首页> 外文OA文献 >Attenuated Salmonella enterica Serovar Typhi and Shigella flexneri 2a Strains Mucosally Deliver DNA Vaccines Encoding Measles Virus Hemagglutinin, Inducing Specific Immune Responses and Protection in Cotton Rats
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Attenuated Salmonella enterica Serovar Typhi and Shigella flexneri 2a Strains Mucosally Deliver DNA Vaccines Encoding Measles Virus Hemagglutinin, Inducing Specific Immune Responses and Protection in Cotton Rats

机译:减毒的肠炎沙门氏菌伤寒沙门氏菌和弗氏志贺氏菌2a株黏膜提供编码麻疹病毒血凝素的DNA疫苗,诱导特定的免疫反应和对棉鼠的保护。

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摘要

Measles remains a leading cause of child mortality in developing countries. Residual maternal measles antibodies and immunologic immaturity dampen immunogenicity of the current vaccine in young infants. Because cotton rat respiratory tract is susceptible to measles virus (MV) replication after intranasal (i.n.) challenge, this model can be used to assess the efficacy of MV vaccines. Pursuing a new measles vaccine strategy that might be effective in young infants, we used attenuated Salmonella enterica serovar Typhi CVD 908-htrA and Shigella flexneri 2a CVD 1208 vaccines to deliver mucosally to cotton rats eukaryotic expression plasmid pGA3-mH and Sindbis virus-based DNA replicon pMSIN-H encoding MV hemagglutinin (H). The initial i.n. dose-response with bacterial vectors alone identified a well-tolerated dosage (1 × 109 to 7 × 109 CFU) and a volume (20 μl) that elicited strong antivector immune responses. Animals immunized i.n. on days 0, 28, and 76 with bacterial vectors carrying DNA plasmids encoding MV H or immunized parenterally with these naked DNA vaccine plasmids developed MV plaque reduction neutralizing antibodies and proliferative responses against MV antigens. In a subsequent experiment of identical design, cotton rats were challenged with wild-type MV 1 month after the third dose of vaccine or placebo. MV titers were significantly reduced in lung tissue of animals immunized with MV DNA vaccines delivered either via bacterial live vectors or parenterally. Since attenuated serovar Typhi and S. flexneri can deliver measles DNA vaccines mucosally in cotton rats, inducing measles immune responses (including neutralizing antibodies) and protection, boosting strategies can now be evaluated in animals primed with MV DNA vaccines.
机译:麻疹仍然是发展中国家儿童死亡的主要原因。残留的麻疹抗体和免疫学上的不成熟削弱了目前疫苗在婴儿中的免疫原性。由于棉鼠的呼吸道在鼻内(i.n.)攻击后易受麻疹病毒(MV)复制的影响,因此该模型可用于评估MV疫苗的功效。为了寻求一种可能对年幼婴儿有效的新麻疹疫苗策略,我们使用了减毒肠炎沙门氏菌Typhi CVD 908-htrA和弗氏志贺氏菌2a CVD 1208疫苗,将粘膜递送给棉鼠真核表达质粒pGA3-mH和基于Sindbis病毒的DNA复制子pMSIN-H编码MV血凝素(H)。最初的i.n.单独使用细菌载体的剂量反应可确定耐受性良好的剂量(1×109至7×109 CFU)和可引起强烈抗载体免疫反应的体积(20μl)。免疫动物在第0、28和76天,用携带编码MV H的DNA质粒的细菌载体或用这些裸露的DNA疫苗质粒肠胃外免疫的细菌载体产生了MV斑减少中和抗体和针对MV抗原的增殖反应。在相同设计的后​​续实验中,在第三剂疫苗或安慰剂后1个月,用野生型MV攻击棉鼠。在通过细菌活载体或胃肠外给药的MV DNA疫苗免疫的动物的肺组织中,MV滴度显着降低。由于减毒血清型鼠伤寒沙门氏菌和弗氏链球菌可以在棉鼠中粘膜递送麻疹DNA疫苗,诱导麻疹免疫反应(包括中和抗体)和保护作用,因此现在可以在接种MV DNA疫苗的动物中评估加强策略。

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