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Microfabrication technologies for oral drug delivery

机译:口服药物的微细加工技术

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摘要

Micro-anoscale technologies such as lithographic techniques and microfluidics offer promising avenues to revolutionalize the fields of tissue engineering, drug discovery, diagnostics and personalized medicine. Microfabrication techniques are being explored for drug delivery applications due to their ability to combine several features such as precise shape and size into a single drug delivery vehicle. They also offer to create unique asymmetrical features incorporated into single or multiple reservoir systems maximizing contact area with the intestinal lining. Combined with intelligent materials, such microfabricated platforms can be designed to be bioadhesive and stimuli-responsive. Apart from drug delivery devices, microfabrication technologies offer exciting opportunities to create biomimetic gastrointestinal tract models incorporating physiological cell types, flow patterns and brush-border like structures. Here we review the recent developments in this field with a focus on the applications of microfabrication in the development of oral drug delivery devices and biomimetic gastrointestinal tract models that can be used to evaluate the drug delivery efficacy.
机译:诸如光刻技术和微流控技术之类的微/纳米技术为革新组织工程,药物发现,诊断和个性化医学领域提供了有希望的途径。由于微制造技术能够将诸如精确形状和尺寸之类的多个特征组合到单个药物运输工具中,因此正在探索用于药物运输应用的微制造技术。它们还提供了创建独特的不对称特征的功能,这些特征并入了单个或多个储液器系统中,从而最大程度地增加了与肠壁的接触面积。结合智能材料,可以将这种微加工平台设计为具有生物粘附性和刺激性。除药物输送装置外,微细加工技术还提供了令人兴奋的机会来创建仿生胃肠道模型,这些模型结合了生理细胞类型,流动模式和刷状边界结构。在这里,我们回顾该领域的最新发展,重点是微型制造在可用于评估药物输送功效的口服药物输送装置和仿生胃肠道模型开发中的应用。

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