Shen Lirui, Tian Zhenhua, Liu Wentao, Li Guoying
The Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University , Chengdu, PR China and.
Connect Tissue Res. 2015 Jun;56(3):244-52. doi: 10.3109/03008207.2015.1020941. Epub 2015 Mar 9.
Collagen gels from Southern catfish (Silurus meridionalis Chen) skins were prepared via the self-assembly of collagen molecules and simultaneous cross-linking with the N-hydroxysuccinimide adipic acid derivative (NHS-AA). The doses of NHS-AA were converted to [NHS-AA]/[NH2] ratios (0.025-1.6, calculated by the [active ester group] of NHS-AA and [ε-NH2] of lysine and hydroxylysine residues of collagen). When the ratio < 0.05, collagen gels were formed by collagen molecule self-assembly, resulting in the opalescent appearance of collagen gels and the characteristic D-periodicity of partial collagen fibrils, the collagen gel ([NHS-AA]/[NH2] = 0.05) displayed a small increase in denaturation temperature (Td, 42.8 °C), remaining weight (12.59%), specific water content (SWC 233.7) and elastic modulus (G' 128.4 Pa) compared with uncross-linked collagen gel (39.1 °C, 9.12%, 222.4 and 85.4 Pa, respectively). As the ratio > 0.05, disappearance of D-periodicity and a gradual change in appearance from opalescent to transparent suggested that the inhibition of NHS-AA in the self-assembly of collagen molecules was more obvious. As a result, the collagen gel ([NHS-AA]/[NH2] = 0.2) had the lowest Td (35.8 °C), remaining weight (7.96%), SWC (130.9) and G' (31.9 Pa). When the ratio was 1.6, the collagen molecule self-assembly was markedly suppressed and the formation of collagen gel was predominantly via the covalent cross-linking bonds which led to the transparent appearance, and the maximum values of Td (47.0 °C), remaining weight (45.92%) and G' (420.7 Pa) of collagen gel. These results indicated that collagen gels with different properties can be prepared using different NHS-AA doses.
通过胶原分子的自组装以及与N-羟基琥珀酰亚胺己二酸衍生物(NHS-AA)的同时交联,制备了南方鲇(Silurus meridionalis Chen)鱼皮胶原凝胶。将NHS-AA的剂量转换为[NHS-AA]/[NH2]比率(0.025 - 1.6,通过NHS-AA的[活性酯基团]以及胶原中赖氨酸和羟赖氨酸残基的[ε-NH2]计算得出)。当该比率<0.05时,胶原凝胶通过胶原分子自组装形成,导致胶原凝胶呈现乳白色外观以及部分胶原原纤维具有特征性的D周期,与未交联的胶原凝胶(分别为39.1℃、9.12%、222.4和85.4 Pa)相比,胶原凝胶([NHS-AA]/[NH2] = 0.05)的变性温度(Td,42.8℃)、剩余重量(12.59%)、比含水量(SWC 233.7)和弹性模量(G' 128.4 Pa)略有增加。当比率>0.05时,D周期消失且外观从乳白色逐渐变为透明,这表明NHS-AA对胶原分子自组装的抑制作用更为明显。结果,胶原凝胶([NHS-AA]/[NH2] = 0.2)具有最低的Td(35.8℃)、剩余重量(7.96%)、SWC(130.9)和G'(31.9 Pa)。当比率为1.6时,胶原分子自组装受到显著抑制,胶原凝胶的形成主要通过共价交联键,这导致了透明外观,以及胶原凝胶的Td(47.0℃)、剩余重量(45.92%)和G'(420.7 Pa)的最大值。这些结果表明,使用不同剂量的NHS-AA可以制备出具有不同性质的胶原凝胶。