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.
Int J Biol Macromol. 2019 Oct 15;139:262-269. doi: 10.1016/j.ijbiomac.2019.07.198. Epub 2019 Jul 30.
The development of biodegradable scaffolds able to support cell growth has recently become of great importance. Therefore, the main objective of this work was the development of hybrid scaffolds made from the mixture of two biopolymers (collagen and chitosan) and the comparison of the effect of glutaraldehyde as crosslinking agent with three different crosslinking methods (chemical: genipin; physical: temperature and enzymatic: transglutaminase) in order to look for a promising candidate to substitute it. To achieve this purpose, the mechanical properties, structure, porosity, degree of crosslinking and swelling of the different scaffolds were assessed. The best ratio of biopolymers (collagen:chitosan) to form hybrid scaffolds was 1:1, which improve their mechanical and morphological properties compared to unitary scaffolds (only collagen or chitosan). In addition, the incorporation of 10% w/w transglutaminase (crosslinking agent) with respect to the mass of biopolymers made these scaffolds a good structure for the growth and proliferation of cells.
最近,能够支持细胞生长的可生物降解支架的开发变得非常重要。因此,这项工作的主要目标是开发由两种生物聚合物(胶原和壳聚糖)混合物制成的混合支架,并比较戊二醛作为交联剂与三种不同交联方法(化学:京尼平;物理:温度和酶:谷氨酰胺转胺酶)的效果,以期寻找有前途的替代品。为了实现这一目的,评估了不同支架的机械性能、结构、孔隙率、交联度和溶胀度。形成混合支架的最佳生物聚合物(胶原:壳聚糖)比例为 1:1,与单一支架(仅胶原或壳聚糖)相比,其机械和形态性能得到了改善。此外,相对于生物聚合物的质量,加入 10wt%w/w 的谷氨酰胺转胺酶(交联剂)使得这些支架成为细胞生长和增殖的良好结构。