Schistosomiasis Elimination: Beginning of the End or a Continued March on a Trodden Path
Abstract
:1. Introduction
2. Can Schistosomiasis be Eliminated?
3. Progress Vis-à-Vis the Distribution of Schistosomiasis
4. Risk for Fragmented Treatment Coverage
5. New Approaches
6. Diagnostics
7. Vaccine Development
8. Research on the Snail
9. Accreditation
Funding
Conflicts of Interest
References
- Doumenge, J.P.; Mott, K.E. Global distribution of schistosomiasis: CEGET*-CNRS**/WHO Atlas. World Health Stat. Q. 1984, 37, 186–199. [Google Scholar] [PubMed]
- Vos, T.; Flaxman, A.D.; Naghavi, M.; Lozano, R.; Michaud, C.; Ezzati, M.; Shibuya, K.; Salomon, J.A.; Abdalla, S.; Aboyans, V.; et al. Years lived with disability (YLDs) for 1160 sequelae of 289 diseases and injuries 1990–2010: A systematic analysis for the Global Burden of Disease Study 2010. Lancet 2012, 380, 2163–2196. [Google Scholar] [CrossRef]
- Hotez, P.; Alvarado, M.; Basáñez, M.; Bolliger, I.; Bourne, R.; Boussinesq, M.; Brooker, S.; Brown, A.; Buckle, G.; Budke, C.; et al. (DALYs and HALE Collaborators). The gobal burden of disease study 2010: Interpretation and implications for the neglected tropical diseases. PLoS Negl. Trop. Dis. 2014, 8, e2865. [Google Scholar] [CrossRef] [PubMed]
- Katz, N.; Chaves, A.; Pellegrino, J. A simple device for quantitative stool thick-smear technique in schistosomiasis mansoni. Rev. Inst. Med. Trop. São Paulo. 1972, 14, 397–400. [Google Scholar] [PubMed]
- Colley, D.G.; Binder, S.; Campbell, C.; King, C.H.; Tchuem Tchuenté, L.A.; N’Goran, E.K.; Erko, B.; Karanja, D.M.; Kabatereine, N.B.; van Lieshout, L.; et al. A five-country evaluation of a point-of-care circulating cathodic antigen urine assay for the prevalence of Schistosoma mansoni. Am. J. Trop. Med. Hyg. 2013, 88, 426–432. [Google Scholar] [CrossRef] [PubMed]
- He, P.; Gordon, C.A.; Williams, G.M.; Li, Y.; Wang, Y.; Hu, J.; Gray, D.J.; Ross, A.P.; Harn, D.; McManus, D.P. Real-time PCR diagnosis of Schistosoma japonicum in low transmission areas of China. Infect. Dis. Poverty 2018, 7, 8. [Google Scholar] [CrossRef] [PubMed]
- Gordon, C.A.; Acosta, L.; Gobert, G.N.; Olveda, R.; Ross, A.G.; Jis, M.; Gray, D.J.; Williams, G.M.; Harn, D.A.; Li, Y.S.; et al. Real-time PCR demonstrates high prevalence of Schistosoma japonicum in the Philippines: Implications for surveillance and control. PLoS Negl. Trop. Dis. 2014, 9, e0003483. [Google Scholar] [CrossRef]
- Bilharz, T.M. Fernere Beobachtungen über das die Pfortader des Menschen bewohnende Distomum Haematobium und sein Verhältnis zu gewissen pathologischen Bildungen, von Dr. Th. Bilharz in Cairo (aus brieflichen Mittheilungen an Professor v. Siebold vom 29 März 1852). Zeitschrift Wissenschaftliche Zoologie 1853, 4, 72–76. (In German) [Google Scholar]
- Leiper, R.T. The relation between the terminal spined and lateral-spined eggs of bilharzia. Br. Med. J. 1916, 1, 411. [Google Scholar] [CrossRef]
- Davis, A.; Wegner, D.H. Multicentre trials of praziquantel in human schistosomiasis: Design and techniques. Bull. World Health Organ. 1979, 57, 767–771. [Google Scholar] [PubMed]
- McCullough, F.S.; Gayral, P.; Duncan, J.; Christie, J.D. Molluscicides in schistosomiasis control. Bull. World Health Organ. 1980, 58, 681–689. [Google Scholar]
- WHO Expert Committee on the Control of Schistosomiasis & World Health Organization. The Control of Schistosomiasis: Report of a WHO Expert Committee [Meeting Held in Geneva from 8 to 13 November 1984]; World Health Organization: Geneva, Switzerland, 1985; Available online: http://www.who.int/iris/handle/10665/39529 (accessed on 17 February 2019).
