Park Keun-Hong, Akaike Toshihiro
Graduate School of Medical Engineering, Ajou University Wonchon-dong Paldal-gu, Suwon 442-749, Korea.
J Biochem. 2004 Feb;135(2):179-83. doi: 10.1093/jb/mvh021.
A derivative of sulfonylurea (SU) that mimics glibenclamide in chemical structure was synthesized and incorporated into a water-soluble polymeric backbone as a biospecific polymer for stimulating insulin secretion. In this study, a backbone polymer fluorescence-labeled with rodamine-B isothiocyanate was found to be strongly adsorbed onto MIN6 cells, probably due to its specific interaction mediated by SU receptors on the cell membrane. The intensity of fluorescence on the cells was significantly increased by increasing the incubation time and polymer concentration. To verify the specific interaction between the SU (K(+) channel closer)-incorporated copolymer and MIN6 cells, the cells were pretreated with diazoxide, an agonist of the ATP-sensitive K(+) channel (K(+) channel opener), before adding the polymer to the cell culture medium. This treatment suppressed the interaction between SU and MIN6 cells. A confocal laser microscopic study confirmed this effect. The results of this study provide evidence that SU-incorporated copolymer stimulates insulin secretion through the specific interactions of SU moieties in the polymer with MIN6 cells.
合成了一种在化学结构上模拟格列本脲的磺酰脲(SU)衍生物,并将其作为一种用于刺激胰岛素分泌的生物特异性聚合物纳入水溶性聚合物主链中。在本研究中,发现用异硫氰酸罗丹明B荧光标记的主链聚合物能强烈吸附在MIN6细胞上,这可能是由于其通过细胞膜上的SU受体介导的特异性相互作用所致。通过增加孵育时间和聚合物浓度,细胞上的荧光强度显著增加。为了验证掺入SU(钾通道关闭剂)的共聚物与MIN6细胞之间的特异性相互作用,在将聚合物添加到细胞培养基中之前,先用二氮嗪(一种ATP敏感性钾通道的激动剂,即钾通道开放剂)对细胞进行预处理。这种处理抑制了SU与MIN6细胞之间的相互作用。共聚焦激光显微镜研究证实了这种作用。本研究结果提供了证据,表明掺入SU的共聚物通过聚合物中SU部分与MIN6细胞的特异性相互作用来刺激胰岛素分泌。