Mazumder M A Jafar, Burke Nicholas A D, Shen Feng, Potter Murray A, Stöver Harald D H
Department of Chemistry, McMaster University, Hamilton, Ontario, Canada.
Biomacromolecules. 2009 Jun 8;10(6):1365-73. doi: 10.1021/bm801330j.
Self-cross-linkable polyelectrolyte pairs comprised of poly(methacrylic acid, sodium salt-co-2-[methacryloyloxy]ethyl acetoacetate) (70:30 mol ratio, A70) and poly-L-lysine are incorporated into CaAlg beads to form either a covalently cross-linked shell or a core-cross-linked bead. In both cases the reactive polyanion is added to a solution of sodium alginate that may contain live cells and dropped into a calcium chloride gelling bath. Subsequent exposure to poly-L-lysine (15-30 kDa) leads to formation of a cross-linked shell, while exposure to lower molecular weight poly-L-lysine (4-15 kDa) leads to formation of an interpenetrating matrix of covalently cross-linked synthetic polymer within the CaAlg template. The resulting spherical composites are resistant to chemical and mechanical stress yet remain cyto-compatible. This approach to cell-encapsulation may be useful for cell immuno-isolation in therapeutic cell transplants.
由聚(甲基丙烯酸、钠盐-co-2-[甲基丙烯酰氧基]乙基乙酰乙酸酯)(摩尔比70:30,A70)和聚-L-赖氨酸组成的可自交联聚电解质对被掺入到海藻酸钙珠粒中,以形成共价交联的壳层或核交联珠粒。在这两种情况下,将反应性聚阴离子添加到可能含有活细胞的海藻酸钠溶液中,并滴入氯化钙凝胶浴中。随后暴露于聚-L-赖氨酸(15 - 30 kDa)会导致形成交联壳层,而暴露于较低分子量的聚-L-赖氨酸(4 - 15 kDa)会导致在海藻酸钙模板内形成共价交联合成聚合物的互穿基质。所得的球形复合材料对化学和机械应力具有抗性,但仍保持细胞相容性。这种细胞封装方法可能对治疗性细胞移植中的细胞免疫隔离有用。