Human colon tumor-on-a-chip based on magnetic microcontainers encapsulated cancer spheroids
Hongzheng Li, Xiang Lin, Junqi Zhao, Junqi Zhao, Luoran Shang, Yuanjin Zhao, Weijian Sun
Wenzhou Medical University First Affiliated Hospital of Wenzhou Medical University Ministry of Science and Technology
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Tumor-on-a-chip platforms are increasingly recognized as promising preclinical tools for developing personalized therapies. However, effectively recapitulating tumor heterogeneity, three-dimensional architecture, and the dynamic in vivo microenvironment remains a significant challenge. Here, we developed magneto-responsive microcontainers for controllable culture of the patient-derived colorectal tumor cells (pCRCs) spheroids. Using microfluidic electrospray technology, microcontainers with a biocompatible carboxymethyl cellulose (CMC) core and a magnetic Fe 3 O 4 @alginate shell were fabricated for efficient harvest of pCRCs-spheroids. In addition, the microcontainers underwent rotational motion under an external magnetic field, thereby modulating local molecular transport. Moreover, integration of such pCRCs-laden microcontainer into a branched microfluidic chip enabled the generation of drug concentration gradients. Functional on-chip assays revealed heterogeneous drug responses among patient-derived spheroids and enabled preliminary comparison with the available clinical outcomes. Collectively, this magnetic chip-based platform offers a controllable in vitro approach for high-throughput, patient-specific chemotherapy screening in colorectal cancer.
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工程3D Printing in Biomedical Research
Microfluidic and Capillary Electrophoresis Applications · Microfluidic and Bio-sensing Technologies
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