- WHO Fact Sheet (Data from 2017). Available online: https://www.who.int/neglected_diseases/preventive_chemotherapy/sch/en/ (accessed on 17 February 2019).
- WHO Schistosomiasis Fact Sheet 2018. Available online: http://www.who.int/news-room/fact-sheets/detail/schistosomiasis (accessed on 17 February 2019).
- Chen, J.; Xu, J.; Bergquist, R.; Li, S.-Z.; Zhou, X.-N. Farewell to the God of Plague: The importance of political commitment towards the elimination of schistosomiasis. Trop. Med. Infect. Dis. 2018, 3, 108. [Google Scholar] [CrossRef]
- Secor, E.S.; Colley, D.G. When should the emphasis on schistosomiasis control move to elimination? Trop. Med. Infect. Dis. 2018, 3, 85. [Google Scholar] [CrossRef] [PubMed]
- Krauth, S.J.; Balen, J.; Gobert, G.N.; Lamberton, P.H.L.A. Call for Systems Epidemiology to Tackle the Complexity Of Schistosomiasis, Its Control, And Its Elimination. Trop. Med. Infect. Dis. 2019, 4, 21. [Google Scholar] [CrossRef] [PubMed]
- Olveda, R.M.; Gray, D.J. Schistosomiasis in the Philippines: Innovative control approach is needed if elimination is the goal. Trop. Med. Infect. Dis. 2019, 4, 66. [Google Scholar] [CrossRef]
- Weber, C.J.; Hargan-Calvopiña, J.; Graef, K.M.; Manner, C.K.; Dent, J. WIPO Research—A platform for product-centered cross-sector partnerships for the elimination of schistosomiasis. Trop. Med. Infect. Dis. 2019, 4, 11. [Google Scholar] [CrossRef] [PubMed]
- Gordon, C.A.; Kurscheid, J.; Williams, G.M.; Clements, A.C.A.; Li, Y.; Zhou, X.N.; Utzinger, J.; McManus, D.P.; Gray, D.J. Asian Schistosomiasis: Current Status and Prospects for Control Leading to Elimination. Trop. Med. Infect. Dis. 2019, 4, 40. [Google Scholar] [CrossRef] [PubMed]
- Khieu, V.; Sayasone, S.; Muth, S.; Kirinoki, M.; Laymanivong, S.; Ohmae, H.; Huy, R.; Chanthapaseuth, T.; Yajima, A.; Phetsouvanh, R.; et al. Elimination of schistosomiasis mekongi from endemic areas in cambodia and the lao people’s democratic republic: Current status and plans. Trop. Med. Infect. Dis. 2019, 4, 30. [Google Scholar] [CrossRef]
- Hewitt, H.; Willingham, A.L. Status of Schistosomiasis Elimination in The Caribbean Region. Trop. Med. Infect. Dis. 2019, 4, 24. [Google Scholar] [CrossRef]
- Mintsa Nguema, R.; Mavoungou, J.F.; Mengue Me Ngou-Milama, K.; Mabicka Mamfoumbi, M.; Koumba, A.A.; Sani Lamine, M.; Diarra, A.; Nkone Asseko, G.; Mourou, J.R.; Bouyou Akotet, M.K.; et al. Baseline Mapping of Schistosomiasis and Soil Transmitted Helminthiasis in the Northern and Eastern Health Regions of Gabon, Central Africa: Recommendations for Preventive Chemotherapy. Trop. Med. Infect. Dis. 2018, 3, 119. [Google Scholar] [CrossRef]
- Adriko, M.; Faust, C.L.; Carruthers, L.V.; Moses, A.; Edridah, M.; Tukahebwa, E.M.; Lamberton, P.H.L. Low Praziquantel Treatment Coverage for Schistosoma mansoni in Mayuge District, Uganda, Due to the Absence of Treatment Opportunities, Rather Than Systematic Non-Compliance. Trop. Med. Infect. Dis. 2018, 3, 111. [Google Scholar] [CrossRef] [PubMed]
- Coulibaly, J.T.; Ouattara, M.; Barda, B.; Utzinger, J.; N’Goran, E.K.; Keiser, J. A Rapid Appraisal of Factors Influencing Praziquantel Treatment Compliance in Two Communities Endemic for Schistosomiasis in Côte d’Ivoire. Trop. Med. Infect. Dis. 2018, 3, 69. [Google Scholar] [CrossRef]
