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纳米策略在克服头孢曲松耐药性中的贡献:文献综述。

The contribution of nano-based strategies in overcoming ceftriaxone resistance: a literature review.

机构信息

Department of Pharmaceutics and Social Pharmacy, School of Pharmacy, College of Health Sciences, Addis Ababa University, Addis Ababa, Ethiopia.

Department of Pharmacy, College of Medicine and Health Sciences, Bahir Dar University, Bahir Dar, Ethiopia.

出版信息

Pharmacol Res Perspect. 2021 Aug;9(4):e00849. doi: 10.1002/prp2.849.

Abstract

Antimicrobial drug resistance, including resistance to multiple antibiotics, is continuously increasing. According to research findings, many bacteria resistant to other antibiotics were susceptible to ceftriaxone. However, over the last few years, ceftriaxone resistance has become growing and extremely worrisome challenge to the global healthcare system and several strategies have been initiated to contain the spread of antimicrobial drug resistance. Its extended use for therapeutic or preventative measures in humans and farm animals resulted in the development and spread of resistance. Recent advances in nanotechnology also offer novel formulations based on distinct types of nanostructure particles with different sizes and shapes, and flexible antimicrobial properties. For ceftriaxone, several nanostructured formulations through conjugation, intercalation, encapsulation with lipid carrier, and polymeric films have been investigated by different groups with promising results in combating the development of resistance. This review addressed the existing knowledge and practice on the contribution of nano-based delivery approaches in overcoming ceftriaxone resistance. Evidences have been generated from published research articles using major search electronic databases such as PubMed, Medline, Google Scholar, and Science Direct.

摘要

抗菌药物耐药性不断增加,包括对多种抗生素的耐药性。研究结果表明,许多对抗生素耐药的细菌对头孢曲松敏感。然而,在过去几年中,头孢曲松耐药性的不断增加已成为全球医疗保健系统面临的极其令人担忧的挑战,为此已经启动了多种策略来控制抗菌药物耐药性的传播。由于其在人类和农场动物中的治疗或预防措施中的广泛应用,导致了耐药性的产生和传播。最近纳米技术的进步也为不同类型的纳米结构颗粒提供了新的制剂,这些颗粒具有不同的大小和形状,以及灵活的抗菌特性。对于头孢曲松,不同的研究小组已经通过共轭、插层、脂质载体包封和聚合物薄膜等方式对几种纳米结构制剂进行了研究,这些研究在对抗耐药性的发展方面取得了有希望的结果。本文综述了基于纳米的递药方法在克服头孢曲松耐药性方面的现有知识和实践。使用主要的电子数据库(如 PubMed、Medline、Google Scholar 和 Science Direct),从已发表的研究文章中生成了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed5/8324973/a4c250c679d3/PRP2-9-e00849-g005.jpg

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