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Multi-Organ toxicity demonstration in a functional human in vitro system composed of four organs

机译:由四个器官组成的功能性人体体外系统中的多器官毒性演示

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We report on a functional human model to evaluate multi-organ toxicity in a 4-organ system under continuous flow conditions in a serum-free defined medium utilizing a pumpless platform for 14 days. Computer simulations of the platform established flow rates and resultant shear stress within accepted ranges. Viability of the system was demonstrated for 14 days as well as functional activity of cardiac, muscle, neuronal and liver modules. The pharmacological relevance of the integrated modules were evaluated for their response at 7 days to 5 drugs with known side effects after a 48 hour drug treatment regime. The results of all drug treatments were in general agreement with published toxicity results from human and animal data. The presented phenotypic culture model exhibits a multi-organ toxicity response, representing the next generation of in vitro systems, and constitutes a step towards an in vitro "human-on-a-chip" assay for systemic toxicity screening.
机译:我们报告一个功能的人体模型,以评估在一个连续的条件下,在无血清定义的培养基中,利用无泵平台连续培养14天,在4器官系统中的多器官毒性。平台的计算机模拟可在可接受的范围内建立流速和剪切应力。证明该系统具有14天的生存能力,以及心脏,肌肉,神经元和肝脏模块的功能活动。在48小时药物治疗方案后,评估了集成模块在7天对5种具有已知副作用的药物的反应的药理学相关性。所有药物治疗的结果与人和动物数据公布的毒性结果总体上是一致的。提出的表型培养模型表现出多器官毒性反应,代表下一代体外系统,并且构成了朝着用于系统毒性筛选的体外“芯片上人”测定迈出的一步。

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