El-Husseiny Hussein M, Mady Eman A, El-Dakroury Walaa A, Doghish Ahmed S, Tanaka Ryou
Laboratory of Veterinary Surgery, Department of Veterinary Medicine, Faculty of Agriculture, Tokyo University of Agriculture and Technology, Fuchu, Japan.
Department of Surgery, Anesthesiology, and Radiology, Faculty of Veterinary Medicine, Benha University, Benha, Egypt.
Front Bioeng Biotechnol. 2023 Jun 28;11:1174075. doi: 10.3389/fbioe.2023.1174075. eCollection 2023.
Biomedicine and tissue regeneration have made significant advancements recently, positively affecting the whole healthcare spectrum. This opened the way for them to develop their applications for revitalizing damaged tissues. Thus, their functionality will be restored. Cardiac tissue engineering (CTE) using curative procedures that combine biomolecules, biomimetic scaffolds, and cells plays a critical part in this path. Stimuli-responsive hydrogels (SRHs) are excellent three-dimensional (3D) biomaterials for tissue engineering (TE) and various biomedical applications. They can mimic the intrinsic tissues' physicochemical, mechanical, and biological characteristics in a variety of ways. They also provide for 3D setup, adequate aqueous conditions, and the mechanical consistency required for cell development. Furthermore, they function as competent delivery platforms for various biomolecules. Many natural and synthetic polymers were used to fabricate these intelligent platforms with innovative enhanced features and specialized capabilities that are appropriate for CTE applications. In the present review, different strategies employed for CTE were outlined. The light was shed on the limitations of the use of conventional hydrogels in CTE. Moreover, diverse types of SRHs, their characteristics, assembly and exploitation for CTE were discussed. To summarize, recent development in the construction of SRHs increases their potential to operate as intelligent, sophisticated systems in the reconstruction of degenerated cardiac tissues.
近年来,生物医学和组织再生取得了重大进展,对整个医疗保健领域产生了积极影响。这为它们开发修复受损组织的应用开辟了道路。因此,它们的功能将得以恢复。使用结合生物分子、仿生支架和细胞的治疗程序的心脏组织工程(CTE)在这条道路上发挥着关键作用。刺激响应水凝胶(SRHs)是用于组织工程(TE)和各种生物医学应用的优秀三维(3D)生物材料。它们可以通过多种方式模拟内在组织的物理化学、机械和生物学特性。它们还提供三维结构、适宜的水性条件以及细胞生长所需的机械一致性。此外,它们还作为各种生物分子的有效递送平台。许多天然和合成聚合物被用于制造这些具有创新增强特性和适用于CTE应用的特殊能力的智能平台。在本综述中,概述了用于CTE的不同策略。阐述了传统水凝胶在CTE中使用的局限性。此外,还讨论了不同类型的SRHs、它们的特性、组装以及在CTE中的应用。总之,SRHs构建方面的最新进展增加了它们作为智能、复杂系统在退化心脏组织重建中发挥作用的潜力。