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基于有机聚合物和层状双氢氧化物纳米复合材料的生物材料:药物递送与组织工程

Biomaterials Based on Organic Polymers and Layered Double Hydroxides Nanocomposites: Drug Delivery and Tissue Engineering.

作者信息

Constantino Vera Regina Leopoldo, Figueiredo Mariana Pires, Magri Vagner Roberto, Eulálio Denise, Cunha Vanessa Roberta Rodrigues, Alcântara Ana Clecia Santos, Perotti Gustavo Frigi

机构信息

Departamento de Química Fundamental, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes 748, CEP 05513-970, São Paulo 05513-970, SP, Brazil.

Instituto Federal de Educação, Ciência e Tecnologia de Mato Grosso (IFMT), Linha J, s/n-Zona Rural, Juína 78320-000, MT, Brazil.

出版信息

Pharmaceutics. 2023 Jan 26;15(2):413. doi: 10.3390/pharmaceutics15020413.

Abstract

The development of biomaterials has a substantial role in pharmaceutical and medical strategies for the enhancement of life quality. This review work focused on versatile biomaterials based on nanocomposites comprising organic polymers and a class of layered inorganic nanoparticles, aiming for drug delivery (oral, transdermal, and ocular delivery) and tissue engineering (skin and bone therapies). Layered double hydroxides (LDHs) are 2D nanomaterials that can intercalate anionic bioactive species between the layers. The layers can hold metal cations that confer intrinsic biological activity to LDHs as well as biocompatibility. The intercalation of bioactive species between the layers allows the formation of drug delivery systems with elevated loading capacity and modified release profiles promoted by ion exchange and/or solubilization. The capacity of tissue integration, antigenicity, and stimulation of collagen formation, among other beneficial characteristics of LDH, have been observed by in vivo assays. The association between the properties of biocompatible polymers and LDH-drug nanohybrids produces multifunctional nanocomposites compatible with living matter. Such nanocomposites are stimuli-responsive, show appropriate mechanical properties, and can be prepared by creative methods that allow a fine-tuning of drug release. They are processed in the end form of films, beads, gels, monoliths etc., to reach orientated therapeutic applications. Several studies attest to the higher performance of polymer/LDH-drug nanocomposite compared to the LDH-drug hybrid or the free drug.

摘要

生物材料的发展在提升生活质量的制药和医学策略中发挥着重要作用。本综述工作聚焦于基于由有机聚合物和一类层状无机纳米粒子组成的纳米复合材料的多功能生物材料,旨在用于药物递送(口服、透皮和眼部递送)以及组织工程(皮肤和骨骼治疗)。层状双氢氧化物(LDHs)是二维纳米材料,能够在层间插入阴离子生物活性物种。这些层可以容纳赋予LDHs内在生物活性以及生物相容性的金属阳离子。生物活性物种在层间的插入使得能够形成具有高负载能力以及由离子交换和/或溶解促进的改性释放曲线的药物递送系统。通过体内试验已经观察到LDH的组织整合能力、抗原性以及对胶原蛋白形成的刺激等其他有益特性。生物相容性聚合物的特性与LDH - 药物纳米杂化物之间的结合产生了与生物相容的多功能纳米复合材料。此类纳米复合材料具有刺激响应性,展现出合适的机械性能,并且可以通过允许对药物释放进行微调的创新方法制备。它们被加工成薄膜、珠子、凝胶、整料等最终形式,以实现定向治疗应用。多项研究证明,与LDH - 药物杂化物或游离药物相比,聚合物/LDH - 药物纳米复合材料具有更高的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1be/9961265/df3d0f9d5b3a/pharmaceutics-15-00413-g001.jpg

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