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用于生物活性递送的蛋白质基纳米水凝胶

Protein-Based Nanohydrogels for Bioactive Delivery.

作者信息

Chander Subhash, Kulkarni Giriraj T, Dhiman Neerupma, Kharkwal Harsha

机构信息

Amity Institute of Phytochemistry and Phytomedicine, Amity University, Noida, India.

Amity Institute of Pharmacy, Amity University, Noida, India.

出版信息

Front Chem. 2021 Jul 9;9:573748. doi: 10.3389/fchem.2021.573748. eCollection 2021.

Abstract

Hydrogels possess a unique three-dimensional, cross-linked network of polymers capable of absorbing large amounts of water and biological fluids without dissolving. Nanohydrogels (NGs) or nanogels are composed of diverse types of polymers of synthetic or natural origin. Their combination is bound by a chemical covalent bond or is physically cross-linked with non-covalent bonds like electrostatic interactions, hydrophobic interactions, and hydrogen bonding. Its remarkable ability to absorb water or other fluids is mainly attributed to hydrophilic groups like hydroxyl, amide, and sulphate, etc. Natural biomolecules such as protein- or peptide-based nanohydrogels are an important category of hydrogels which possess high biocompatibility and metabolic degradability. The preparation of protein nanohydrogels and the subsequent encapsulation process generally involve use of environment friendly solvents and can be fabricated using different proteins, such as fibroins, albumin, collagen, elastin, gelatin, and lipoprotein, etc. involving emulsion, electrospray, and desolvation methods to name a few. Nanohydrogels are excellent biomaterials with broad applications in the areas of regenerative medicine, tissue engineering, and drug delivery due to certain advantages like biodegradability, biocompatibility, tunable mechanical strength, molecular binding abilities, and customizable responses to certain stimuli like ionic concentration, pH, and temperature. The present review aims to provide an insightful analysis of protein/peptide nanohydrogels including their preparation, biophysiochemical aspects, and applications in diverse disciplines like in drug delivery, immunotherapy, intracellular delivery, nutraceutical delivery, cell adhesion, and wound dressing. Naturally occurring structural proteins that are being explored in protein nanohydrogels, along with their unique properties, are also discussed briefly. Further, the review also covers the advantages, limitations, overview of clinical potential, toxicity aspects, stability issues, and future perspectives of protein nanohydrogels.

摘要

水凝胶具有独特的三维交联聚合物网络,能够吸收大量水分和生物流体而不溶解。纳米水凝胶(NGs)或纳米凝胶由多种合成或天然来源的聚合物组成。它们通过化学共价键结合或通过静电相互作用、疏水相互作用和氢键等非共价键进行物理交联。其显著的吸水或其他流体的能力主要归因于羟基、酰胺和硫酸盐等亲水基团。基于蛋白质或肽的纳米水凝胶等天然生物分子是一类重要的水凝胶,具有高生物相容性和代谢降解性。蛋白质纳米水凝胶的制备及后续包封过程通常涉及使用环境友好型溶剂,并且可以使用不同的蛋白质来制备,如丝蛋白、白蛋白、胶原蛋白、弹性蛋白、明胶和脂蛋白等,制备方法包括乳液法、电喷雾法和去溶剂化法等。由于具有生物可降解性、生物相容性、可调机械强度、分子结合能力以及对离子浓度、pH值和温度等特定刺激的可定制响应等优点,纳米水凝胶是一类优秀的生物材料,在再生医学、组织工程和药物递送等领域具有广泛应用。本综述旨在对蛋白质/肽纳米水凝胶进行深入分析,包括其制备、生物物理化学方面以及在药物递送、免疫疗法、细胞内递送、营养补充剂递送、细胞黏附及伤口敷料等不同学科中的应用。还简要讨论了正在蛋白质纳米水凝胶中探索的天然结构蛋白及其独特性质。此外,该综述还涵盖了蛋白质纳米水凝胶的优点、局限性、临床潜力概述、毒性方面、稳定性问题以及未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e55a/8299995/92fd9c1f46b3/fchem-09-573748-g001.jpg

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