- Korir, H.K.; Riner, D.K.; Kavere, E.; Omondi, A.; Landry, J.; Kittur, N.; Ndombi, E.M.; Ondigo, B.N.; Secor, W.E.; Karanja, D.M.S.; et al. Young Adults in Endemic Areas: An Untreated Group in Need of School-Based Preventive Chemotherapy for Schistosomiasis Control and Elimination. Trop. Med. Infect. Dis. 2018, 3, 100. [Google Scholar] [CrossRef] [PubMed]
- Malone, J.B.; Bergquist, R.; Martins, M.; Luvall, J.C. Use of geospatial surveillance and response systems for vector-borne diseases in the elimination phase. Trop. Med. Infect. Dis. 2019, 4, 15. [Google Scholar] [CrossRef] [PubMed]
- Bergquist, R.; Elmorshedy, H. Artemether and Praziquantel: Origin, mode of action, impact, and suggested application for effective control of human schistosomiasis. Trop. Med. Infect. Dis. 2018, 3, 125. [Google Scholar] [CrossRef] [PubMed]
- Corstjens, P.L.; De Dood, C.J.; Kornelis, D.; Fat, E.M.; Wilson, R.A.; Kariuki, T.M.; Nyakundi, R.K.; Loverde, P.T.; Abrams, W.R.; Tanke, H.J.; et al. Tools for diagnosis, monitoring and screening of Schistosoma infections utilizing lateral-flow based assays and upconverting phosphor labels. Parasitology 2014, 141, 1841–1855. [Google Scholar] [CrossRef]
- Notomi, T.; Okayama, H.; Masubuchi, H.; Yonekawa, T.; Watanabe, K.; Amino, N.; Hase, T. Loop-mediated isothermal amplification of DNA. Nucleic Acids Res. 2000, 28, E63. [Google Scholar] [CrossRef] [PubMed]
- Pontes, L.A.; Oliveira, M.C.; Katz, N.; Dias-Neto, E.; Rabello, A. Comparison of a polymerase chain reaction and the Kato-Katz technique for diagnosing infection with Schistosoma mansoni. Am. J. Trop. Med. Hyg. 2003, 68, 652–656. [Google Scholar] [CrossRef]
- Weerakoon, K.G.; Gordon, C.A.; McManus, D.P. DNA diagnostics for schistosomiasis control. Trop. Med. Infect. Dis. 2018, 3, 81. [Google Scholar] [CrossRef]
- Miriam Tendler, M.; Almeida, M.S.; Vilar, M.M.; Pinto, P.M.; Limaverde-Sousa, G. Current status of the Sm14/GLA-SE Schistosomiasis vaccine: Overcoming barriers and paradigms towards the first anti-parasitic human(itarian) vaccine. Trop. Med. Infect. Dis. 2018, 3, 121. [Google Scholar] [CrossRef]
- Gray, D.J.; Williams, G.M.; Li, Y.; Chen, H.; Li, R.S.; Forsyth, S.J.; Barnett, A.G.; Guo, J.; Feng, Z.; McManus, D.P. A cluster-randomized bovine intervention trial against Schistosoma japonicum in the People’s Republic of China: Design and baseline results. Am. J. Trop. Med. Hyg. 2007, 77, 866–874. [Google Scholar] [CrossRef] [PubMed]
- Gordon, C.A.; Acosta, L.P.; Gray, D.J.; Olveda, R.M.; Jarilla, B.; Gobert, G.N.; Ross, A.G.; McManus, D.P. High prevalence of Schistosoma japonicum infection in Carabao from Samar Province, the Philippines: Implications for transmission and control. PLoS Negl. Trop. Dis. 2012, 6, e1778. [Google Scholar] [CrossRef]
- Da’Dara, A.A.; Li, Y.S.; Xiong, T.; Zhou, J.; Williams, G.M.; McManus, D.P.; Feng, Z.; Yu, X.L.; Gray, D.J.; Harn, D.A. DNA-based vaccine protects against zoonotic schistosomiasis in water buffalo. Vaccine 2008, 26, 3617–3625. [Google Scholar] [CrossRef]
- Gray, D.J.; Li, Y.S.; Williams, G.M.; Zhao, Z.Y.; Harn, D.A.; Li, S.M.; Ren, M.Y.; Feng, Z.; Guo, F.Y.; Guo, J.G.; et al. A multi-component integrated approach for the elimination of schistosomiasis in the People’s Republic of China: Design and baseline results of a 4-year cluster-randomised intervention trial. Int. J. Parasitol. 2014, 44, 659–668. [Google Scholar] [CrossRef]
