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Digital Dermatitis in Cattle: Current Bacterial and Immunological Findings

机译:牛的数字性皮炎:当前的细菌和免疫学发现

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Simple Summary Digital dermatitis causes lameness in cattle. Numerous studies have identified multiple bacteria associated with these painful lesions. Several types of a spiral shaped bacteria, Treponema species, are thought to play a role in disease development. Little is known about the immune response to bacteria involved in digital dermatitis. Local inflammatory cells can contribute to the non-healing nature of the disease. Animal models of infection are required to develop effective vaccines and treatments. Abstract Globally; digital dermatitis is a leading form of lameness observed in production dairy cattle. While the precise etiology remains to be determined; the disease is clearly associated with infection by numerous species of treponemes; in addition to other anaerobic bacteria. The goal of this review article is to provide an overview of the current literature; focusing on discussion of the polybacterial nature of the digital dermatitis disease complex and host immune response. Several phylotypes of treponemes have been identified; some of which correlate with location in the lesion and some with stages of lesion development. Local innate immune responses may contribute to the proliferative, inflammatory conditions that perpetuate digital dermatitis lesions. While serum antibody is produced to bacterial antigens in the lesions, little is known about cellular-based immunity. Studies are still required to delineate the pathogenic traits of treponemes associated with digital dermatitis; and other host factors that mediate pathology and protection of digital dermatitis lesions.
机译:简单总结数字皮炎会导致牛la行。许多研究已经确定了与这些疼痛病变相关的多种细菌。人们认为几种类型的螺旋形细菌,即梅毒螺旋体在疾病发展中起作用。对于涉及数字性皮炎的细菌的免疫反应知之甚少。局部炎性细胞可导致疾病的非愈合性质。开发有效的疫苗和治疗方法需要感染动物模型。全球摘要数字化皮炎是在生产奶牛中观察到的主要me行形式。虽然确切的病因仍有待确定;该疾病显然与许多种类的线虫感染有关。除了其他厌氧菌。这篇综述文章的目的是概述当前文献。重点讨论数字皮肤炎疾病复合体和宿主免疫反应的细菌性质。已经鉴定出数种系统表型。其中一些与病变位置相关,而另一些与病变发展阶段相关。局部先天免疫应答可能导致使数字性皮炎病变永久存在的增生性炎症。虽然产生针对病变中细菌抗原的血清抗体,但对基于细胞的免疫知之甚少。仍需要进行研究以鉴定与数字性皮炎有关的色氨酸的致病性状。以及其他介导数字性皮炎病变的病理和保护的宿主因素。

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