Mycobacterial response to an acidic environment: protective mechanisms.

IF 2.7 4区 医学 Q3 IMMUNOLOGY
Rupal Rai, Vinayak Singh, Bijina J Mathew, Anirudh K Singh, Shivendra K Chaurasiya
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引用次数: 2

Abstract

Given the emergence and spread of multidrug-resistant and extensively drug-resistant strains of Mycobacterium tuberculosis (Mtb), the world faces the urgency of finding new drugs to combat tuberculosis. Understanding the biochemical/physiological processes enabling Mtb to survive the stressful environment within macrophages and acquire tolerance, resistance and persistence against the stresses are the key to developing new approaches to tackle this health problem. As Mtb gains entry into the respiratory tract and is engulfed by macrophages, lowering pH acts as a primary defence of phagosomes within macrophages and also in the centres of caseating granulomas. It becomes essential for the pathogen to maintain pH homeostasis for survival in these conditions. Acid resistance mechanisms are well known and extensively studied in other bacteria such as Escherichia coli, Lactobacillus spp., Brucella spp., Helicobacter pylori and Listeria monocytogenes. However, in the case of Mtb, acid tolerance and resistance mechanisms still need to be explored in detail. This review aims to describe the current understanding of underlying mechanisms involved in countering low pH faced by Mtb as the acid resistance/tolerance mechanisms contribute to the pathogenesis of the disease.

分枝杆菌对酸性环境的反应:保护机制。
鉴于耐多药和广泛耐药结核分枝杆菌(Mtb)菌株的出现和传播,世界面临着寻找抗击结核病新药的紧迫性。了解结核分枝杆菌在巨噬细胞内的应激环境中存活并获得耐受性、抵抗力和持久性的生化/生理过程是开发解决这一健康问题的新方法的关键。当结核分枝杆菌进入呼吸道并被巨噬细胞吞噬时,降低pH值是巨噬细胞内吞噬体和干酪化肉芽肿中心的主要防御措施。为了在这些条件下生存,病原体必须保持pH稳态。其他细菌如大肠杆菌、乳杆菌、布鲁氏菌、幽门螺杆菌和单核增生李斯特菌的耐酸机制是众所周知的,并得到了广泛的研究。然而,就结核分枝杆菌而言,耐酸和耐酸机制仍需详细探索。这篇综述的目的是描述目前对Mtb所面临的对抗低pH的潜在机制的理解,因为耐酸/耐受性机制有助于疾病的发病机制。
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
Pathogens and disease
Pathogens and disease IMMUNOLOGY-INFECTIOUS DISEASES
CiteScore
7.40
自引率
3.00%
发文量
44
期刊介绍: Pathogens and Disease publishes outstanding primary research on hypothesis- and discovery-driven studies on pathogens, host-pathogen interactions, host response to infection and their molecular and cellular correlates. It covers all pathogens – eukaryotes, prokaryotes, and viruses – and includes zoonotic pathogens and experimental translational applications.
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