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Mimicking and surpassing the xenograft model with cancer-on-chip technology

机译:用脑膜癌技术模拟和超越异种移植模型

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摘要

Organs-on-chips are in vitro models in which human tissues are cultured in microfluidic compartments with a controlled, dynamic micro-environment. Specific organs-on-chips are being developed to mimic human tumors, but the validation of such ‘cancer-on-chip’ models for use in drug development is hampered by the complexity and variability of human tumors. An important step towards validation of cancer-on-chip technology could be to first mimic cancer xenograft models, which share multiple characteristics with human cancers but are significantly less complex. Here we review the relevant biological characteristics of a xenograft tumor and show that organ-on-chip technology is capable of mimicking many of these aspects. Actual comparisons between on-chip tumor growth and xenografts are promising but also demonstrate that further development and empirical validation is still needed. Validation of cancer-on-chip models to xenografts would not only represent an important milestone towards acceptance of cancer-on-chip technology, but could also improve drug discovery, personalized cancer medicine, and reduce animal testing.
机译:碎片是芯片的体外模型,其中人体组织在具有受控的动态微环境中的微流体隔室培养。正在开发特定的器官芯片以模仿人类肿瘤,但通过人类肿瘤的复杂性和可变性,这种“芯片片”用于药物开发的模型的验证是受到阻碍的。探讨脑内技术验证的一个重要步骤可以是第一模拟癌症异种移植型号,其与人类癌症分享多种特征,但显着较差。在这里,我们审查了异种移植肿瘤的相关生物学特征,并表明片内技术能够模仿许多这些方面。片上肿瘤生长和异种移植物之间的实际比较很有前景,但也表明仍然需要进一步的发展和经验验证。对脑药移植物的癌细模型的验证不仅可以代表接受芯片技术的重要里程碑,而且还可以改善药物发现,个性化癌症药物和降低动物测试。

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