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一体式微流控设计将血管化肿瘤球体整合到高通量平台中。

All-in-one microfluidic design to integrate vascularized tumor spheroid into high-throughput platform.

机构信息

Department of Mechanical Engineering, Seoul National University, Seoul, Republic of Korea.

Division of Hematology-Oncology, Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea.

出版信息

Biotechnol Bioeng. 2022 Dec;119(12):3678-3693. doi: 10.1002/bit.28221. Epub 2022 Sep 12.

Abstract

The development of a scalable and highly reproducible in vitro tumor microenvironment (TME) platform still sheds light on new insights into cancer metastasis mechanisms and anticancer therapeutic strategies. Here, we present an all-in-one injection molded plastic array three-dimensional culture platform (All-in-One-IMPACT) that integrates vascularized tumor spheroids for highly reproducible, high-throughput experimentation. This device allows the formation of self-assembled cell spheroids on a chip by applying the hanging drop method to the cell culture channel. Then, when the hydrogel containing endothelial cells and fibroblasts is injected, the spheroid inside the droplet can be patterned together in three dimensions along the culture channel. In just two steps above, we can build a vascularized TME within a defined area. This process does not require specialized user skill and minimizes error-inducing steps, enabling both reproducibility and high throughput of the experiment. We have successfully demonstrated the process, from spheroid formation to tumor vascularization, using patient-derived cancer cells (PDCs) as well as various cancer cell lines. Furthermore, we performed combination therapies with Taxol (paclitaxel) and Avastin (bevacizumab), which are used in standard care for metastatic cancer. The All-in-One IMPACT is a powerful tool for establishing various anticancer treatment strategies through the development of a complex TME for use in high-throughput experiments.

摘要

开发可扩展且高度可重复的体外肿瘤微环境(TME)平台仍然为深入了解癌症转移机制和抗癌治疗策略提供了新的见解。在这里,我们提出了一种集成血管化肿瘤球体的一体式注塑塑料阵列三维培养平台(All-in-One-IMPACT),可实现高度可重复、高通量的实验。该设备通过将悬滴法应用于细胞培养通道,在芯片上形成自组装细胞球体。然后,当注入含有内皮细胞和成纤维细胞的水凝胶时,液滴内的球体可以沿着培养通道在三维方向上一起成型。通过以上两个步骤,我们可以在定义的区域内构建血管化的 TME。这个过程不需要专门的用户技能,并且最小化了导致错误的步骤,从而实现了实验的可重复性和高通量。我们已经成功地使用源自患者的癌细胞(PDCs)以及各种癌细胞系演示了从球体形成到肿瘤血管生成的过程。此外,我们还进行了紫杉醇(紫杉醇)和贝伐单抗(bevacizumab)的联合治疗,这些药物在转移性癌症的标准治疗中使用。All-in-One-IMPACT 是一种强大的工具,通过开发用于高通量实验的复杂 TME,可以建立各种抗癌治疗策略。

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