Omidian Hossein, Chowdhury Sumana Dey, Wilson Renae L
Barry and Judy Silverman College of Pharmacy, Nova Southeastern University, Fort Lauderdale, FL 33328, USA.
Gels. 2024 Mar 30;10(4):238. doi: 10.3390/gels10040238.
This manuscript covers the latest advancements and persisting challenges in the domain of tissue engineering, with a focus on the development and engineering of hydrogel scaffolds. It highlights the critical role of these scaffolds in emulating the native tissue environment, thereby providing a supportive matrix for cell growth, tissue integration, and reducing adverse reactions. Despite significant progress, this manuscript emphasizes the ongoing struggle to achieve an optimal balance between biocompatibility, biodegradability, and mechanical stability, crucial for clinical success. It also explores the integration of cutting-edge technologies like 3D bioprinting and biofabrication in constructing complex tissue structures, alongside innovative materials and techniques aimed at enhancing tissue growth and functionality. Through a detailed examination of these efforts, the manuscript sheds light on the potential of hydrogels in advancing regenerative medicine and the necessity for multidisciplinary collaboration to navigate the challenges ahead.
本手稿涵盖了组织工程领域的最新进展和持续存在的挑战,重点是水凝胶支架的开发和工程设计。它强调了这些支架在模拟天然组织环境方面的关键作用,从而为细胞生长、组织整合提供支持性基质,并减少不良反应。尽管取得了重大进展,但本手稿强调在实现生物相容性、生物降解性和机械稳定性之间的最佳平衡方面仍在进行的努力,这对临床成功至关重要。它还探讨了3D生物打印和生物制造等前沿技术在构建复杂组织结构中的整合,以及旨在促进组织生长和功能的创新材料和技术。通过对这些努力的详细研究,本手稿揭示了水凝胶在推进再生医学方面的潜力以及多学科合作应对未来挑战的必要性。