Nanoparticles Enable Efficient Delivery of Antimicrobial Peptides for the Treatment of Deep Infections

Ying-Hu Deng, Rui Huang, Songyin Huang, Menghua Xiong
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引用次数: 3

Abstract

Abstract Antimicrobial peptides (AMPs) have emerged as promising alternatives of traditional antibiotics against drug-resistant bacteria owing to their broad-spectrum antimicrobial properties and low tendency to drug resistance. However, their therapeutic efficacy in vivo, especially for infections in deep organs, is limited owing to their systemic toxicity and low bioavailability. Nanoparticles-based delivery systems offer a strategy to increase the therapeutic index of AMPs by preventing proteolysis, increasing the accumulation at infection sites, and reducing toxicity. Herein, we will discuss the current progress of using nanoparticles as delivery vehicles for AMPs for the treatment of deep infections.Statement of significanceAntimicrobial peptides (AMPs) are rarely directly used to treat deep infections due to their systemic toxicity and low bioavailability. This review summarizes recent progress that researchers employed nanoparticles-based delivery systems to deliver AMPs for the treatment of deep infections. Nanoparticles-based delivery systems offer a strategy to increase the therapeutic index of AMPs by preventing proteolysis, increasing the accumulation at infection sites, and reducing toxicity. Especially, the development of intelligent nanocarriers can achieve selective activation and active target in the infectious sites, thus improving the therapeutic efficacy against bacterial infection and reducing the toxicity against normal tissues.
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纳米颗粒能够有效地递送抗菌肽用于治疗深部感染
摘要抗菌肽(Antimicrobial peptides, AMPs)因其广谱抗菌特性和低耐药倾向而成为传统抗生素抗耐药菌的有希望的替代品。然而,由于其全身毒性和低生物利用度,它们在体内的治疗效果,特别是对深部器官感染的治疗效果受到限制。基于纳米颗粒的递送系统提供了一种策略,通过防止蛋白质水解,增加感染部位的积累和降低毒性来提高抗菌肽的治疗指数。在此,我们将讨论使用纳米颗粒作为amp治疗深部感染的运载工具的最新进展。抗菌肽由于其系统毒性和低生物利用度,很少直接用于治疗深部感染。本文综述了研究人员利用纳米颗粒为基础的递送系统递送抗菌肽治疗深部感染的最新进展。基于纳米颗粒的递送系统提供了一种策略,通过防止蛋白质水解,增加感染部位的积累和降低毒性来提高抗菌肽的治疗指数。特别是智能纳米载体的开发,可以在感染部位实现选择性激活和活性靶点,从而提高抗细菌感染的治疗效果,降低对正常组织的毒性。
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来源期刊
CiteScore
5.40
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