Wanji Samuel, Chunda Valerine Chawa, Fombad Fanny Fri, Jélil Njouendou Abdel, Gandjui Narcisse Victor T, Ritter Manuel, Enyong Peter A, Mackenzie Charles, Taylor Mark J, Hoerauf Achim, Turner Joseph D
Parasite and Vector Research Unit (PAVRU), Department of Microbiology and Parasitology, Faculty of Science, University of Buea, Buea, Cameroon.
Research Foundation for Tropical Diseases and the Environment (REFOTDE), Buea, Cameroon.
Front Trop Dis. 2021 Nov 8;2. doi: 10.3389/fitd.2021.778724.
The tropical disease, loiasis, caused by the filarial parasite, , has gained prominence in global public health as a cause of excess mortality and a barrier to the elimination of the related prioritized neglected tropical diseases (NTDs), lymphatic filariasis and onchocerciasis, within Central Africa. There are no effective drug cures or vaccines available to treat loiasis safely. Here we review recent advances in loiasis preclinical platform technologies, including novel culturing systems, animal models and innovations in experimental infections of the vector, , that have facilitated access to all filarial life-cycle stages. We detail applications of these new model systems in anti-filarial drug screening, diagnostic development, immunology, and pathophysiology research. Finally, we provide an overview of how loiasis preclinical platforms may be further utilized in translational medicine applications to support the development of much needed new interventions against filarial NTDs.
由丝虫寄生虫罗阿丝虫引起的热带疾病罗阿丝虫病,在全球公共卫生领域已成为一个突出问题,它是造成中非地区额外死亡率的一个原因,也是消除相关重点被忽视热带病(NTDs)——淋巴丝虫病和盘尾丝虫病的一个障碍。目前尚无安全治疗罗阿丝虫病的有效药物或疫苗。在此,我们综述了罗阿丝虫病临床前平台技术的最新进展,包括新型培养系统、动物模型以及罗阿丝虫病传播媒介(罗阿丝虫)实验感染方面的创新,这些进展有助于研究丝虫的所有生命周期阶段。我们详细介绍了这些新模型系统在抗丝虫药物筛选、诊断开发、免疫学和病理生理学研究中的应用。最后,我们概述了罗阿丝虫病临床前平台如何可在转化医学应用中进一步得到利用,以支持开发对抗丝虫NTDs急需的新干预措施。