Using microfluidic and conventional platforms to evaluate the effects of lanthanides on spheroid formation

Yu Wen Cheng, Yu Chen Hsieh, Yung Shin Sun, Yu Hsun Wang, Ya Wen Yang, Kai Yin Lo

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摘要

Metastasis contributes to the increased mortality rate of cancer, but the intricate mechanisms remain unclear. Cancer cells from a primary tumor invade nearby tissues and access the lymphatic or circulatory system. If these cells manage to survive and extravasate from the vasculature into distant tissues and ultimately adapt to survive, they will proliferate and facilitate malignant tumor formation. Traditional two-dimensional (2D) cell cultures offer a rapid and convenient method for validating the efficacy of anticancer drugs within a reasonable cost range, but their utility is limited because of tumors’ high heterogeneity in vivo and spatial complexities. Three-dimensional (3D) cell cultures that mimic the physiological conditions of cancer cells in vivo have gained considerable interest. In these cultures, cells assemble into spheroids through gravity, magnetic forces, or their low-adhesion to the plates. Although these approaches address some of the limitations of 2D cultures, they often require a considerable amount of time and cost. Therefore, this study aims to enhance the effectiveness of 3D culture techniques by using microfluidic systems to provide a high-throughput and sensitive pipeline for drug screening. Using these systems, we studied the effects of lanthanide elements, which have garnered interest in cancer treatment, on spheroid formation and cell spreading. Our findings suggest that these elements alter the compactness of cell spheroids and decrease cell mobility.
原文英語
文章編號153931
期刊Toxicology
508
DOIs
出版狀態已發佈 - 11月 2024

Keywords

  • Cell spheroid
  • Lanthanide
  • Microfluidic chip
  • Three-dimensional cell cultures

ASJC Scopus subject areas

  • 毒理學

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