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Freeform Bioprinting of Liver Encapsulated in Alginate Hydrogels Tissue Constructs for Pharmacokinetic Study

机译:肝脏肝脏肝脏的自由形式生物印刷,用于药代动力学研究的组织构建体

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An in vitro model that can be realistically and inexpensively used to predict human response to various drug administration and toxic chemical exposure is needed. By fabricating a microscale 3D physiological tissue construct consisting of an array of channels and tissue-embedded chambers, one can selectively develop various biomimicking mammalian tissues for a number of pharmaceutical applications, for example, experimental pharmaceutical screening for drug efficacy and toxicity along with apprehending the disposition and metabolic profile of a candidate drug. This paper addresses issues relating to the development and implementation of a bioprinting process for freeform fabrication of a 3D cell-encapsulated hydrogel-based tissue construct, the direct integration onto a microfluidic device for pharmacokinetic study, and the underlying engineering science for the fabrication of a 3D microscale tissue chamber as well as its application in pharmacokinetic study. To this end, a prototype 3D microfluidic tissue chamber embedded with liver cells encapsulated within a hydrogel matrix construct is bioprinted as a physiological in vitro model for pharmacokinetic study. The developed fabrication processes are further validated and parameters optimized by assessing cell viability and liver cell phenotype, in which metabolic and synthetic liver functions are quantitated.
机译:需要实际和廉价地用于预测对各种药物施用和有毒化学曝光的人类反应的体外模型。通过制造由一系列通道和组织嵌入的室组成的微观3D生理组织构建体,可以选择性地为许多药物应用选择性地开发各种生物剥皮哺乳动物组织,例如用于药物疗效和毒性以及逮捕的实验药物筛选候选药物的处理和代谢概况。本文解决了与围绕基于水凝胶基组织构建的自由形式制备的自由形式制备的生物印刷工艺的发布,直接集成到药代动力学研究的微流体装置上,以及制造A的基础工程科学3D微观组织室及其在药代动力学研究中的应用。为此,嵌入嵌入包裹在水凝胶基质构建体内的肝细胞的原型3D微流体组织室是生物制造的药代动力学研究的生理体外模型。通过评估细胞活力和肝细胞表型,进一步验证开发的制造方法,并通过评估细胞活力和肝细胞表型优化的参数,其中定量代谢和合成肝功能。

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