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Genomic analysis of mucosal immunobiology in the porcine small intestine

机译:猪小肠黏膜免疫生物学的基因组分析

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The vast majority of infectious diseases of animals and humans occur at mucosal surfaces, especially in the intestinal tract. However, vaccines to stimulate durable immunity to intestinal pathogens often do not produce effective protection. A better understanding of the molecules and molecular mechanisms that mediate effective immune induction at mucosal surfaces may facilitate the development of more effective mucosal vaccines. Characterization of the mRNA expression profile of Peyer's patch, a key immunological tissue in immune surveillance and response, would help to identify important proteins and pathways required for the development of effective mucosal immunity in swine. We produced a cDNA library of about 2400 genes differentially expressed in jejunal Peyer's patch, of which approximately 900 had unknown functions or were novel to public databases. We hypothesize that knowledge of the roles and regulation of the encoded proteins under conditions of substantial immune stimulation will help to understand mucosal immunoregulatory mechanisms in the Peyer's patch. Cholera toxin is a potent mucosal adjuvant and antigen. The response to cholera toxin is amenable to dissection at a variety of levels from local to systemic and molecular to cellular in whole animals, tissue explants, and cultured cells. The powerful tools of genomics and genetics that are now available provide veterinary immunologists with new opportunities to elucidate and dissect the mysteries of host defense. By building on the findings from multiple systems and models we can develop a better understanding of complex interactions of immune and absorptive tissues in the regulation of immunity in the small intestine.
机译:动物和人类的绝大多数传染病都发生在粘膜表面,特别是在肠道。但是,刺激肠病原体持久免疫的疫苗通常无法产生有效的保护作用。对在粘膜表面介导有效免疫诱导的分子和分子机制的更好理解可能有助于开发更有效的粘膜疫苗。 Peyer's贴片(免疫监视和应答中的关键免疫组织)的mRNA表达谱的表征将有助于鉴定重要蛋白和途径,这些蛋白和途径是发展猪有效粘膜免疫力所必需的。我们产生了一个约2400个基因的cDNA文库,该基因在空肠Peyer斑中差异表达,其中约900个基因的功能未知或对公共数据库而言是新颖的。我们假设,在充分的免疫刺激条件下,对编码蛋白的作用和调节的了解将有助于理解Peyer斑中的粘膜免疫调节机制。霍乱毒素是一种有效的粘膜佐剂和抗原。在整个动物,组织外植体和培养的细胞中,对霍乱毒素的反应都可以在从局部到全身以及从分子到细胞的各种水平上进行解剖。现在可用的强大的基因组学和遗传学工具为兽医免疫学家提供了新的机会来阐明和剖析宿主防御的奥秘。通过基于多种系统和模型的发现,我们可以更好地理解免疫和吸收性组织在小肠免疫调节中的复杂相互作用。

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