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A simple integrated microfluidic platform for the research of hydrogels containing gradients in cell density induced breast cancer electrochemotherapy. | LitMetric

A simple integrated microfluidic platform for the research of hydrogels containing gradients in cell density induced breast cancer electrochemotherapy.

Talanta

Department of Chemical Engineering & Pharmaceutical Engineering, College of Chemical Engineering, Huaqiao University, Xiamen, 361021, PR China.

Published: February 2023

AI Article Synopsis

  • Cell density plays a crucial role in tumor metastasis, treatment responses, and patient prognosis, making it essential for therapy optimization.
  • A novel microfluidic platform was created to examine how cell density affects electrochemotherapy (ECT) using agarose as an extracellular matrix to replicate the in vivo environment.
  • The study found that tumor cell density significantly influences ECT effectiveness, with low cell densities showing that extracellular matrix factors become critical for ECT cytotoxicity, paving the way for advancements in clinical testing and drug development.

Article Abstract

Cell density is important for tumour metastasis, treatment and prognosis. Characterizing changes in cell density for electrochemotherapy (ECT) can reveal sub-populations in pathological states, and adjust treatment program. In this work, a simple and convenient microfluidic platform was developed to study the effect cell density on ECT by integrating the improved cell gradient generator, cell culture chamber and indium tin oxide interdigital electrodes. Agarose, as extracellular matrix (ECM), was used to 3D cell culture to imitate in vivo microenvironment. The precision and reproducibility of cell density gradient with agarose solution were achieved because the hydrophobic modification of microchannels surface resulted in reducing cell adhesion and residue. ECT cytotoxicity assay with difference in cell densities was studied. The results showed that tumour cell density is one of the most factors for ECT treatment and ECT cytotoxicity has a certain of cell density-depended. But only electroporation on low cell density level, ECM would be one of the most key factors for ECT cytotoxicity, which would provide a new idea for chip-based cell assay in clinical diagnosis and drug screening in ordinary laboratories.

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Source
http://dx.doi.org/10.1016/j.talanta.2022.123920DOI Listing

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