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基于半乳糖凝集素-3表达和定位的二维单层和三维球体培养中不同胆管癌细胞的迁移

Distinct cholangiocarcinoma cell migration in 2D monolayer and 3D spheroid culture based on galectin-3 expression and localization.

作者信息

Sukphokkit Siriwat, Kiatwuthinon Pichamon, Kumkate Supeecha, Janvilisri Tavan

机构信息

Department of Biochemistry, Faculty of Science, Mahidol University, Bangkok, Thailand.

Department of Biochemistry, Faculty of Science, Kasetsart University, Bangkok, Thailand.

出版信息

Front Oncol. 2023 Jan 12;12:999158. doi: 10.3389/fonc.2022.999158. eCollection 2022.

Abstract

INTRODUCTION

Cholangiocarcinoma (CCA) is difficult to cure due to its ineffective treatment and advanced stage diagnosis. Thoroughly mechanistic understandings of CCA pathogenesis crucially help improving the treatment success rates. Using three-dimensional (3D) cell culture platform offers several advantages over a traditional two-dimensional (2D) culture as it resembles more closely to tumor.

METHODS

Here, we aimed to establish the 3D CCA spheroids with lowly (KKU-100) and highly (KKU-213A) metastatic potentials to investigate the CCA migratory process and its EMT-associated galectin-3 in the 3D setting.

RESULTS AND DISCUSSION

Firstly, the growth of lowly metastatic KKU-100 cells was slower than highly metastatic KKU-213A cells in both 2D and 3D systems. Hollow formation was observed exclusively inside the KKU-213A spheroids, not in KKU-100. Additionally, the migration activity of KKU-213A cells was higher than that of KKU-100 cells in both 2D and 3D systems. Besides, altered expression of galectin-3 were observed across all CCA culture conditions with substantial relocalization from inside the 2D cells to the border of spheroids in the 3D system. Notably, the CCA migration was inversely proportional to the galectin-3 expression in the 3D culture, but not in the 2D setting. This suggests the contribution of culture platforms to the alternation of the CCA cell migration process.

CONCLUSIONS

Thus, our data revealed that 3D culture of CCA cells was phenotypically distinct from 2D culture and pointed to the superiority of using the 3D culture model for examining the CCA cellular mechanisms, providing knowledges that are better correlated with CCA phenotypes .

摘要

引言

胆管癌(CCA)由于治疗效果不佳和晚期诊断而难以治愈。深入了解CCA发病机制的机理对于提高治疗成功率至关重要。使用三维(3D)细胞培养平台比传统的二维(2D)培养具有多个优势,因为它更接近肿瘤状态。

方法

在此,我们旨在建立具有低转移潜能(KKU-100)和高转移潜能(KKU-213A)的3D CCA球体,以研究3D环境下CCA的迁移过程及其与上皮-间质转化相关的半乳凝素-3。

结果与讨论

首先,在二维和三维系统中,低转移的KKU-100细胞的生长均比高转移的KKU-213A细胞慢。仅在KKU-213A球体内部观察到空洞形成,而在KKU-100中未观察到。此外,在二维和三维系统中,KKU-213A细胞的迁移活性均高于KKU-100细胞。此外,在所有CCA培养条件下均观察到半乳凝素-3的表达改变,在三维系统中,其表达从二维细胞内部大量重新定位到球体边界。值得注意的是,在三维培养中,CCA迁移与半乳凝素-3表达成反比,但在二维环境中并非如此。这表明培养平台对CCA细胞迁移过程的改变有影响。

结论

因此,我们的数据表明,CCA细胞的三维培养在表型上与二维培养不同,并指出使用三维培养模型研究CCA细胞机制的优越性,提供了与CCA表型更好相关的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cb6/9881414/0947f004f95e/fonc-12-999158-g001.jpg

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