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作为针对奶牛产后子宫内膜炎的纳米治疗探索,对牛子宫内膜细胞受体和信号通路的调节

Modulation of Bovine Endometrial Cell Receptors and Signaling Pathways as a Nanotherapeutic Exploration against Dairy Cow Postpartum Endometritis.

作者信息

Oladejo Ayodele Olaolu, Li Yajuan, Wu Xiaohu, Imam Bereket Habte, Yang Jie, Ma Xiaoyu, Yan Zuoting, Wang Shengyi

机构信息

Key Laboratory of Veterinary Pharmaceutical Development of Ministry of Agriculture, Lanzhou Institute of Husbandry and Pharmaceutical Sciences of Chinese Academy of Agricultural Science, Lanzhou 730050, China.

Department of Animal Health Technology, Oyo State College of Agriculture and Technology, Igboora 201103, Nigeria.

出版信息

Animals (Basel). 2021 May 23;11(6):1516. doi: 10.3390/ani11061516.

Abstract

In order to control and prevent bovine endometritis, there is a need to understand the molecular pathogenesis of the infectious disease. Bovine endometrium is usually invaded by a massive mobilization of microorganisms, especially bacteria, during postpartum dairy cows. Several reports have implicated the Gram-negative bacteria in the pathogenesis of bovine endometritis, with information dearth on the potentials of Gram-positive bacteria and their endotoxins. The invasive bacteria and their ligands pass through cellular receptors such as TLRs, NLRs, and biomolecular proteins of cells activate the specific receptors, which spontaneously stimulates cellular signaling pathways like MAPK, NF-kB and sequentially triggers upregulation of pro-inflammatory cytokines. The cascade of inflammatory induction involves a dual signaling pathway; the transcription factor NF-κB is released from its inhibitory molecule and can bind to various inflammatory genes promoter. The MAPK pathways are concomitantly activated, leading to specific phosphorylation of the NF-κB. The provision of detailed information on the molecular pathomechanism of bovine endometritis with the interaction between host endometrial cells and invasive bacteria in this review would widen the gap of exploring the potential of receptors and signal transduction pathways in nanotechnology-based drug delivery system. The nanotherapeutic discovery of endometrial cell receptors, signal transduction pathway, and cell biomolecules inhibitors could be developed for strategic inhibition of infectious signals at the various cell receptors and signal transduction levels, interfering on transcription factors activation and pro-inflammatory cytokines and genes expression, which may significantly protect endometrium against postpartum microbial invasion.

摘要

为了控制和预防牛子宫内膜炎,有必要了解这种传染病的分子发病机制。产后奶牛的牛子宫内膜通常会受到大量微生物尤其是细菌的侵袭。一些报告表明革兰氏阴性菌与牛子宫内膜炎的发病机制有关,而关于革兰氏阳性菌及其内毒素的潜在作用的信息却很匮乏。侵入性细菌及其配体通过细胞受体(如Toll样受体、NOD样受体)以及细胞的生物分子蛋白激活特定受体,这些受体继而刺激丝裂原活化蛋白激酶(MAPK)、核因子κB(NF-κB)等细胞信号通路,并依次触发促炎细胞因子的上调。炎症诱导的级联反应涉及双信号通路;转录因子NF-κB从其抑制分子中释放出来,并能与各种炎症基因启动子结合。MAPK通路同时被激活,导致NF-κB的特异性磷酸化。本综述提供了关于牛子宫内膜炎分子发病机制以及宿主子宫内膜细胞与侵入性细菌之间相互作用的详细信息,这将拓宽在基于纳米技术的药物递送系统中探索受体和信号转导通路潜力的差距。可以开发子宫内膜细胞受体、信号转导通路和细胞生物分子抑制剂的纳米治疗方法,以在各种细胞受体和信号转导水平上战略性地抑制感染信号,干扰转录因子的激活以及促炎细胞因子和基因的表达,这可能会显著保护子宫内膜免受产后微生物的侵袭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fdb/8224678/67676cf10059/animals-11-01516-g001.jpg

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