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Microfluidic generation of physiological oxygen gradients in vitro

机译:体外微流产生生理学氧梯度

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Cancer progression normally creates intrinsic hypoxic or oxygen gradients within tumor lesions that further instigate metastasis. Despite the advancements, recreating physiological oxygen gradients in vitro remains challenging yet a necessary requirement to develop effective point of care (POC) technologies for elucidating cellular migratory or therapeutic responses for personalized treatments. Here, we report a unique method of generating stable and linear oxygen gradients using the split/recombine strategy within microfluidic devices. Internal glass coating ensures proper stabilization of oxygen gradient and prevents gaseous escape. Underlying PtOEPK sensor enables accurate and instantaneous detection of gradients in real-time. The versatility of this gradient platform encompasses a wide variety of biological and biomedical analyses such as cell viability, cell migration, drug resistance, and ER (endoplasmic reticulum) stress responses under hypoxia and many of these are currently being explored.
机译:癌症进展通常会在肿瘤病变内产生内在的低氧或氧梯度,从而进一步促进转移。尽管取得了这些进步,但在体外重建生理氧梯度仍然具有挑战性,但仍是开发有效的即时护理(POC)技术以阐明个性化治疗的细胞迁移或治疗反应的必要要求。在这里,我们报告了一种使用微流控设备内的拆分/重组策略生成稳定且线性的氧梯度的独特方法。内部玻璃涂层可确保氧梯度的适当稳定并防止气体逸出。下方的PtOEPK传感器可实现实时,准确的梯度检测。该梯度平台的多功能性涵盖了多种生物学和生物医学分析,例如在低氧条件下的细胞活力,细胞迁移,耐药性和ER(内质网)应激反应,目前正在探索其中的许多方法。

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