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皮内电穿孔递送 TcVac1 疫苗增强了疫苗诱导的对感染 Trypanosoma cruzi 的免疫保护作用。

TcVac1 vaccine delivery by intradermal electroporation enhances vaccine induced immune protection against Trypanosoma cruzi infection in mice.

机构信息

Centro de Investigación y Estudios Avanzados en Salud Animal, Facultad de Medicina Veterinaria y Zootecnia, Universidad Autónoma del Estado de México, Km 15.5 Carretera Panamericana Toluca-Atlacomulco, Toluca, Estado de México C.P. 50200, Mexico.

Centro de Investigación y Estudios Avanzados en Salud Animal, Facultad de Medicina Veterinaria y Zootecnia, Universidad Autónoma del Estado de México, Km 15.5 Carretera Panamericana Toluca-Atlacomulco, Toluca, Estado de México C.P. 50200, Mexico; Laboratorio Estatal de Salud Pública del Instituto de Salud del Estado de México, Independencia Oriente #1310 Colonia: Reforma y FFCC, CP. 50070 Toluca, Estado de México, Mexico.

出版信息

Vaccine. 2019 Jan 7;37(2):248-257. doi: 10.1016/j.vaccine.2018.11.041. Epub 2018 Nov 27.

Abstract

The efforts for the development and testing of vaccines against Trypanosoma cruzi infection have increased during the past years. We have designed a TcVac series of vaccines composed of T. cruzi derived, GPI-anchored membrane antigens. The TcVac vaccines have been shown to elicit humoral and cellular mediated immune responses and provide significant (but not complete) control of experimental infection in mice and dogs. Herein, we aimed to test two immunization protocols for the delivery of DNA-prime/DNA-boost vaccine (TcVac1) composed of TcG2 and TcG4 antigens in a BALB/c mouse model. Mice were immunized with TcVac1 through intradermal/electroporation (IDE) or intramuscular (IM) routes, challenged with T. cruzi, and evaluated during acute phase of infection. The humoral immune response was evaluated through the assessment of anti-TcG2 and anti-TcG4 IgG subtypes by using an ELISA. Cellular immune response was assessed through a lymphocyte proliferation assay. Finally, clinical and morphopathological aspects were evaluated for all experimental animals. Our results demonstrated that when comparing TcVac1 IDE delivery vs IM delivery, the former induced significantly higher level of antigen-specific antibody response (IgG2a + IgG2b > IgG1) and lymphocyte proliferation, which expanded in response to challenge infection. Histological evaluation after challenge infection showed infiltration of inflammatory cells (macrophages and lymphocytes) in the heart and skeletal tissue of all infected mice. However, the largest increase in inflammatory infiltrate was observed in TcVac1_IDE/Tc mice when compared with TcVac1_IM/Tc or non-vaccinated/infected mice. The extent of tissue inflammatory infiltrate was directly associated with the control of tissue amastigote nests in vaccinated/infected (vs. non-vaccinated/infected) mice. Our results suggest that IDE delivery improves the protective efficacy of TcVac1 vaccine against T. cruzi infection in mice when compared with IM delivery of the vaccine.

摘要

近年来,针对克氏锥虫感染的疫苗开发和测试工作有所增加。我们设计了一系列 TcVac 疫苗,这些疫苗由源自克氏锥虫的、具有 GPI 锚定的膜抗原组成。研究表明,TcVac 疫苗可引发体液和细胞介导的免疫应答,并在小鼠和犬中对实验性感染提供显著(但非完全)控制。在此,我们旨在测试两种免疫方案,以在 BALB/c 小鼠模型中递送由 TcG2 和 TcG4 抗原组成的 DNA-prime/DNA-boost 疫苗(TcVac1)。通过皮内/电穿孔(IDE)或肌肉内(IM)途径免疫小鼠,用克氏锥虫攻击,并在感染急性期进行评估。通过 ELISA 评估抗 TcG2 和抗 TcG4 IgG 亚型来评估体液免疫应答。通过淋巴细胞增殖测定评估细胞免疫应答。最后,对所有实验动物进行临床和形态病理学评估。我们的结果表明,在比较 TcVac1 IDE 传递与 IM 传递时,前者诱导了显著更高水平的抗原特异性抗体应答(IgG2a+IgG2b>IgG1)和淋巴细胞增殖,这些应答在受到挑战感染时扩大。在受到挑战感染后的组织学评估显示,所有感染小鼠的心脏和骨骼组织中都有炎症细胞(巨噬细胞和淋巴细胞)浸润。然而,与 TcVac1_IM/Tc 或未接种/感染的小鼠相比,在 TcVac1_IDE/Tc 小鼠中观察到炎症浸润的最大增加。组织炎症浸润的程度与接种/感染(与未接种/感染)小鼠中组织内阿米巴巢穴的控制直接相关。我们的结果表明,与疫苗的 IM 传递相比,IDE 传递可提高 TcVac1 疫苗对小鼠克氏锥虫感染的保护效力。

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