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成功地在体外培养系统中长期维持曼森线虫。

Successful long-term maintenance of Mansonella perstans in an in vitro culture system.

机构信息

Parasite and Vector Research Unit (PAVRU), Department of Microbiology and Parasitology, University of Buea, Buea, Cameroon.

Research Foundation for Tropical Diseases and the Environment (REFOTDE), Buea, Cameroon.

出版信息

Parasit Vectors. 2017 Nov 10;10(1):563. doi: 10.1186/s13071-017-2515-8.

Abstract

BACKGROUND

Approximately 114 million people are infected with Mansonella perstans in large proportions of Africa. In contrast to other filariae that infect humans, M. perstans-infected individuals show no distinct pathology or specific clinical picture, indicating a well-tuned adaptation to the host. In addition, since M. perstans adult worms reside in serous cavities which are difficult to access, research has been hindered and there is a paucity of knowledge about the biology of M. perstans, especially the development of the different life stages as well as M. perstans-driven immune responses. Thus in this study, an in vitro culture system was developed which allows an in-depth analysis of M. perstans.

RESULTS

Culicoides species were caught in Ediki (Kumba), Southwest Region within Cameroon following a blood meal on a microfilaremic donor that had 1500 microfilariae/ml of peripheral blood and kept in captivity for 12 days at 23 °C. In a pilot experiment, 15 infective larvae were obtained from the midges and co-cultured with a confluent monolayer of monkey kidney epithelial cells (LLC-MK2) in DMEM medium supplemented with 10% FBS for up to 77 days. The resulting survival rates of 33% revealed that the cell-conditioned medium was suitable for long-term maintenance of M. perstans worms. To confirm these preliminary observations, 249 infective larvae were cultured for 50 days and their development was monitored daily and microscopically graded for motility. In total, 170 (68.3%) filariae survived and 124 (49.8%) larvae moulted between days 21-30 to become L5 stage larvae which were motile and showed continuous vigorous movement.

CONCLUSION

We have established an in vitro culture system for the generation and long-term maintenance of viable M. perstans worms. This technique will be an important tool to study parasite biology and development, the role in host immunity, and might be helpful to discover novel treatment strategies against this filariae.

摘要

背景

在非洲的很大一部分地区,大约有 1.14 亿人感染了曼森线虫。与其他感染人类的丝虫不同,曼森线虫感染的个体没有明显的病理或特定的临床症状,表明它们对宿主有很好的适应性。此外,由于曼森线虫成虫生活在难以接近的浆膜腔中,因此研究受到阻碍,人们对曼森线虫的生物学知之甚少,特别是不同生活阶段的发育以及曼森线虫驱动的免疫反应。因此,在这项研究中,开发了一种体外培养系统,允许对曼森线虫进行深入分析。

结果

在喀麦隆西南部的 Ediki(Kumba),用微丝蚴血症供体的血液喂养库蚊后,捕获了库蚊,该供体外周血中有 1500 条微丝蚴/ml,并在 23°C 下圈养了 12 天。在一项初步实验中,从蚊子中获得了 15 条感染性幼虫,并将其与猴肾上皮细胞(LLC-MK2)的汇合单层共培养在补充有 10% FBS 的 DMEM 培养基中,培养时间长达 77 天。33%的存活率表明细胞条件培养基适合曼森线虫成虫的长期维持。为了证实这些初步观察结果,培养了 249 条感染性幼虫 50 天,并每天监测其发育情况,并通过显微镜对其运动能力进行分级。总共,有 170 条(68.3%)幼虫存活下来,有 124 条(49.8%)幼虫在第 21-30 天蜕皮,变成 L5 期幼虫,这些幼虫是能动的,并表现出持续的剧烈运动。

结论

我们已经建立了一种用于产生和长期维持有活力的曼森线虫成虫的体外培养系统。这项技术将是研究寄生虫生物学和发育、在宿主免疫中的作用的重要工具,并可能有助于发现针对这种丝虫的新治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21a8/5681788/ed83cb5d10e5/13071_2017_2515_Fig1_HTML.jpg

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