- Williams, G.; Li, Y.-S.; Gray, D.J.; Zhao, Z.-Y.; Harn, D.; Shollenberger, L.M.; Li, S.-M.; Yu, X.; Feng, Z.; Guo, J.-G.; et al. Field testing integrated interventions for schistosomiasis elimination in the People’s Republic of China: Outcomes of a multifactorial cluster-randomised controlled trial. Front. Immunol. 2019, 10, 645. [Google Scholar] [CrossRef] [PubMed]
- You, H.; Cai, P.; Tebeje, B.M.; Yuesheng Li, Y.-S.; McManus, D.P. Schistosome vaccines for domestic animals. Trop. Med. Infect. Dis. 2018, 3, 68. [Google Scholar] [CrossRef]
- Charlier, J.; van der Voort, M.; Kenyon, F.; Skuce, P.; Vercruysse, J. Chasing helminths and their economic impact on farmed ruminants. Trends Parasitol. 2014, 30, 361–367. [Google Scholar] [CrossRef]
- Oey, H.; Zakrzewski, M.; Gravermann, K.; Young, N.D.; Korhonen, P.K.; Gobert, G.N.; Nawaratna, S.; Hasan, S.; Martínez, D.M.; You, H.; et al. Whole-genome sequence of the bovine blood fluke Schistosoma bovis supports interspecific hybridization with S. haematobium. PLoS Pathog. 2019, 15, e1007513. [Google Scholar] [CrossRef] [PubMed]
- Jordan, P. From katayama to the Dakhla Oasis: The beginning of epidemiology and control of bilharzia. Acta Trop. 2000, 77, 9–40. [Google Scholar] [CrossRef]
- Abe, E.M.; Guo, Y.-H.; Shen, H.; Mutsaka-Makuvaza, M.J.; Habib, M.R.; Xue, J.-B.; Midzi, N.; Xu, J.; Li, S.-Z.; Zhou, X.-N. Phylogeography of Bulinus truncatus (Audouin, 1827) (Gastropoda: Planorbidae) in selected African countries. Trop. Med. Infect. Dis. 2018, 3, 127. [Google Scholar] [CrossRef]
- Famakinde, D.O. treading the path towards genetic control of snail resistance to schistosome infection. Trop. Med. Infect. Dis. 2018, 3, 86. [Google Scholar] [CrossRef] [PubMed]
- Yang, G.-J.; Bergquist, R. Potential impact of climate change on schistosomiasis: A global assessment attempt. Trop. Med. Infect. Dis. 2018, 3, 117. [Google Scholar] [CrossRef] [PubMed]
- Qin, Z.-Q.; Xu, J.; Feng, T.; Lv, S.; Qian, Y.-J.; Zhang, L.-J.; Li, Y.-L.; Lv, C.; Bergquist, R.; Li, S.-Z.; et al. Field Evaluation of a loop-mediated isothermal amplification (LAMP) platform for the detection of Schistosoma japonicum infection in Oncomelania hupensis snails. Trop. Med. Infect. Dis. 2018, 3, 124. [Google Scholar] [CrossRef]
- Strassburg, M.A. The global eradication of smallpox. Am. J. Infect. Control 1982, 10, 53–59. [Google Scholar] [CrossRef]
- Hamilton, K.; Baron, M.D.; Matsuo, K.; Visser, D. Rinderpest eradication: Challenges for remaining disease free and implications for future eradication efforts. Rev. Sci. Tech. 2017, 36, 579–588. [Google Scholar] [CrossRef]
© 2019 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 (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Bergquist, R.; Gray, D.J. Schistosomiasis Elimination: Beginning of the End or a Continued March on a Trodden Path. Trop. Med. Infect. Dis. 2019, 4, 76. https://doi.org/10.3390/tropicalmed4020076
Bergquist R, Gray DJ. Schistosomiasis Elimination: Beginning of the End or a Continued March on a Trodden Path. Tropical Medicine and Infectious Disease. 2019; 4(2):76. https://doi.org/10.3390/tropicalmed4020076
Chicago/Turabian StyleBergquist, Robert, and Darren J. Gray. 2019. "Schistosomiasis Elimination: Beginning of the End or a Continued March on a Trodden Path" Tropical Medicine and Infectious Disease 4, no. 2: 76. https://doi.org/10.3390/tropicalmed4020076
APA StyleBergquist, R., & Gray, D. J. (2019). Schistosomiasis Elimination: Beginning of the End or a Continued March on a Trodden Path. Tropical Medicine and Infectious Disease, 4(2), 76. https://doi.org/10.3390/tropicalmed4020076