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Toxoplasma gondii surface antigen 1 (SAG1) as a potential candidate to develop vaccine against toxoplasmosis: A systematic review

机译:弓形虫表面抗原1(SAG1)作为发育疫苗的潜在候选者,用于抗弓形虫症:系统审查

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摘要

Toxoplasma gondii is an intracellular parasite that infects a broad range of animal species and humans. As the main surface antigen of the tachyzoite, SAG1 is involved in the process of recognition, adhesion and invasion of host cells. The aim of the current systematic review study is to clarify the latest status of studies in the literature regarding SAG1-associated recombinant proteins or SAG1-associated recombinant DNAs as potential vaccines against toxoplasmosis. Data were systematically collected from six databases including PubMed, Science Direct, Web of Science, Google Scholar, EBSCO and Scopus, up to 1st of January 2019. A total of 87 articles were eligible for inclusion criteria in the current systematic review. The most common antigens used for experimental cocktail vaccines together with SAG1 were ROP2 and SAG2. In addition, the most parasite strains used were RH and ME49. Freund's adjuvant and cholera toxin have been predominantly utilized. Furthermore, regarding the animal models, route and dose of vaccination, challenge methods, measurement of immune responses and cyst burden have been discussed in the text. Most of these experimental vaccines induce immune responses and have a high degree of protection against parasite infections, increase survival rates and duration and reduce cyst burdens. The data demonstrated that SAG1 antigen has a high potential for use as a vaccine and provided a promising approach for protecting humans and animals against toxoplasmosis.
机译:弓形虫是一种感染广泛动物物种和人类的细胞内寄生虫。作为Tachyzoite的主要表面抗原,SAG1涉及核鉴别,粘附和宿主细胞的过程。目前的系统审查研究的目的是阐明文献中关于SAG1相关的重组蛋白或SAG1相关重组DNA的研究中的最新状态,因为潜在疫苗抗弓形虫。从六个数据库系统地收集数据,包括PubMed,Science Direct,Science,Google Scholar,EBSCO和Scopus,高达2019年1月1日。总共有资格在目前的系统审查中有资格获得纳入标准。用于实验性鸡尾酒疫苗的最常见的抗原与SAG1一起是ROP2和SAG2。此外,使用的最寄生虫菌株是RH和ME49。弗氏佐剂和霍乱毒素主要被利用。此外,关于疫苗接种的动物模型,途径和剂量,在文中讨论了挑战方法,免疫应答的测量和囊肿负担。这些实验疫苗中的大多数诱导免疫应答并具有高度保护免受寄生虫感染,增加存活率和持续时间,并减少囊肿负担。数据证明了SAG1抗原具有高潜力作为疫苗,并且提供了保护人类和动物免受弓形虫病的有希望的方法。

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