Perez-Puyana Victor, Jiménez-Rosado Mercedes, Romero Alberto, Guerrero Antonio
Departamento de Ingeniería Química, Facultad de Química, Universidad de Sevilla, 41012 Sevilla, Spain.
Departamento de Ingeniería Química, Escuela Politécnica Superior, Universidad de Sevilla, 41011 Sevilla, Spain.
Polymers (Basel). 2020 May 17;12(5):1146. doi: 10.3390/polym12051146.
Regenerative medicine is increasingly focused on the development of biomaterials that facilitate cell adhesion and proliferation through the use of natural polymers, which have better biocompatibility and biodegradability. In this way, the use of hydrogels has been considered as a potential option for tissue engineering due to their physical and chemical characteristics. However, few studies associate the raw materials properties and processing conditions with the final characteristics of hydrogels, which could condition their use as scaffolds for tissue engineering. In this context, the main objective of this work was the evaluation of type I collagen as raw material for the elaboration of hydrogels. In addition, gelation time, pH and temperature were evaluated as the most influential variables in the hydrogel processing method by rheological (time, strain and frequency sweep tests) and microstructural (Cryo-SEM) measurements. The results indicate that it is possible to obtain collagen hydrogels with adequate rheological and microstructural characteristics by selecting optimal processing conditions. However, further studies are necessary to assess their suitability for cell accommodation and growth.
再生医学越来越关注通过使用具有更好生物相容性和生物降解性的天然聚合物来开发促进细胞粘附和增殖的生物材料。通过这种方式,由于水凝胶的物理和化学特性,其被认为是组织工程的一种潜在选择。然而,很少有研究将原材料特性和加工条件与水凝胶的最终特性联系起来,而这些最终特性可能会决定它们作为组织工程支架的用途。在此背景下,本研究的主要目的是评估I型胶原蛋白作为制备水凝胶的原材料。此外,通过流变学(时间、应变和频率扫描测试)和微观结构(低温扫描电子显微镜)测量,将凝胶化时间、pH值和温度评估为水凝胶加工方法中最具影响力的变量。结果表明,通过选择最佳加工条件,可以获得具有适当流变学和微观结构特性的胶原蛋白水凝胶。然而,需要进一步研究以评估它们对细胞容纳和生长的适用性。