Highlighting the Importance of Matrix Metalloproteinase 1, 8, and 9 Expression during the Progression of Mycobacterium tuberculosis Infection

Q4 Veterinary
Sasikumar Pitchaikani, Murugan Mukilan, Pothiaraj Govindan, Ganesan Kathiravan, Harshavardhan Shakila
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Abstract

Tuberculosis (TB) is one of the major threats to public health; annually it kills more than 1.5 million people around the globe. Tuberculosis is caused by an intracellular pathogen named Mycobacterium tuberculosis (Mtb). This Mtb enters the lung through the respiratory passage by inhalation in healthy individuals. Infection of this disease starts from the settlement of Mtb to the lung alveoli of the host from the external bacilli air droplets. After settlement, the multiplication of Mtb results in the induction of innate immunity through the alveolar macrophages. Compared to other infectious diseases, tuberculosis infection was transmitted rapidly by the infected aerosols released from infected persons to healthy persons through the air. After infection, disease development results in the formation of drug-resistance TB (DR-TB) with four subcategories, i.e. Single-drug resistant TB (SDR-TB), multi-drug resistant TB (MDR-TB), extensive drug-resistant TB (XDR-TB), and total-drug resistant TB (TDR-TB). As a result, this DR-TB may act as a major source of TB death due to spontaneous antimicrobial resistance (AMR). This AMR makes the anti-TB drugs ineffective. In the current scenario, researchers are trying to find the drug target to decrease tuberculosis progression instead of drug resistance. The present review reports that the outcome of research studies showed that matrix metalloproteinase (MMP) may act as a suitable target for treating Mtb infection with the help of specific proteinase inhibitors. Recent reports have shown the specific role of matrix metalloproteinases 1, 8, and 9 in the disease progression and its role in normal homeostasis mechanism with the help of specific animal models/In vitro models.
突显基质金属蛋白酶 1、8 和 9 表达在结核分枝杆菌感染进展过程中的重要性
结核病(TB)是公共卫生的主要威胁之一;每年全球有 150 多万人死于该病。结核病是由一种名为结核分枝杆菌(Mtb)的细胞内病原体引起的。这种结核分枝杆菌通过健康人的呼吸道吸入肺部。这种疾病的感染始于结核分枝杆菌从外部的杆菌气滴沉降到宿主的肺泡。定居后,Mtb 的繁殖导致通过肺泡巨噬细胞诱导先天性免疫。与其他传染病相比,结核病感染是通过感染者释放的受感染气溶胶经空气迅速传播给健康人的。感染后,疾病发展形成耐药结核病(DR-TB),有四个亚类,即单药耐药结核病(SDR-TB)、多药耐药结核病(MDR-TB)、广泛耐药结核病(XDR-TB)和全耐药结核病(TDR-TB)。因此,由于自发产生的抗菌药耐药性(AMR),耐药结核病可能成为结核病死亡的主要原因。这种 AMR 会使抗结核药物失效。目前,研究人员正试图找到减少结核病进展的药物靶点,而不是耐药性。本综述报告称,研究结果表明,基质金属蛋白酶(MMP)可能是在特定蛋白酶抑制剂帮助下治疗 Mtb 感染的合适靶点。最近的报告显示,基质金属蛋白酶 1、8 和 9 在疾病进展中的特殊作用,以及在特定动物模型/体外模型中的正常平衡机制中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Experimental Biology and Agricultural Sciences
Journal of Experimental Biology and Agricultural Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.00
自引率
0.00%
发文量
127
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