, D.; Askari, G.; Jamialahmadi, T.; Guest, P.C.; Bagherniya, M.; Sahebkar, A. Cinnamon: A Promising Natural Product Against COVID-19. Adv. Exp. Med. Biol. 2021, 1327, 191–195. [Google Scholar] [CrossRef] [PubMed]
- Leung, M.Y.K.; Liu, C.; Zhu, L.F.; Hui, Y.Z.; Yu, B.; Fung, K.P. Chemical and Biological Characterization of a Polysaccharide Biological Response Modifier from Aloe vera L. Var. chinensis (Haw.) Berg. Glycobiology 2004, 14, 501–510. [Google Scholar] [CrossRef] [PubMed]
- Li, Y.; Liang, W.; Han, Y.; Zhao, W.; Wang, S.; Qin, C. Triterpenoids and Polysaccharides from Ganoderma Lucidum Improve the Histomorphology and Function of Testes in Middle-Aged Male Mice by Alleviating Oxidative Stress and Cellular Apoptosis. Nutrients 2022, 14, 4733. [Google Scholar] [CrossRef] [PubMed]
- Shahidi, F.; Wanasundara, P.K. Phenolic Antioxidants. Crit. Rev. Food Sci. Nutr. 1992, 32, 67–103. [Google Scholar] [CrossRef] [PubMed]
- Yániz, J.L.; Marco-Aguado, M.A.; Mateos, J.A.; Santolaria, P. Bacterial Contamination of Ram Semen, Antibiotic Sensitivities, and Effects on Sperm Quality during Storage at 15 °C. Anim. Reprod. Sci. 2010, 122, 142–149. [Google Scholar] [CrossRef] [PubMed]
- Ni, Y.; Turner, D.; Yates, K.M.; Tizard, I. Isolation and Characterization of Structural Components of Aloe vera L. Leaf Pulp. Int. Immunopharmacol. 2004, 4, 1745–1755. [Google Scholar] [CrossRef]
- Anifowose, O.; Dunmade, A.; Bakre, A.; Agbugba, L. Effect of Aloe vera Gel Extract Treatment on Fertility Rates in Harco Strain Plymouth Rock Male Cockerel. Vet. Res. Notes 2022, 2, 22–26. [Google Scholar] [CrossRef]
- Nesslany, F.; Simar-Meintières, S.; Ficheux, H.; Marzin, D. Aloe-Emodin-Induced DNA Fragmentation in the Mouse in Vivo Comet Assay. Mutat. Res. Toxicol. Environ. Mutagen. 2009, 678, 13–19. [Google Scholar] [CrossRef] [PubMed]
- Golestan, G.; Salati, A.P.; Keyvanshokooh, S.; Zakeri, M.; Moradian, H. Effect of Dietary Aloe vera on Growth and Lipid Peroxidation Indices in Rainbow Trout (Oncorhynchus mykiss). Vet. Res. Forum 2015, 6, 63–67. [Google Scholar]
- Kheawkanha, T.; Chankitisakul, V.; Thananurak, P.; Pimprasert, M.; Boonkum, W.; Vongpralub, T. Solid Storage Supplemented with Serine of Rooster Semen Enhances Higher Sperm Quality and Fertility Potential during Storage at 5 °C for up to 120 h. Poult. Sci. 2023, 102, 102648. [Google Scholar] [CrossRef]
- Umehara, T.; Kawai, T.; Goto, M.; Richards, J.S.; Shimada, M. Creatine Enhances the Duration of Sperm Capacitation: A Novel Factor for Improving in Vitro Fertilization with Small Numbers of Sperm. Hum. Reprod. 2018, 33, 1117–1129. [Google Scholar] [CrossRef] [PubMed]
- Penfold, L.M.; Harnal, V.; Lynch, W.; Bird, D.; Derrickson, S.R.; Wildt, D.E. Characterization of Northern Pintail (Anas acuta) Ejaculate and the Effect of Sperm Preservation on Fertility. Reprod. Camb. Engl. 2001, 121, 267–275. [Google Scholar] [CrossRef] [PubMed]
- Uni, Z.; Yadgary, L.; Yair, R. Nutritional Limitations during Poultry Embryonic Development1. J. Appl. Poult. Res. 2012, 21, 175–184. [Google Scholar] [CrossRef]
- Kuda, N.T. Factors Influencing Fertility and Hatchability of Poultry. J. Biol. Agric. Healthc. 2023, 13, 1. [Google Scholar]
