Multidrug-Resistant Microbial Therapy Using Antimicrobial Peptides and the CRISPR/Cas9 System.

IF 1.7 Q2 VETERINARY SCIENCES Veterinary medicine (Auckland, N.Z.) Pub Date : 2022-08-11 eCollection Date: 2022-01-01 DOI:10.2147/VMRR.S366533
Yared Abate Getahun, Destaw Asfaw Ali, Bihonegn Wodajnew Taye, Yismaw Alemie Alemayehu
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引用次数: 8

Abstract

The emergence and spread of multidrug-resistant microbes become a serious threat to animal and human health globally because of their less responsiveness to conventional antimicrobial therapy. Multidrug-resistant microbial infection poses higher morbidity and mortality rate with significant economic losses. Currently, antimicrobial peptides and the CRISPR/Cas9 system are explored as alternative therapy to circumvent the challenges of multidrug-resistant organisms. Antimicrobial peptides are small molecular weight, cationic peptides extracted from all living organisms. It is a promising drug candidate for the treatment of multidrug-resistant microbes by direct microbial killing or indirectly modulating the innate immune system. The CRISPR/Cas9 system is another novel antimicrobial alternative used to manage multidrug-resistant microbial infection. It is a versatile gene-editing tool that uses engineered single guide RNA for targeted gene recognition and the Cas9 enzyme for the destruction of target nucleic acids. Both the CRISPR/Cas9 system and antimicrobial peptides were used to successfully treat nosocomial infections caused by ESKAPE pathogens, which developed resistance to various antimicrobials. Despite, their valuable roles in multidrug-resistant microbial treatments, both the antimicrobial peptides and the CRISPR/Cas systems have various limitations like toxicity, instability, and incurring high manufacturing costs. Thus, this review paper gives detailed explanations of the roles of the CRISPR/Cas9 system and antimicrobial peptides in circumventing the challenges of multidrug-resistant microbial infections, its limitation and prospects in clinical applications.

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利用抗菌肽和CRISPR/Cas9系统进行多药耐药微生物治疗
耐多药微生物的出现和传播对全球动物和人类健康构成严重威胁,因为它们对常规抗菌素治疗的反应较弱。耐多药微生物感染造成较高的发病率和死亡率,并造成重大经济损失。目前,抗菌肽和CRISPR/Cas9系统被探索作为替代疗法来规避多重耐药生物的挑战。抗菌肽是从所有生物中提取的小分子量阳离子肽。它是一种很有前途的候选药物,可以通过直接杀死微生物或间接调节先天免疫系统来治疗多重耐药微生物。CRISPR/Cas9系统是另一种用于管理多药耐药微生物感染的新型抗菌替代方案。它是一种多功能的基因编辑工具,使用工程化的单导RNA来识别目标基因,使用Cas9酶来破坏目标核酸。CRISPR/Cas9系统和抗菌肽都被用于成功治疗ESKAPE病原体引起的医院感染,ESKAPE病原体对各种抗菌药物产生耐药性。尽管抗菌肽和CRISPR/Cas系统在耐多药微生物治疗中发挥了重要作用,但它们都有各种局限性,如毒性、不稳定性和制造成本高。因此,本文就CRISPR/Cas9系统和抗菌肽在规避多药耐药微生物感染中的作用、局限性和临床应用前景进行了详细阐述。
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