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3D Cultivation Techniques for Primary Human Hepatocytes

机译:原代人肝细胞的3D培养技术

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摘要

One of the main challenges in drug development is the prediction of in vivo toxicity based on in vitro data. The standard cultivation system for primary human hepatocytes is based on monolayer cultures, even if it is known that these conditions result in a loss of hepatocyte morphology and of liver-specific functions, such as drug-metabolizing enzymes and transporters. As it has been demonstrated that hepatocytes embedded between two sheets of collagen maintain their function, various hydrogels and scaffolds for the 3D cultivation of hepatocytes have been developed. To further improve or maintain hepatic functions, 3D cultivation has been combined with perfusion. In this manuscript, we discuss the benefits and drawbacks of different 3D microfluidic devices. For most systems that are currently available, the main issues are the requirement of large cell numbers, the low throughput, and expensive equipment, which render these devices unattractive for research and the drug-developing industry. A higher acceptance of these devices could be achieved by their simplification and their compatibility with high-throughput, as both aspects are of major importance for a user-friendly device.
机译:药物开发中的主要挑战之一是根据体外数据预测体内毒性。即使已知这些条件会导致肝细胞形态和肝特异性功能(如药物代谢酶和转运蛋白)的丧失,用于原代人肝细胞的标准培养系统也基于单层培养。正如已经证明的,嵌入在两层胶原之间的肝细胞保持其功能,已经开发了用于肝细胞3D培养的各种水凝胶和支架。为了进一步改善或维持肝功能,将3D培养与灌注相结合。在此手稿中,我们讨论了不同的3D微流体设备的优缺点。对于当前可用的大多数系统,主要问题是需要大量细胞,低通量和昂贵的设备,这使得这些设备对研究和药物开发行业没有吸引力。这些方面的简化和与高通量的兼容性可以实现对这些设备的更高接受,因为这两个方面对于用户友好型设备都至关重要。

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