REVIEWS

Progress and challenges on global schistosomiasis control

  • Zhong HONG ,
  • Ling-ling WU ,
  • Li-ping WANG ,
  • Jing XU
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  • National Institute of Parasitic Diseases, Chinese Center for Disease Control and Prevention (Chinese Center for Tropical Diseases Research); NHC Key Laboratory of Parasite and Vector Biology; WHO Collaborating Centre for Tropical Diseases; National Center for International Research on Tropical Diseases, Shanghai 200025, China

Received date: 2020-11-03

  Revised date: 2020-12-04

  Online published: 2021-06-30

Supported by

Supported by the National Science and Technology Major Project(2018ZX10101002-002);General Program of National Natural Science Foundation of China(82073619)

Abstract

Schistosomiasis is distributed worldwide and listed as one of the neglected tropical diseases by the World Health Organization. Although many countries have made certain achievements in the prevention and control of schistosomiasis, there are still many challenges for global elimination of the disease due to the complex life cycle of schistosomes, limited health resources, and unitary prevention and control measure. This review systematically summarizes the current status of global schistosomiasis epidemic, the goals, main strategies and measures for prevention and control, analyzes the current challenges and proposes pertinent recommendations, in order to provide reference for the professionals in schistosomiasis control and management.

Cite this article

Zhong HONG , Ling-ling WU , Li-ping WANG , Jing XU . Progress and challenges on global schistosomiasis control[J]. CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES, 2021 , 39(4) : 514 -519 . DOI: 10.12140/j.issn.1000-7423.2021.04.015

