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The glucose-sensitive nanocarrier based on phenylboronic acid

机译:基于苯基硼酸的葡萄糖敏感纳米载体

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Recently, diabetes mellitus has become one of the most serious diseases that threat to human health and even life following cancer and cardiovascular disease. Thus, the developments of efficient insulin administration exhibit great practical significance. However, insulin, which could low blood concentration rapidly, cannot be oral delivery due to very low oral bioavailability for the pure absorption through the gastrointestinal epithelium as well as the rapid hydrolytic and enzymatic degradation in contact with the gastrointestinal fluids. While the frequent administration of exogenous insulin by injection everyday is not perfect due to the inevitable pain, which will cause inflammation, lumps and nodules. In recently, the glucose-responsive insulin delivery system (GRIDS) is developing rapidly which not only has high bioavailability of insulin but also extenuates the pain of diabetics caused by frequent insulin injection. GRIDS is expected to be a promising therapy approach to replace the frequent insulin injection administration. Therefore, the exploited intelligent glucose-responsive insulin delivery system has significant practical application for diabetes treatment.
机译:最近,糖尿病已成为癌症和心血管疾病后威胁到人类健康甚至生活中最严重的疾病之一。因此,高效胰岛素给药的发展表现出具有巨大的实际意义。然而,由于通过胃肠上皮的纯度吸收的非常低的口服生物利用度以及与胃肠流体接触的快速水解和酶促降解,胰岛素不能迅速地迅速地进行血液浓度,不能是口服递送。虽然每天注射频繁管理外源性胰岛素由于不可避免的疼痛而言并不完美,但会导致炎症,肿块和结节。最近,葡萄糖响应性胰岛素递送系统(栅格)正在迅速发展,这不仅具有胰岛素的高生物利用度,而且引起常见胰岛素注射蛋白引起的糖尿病患者的疼痛。预计网格将是一种有前途的治疗方法来取代常见的胰岛素注射给药。因此,利用智能葡萄糖响应胰岛素输送系统对糖尿病治疗具有显着的实际应用。

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