Bouhadir K H, Lee K Y, Alsberg E, Damm K L, Anderson K W, Mooney D J
Department of Biologic & Materials Sciences, University of Michigan, Ann Arbor, 48109, USA.
Biotechnol Prog. 2001 Sep-Oct;17(5):945-50. doi: 10.1021/bp010070p.
Alginate has been widely used in a variety of biomedical applications including drug delivery and cell transplantation. However, alginate itself has a very slow degradation rate, and its gels degrade in an uncontrollable manner, releasing high molecular weight strands that may have difficulty being cleared from the body. We hypothesized that the periodate oxidation of alginate, which cleaves the carbon-carbon bond of the cis-diol group in the uronate residue and alters the chain conformation, would result in promoting the hydrolysis of alginate in aqueous solutions. Alginate, oxidized to a low extent (approximately 5%), degraded with a rate depending on the pH and temperature of the solution. This polymer was still capable of being ionically cross-linked with calcium ions to form gels, which degraded within 9 days in PBS solution. Finally, the use of these degradable alginate-derived hydrogels greatly improved cartilage-like tissue formation in vivo, as compared to alginate hydrogels.
海藻酸盐已广泛应用于包括药物递送和细胞移植在内的各种生物医学应用中。然而,海藻酸盐本身的降解速率非常缓慢,其凝胶以不可控的方式降解,释放出可能难以从体内清除的高分子量链段。我们推测,海藻酸盐的高碘酸盐氧化作用,即裂解糖醛酸残基中顺式二醇基团的碳 - 碳键并改变链构象,会促进海藻酸盐在水溶液中的水解。氧化程度较低(约5%)的海藻酸盐,其降解速率取决于溶液的pH值和温度。这种聚合物仍能够与钙离子进行离子交联形成凝胶,该凝胶在PBS溶液中9天内降解。最后,与海藻酸盐水凝胶相比,这些可降解的海藻酸盐衍生水凝胶的使用极大地改善了体内软骨样组织的形成。