Antibiotic resistance: The challenges and some emerging strategies for tackling a global menace

抗生素 抗生素耐药性 抗菌剂 致病菌 细菌 医学 重症监护医学 生物 微生物学 遗传学
作者
David Chinemerem Nwobodo,Malachy Ugwu,Clement Oliseloke Anie,Mushtak T.S. Al-Ouqaili,Joseph Chinedu Ikem,Victor U. Chigozie,Morteza Saki
出处
期刊:Journal of Clinical Laboratory Analysis [Wiley]
卷期号:36 (9) 被引量:441
标识
DOI:10.1002/jcla.24655
摘要

Abstract Background Antibiotic resistance is currently the most serious global threat to the effective treatment of bacterial infections. Antibiotic resistance has been established to adversely affect both clinical and therapeutic outcomes, with consequences ranging from treatment failures and the need for expensive and safer alternative drugs to the cost of higher rates of morbidity and mortality, longer hospitalization, and high‐healthcare costs. The search for new antibiotics and other antimicrobials continues to be a pressing need in humanity's battle against bacterial infections. Antibiotic resistance appears inevitable, and there is a continuous lack of interest in investing in new antibiotic research by pharmaceutical industries. This review summarized some new strategies for tackling antibiotic resistance in bacteria. Methods To provide an overview of the recent research, we look at some new strategies for preventing resistance and/or reviving bacteria's susceptibility to already existing antibiotics. Results Substantial pieces of evidence suggest that antimicrobials interact with host immunity, leading to potent indirect effects that improve antibacterial activities and may result in more swift and complete bactericidal effects. A new class of antibiotics referred to as immuno‐antibiotics and the targeting of some biochemical resistance pathway components including inhibition of SOS response and hydrogen sulfide as biochemical underlying networks of bacteria can be considered as new emerging strategies to combat antibiotic resistance in bacteria. Conclusion This review highlighted and discussed immuno‐antibiotics and inhibition of SOS response and hydrogen sulfide as biochemical underlying networks of bacteria as new weapons against antibiotic resistance in bacteria.
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