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Intradermal or Oral Delivery of GAD-Encoding Genetic Vaccines Suppresses Type 1 Diabetes

机译:真皮内或口服GAD编码基因疫苗可抑制1型糖尿病。

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Genetic vaccines are promising candidates for prevention of type 1 diabetes, an autoimmune disease resulting from cell-mediated destruction of pancreatic beta cells. It is known that the prophylactic effect and immune responses induced by administration of a genetic vaccine can depend on site of delivery. In the work presented here, we used the NOD mouse model for type 1 diabetes to evaluate different routes of delivery for DNA vaccines coding for the beta-cell antigen glutamic acid decarboxylase (GAD). Plasmid DNA coding for intracellular or secreted GAD was given via either the intramuscular (i.m.), intradermal (i.d.), or oral route, using, respectively, 300, 100, or 300 μg DNA per mouse. Results indicated that both i.d. and oral delivery of GAD-encoding DNA were more effective than i.m. delivery for disease suppression. In addition, cytokine-specific ELISpot analysis indicated that immune responses induced by the different immunization protocols were more dependent on the cellular localization of GAD antigen than on the delivery route, while ELISA of anti-GAD serum antibody isotypes indicated that i.d. delivery of DNA was most likely to induce a Th2-like response. Our results suggest that i.d. or oral delivery of a genetic vaccine for type 1 diabetes might be preferable over the i.m. route in a future clinical setting.
机译:基因疫苗有望预防1型糖尿病,这是一种由细胞介导的胰腺β细胞破坏引起的自身免疫性疾病。已知通过施用基因疫苗诱导的预防作用和免疫应答可以取决于递送部位。在本文介绍的工作中,我们使用1型糖尿病的NOD小鼠模型评估了编码β细胞抗原谷氨酸脱羧酶(GAD)的DNA疫苗的不同递送途径。通过肌内(i.m.),皮内(i.d.)或口服途径,分别使用每只小鼠300、100或300μgDNA来提供编码细胞内或分泌的GAD的质粒DNA。结果表明和口服GAD编码的DNA比i.m.更有效。用于抑制疾病。另外,细胞因子特异性的ELISpot分析表明,由不同的免疫方案诱导的免疫应答更依赖于GAD抗原的细胞定位,而不是依赖于递送途径,而抗GAD血清抗体同种型的ELISA表明。 DNA的递送最有可能诱导类似Th2的反应。我们的结果表明或口服1型糖尿病的基因疫苗可能比i.m.在未来的临床环境中使用。

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