Basha Marino, Aburub Ahmad, Karageorgos Filippos F, Tsoulfas Georgios, Alexopoulos Aleck H
Department of Transplantation Surgery, Center for Research and Innovation in Solid Organ Transplantation, School of Medicine, Aristotle University of Thessaloniki, 54642 Thessaloniki, Greece.
Chemical Process & Energy Resources Institute, 6th Km Harilaou-Thermi Rd., P.O. Box 60361, 57001 Thessaloniki, Greece.
Gels. 2025 Jun 16;11(6):460. doi: 10.3390/gels11060460.
Gelatin, a biocompatible and biodegradable polymer, has garnered considerable attention in tissue engineering (TE) due to its diverse applications enabled by its tunable physical properties. Among the various strategies employed for the fabrication of gelatin-based hydrogels, the use of horseradish peroxidase (HRP) and hydrogen peroxide (HO) as a catalytic system has been highlighted as an effective tool for producing hydrogels with highly modifiable properties. Herein, we explore recent progress in the utilization of the HRP/HO catalytic system for the creation of gelatin-based hydrogels, with an emphasis on TE applications. Particular attention has been given to the interplay between variations in the concentration equilibrium of HRP and HO and the fine-tuning of gel properties tailored for various TE applications. Emerging trends, such as in situ gelation and hybrid bioinks, have also been examined through the lens of their prospective applications, extrapolating from the findings in cell cultures and animal models. A comprehensive review of two databases (Scopus and Web of Science) was conducted. The data extracted from each study included the materials used for each application, methods used for material preparation, cells used in the TE application, laboratory animals used, and whether computational/simulation techniques were implemented. The applications included both homopolymeric hydrogels, using only gelatin as the backbone, and copolymeric hydrogels, with ≥2 polymers.
明胶是一种生物相容性和可生物降解的聚合物,由于其可调节的物理性质使其具有多种应用,因此在组织工程(TE)领域备受关注。在用于制备明胶基水凝胶的各种策略中,使用辣根过氧化物酶(HRP)和过氧化氢(HO)作为催化体系已被视为制备具有高度可修饰性质水凝胶的有效工具。在此,我们探讨了利用HRP/HO催化体系制备明胶基水凝胶的最新进展,重点关注其在组织工程中的应用。特别关注了HRP和HO浓度平衡的变化与针对各种组织工程应用定制的凝胶性质微调之间的相互作用。还通过细胞培养和动物模型中的研究结果,从其潜在应用的角度审视了原位凝胶化和混合生物墨水等新兴趋势。对两个数据库(Scopus和Web of Science)进行了全面综述。从每项研究中提取的数据包括每种应用所使用的材料、材料制备方法、组织工程应用中使用的细胞、所使用的实验动物以及是否实施了计算/模拟技术。这些应用既包括仅以明胶为骨架的均聚物水凝胶,也包括含有≥2种聚合物的共聚物水凝胶。