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Immunization with a Combination of Merozoite Surface Proteins 4/5 and 1 Enhances Protection against Lethal Challenge with Plasmodium yoelii

机译:结合裂殖子表面蛋白4/5和1进行免疫增强了针对约氏疟原虫致死性攻击的保护作用。

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摘要

It is widely believed that subunit vaccines composed of multiple components will offer greater protection against challenge by malaria, and yet there is little experimental evidence to support this view. We set out to test this proposition in the Plasmodium yoelii challenge system in rodents by comparing the degree of protection conferred by immunization with a mixture of merozoite surface proteins to that conferred by single proteins. We therefore examined a defined protein mixture made of the epidermal growth factor-like domains of P. yoelli merozoite surface protein 1 (MSP1) and MSP4/5, the homologue of P. falciparum MSP4 and MSP5. In the present study we demonstrate that this combination of recombinant proteins dramatically enhances protection against lethal malaria challenge compared to either protein administered alone. Many mice immunized with the MSP4/5 plus MSP119 combination did not develop detectable parasitemia after challenge. Combined immunization with MSP119 and yMSP4/5, a product characterized by lower protective efficacy, also greatly enhanced protection by reducing peak parasitemias and increasing the numbers of survivors. In some combination trials, levels of antibodies to MSP119 were elevated compared to the MSP119 alone group; however, improved protection occurred regardless of whether boosting of the anti-MSP119 response was observed. Boosting of anti-MSP119 did not appear to be due to contaminating endotoxin in the EcMSP4/5 material since enhanced protection was observed in C3H/HeJ mice, which are endotoxin insensitive. Collectively, these experiments show that multiantigen combinations offer enhanced levels of protection against asexual stage infection and suggest that combinations of MSP1, MSP4, and MSP5 should be evaluated further for use in humans.
机译:人们普遍认为,由多种成分组成的亚单位疫苗将为抵抗疟疾的攻击提供更大的保护,但是几乎没有实验证据支持这种观点。我们着手通过比较裂殖子表面蛋白混合物免疫接种所赋予的保护程度与单个蛋白所赋予的保护程度,来在啮齿动物的约氏疟原虫攻击系统中测试这一命题。因此,我们检查了由约氏疟原虫裂殖子表面蛋白1(MSP1)和MSP4 / 5,恶性疟原虫MSP4和MSP5的同系物的表皮生长因子样结构域组成的确定的蛋白质混合物。在本研究中,我们证明了与单独施用的任何一种蛋白质相比,重组蛋白质的这种组合可显着增强针对致命性疟疾攻击的保护。攻击后,许多用MSP4 / 5加MSP119组合免疫的小鼠没有出现可检测到的寄生虫病。 MSP119和yMSP4 / 5联合免疫是一种具有较低保护功效的产品,它还可以通过减少峰值寄生虫病和增加幸存者数量来大大增强保护作用。在一些联合试验中,与单独使用MSP119的组相比,针对MSP119的抗体水平有所提高;但是,无论是否观察到抗MSP119应答增强,都可以改善保护效果。抗MSP119的增强似乎不是由于污染EcMSP4 / 5材料中的内毒素,因为在对内毒素不敏感的C3H / HeJ小鼠中观察到增强的保护作用。总而言之,这些实验表明,多抗原组合可提供更高水平的无性阶段感染保护,并建议应进一步评估MSP1,MSP4和MSP5的组合以用于人类。

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