探索透明质酸纳米颗粒在细菌感染诊断和治疗中的应用

Mahir Mohammed, Nikita Devnarain, Eman Elhassan, T. Govender
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引用次数: 9

摘要

透明质酸(HA)因其具有生物安全性、生物可降解性和非免疫原性等优良特性而成为药物传递研究的热点。此外,由于其易于修饰,可以使用各种方法制备几种基于HA的纳米系统。这些方法包括疏水基团的共轭/接枝,聚电解质与阳离子聚合物的络合,或使用透明质酸对各种纳米颗粒进行表面改性。这些纳米颗粒能够选择性地将抗菌药物或诊断分子输送到感染部位。此外,HA可以与巨噬细胞中过表达的CD44受体结合,也可以被一系列称为透明质酸酶(HAase)的酶降解以释放药物或分子。通过与这些受体结合或在感染部位被HAase降解,HA - based纳米颗粒可以增强和靶向抗菌递送。在此,我们提出了一个全面的和最新的回顾,重点介绍了文献中报道的各种制备HA基纳米颗粒的技术。此外,我们还讨论并批判性地分析了迄今为止用于抗菌递送的多种基于HA的纳米颗粒。这篇文章提供了基于HA纳米颗粒的潜力的关键概述,以克服传统抗生素在治疗细菌感染方面的挑战。此外,本综述确定了开发多功能和仿生HA纳米颗粒用于治疗、预防和/或检测致病菌的进一步研究途径。本文分类为:治疗方法和药物发现>传染病的纳米医学纳米生物学方法>生物学中的纳米系统治疗方法和药物发现>新兴技术
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the applications of hyaluronic acid‐based nanoparticles for diagnosis and treatment of bacterial infections
Abstract Hyaluronic acid (HA) has become a topic of significant interest in drug delivery research due to its excellent properties, including biosafety, biodegradability, and nonimmunogenicity. Moreover, due to its ease of modification, HA can be used to prepare several HA‐based nanosystems using various approaches. These approaches involve conjugating/grafting of hydrophobic moieties, polyelectrolytes complexation with cationic polymers, or surface modification of various nanoparticles using HA. These nanoparticles are able to selectively deliver antibacterial drugs or diagnostic molecules into the site of infections. In addition, HA can bind with overexpressed cluster of differentiation 44 (CD44) receptors in macrophages and also can be degraded by a family of enzymes called hyaluronidase (HAase) to release drugs or molecules. By binding with these receptors or being degraded at the infection site by HAase, HA‐based nanoparticles allow enhanced and targeted antibacterial delivery. Herein, we present a comprehensive and up‐to‐date review that highlights various techniques of preparation of HA‐based nanoparticles that have been reported in the literature. Furthermore, we also discuss and critically analyze numerous types of HA‐based nanoparticles that have been employed in antibacterial delivery to date. This article offers a critical overview of the potential of HA‐based nanoparticles to overcome the challenges of conventional antibiotics in the treatment of bacterial infections. Moreover, this review identifies further avenues of research for developing multifunctional and biomimetic HA‐based nanoparticles for the treatment, prevention, and/or detection of pathogenic bacteria. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Infectious Disease Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Therapeutic Approaches and Drug Discovery > Emerging Technologies
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