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A tuneable microfluidic system for long duration chemotaxis experiments in a 3D collagen matrix

机译:一种可调微流体系统,在3D胶原基质中长期趋化性实验

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摘要

In many cell types, migration can be oriented towards a chemical stimulus. In mammals, for example, embryonic cells migrate to follow developmental cues, immune cells migrate toward sites of inflammation, and cancer cells migrate away from the primary tumour and toward blood vessels during metastasis. Understanding how cells migrate in 3D environments in response to chemical cues is thus crucial to understanding directed migration in normal and disease states. To date, chemotaxis in mammalian cells has been primarily studied using 2D migration models. However, it is becoming increasingly clear that the mechanisms by which cells migrate in 2D and 3D environments dramatically differ, and cells in their native environments are confronted with a complex chemical milieu. To address these issues, we developed a microfluidic device to monitor the behaviour of cells embedded in a 3D collagen matrix in the presence of complex concentration fields of chemoattractants. This tuneable microsystem enables the generation of (1) homogeneous, stationary gradients set by a purely diffusive mechanism, or (2) spatially evolving, stationary gradients, set by a convection-diffusion mechanism. The device allows for stable gradients over several days and is large enough to study the behaviour of large cell aggregates. We observe that primary mature dendritic cells respond uniformly to homogeneous diffusion gradients, while cell behaviour is highly position-dependent in spatially variable convection- diffusion gradients. In addition, we demonstrate a directed response of cancer cells migrating away from tumour-like aggregates in the presence of soluble chemokine gradients. Together, this microfluidic device is a powerful system to observe the response of different cells and aggregates to tuneable chemical gradients.
机译:在许多细胞类型中,迁移可以朝向化学刺激定向。例如,在哺乳动物中,胚胎细胞迁移到追随发育线索,免疫细胞迁移到炎症部位,并且在转移期间癌细胞迁移远离原发性肿瘤和血管。了解如何响应化学提示在3D环境中迁移的细胞是至关重要的,以了解正常和疾病状态的指示迁移。迄今为止,已经使用2D迁移模型研究了哺乳动物细胞中的趋化性。然而,它越来越明显,细胞在2D和3D环境中迁移的机制急剧地不同,并且在其本地环境中的细胞面对复杂的化学环境。为了解决这些问题,我们开发了一种微流体装置,以监测嵌入在3D胶原基质中的细胞的行为在校有趋化子的复合浓度场的存在下。这种可调显微系统通过纯粹的扩散机制,或(2)空间不断发展,静止梯度,通过对流扩散机构设定的产生(1)均匀的,固定梯度。该装置允许在几天内稳定梯度并且足够大,以研究大细胞聚集体的行为。我们观察到初级成熟树突细胞均匀地响应均匀扩散梯度,而细胞行为在空间可变对流扩散梯度方面具有高度位置。此外,我们证明了在可溶性趋化因子梯度存在下迁移远离肿瘤的聚集体的癌细胞的定向反应。这种微流体装置在一起是一种强大的系统,可以观察不同细胞和聚集到可调化学梯度的响应。

著录项

  • 来源
    《Lab on a chip》 |2017年第22期|共11页
  • 作者单位

    PSL Res Univ CNRS UMR 8231 Lab Colloides &

    Mat Div Chem Biol &

    Innovat ESPCI Paris 10 Rue Vauquelin F-75005 Paris France;

    PSL Res Univ CNRS Inst Curie UMR 144 F-75005 Paris France;

    PSL Res Univ CNRS Inst Curie UMR 144 F-75005 Paris France;

    PSL Res Univ CNRS Inst Curie UMR 144 F-75005 Paris France;

    PSL Res Univ CNRS UMR 8231 Lab Colloides &

    Mat Div Chem Biol &

    Innovat ESPCI Paris 10 Rue Vauquelin F-75005 Paris France;

    PSL Res Univ CNRS Inst Curie UMR 144 F-75005 Paris France;

    PSL Res Univ CNRS UMR 8231 Lab Colloides &

    Mat Div Chem Biol &

    Innovat ESPCI Paris 10 Rue Vauquelin F-75005 Paris France;

    PSL Res Univ CNRS Inst Curie UMR 144 F-75005 Paris France;

    PSL Res Univ CNRS UMR 8231 Lab Colloides &

    Mat Div Chem Biol &

    Innovat ESPCI Paris 10 Rue Vauquelin F-75005 Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学实验(实验化学);生物化学;生物科学;化学;
  • 关键词

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