- Mahmoud, K.; Beck, M.; Scheideler, S.; Forman, M.F.; Anderson, K.P.; Kachman, S. Acute High Environmental Temperature and Calcium-Estrogen Relationships in the Hen. Poult. Sci. 1997, 75, 1555–1562. [Google Scholar] [CrossRef]
- Pimprasert, M.; Kheawkanha, T.; Boonkum, W.; Chankitisakul, V. Influence of Semen Collection Frequency and Seasonal Variations on Fresh and Frozen Semen Quality in Thai Native Roosters. Animals 2023, 13, 573. [Google Scholar] [CrossRef]
- Suwimonteerabutr, J.; Yamsrikaew, U.; Damthongsen, K.; Suksirisamphan, T.; Leeniwa, P.; Lawanyakul, P.; Nuntapaitoon, M. Improving the Quality of Chilled Semen from Thai Native Chicken Using Phosphorus and Vitamin B12 Supplementation in Semen Extender. Poult. Sci. 2024, 103, 103262. [Google Scholar] [CrossRef]
- Kim, Y.K.; Suh, S.Y.; Uddin, M.R.; Kim, Y.B.; Kim, H.H.; Lee, S.W.; Park, S.U. Variation in Amino Acid Content Among Three Aloe Species. Asian J. Chem. 2013, 25, 6346–6348. [Google Scholar] [CrossRef]
- Sonawane, S.K.; Gokhale, J.S.; Mulla, M.Z.; Kandu, V.R.; Patil, S. A Comprehensive Overview of Functional and Rheological Properties of Aloe vera and Its Application in Foods. J. Food Sci. Technol. 2021, 58, 1217–1226. [Google Scholar] [CrossRef] [PubMed]
- Andrea, B.; Dumitrița, R.; Florina, C.; Francisc, D.; Anastasia, V.; Socaci, S.; Adela, P. Comparative Analysis of Some Bioactive Compounds in Leaves of Different Aloe Species. BMC Chem. 2020, 14, 67. [Google Scholar] [CrossRef]
- Miladi, S.; Mohamed, D. In Vitro Antioxidant Activities of Aloe vera Leaf Skin Extracts. J. Société Chim. Tunis. 2008, 10, 101–109. [Google Scholar]
- Pop, R.M.; Puia, I.C.; Puia, A.; Chedea, V.S.; Levai, A.M.; Bocsan, I.C.; Buzoianu, A.D. Pot Aloe vera Gel—A Natural Source of Antioxidants. Not. Bot. Horti Agrobot. Cluj-Napoca 2022, 50, 12732. [Google Scholar] [CrossRef]
- Vidic, R.D.; Brantley, S.L.; Vandenbossche, J.M.; Yoxtheimer, D.; Abad, J.D. Impact of Shale Gas Development on Regional Water Quality. Science 2013, 340, 1235009. [Google Scholar] [CrossRef] [PubMed]
- Mohammadi, V.; Sharifi, S.D.; Sharafi, M.; Mohammadi Sangcheshmeh, A. The Effect of Dietary L-Carnitine on Semen Quality Parameters and Gonadosomatic and Hepatosomatic Indexes in Broiler Breeder. Iran. J. Anim. Sci. Res. 2022, 14, 583–592. [Google Scholar] [CrossRef]
- Witaszczyk, A.; Klimowicz, A. Usefulness of (Aloe vera) as a Potential Ingredient of Cosmetic Preparations. Pomeranian J. Life Sci. 2023, 69, 76–87. [Google Scholar] [CrossRef]
Compound | Content |
---|---|
Total phenolic (mg GAE/g) | 1.73 ± 0.04 |
Total polysaccharide (mg glucose/g) | 359.33 ± 4.19 |
Total triterpenoid (mg UA/g) | 18.51 ± 1.18 |
Antioxidant capacity (DPPH (%) inhibition) | 17.46 ± 0.44 |
Source of Variation | Level of Significance (p-Value) | ||
---|---|---|---|
Time of Storage | Treatment | Time of Storage × Treatment | |
Sperm motility | <0.0001 | <0.0001 | <0.0001 |
Sperm viability | <0.0001 | <0.0001 | <0.0001 |
MDA | <0.0001 | <0.0001 | <0.0001 |
pH | <0.0001 | <0.0001 | <0.0001 |
Time of Storage (h) | Treatments | SEM | |||||||
---|---|---|---|---|---|---|---|---|---|
Control | 0.25% | 0.50% | 1.0% | 2.5% | 5.0% | 10% | 20% | ||
Sperm motility | |||||||||
T0 | 85.67 cw | 89.37 bw | 94.83 aw | 95.88 aw | 82.21 dw | 78.54 ew | 72.17 fw | 65.88 gw | 0.70 |
