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揭示甲基丙烯酰化明胶水凝胶的多功能性:生物医学应用的综合之旅。

Unveiling the versatility of gelatin methacryloyl hydrogels: a comprehensive journey into biomedical applications.

机构信息

Department of Biotechnology, Bhupat and Jyoti Mehta School of Biosciences, Indian Institute of Technology Madras, Chennai 600036, Tamil Nadu, India.

Department of Clinical Laboratory Sciences, The faculty of Applied Medical Sciences, Taif University, Taif, Saudi Arabia.

出版信息

Biomed Mater. 2024 Jun 3;19(4). doi: 10.1088/1748-605X/ad4df7.

Abstract

Gelatin methacryloyl (GelMA) hydrogels have gained significant recognition as versatile biomaterials in the biomedical domain. GelMA hydrogels emulate vital characteristics of the innate extracellular matrix by integrating cell-adhering and matrix metalloproteinase-responsive peptide motifs. These features enable cellular proliferation and spreading within GelMA-based hydrogel scaffolds. Moreover, GelMA displays flexibility in processing, as it experiences crosslinking when exposed to light irradiation, supporting the development of hydrogels with adjustable mechanical characteristics. The drug delivery landscape has been reshaped by GelMA hydrogels, offering a favorable platform for the controlled and sustained release of therapeutic actives. The tunable physicochemical characteristics of GelMA enable precise modulation of the kinetics of drug release, ensuring optimal therapeutic effectiveness. In tissue engineering, GelMA hydrogels perform an essential role in the design of the scaffold, providing a biomimetic environment conducive to cell adhesion, proliferation, and differentiation. Incorporating GelMA in three-dimensional printing further improves its applicability in drug delivery and developing complicated tissue constructs with spatial precision. Wound healing applications showcase GelMA hydrogels as bioactive dressings, fostering a conducive microenvironment for tissue regeneration. The inherent biocompatibility and tunable mechanical characteristics of GelMA provide its efficiency in the closure of wounds and tissue repair. GelMA hydrogels stand at the forefront of biomedical innovation, offering a versatile platform for addressing diverse challenges in drug delivery, tissue engineering, and wound healing. This review provides a comprehensive overview, fostering an in-depth understanding of GelMA hydrogel's potential impact on progressing biomedical sciences.

摘要

明胶甲基丙烯酰(GelMA)水凝胶作为生物医学领域的多功能生物材料得到了广泛认可。GelMA 水凝胶通过整合细胞黏附和基质金属蛋白酶响应肽基序,模拟天然细胞外基质的重要特征。这些特性使细胞能够在 GelMA 基水凝胶支架内增殖和扩散。此外,GelMA 在加工过程中具有灵活性,因为它在暴露于光辐射时会发生交联,支持具有可调节机械特性的水凝胶的开发。GelMA 水凝胶改变了药物输送领域,为治疗活性物质的控制和持续释放提供了有利的平台。GelMA 的可调物理化学特性能够精确调节药物释放的动力学,确保最佳的治疗效果。在组织工程中,GelMA 水凝胶在支架设计中起着重要作用,提供有利于细胞黏附、增殖和分化的仿生环境。将 GelMA 纳入三维打印进一步提高了其在药物输送和开发具有空间精度的复杂组织构建体中的适用性。伤口愈合应用将 GelMA 水凝胶展示为生物活性敷料,为组织再生营造有利的微环境。GelMA 的固有生物相容性和可调机械特性使其在伤口闭合和组织修复方面具有高效性。GelMA 水凝胶处于生物医学创新的前沿,为解决药物输送、组织工程和伤口愈合方面的各种挑战提供了一个多功能平台。本综述提供了全面的概述,深入了解 GelMA 水凝胶在推进生物医学科学方面的潜在影响。

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