Department of Molecular Genetics, Erasmus MC Cancer Institute, Erasmus University Medical Center, Rotterdam, the Netherlands.
Department of Cell and Molecular Biology, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, India.
Cancer Res. 2022 Feb 1;82(3):510-520. doi: 10.1158/0008-5472.CAN-21-0799. Epub 2021 Dec 6.
Optimal treatment of cancer requires diagnostic methods to facilitate therapy choice and prevent ineffective treatments. Direct assessment of therapy response in viable tumor specimens could fill this diagnostic gap. Therefore, we designed a microfluidic platform for assessment of patient treatment response using tumor tissue slices under precisely controlled growth conditions. The optimized Cancer-on-Chip (CoC) platform maintained viability and sustained proliferation of breast and prostate tumor slices for 7 days. No major changes in tissue morphology or gene expression patterns were observed within this time frame, suggesting that the CoC system provides a reliable and effective way to probe intrinsic chemotherapeutic sensitivity of tumors. The customized CoC platform accurately predicted cisplatin and apalutamide treatment response in breast and prostate tumor xenograft models, respectively. The culture period for breast cancer could be extended up to 14 days without major changes in tissue morphology and viability. These culture characteristics enable assessment of treatment outcomes and open possibilities for detailed mechanistic studies. SIGNIFICANCE: The Cancer-on-Chip platform with a 6-well plate design incorporating silicon-based microfluidics can enable optimal patient-specific treatment strategies through parallel culture of multiple tumor slices and diagnostic assays using primary tumor material.
癌症的最佳治疗方法需要诊断方法来帮助选择治疗方法并防止无效治疗。直接评估活肿瘤标本中的治疗反应可以填补这一诊断空白。因此,我们设计了一种微流控平台,用于在精确控制生长条件下使用肿瘤组织切片评估患者的治疗反应。优化的癌症芯片(CoC)平台维持了乳腺癌和前列腺肿瘤切片 7 天的活力和持续增殖。在此时间范围内,组织形态或基因表达模式没有发生重大变化,这表明 CoC 系统为探测肿瘤内在化疗敏感性提供了一种可靠有效的方法。定制的 CoC 平台准确预测了顺铂和阿帕鲁胺在乳腺癌和前列腺肿瘤异种移植模型中的治疗反应。乳腺癌的培养期可以延长至 14 天,而组织形态和活力没有明显变化。这些培养特性使治疗结果的评估成为可能,并为详细的机制研究开辟了可能性。意义:具有 6 孔板设计的癌症芯片平台,结合硅基微流控技术,可以通过使用原发性肿瘤材料对多个肿瘤切片进行平行培养和诊断检测,从而实现最佳的个体化治疗策略。