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Generation and Functional Assessment of 3D Multicellular Spheroids in droplet based Microfluidics Platform

机译:基于微流控平台的3D多细胞球体的生成和功能评估

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摘要

Here we describe a robust, microfluidic technique to generate and analyze 3D tumor spheroids, which resembles tumor microenvironment and can be used as a more effective preclinical drug testing and screening model. Monodisperse cell-laden alginate droplets were generated in Polydimethylsiloxane (PDMS) microfluidic devices that combine T-junction droplet generation and external gelation for spheroid formation. The proposed approach has the capability to incorporate multiple cell types. For the purposes of our study, we generated spheroids with breast cancer cell lines (MCF-7 drug sensitive and resistant) and co-culture spheroids of MCF-7 together with a fibroblast cell line (HS-5). The device has the capability to house 1000 spheroids on chip for drug screening and other functional analysis. Cellular viability of spheroids in the array part of the device was maintained for two weeks by continuous perfusion of complete media into the device. The functional performance of our 3D tumor models and a dose dependent response of standard chemotherapeutic drug, Doxorubicin (Dox) and standard drug combination Dox and Paclitaxel (PCT) was analyzed on our chip-based platform. Altogether, our work provides a simple and novel, in vitro platform to generate, image and analyze uniform, 3D monodisperse Alginate hydrogel tumors for various Omic studies and therapeutic efficiency screening, an important translational step before in vivo studies.
机译:在这里,我们描述了一种强大的微流体技术来生成和分析3D肿瘤球体,该技术类似于肿瘤微环境,可以用作更有效的临床前药物测试和筛选模型。在聚二甲基硅氧烷(PDMS)微流体装置中产生了单分散的含细胞藻酸盐液滴,该装置将T结液滴的产生和外部胶凝结合起来形成球体。所提出的方法具有合并多种小区类型的能力。为了我们的研究目的,我们生成了具有乳腺癌细胞系(MCF-7对药物敏感和耐药)的球体,以及MCF-7与成纤维细胞系(HS-5)共同培养的球体。该设备能够在芯片上容纳1000个球状体,以进行药物筛选和其他功能分析。通过将完整的培养基连续灌注到装置中,将球状体在装置阵列部分中的细胞生存力维持两周。在基于芯片的平台上分析了我们3D肿瘤模型的功能性能以及标准化疗药物,阿霉素(Dox)以及标准药物组合Dox和紫杉醇(PCT)的剂量依赖性反应。总之,我们的工作提供了一个简单而新颖的体外平台,用于生成,成像和分析均匀的3D单分散藻酸盐水凝胶肿瘤,以进行各种Omic研究和治疗效率筛选,这是体内研究之前的重要翻译步骤。

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