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Tumor-on-a-chip: a microfluidic model to study cell response to environmental gradients

机译:肿瘤芯片:一种微流体模型,用于研究环境梯度的细胞反应

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摘要

Limited blood supply and rapid tumor metabolism within solid tumors leads to nutrient starvation, waste product accumulation and the generation of pH gradients across the tumor mass. These environmental conditions modify multiple cellular functions, including metabolism, proliferation, and drug response. However, capturing the spatial metabolic and phenotypic heterogeneity of the tumor with classic in vitro models remains challenging. Thus, in this work a microfluidic tumor slice model was developed to study cell behavior under metabolic starvation gradients. The presented microdevice comprises a central chamber where tumor cells were cultured in a 3D collagen hydrogel. A lumen on the flank of the chamber was used to perfuse media, mimicking the vasculature. Under these circumstances, tumor cell metabolism led to the generation of viability, proliferation and pH gradients. The model decoupled the influence of oxygen from other nutrients, revealing that cell necrosis at the core of the model could be explained by nutrient starvation. The microdevice can be disassembled to retrieve the cells from the desired locations to study molecular adaptions due to nutrient starvation. When exposed to these pH gradients and low nutrient conditions, cancer cells showed multiple changes in their gene expression profile depending on their distance from the lumen. Those cells located further from the lumen upregulated several genes related to stress and survival response, whereas genes related to proliferation and DNA repair were downregulated. This model may help to identify new therapeutic opportunities to target the metabolic heterogeneity observed in solid tumors.
机译:在实体肿瘤内有限血液供应和快速肿瘤代谢导致营养饥饿,废物产物积累和肿瘤质量上的pH梯度的产生。这些环境条件改变多种细胞功能,包括代谢,增殖和药物反应。然而,用经典的体外模型捕获肿瘤的空间代谢和表型异质性仍然具有挑战性。因此,在该工作中,开发了微流体肿瘤切片模型以在代谢饥饿梯度下研究细胞行为。所提出的Microdevice包括中央室,其中肿瘤细胞在3D胶原水凝胶中培养。腔室的侧翼上的一个内腔用于灌注介质,模仿脉管系统。在这种情况下,肿瘤细胞代谢导致生存率,增殖和pH梯度的产生。该模型与其他营养素的氧气对氧气的影响分离,揭示了模型核心的细胞坏死可以通过营养饥饿来解释。可以拆解微量微小,以从所需位置检索细胞以研究由于营养饥饿引起的分子适应。当暴露于这些pH梯度和低营养条件时,癌细胞在其基因表达分布中显示出根据其与腔的距离的多重变化。从腔内进一步静脉的那些细胞上调了与应激和存活反应相关的几种基因,而涉及增殖和DNA修复的基因是下调的。该模型可能有助于识别新的治疗机会以靶向在实体肿瘤中观察到的代谢异质性。

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