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Optimizing Prednisolone Loading into Distiller’s Dried Grain Kafirin Microparticles, and In vitro Release for Oral Delivery

机译:优化将泼尼松龙装载到酒糟的干燥谷物Kafirin微粒中的量,并通过体外释放进行口服给药

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摘要

Kafirin microparticles have potential as colon-targeted delivery systems because of their ability to protect encapsulated material from digestive processes of the upper gastrointestinal tract (GIT). The aim was to optimize prednisolone loading into kafirin microparticles, and investigate their potential as an oral delivery system. Response surface methodology (RSM) was used to predict the optimal formulation of prednisolone loaded microparticles. Prednisolone release from the microparticles was measured in simulated conditions of the GIT. The RSM models were inadequate for predicting the relationship between starting quantities of kafirin and prednisolone, and prednisolone loading into microparticles. Compared to prednisolone released in the simulated gastric and small intestinal conditions, no additional drug release was observed in simulated colonic conditions. Hence, more insight into factors affecting drug loading into kafirin microparticles is required to improve the robustness of the RSM model. This present method of formulating prednisolone-loaded kafirin microparticles is unlikely to offer clinical benefits over commercially available dosage forms. Nevertheless, the overall amount of prednisolone released from the kafirin microparticles in conditions simulating the human GIT demonstrates their ability to prevent the release of entrapped core material. Further work developing the formulation methods may result in a delivery system that targets the lower GIT.
机译:Kafirin微粒具有作为结肠靶向输送系统的潜力,因为它们能够保护封装材料免受上消化道(GIT)的消化过程影响。目的是优化泼尼松龙在kafirin微粒中的负载量,并研究其作为口服给药系统的潜力。响应面方法(RSM)用于预测泼尼松龙负载微粒的最佳配方。在GIT的模拟条件下测量了泼尼松龙从微粒中的释放。 RSM模型不足以预测kafirin和泼尼松龙的起始量与泼尼松龙装载入微粒之间的关系。与在模拟的胃和小肠条件下释放的泼尼松龙相比,在模拟的结肠条件下未观察到其他药物释放。因此,需要更多的洞察力来影响影响药物加载到kafirin微粒中的因素,以提高RSM模型的鲁棒性。配制泼尼松龙负载的kafirin微粒的本发明方法不太可能提供优于市售剂型的临床益处。然而,在模拟人GIT的条件下,从kafirin微粒释放的泼尼松龙的总量表明其具有防止被包裹的核心物质释放的能力。开发配方方法的进一步工作可能会导致以较低的GIT为目标的给药系统。

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