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基于壳聚糖的纳米凝胶:用于关节给药的合成及毒性概况

Chitosan-Based Nanogels: Synthesis and Toxicity Profile for Drug Delivery to Articular Joints.

作者信息

Manivong Seng, Garcia Ac Araceli, Patten Shunmoogum A, Fernandes Julio C, Benderdour Mohamed, Banquy Xavier, Moldovan Florina, Roullin Valérie Gaëlle

机构信息

Centre de Recherche, CHU Sainte-Justine, Montreal, QC H3T 1C5, Canada.

Faculté de Pharmacie, Université de Montréal, Montreal, QC H3T 1J4, Canada.

出版信息

Nanomaterials (Basel). 2022 Apr 13;12(8):1337. doi: 10.3390/nano12081337.

Abstract

One important challenge in treating avascular-degraded cartilage is the development of new drugs for both pain management and joint preservation. Considerable efforts have been invested in developing nanosystems using biomaterials, such as chitosan, a widely used natural polymer exhibiting numerous advantages, i.e., non-toxic, biocompatible and biodegradable. However, even if chitosan is generally recognized as safe, the safety and biocompatibility of such nanomaterials must be addressed because of potential for greater interactions between nanomaterials and biological systems. Here, we developed chitosan-based nanogels as drug-delivery platforms and established an initial biological risk assessment for osteocartilaginous applications. We investigated the influence of synthesis parameters on the physicochemical characteristics of the resulting nanogels and their potential impact on the biocompatibility on all types of human osteocartilaginous cells. Monodisperse nanogels were synthesized with sizes ranging from 268 to 382 nm according to the acidic solution used (i.e., either citric or acetic acid) with overall positive charge surface. Our results demonstrated that purified chitosan-based nanogels neither affected cell proliferation nor induced nitric oxide production in vitro. However, nanogels were moderately genotoxic in a dose-dependent manner but did not significantly induce acute embryotoxicity in zebrafish embryos, up to 100 µg∙mL. These encouraging results hold great promise for the intra-articular delivery of drugs or diagnostic agents for joint pathologies.

摘要

治疗缺血性退变软骨的一个重要挑战是开发用于疼痛管理和关节保护的新药。人们在利用生物材料(如壳聚糖,一种广泛使用的天然聚合物,具有无毒、生物相容性和可生物降解等诸多优点)开发纳米系统方面投入了大量精力。然而,即使壳聚糖通常被认为是安全的,但由于纳米材料与生物系统之间可能存在更强的相互作用,此类纳米材料的安全性和生物相容性仍需关注。在此,我们开发了基于壳聚糖的纳米凝胶作为药物递送平台,并对骨软骨应用建立了初步的生物风险评估。我们研究了合成参数对所得纳米凝胶物理化学特性的影响及其对所有类型人类骨软骨细胞生物相容性的潜在影响。根据所用酸性溶液(即柠檬酸或乙酸)合成了尺寸范围为268至382 nm的单分散纳米凝胶,其表面总体带正电荷。我们的结果表明,纯化的基于壳聚糖的纳米凝胶在体外既不影响细胞增殖也不诱导一氧化氮产生。然而,纳米凝胶具有一定程度的剂量依赖性遗传毒性,但在高达100 µg∙mL的浓度下对斑马鱼胚胎并未显著诱导急性胚胎毒性。这些令人鼓舞的结果为关节内递送治疗关节疾病的药物或诊断剂带来了巨大希望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51d5/9027118/70a29eaa158d/nanomaterials-12-01337-g001.jpg

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