T24 | 80.54 dx | 88.75 ax | 83.21 cx | 85.54 bx | 74.97 ex | 74.43 ex | 69.75 fx | 55.63 gw | |
T48 | 71.60 cy | 74.24 by | 75.62 by | 79.00 ay | 72.54 cy | 70.67 dy | 62.29 ey | 42.62 fy | |
T72 | 65.62 dz | 71.79 cz | 74.42 bz | 77.88 az | 61.92 ez | 57.87 fz | 51.13 gz | 32.54 hz | |
Sperm viability | |||||||||
T0 | 92.46 cw | 95.67 bw | 96.2 bw | 98.83 aw | 91.33 cw | 82.96 dw | 74.04 ew | 72.33 fw | 0.53 |
T24 | 85.21 cx | 90.67 bx | 92.42 bx | 95.50 ax | 81.42 dx | 77.83 ex | 77.63 ex | 62.54 fx | |
T48 | 74.68 cy | 77.29 by | 79.17 ay | 80.67 ay | 74.08 cy | 72.63 dy | 63.92 ey | 45.75 fy | |
T72 | 71.88 cz | 75.33 bz | 75.97 bz | 79.17 az | 74.88 bz | 62.46 dz | 55.04 ez | 34.13 fz | |
MDA | |||||||||
T0 | 1.09 dz | 0.68 ez | 0.59 gz | 0.54 hz | 0.62 fz | 1.15 cz | 1.24 bz | 1.35 az | 0.02 |
T24 | 2.14 dy | 1.09 fy | 1.09 fy | 1.09 fy | 2.07 ey | 3.33 cy | 3.56 by | 3.79 ay | |
T48 | 4.23 cx | 3.09 ex | 3.06 ex | 3.04 ex | 4.06 dx | 5.57 bx | 5.90 ax | 5.92 ax | |
T72 | 5.73 dw | 5.49 ew | 5.35 fw | 5.26 gw | 5.34 fw | 5.94 cw | 7.33 bw | 7.66 aw | |
pH | |||||||||
T0 | 7.00 aw | 7.00 aw | 7.00 aw | 7.00 aw | 6.99 abw | 6.99 abw | 6.98 abw | 6.98 abw | 0.04 |
T24 | 6.99 abx | 6.99 abx | 6.99 abx | 6.99 abx | 6.95 cx | 6.89 dx | 6.84 ex | 6.82 efx | |
T48 | 6.94 ay | 6.94 ay | 6.93 aby | 6.93 aby | 6.88 ey | 6.81 fy | 6.74 hy | 6.73 hy | |
T72 | 6.91 az | 6.90 abz | 6.90 abz | 6.90 abz | 6.84 dx | 6.72 fz | 6.63 hz | 6.61 hz |
Time to Storage (h) | Treatments | SEM | p-Values | |||
---|---|---|---|---|---|---|
Control | 1.0% | Treatments 1 | Time to Storage 2 | Interaction | ||
No. of eggs | 459 | 474 | ||||
Fertility | ||||||
T24 | 78.53 bx | 83.36 ax | 3.75 | <0.0001 | <0.0001 | 0.2316 |
T48 | 74.67 by | 77.64 ay | ||||
T72 | 65.29 bz | 69.05 az | ||||
Hatchability | ||||||
T24 | 64.31 bx | 72.33 ax | 1.86 | <0.0001 | <0.0001 | 0.0560 |
T48 | 61.58 by | 68.84 ay | ||||
T72 | 55.21 bz | 59.26 az |
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Pimpa, J.; Authaida, S.; Boonkum, W.; Rerkyusuke, S.; Janta, C.; Chankitisakul, V. Unveiling the Potential of Aloe vera Gel Supplementation in a Cooling Extender: A Breakthrough in Enhancing Rooster Sperm Quality and Fertility Ability. Animals 2024, 14, 2290. https://doi.org/10.3390/ani14162290
Pimpa J, Authaida S, Boonkum W, Rerkyusuke S, Janta C, Chankitisakul V. Unveiling the Potential of Aloe vera Gel Supplementation in a Cooling Extender: A Breakthrough in Enhancing Rooster Sperm Quality and Fertility Ability. Animals. 2024; 14(16):2290. https://doi.org/10.3390/ani14162290
Chicago/Turabian StylePimpa, Jutarat, Supakorn Authaida, Wuttigrai Boonkum, Sarinya Rerkyusuke, Chalinee Janta, and Vibuntita Chankitisakul. 2024. "Unveiling the Potential of Aloe vera Gel Supplementation in a Cooling Extender: A Breakthrough in Enhancing Rooster Sperm Quality and Fertility Ability" Animals 14, no. 16: 2290. https://doi.org/10.3390/ani14162290
APA StylePimpa, J., Authaida, S., Boonkum, W., Rerkyusuke, S., Janta, C., & Chankitisakul, V. (2024). Unveiling the Potential of Aloe vera Gel Supplementation in a Cooling Extender: A Breakthrough in Enhancing Rooster Sperm Quality and Fertility Ability. Animals, 14(16), 2290. https://doi.org/10.3390/ani14162290