A versatile dilution-treatment-detection microfluidic chip platform for rapid In vitro lung cancer drug combination sensitivity evaluation

Combination drug therapy represents an effective strategy for treating certain drug-resistant and intractable cancer cases. However, determining the optimal combination of drugs and dosages is challenging due to clonal diversity in patients' tumors and the lack of rapid drug sensitivity evaluat...

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Veröffentlicht in:Talanta (Oxford) 2024-09, Vol.277, p.126298, Article 126298
Hauptverfasser: Zhang, Chenchen, Tian, Kuo, Meng, Zixun, Zhang, Jianing, Lu, Yihong, Tan, Li, Zhang, Mei, Xu, Danke
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Sprache:eng
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Zusammenfassung:Combination drug therapy represents an effective strategy for treating certain drug-resistant and intractable cancer cases. However, determining the optimal combination of drugs and dosages is challenging due to clonal diversity in patients' tumors and the lack of rapid drug sensitivity evaluation methods. Microfluidic technology offers promising solutions to this issue. In this study, we propose a versatile microfluidic chip platform capable of integrating all processes, including dilution, treatment, and detection, for in vitro drug sensitivity assays. This platform innovatively incorporates several modules, including automated discrete drug logarithmic concentration generation, on-chip cell perfusion culture, and parallel drug treatments of cancer cell models. Moreover, it is compatible with microplate readers or high-content imaging systems for swift detection and automated monitoring, simplifying on-chip drug evaluation. Proof of concept is demonstrated by assessing the in vitro potency of two drugs, cisplatin, and etoposide, against the lung adenocarcinoma A549 cell line, under both single-drug and combination treatment conditions. The findings reveal that, compared to conventional microplate approaches with static cultivation, this on-chip automated perfusion bioassays yield comparable IC50 values with lower variation and a 50 % reduction in drug preparation time. This versatile dilution-treatment-detection microfluidic platform offers a promising tool for rapid and precise drug assessments, facilitating in vitro drug sensitivity evaluation in personalized cancer chemotherapy. [Display omitted] •The microfluidic chip generates a wide range of discrete logarithmic concentration gradients by an N-type network structure.•The micorfluidic chip is adapted to the microplate reader for automated versatile detection.•Whole process of cell-based drug sensitivity test is integrated in the microfluidic chip.•Rapid evaluation of lung cancer drug combinations on the microfluidic chip is superior to microplate method.
ISSN:0039-9140
1873-3573
1873-3573
DOI:10.1016/j.talanta.2024.126298