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Evaluation of vaccinal effectiveness of preparations containing membrane antigens of Leishmania (L.) amazonensis in experimental cutaneous leishmaniasis model

机译:含有实验皮肤模型的Leishmania(L.)亚马逊血管膜抗原疫苗效果的评价

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摘要

American tegumentary leishmaniasis (An) is considered a neglected disease, for which an effective vaccine or an efficient diagnosis is not yet available and whose chemotherapeutic arsenal is threatened by the emergence of resistance by etiological agents such as Leishmania amazonensis. An is endemic in poor countries and has a high incidence in Brazil. Vaccines developed from native parasite fractions have led to the identification of defined antigenic subunits and the development of vaccine adjuvant technology. The purpose of the present study was to develop and compare preparations based on membrane antigens from L. amazonensis, as a biotechnological prototype for the immunoprophylaxis of the disease in a murine experimental model. For this purpose, batches of biodegradable polymeric micro/nanoparticles were produced, characterized and compared with other parasite's antigens in solution. All preparations containing membrane antigens presented low toxicity on murine macrophages. The in vivo evaluation of immunization efficacy was performed against a challenge with L. amazonensis, along with an evaluation of the immune response profile generated in BALB/C mice. The animals were followed for sample processing and quantification of serum-specific cytokines, nitrites and antibodies. The sera of animals immunized with the non-encapsulated antigen formulations showed higher intensities of nitrites and total IgGs. This approach evidenced the importance of the biological studies involving the immune response of the host against the parasite being interconnected and related to the subfractionation of its proteins in the search for more effective vaccine candidates.
机译:美国Tegumentary LeishManiaisis(AN)被认为是一种被忽视的疾病,其尚未获得有效的疫苗或有效的诊断,其化学治疗杂草受到抗性的抗性的抗性,例如Leishmania Amazonensis。贫穷国家的地方是在巴西的发病率很高。从天然寄生虫馏分开发的疫苗导致鉴定定义的抗原亚基以及疫苗辅助技术的发展。本研究的目的是在L. Amazonensis的基础上基于膜抗原的制剂,作为鼠实验模型中疾病的免疫营养学的生物营养学的生物技术原型。为此目的,制备批次的可生物降解的聚合物微/纳米粒子,其特征在于溶液中的其他寄生虫抗原。含有膜抗原的所有制剂在鼠巨噬细胞上呈现低毒性。对免疫疗效的体内评估是针对L. Amazonensis的挑战进行的,以及对Balb / C小鼠产生的免疫应答谱进行评估。随访动物进行样品加工和定量血清特异性细胞因子,亚硝酸盐和抗体。用非封装抗原制剂免疫的动物血清显示出更高的亚硝酸盐和总IgG。这种方法证明了涉及宿主免疫应答的生物学研究对寄生虫的免疫反应,与其蛋白质的次级分布在寻找更有效的疫苗候选者中。

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