References

[1] Wang W, Yang K. Implementation of precision control to facilitate the progress towards schistosomiasis elimination in China[J]. China Trop Med, 2020, 20(7):595-598. (in Chinese)
[1] (汪伟, 杨坤. 开展精准防控,推动我国消除血吸虫病进程[J]. 中国热带医学, 2020, 20(7):595-598.)
[2] McManus DP, Dunne DW, Sacko M, et al. Schistosomiasis[J]. Nat Rev Dis Primers, 2018, 4(1):13.
[3] GBD 2016 DALYs and HALE Collaborators. Global, regional, and national disability-adjusted life-years (DALYs) for 333 diseases and injuries and healthy life expectancy (HALE) for 195 countries and territories, 1990—2016: a systematic analysis for the global burden of disease study 2016[J]. Lancet, 2017, 390(10100):1260-1344.
[4] King CH, Dickman K, Tisch DJ. Reassessment of the cost of chronic helmintic infection: a meta-analysis of disability-related outcomes in endemic schistosomiasis[J]. Lancet, 2005, 365(9470):1561-1569.
[5] UT Zinger J, Keiser J. Schistosomiasis and soil-transmitted helminthiasis: common drugs for treatment and control[J]. Expert Opin Pharmacother, 2004, 5(2):263-285.
[6] Deol AK, Fleming FM, Calvo-Urbano B, et al. Schistosomiasis: assessing progress toward the 2020 and 2025 global goals[J]. N Engl J Med, 2019, 381(26):2519-2528.
[7] Rollinson D, Knopp S, Levitz S, et al. Time to set the agenda for schistosomiasis elimination[J]. Acta Trop, 2013, 128(2):423-440.
[8] Colley DG, Bustinduy AL, Secor WE, et al. Human schistosomiasis[J]. Lancet, 2014, 383(9936):2253-2264.
[9] McManus DP, Dunne DW, Sacko M, et al. Schistosomiasis[J]. Nat Rev Dis Primers, 2018, 4:13.
[10] Zhang LJ, Xu ZM, Guo JY, et al. Bulletin of national schistosomiasis epidemic situation in 2018[J]. Chin J Schisto Control, 2019, 31(6):576-582. (in Chinese)
[10] (张利娟, 徐志敏, 郭婧怡, 等. 2018年全国血吸虫病疫情通报[J]. 中国血吸虫病防治杂志, 2019, 31(6):576-582.)
[11] Soares Magalhaes RJ, Barnett AG, Clements ACA. Geographical analysis of the role of water supply and sanitation in the risk of helminth infections of children in West Africa[J]. Proc Natl Acad Sci, 2011, 108(50):20084-20089.
[12] Gordon C, Kurscheid J, Williams G, et al. Asian schistosomiasis: current status and prospects for control leading to elimination[J]. Trop Med, 2019, 4(1):40.
[13] Khieu V, Sayasone S, Muth S, et al. Elimination of schistosomiasis mekongi from endemic areas in Cambodia and the Lao People’s democratic republic: current status and plans[J]. Trop Med, 2019, 4(1):30.
[14] Simões TC, Sena R, Meira KC. The influence of the age-period-cohort effects on the temporal trend mortality from schistosomiasis in Brazil from 1980 to 2014[J]. PLoS One, 2020, 15(4):e0231874.
[15] Zoni AC, Catalá L, Ault SK. Schistosomiasis prevalence and intensity of infection in Latin America and the Caribbean countries, 1942—2014: a systematic review in the context of a regional elimination goal[J]. PLoS Negl Trop Dis, 2016, 10(3):e0004493.
[16] Ekpo UF, Oluwole AS, Abe EM, et al. Schistosomiasis in infants and pre-school-aged children in sub-Saharan Africa: implication for control[J]. Parasitology, 2012, 139(7):835-841.
[17] Stothard JR, Chitsulo L, Kristensen TK, et al. Control of schistosomiasis in sub-Saharan Africa: progress made, new opportunities and remaining challenges[J]. Parasitology, 2009, 136(13):1665-1675.
[18] Grobusch MP, Mühlberger N, Jelinek T, et al. Imported schistosomiasis in Europe: sentinel surveillance data from TropNetEurop[J]. J Travel Med, 2003, 10(3):164-169.
[19] Boissier J, Grech-Angelini S, Webster BL, et al. Outbreak of urogenital schistosomiasis in Corsica (France): an epidemiological case study[J]. Lancet Infect Dis, 2016, 16(8):971-979.
[20] Lingscheid T, Kurth F, Clerinx J, et al. Schistosomiasis in European travelers and migrants: analysis of 14 years TropNet surveillance data[J]. Am J Trop Med Hyg, 2017, 97(2):567-574.
[21] WHO. Progress report 2001—2011 and strategic plan 2012—2020[R]. Geneva: WHO, 2012.
[22] Molyneux DH. The London declaration on neglected tropical diseases: 5 years on[J]. Trans R Soc Trop Med Hyg, 2016, 110(11):623-625.
[23] Narain JP, Dash AP, Parnell B, et al. Elimination of neglected tropical diseases in the South-East Asia Region of the World Health Organization[J]. Bull World Health Organ, 2010, 88(3):206-210.
[24] Michael E, Singh BK, Mayala BK, et al. Continental-scale, data-driven predictive assessment of eliminating the vector-borne disease, lymphatic filariasis, in sub-Saharan Africa by 2020[J]. BMC Med, 2017, 15(1):176.
[25] Salari P, Fürst T, Knopp S, et al. Financial costs of the Zanzibar elimination of schistosomiasis transmission project[J]. Am J Trop Med Hyg, 2020, 103(6):2260-2267.
[26] Manz KM, Kroidl I, Clowes P, et al. Schistosoma haematobium infection and environmental factors in Southwestern Tanzania: a cross-sectional, population-based study[J]. PLoS Neglected Trop Dis, 2020, 14(8):e0008508.
[27] Xu J, Yu Q, Tchuenté LA, et al. Enhancing collaboration between China and African countries for schistosomiasis control[J]. Lancet Infect Dis, 2016, 16(3):376-383.
