Sharma Shubham, Sudhakara P, Singh Jujhar, Ilyas R A, Asyraf M R M, Razman M R
Regional Centre for Extension and Development, CSIR-Central Leather Research Institute, Leather Complex, Kapurthala Road, Jalandhar 144021, India.
PhD Research Scholar, IK Gujral Punjab Technical University, Jalandhar-Kapurthala, Highway, VPO, Ibban 144603, India.
Polymers (Basel). 2021 Aug 6;13(16):2623. doi: 10.3390/polym13162623.
In the determination of the bioavailability of drugs administered orally, the drugs' solubility and permeability play a crucial role. For absorption of drug molecules and production of a pharmacological response, solubility is an important parameter that defines the concentration of the drug in systemic circulation. It is a challenging task to improve the oral bioavailability of drugs that have poor water solubility. Most drug molecules are either poorly soluble or insoluble in aqueous environments. Polymer nanocomposites are combinations of two or more different materials that possess unique characteristics and are fused together with sufficient energy in such a manner that the resultant material will have the best properties of both materials. These polymeric materials (biodegradable and other naturally bioactive polymers) are comprised of nanosized particles in a composition of other materials. A systematic search was carried out on Web of Science and SCOPUS using different keywords, and 485 records were found. After the screening and eligibility process, 88 journal articles were found to be eligible, and hence selected to be reviewed and analyzed. Biocompatible and biodegradable materials have emerged in the manufacture of therapeutic and pharmacologic devices, such as impermanent implantation and 3D scaffolds for tissue regeneration and biomedical applications. Substantial effort has been made in the usage of bio-based polymers for potential pharmacologic and biomedical purposes, including targeted deliveries and drug carriers for regulated drug release. These implementations necessitate unique physicochemical and pharmacokinetic, microbiological, metabolic, and degradation characteristics of the materials in order to provide prolific therapeutic treatments. As a result, a broadly diverse spectrum of natural or artificially synthesized polymers capable of enzymatic hydrolysis, hydrolyzing, or enzyme decomposition are being explored for biomedical purposes. This summary examines the contemporary status of biodegradable naturally and synthetically derived polymers for biomedical fields, such as tissue engineering, regenerative medicine, bioengineering, targeted drug discovery and delivery, implantation, and wound repair and healing. This review presents an insight into a number of the commonly used tissue engineering applications, including drug delivery carrier systems, demonstrated in the recent findings. Due to the inherent remarkable properties of biodegradable and bioactive polymers, such as their antimicrobial, antitumor, anti-inflammatory, and anticancer activities, certain materials have gained significant interest in recent years. These systems are also actively being researched to improve therapeutic activity and mitigate adverse consequences. In this article, we also present the main drug delivery systems reported in the literature and the main methods available to impregnate the polymeric scaffolds with drugs, their properties, and their respective benefits for tissue engineering.
在口服给药的药物生物利用度测定中,药物的溶解度和渗透性起着关键作用。对于药物分子的吸收和药理反应的产生,溶解度是一个重要参数,它决定了药物在体循环中的浓度。提高水溶性差的药物的口服生物利用度是一项具有挑战性的任务。大多数药物分子在水性环境中要么难溶要么不溶。聚合物纳米复合材料是两种或更多种具有独特特性的不同材料的组合,并以足够的能量融合在一起,使得所得材料具有两种材料的最佳性能。这些聚合材料(可生物降解的和其他天然生物活性聚合物)由纳米级颗粒与其他材料组成。使用不同关键词在科学网和Scopus上进行了系统搜索,共找到485条记录。经过筛选和合格性审查,发现88篇期刊文章符合要求,因此被选中进行综述和分析。生物相容性和可生物降解材料已出现在治疗和药理装置的制造中,如用于组织再生和生物医学应用的临时植入物和3D支架。在将生物基聚合物用于潜在的药理和生物医学目的方面已经做出了大量努力,包括靶向递送和用于调节药物释放的药物载体。这些应用需要材料具有独特的物理化学、药代动力学、微生物学、代谢和降解特性,以便提供丰富的治疗方法。因此,正在探索各种各样能够进行酶促水解、水解或酶分解的天然或人工合成聚合物用于生物医学目的。本综述考察了可生物降解的天然和合成聚合物在生物医学领域的当代现状,如组织工程、再生医学、生物工程、靶向药物发现与递送、植入以及伤口修复与愈合。本综述深入探讨了一些常用的组织工程应用,包括近期研究中展示的药物递送载体系统。由于可生物降解和生物活性聚合物固有的显著特性,如它们的抗菌、抗肿瘤、抗炎和抗癌活性,某些材料近年来受到了极大关注。这些系统也在积极研究中,以提高治疗活性并减轻不良后果。在本文中,我们还介绍了文献中报道的主要药物递送系统以及将聚合物支架用药物浸渍的主要方法、它们的性质以及它们对组织工程各自的益处。