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首页> 外文期刊>Die Pharmazie >Soft corticosteroids for local immunosuppression: exploring the possibility for the use of loteprednol etabonate for islet transplantation.
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Soft corticosteroids for local immunosuppression: exploring the possibility for the use of loteprednol etabonate for islet transplantation.

机译:软皮质类固醇用于局部免疫抑制:探讨使用依托泊洛替诺酯进行胰岛移植的可能性。

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Transplantation of pancreatic islets into subcutaneous, neovascularized devices is one of the possibilities explored as part of our search for a cure of diabetes. We have recently reported that syngeneic transplantation in a subcutaneous prevascularized device can restore euglycemia and sustain long-term function in rats and that explanted grafts showed preserved islets and intense vascular networks. Because all of the transplanted tissue is localized within the device, if such a bioartificial pancreas approach is used, localized immunosuppression might provide sufficient protection against rejection to achieve long-term function, while also avoiding the serious systemic side effects and the susceptibility for opportunistic infections that are commonly associated with systemic immunosuppressive therapies as only much smaller and localized doses are needed. Soft steroids are obvious candidates because soft drugs are specifically designed to produce targeted local activity, but no systemic side effects due to prompt metabolic (preferably extrahepatic, e.g., hydrolytic) inactivation. However, local concentrations that are effective for immunosuppression, but non-toxic to insulin-producing beta-cells have to be found, and nontrivial difficulties related to long-term local deliverability have to be addressed. Here, we report preliminary results obtained using in vitro studies with human islets used to establish a tentative therapeutic concentration range together with fully scaled three-dimensional finite element method (FEM)-based Comsol multiphysics computational models that were used to explore various possibilities to achieve and maintain these concentration levels within the device.
机译:将胰岛移植到皮下的新血管化装置中是我们寻求治疗糖尿病的一种可能性。最近,我们报道了在皮下血管化装置中进行同种异体移植可以恢复大鼠的血糖正常并维持长期功能,而移植的移植物则显示出胰岛的保存和强烈的血管网络。因为所有移植的组织都位于设备内,所以如果使用这种生物人工胰腺方法,则局部免疫抑制可提供足够的保护以防止排斥反应以实现长期功能,同时还避免了严重的全身性副作用和机会性感染的易感性通常与全身性免疫抑制疗法有关,因为只需要小得多的局部剂量即可。软类固醇是显而易见的候选药物,因为软药物是专门设计用于产生靶向的局部活性,但不会由于迅速的代谢(最好是肝外,例如水解)失活而引起全身性副作用。然而,必须找到对免疫抑制有效但对产生胰岛素的β细胞无毒的局部浓度,并且必须解决与长期局部递送能力有关的非平凡困难。在这里,我们报告使用人类胰岛进行体外研究获得的初步结果,该胰岛用于建立初步的治疗浓度范围以及基于比例尺的三维有限元方法(FEM)的Comsol多物理场计算模型,用于探索各种实现可能性并保持设备内的这些浓度水平。

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