[28] Zhao QP, Jiang MS, Littlewood DT, et al. Distinct genetic diversity of Oncomelania hupensis, intermediate host of Schistosoma japonicum in mainland China as revealed by ITS sequences[J]. PLoS Negl Trop Dis, 2010, 4(3):e611.
[29] Leonardo LR, Rivera P, Saniel O, et al. Prevalence survey of schistosomiasis in Mindanao and the visayas, the Philippines[J]. Parasitol Int, 2008, 57(3):246-251.
[30] Wang TP. Thinking on the control strategy at schistosomiasis elimination stage in China[J]. Chin J Schisto Control, 2019, 31(4):358-361. (in Chinese)
[30] (汪天平. 迈向消除血吸虫病阶段的防控策略与思考[J]. 中国血吸虫病防治杂志, 2019, 31(4):358-361.)
[31] Vaz Nery S, Pickering AJ, Abate E, et al. The role of water, sanitation and hygiene interventions in reducing soil-transmitted helminths: interpreting the evidence and identifying next steps[J]. Parasit Vectors, 2019, 12(1):273.
[32] Grimes JE, Croll D, Harrison WE, et al. The relationship between water, sanitation and schistosomiasis: a systematic review and meta-analysis[J]. PLoS Negl Trop Dis, 2014, 8(12):e3296.
[33] Strunz EC, Addiss DG, Stocks ME, et al. Water, sanitation, hygiene, and soil-transmitted helminth infection: a systematic review and meta-analysis[J]. PLoS Med, 2014, 11(3):e1001620.
[34] Tambo E, Ai L, Zhou X, et al. Surveillance-response systems: the key to elimination of tropical diseases[J]. Infect Dis Poverty, 2014, 3:17.
[35] Phillips AE, Gazzinelliguimaraes PH, Aurelio HO, et al. Schistosomiasis and soil-transmitted helminthiases: number of people treated in 2016[J]. Wkly Epidemiol Rec, 2017, 11(11):749-760.
[36] Zhang JF, Wen LY, Xu J, et al. Current status and transmission risks of oversea imported schistosomiasis in China[J]. Chin J Schisto Control, 2019, 31(1):26-32. (in Chinese)
[36] (张剑锋, 闻礼永, 许静, 等. 境外血吸虫病输入我国的现状及面临风险[J]. 中国血吸虫病防治杂志, 2019, 31(1):26-32.)
[37] Zhu XH, Shi YE. The global epidemiology of schistosomiasis and the new progress in its control[J]. Parasit Dis Foreign Med Sci, 2004, 31(3):116-119. (in Chinese)
[37] (朱晓华, 石佑恩. 血吸虫病全球流行病学状况及其控制的新进展[J]. 国外医学寄生虫病分册, 2004, 31(3):116-119.)
[38] Yang JR, Xu MX, Tan XD. Healthy China strategy and schistosomiasis control[J]. Chin J Schisto Control, 2020, 32(4):419-422. (in Chinese)
[38] (杨晋如, 徐明星, 谭晓东. 健康中国战略与血吸虫病防控[J]. 中国血吸虫病防治杂志, 2020, 32(4):419-422.)
[39] Liang S, Yang C, Zhong B, et al. Surveillance systems for neglected tropical diseases: global lessons from China’s evolving schistosomiasis reporting systems, 1949—2014[J]. Emerg Themes Epidemiol, 2014, 11:19.
[40] Fallon PG, Doenhoff MJ. Drug-resistant schistosomiasis: resistance to praziquantel and oxamniquine induced in Schistosoma mansoni in mice is drug specific[J]. Am J Trop Med Hyg, 1994, 51(1):83-88.
[41] Bergquist R, Zhou XN, Rollinson D, et al. Elimination of schistosomiasis: the tools required[J]. Infect Dis Poverty, 2017, 6:158.
[42] Savioli L, Fenwick A, Rollinson D, et al. An achievable goal: control and elimination of schistosomiasis[J]. Lancet, 2015, 386(9995):739.
[43] Tchuem Tchuenté LA, Rollinson D, Stothard JR, et al. Moving from control to elimination of schistosomiasis in sub-Saharan Africa: time to change and adapt strategies[J]. Infect Dis Poverty, 2017, 6:42.
[44] Clerinx J, Van Gompel A. Schistosomiasis in travellers and migrants[J]. Travel Med Infect Dis, 2011, 9(1):6-24.
[45] Molyneux DH, Dean L, Adekeye O, et al. The changing global landscape of health and disease: addressing challenges and opportunities for sustaining progress towards control and elimination of neglected tropical diseases (NTDs)[J]. Parasitology, 2018, 145(13):1647-1654.
[46] Lai YS, Biedermann P, Ekpo UF, et al. Spatial distribution of schistosomiasis and treatment needs in sub-Saharan Africa: a systematic review and geostatistical analysis[J]. Lancet Infect Dis, 2015, 15(8):927-940.
[47] WHO. Ending the neglect to attain the sustainable development goals: a road map for neglected tropical diseases 2021—2030[M]. Geneva: WHO, 2020: 196.
[48] Zhou XN, Li SZ. Strategy for the South-South cooperation on schistosomiasis control under the Belt and Road Initiative[J]. Chin J Schisto Control, 2020, 32(1):1-6. (in Chinese)
[48] (周晓农, 李石柱. “一带一路”倡议下血吸虫病防控南南合作的战略思考[J]. 中国血吸虫病防治杂志, 2020, 32(1):1-6.)
[49] Yang K, Yang HT, Liang YS, et al. A path analysis on China’s participation in global health governance: a case study of China aid of schistosomiasis control in Zanzibar[J]. Chin J Schisto Control, 2019, 31(1):14-18. (in Chinese)
[49] (杨坤, 羊海涛, 梁幼生, 等. 中国参与全球公共卫生治理的路径分析: 以援助桑给巴尔血吸虫病防治项目为例[J]. 中国血吸虫病防治杂志, 2019, 31(1):14-18.)
[50] Zhou LY, Luo EP, Yang K. Current status of international discourse of China aid project of schistosomiasis control in Zanzibar[J]. Chin J Schisto Control, 2019, 31(5):532-534, 537. (in Chinese)
[50] (周丽颖, 罗恩培, 杨坤. 中国援助桑给巴尔血吸虫病防治项目的国际话语现状分析[J]. 中国血吸虫病防治杂志, 2019, 31(5):532-534, 537.)
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