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微孔阵列上肺癌类器官的原位玻璃化

In Situ Vitrification of Lung Cancer Organoids on a Microwell Array.

作者信息

Liu Qiang, Zhao Tian, Wang Xianning, Chen Zhongyao, Hu Yawei, Chen Xiaofang

机构信息

Department of Thoracic Surgery, Beijing Haidian Hospital, Beijing 100080, China.

Beijing OrganoBio Corporation, Beijing 102206, China.

出版信息

Micromachines (Basel). 2021 May 28;12(6):624. doi: 10.3390/mi12060624.

Abstract

Three-dimensional cultured patient-derived cancer organoids (PDOs) represent a powerful tool for anti-cancer drug development due to their similarity to the in vivo tumor tissues. However, the culture and manipulation of PDOs is more difficult than 2D cultured cell lines due to the presence of the culture matrix and the 3D feature of the organoids. In our other study, we established a method for lung cancer organoid (LCO)-based drug sensitivity tests on the superhydrophobic microwell array chip (SMAR-chip). Here, we describe a novel in situ cryopreservation technology on the SMAR-chip to preserve the viability of the organoids for future drug sensitivity tests. We compared two cryopreservation approaches (slow freezing and vitrification) and demonstrated that vitrification performed better at preserving the viability of LCOs. Next, we developed a simple procedure for in situ cryopreservation and thawing of the LCOs on the SMAR-chip. We proved that the on-chip cryopreserved organoids can be recovered successfully and, more importantly, showing similar responses to anti-cancer drugs as the unfrozen controls. This in situ vitrification technology eliminated the harvesting and centrifugation steps in conventional cryopreservation, making the whole freeze-thaw process easier to perform and the preserved LCOs ready to be used for the subsequent drug sensitivity test.

摘要

三维培养的患者来源的癌症类器官(PDO)由于其与体内肿瘤组织相似,是抗癌药物开发的有力工具。然而,由于存在培养基质和类器官的三维特征,PDO的培养和操作比二维培养的细胞系更困难。在我们的另一项研究中,我们在超疏水微孔阵列芯片(SMAR-chip)上建立了基于肺癌类器官(LCO)的药物敏感性测试方法。在此,我们描述了一种在SMAR-chip上的新型原位冷冻保存技术,以保存类器官的活力用于未来的药物敏感性测试。我们比较了两种冷冻保存方法(慢速冷冻和玻璃化),并证明玻璃化在保存LCO活力方面表现更好。接下来,我们开发了一种在SMAR-chip上原位冷冻保存和解冻LCO的简单程序。我们证明芯片上冷冻保存的类器官可以成功复苏,更重要的是,与未冷冻的对照相比,对抗癌药物表现出相似的反应。这种原位玻璃化技术消除了传统冷冻保存中的收获和离心步骤,使整个冻融过程更易于操作,并且保存的LCO可随时用于后续药物敏感性测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e73/8227627/49022c00494f/micromachines-12-00624-g001.jpg

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