Department of Biomedical Engineering, University of Wisconsin, Madison, WI, USA.
Lab Chip. 2013 Oct 7;13(19):3965-75. doi: 10.1039/c3lc50487e.
Interactions between neoplastic epithelial cells and components of a reactive stroma in pancreatic ductal adenocarcinoma (PDAC) are of key significance behind the disease's dismal prognosis. Despite extensive published research in the importance of stroma-cancer interactions in other cancers and experimental evidence supporting the importance of the microenvironment in PDAC progression, a reproducible three-dimensional (3D) in vitro model for exploring stroma-cancer interplay and evaluating therapeutics in a physiologically relevant context has been lacking. We introduce a humanized microfluidic model of the PDAC microenvironment incorporating multicellularity, extracellular matrix (ECM) components, and a spatially defined 3D microarchitecture. Pancreatic stellate cells (PSCs) isolated from clinically-evaluated human tissue specimens were co-cultured with pancreatic ductal adenocarcinoma cells as an accessible 3D construct that maintained important tissue features and disease behavior. Multiphoton excitation (MPE) and Second Harmonic Generation (SHG) imaging techniques were utilized to image the intrinsic signal of stromal collagen in human pancreatic tissues and live cell-collagen interactions within the optically-accessible microfluidic tissue model. We further evaluated the dose-response of the model with the anticancer agent paclitaxel. This bioengineered model of the PDAC stroma-cancer microenvironment provides a complementary platform to elucidate the complex stroma-cancer interrelationship and to evaluate the efficacy of potential therapeutics in a humanized system that closely recapitulates key PDAC microenvironment characteristics.
在胰腺导管腺癌 (PDAC) 中,肿瘤上皮细胞与反应性基质成分之间的相互作用是导致该疾病预后不良的关键。尽管在其他癌症中广泛研究了基质-癌症相互作用的重要性,并且有实验证据支持微环境在 PDAC 进展中的重要性,但缺乏可重复性的三维 (3D) 体外模型来探索基质-癌症相互作用并在生理相关的背景下评估治疗方法。我们引入了一种包含多细胞性、细胞外基质 (ECM) 成分和空间定义的 3D 微架构的 PDAC 微环境的人源化微流控模型。从临床评估的人类组织标本中分离出的胰腺星状细胞 (PSC) 与人胰腺导管腺癌细胞共培养,作为一种可访问的 3D 构建体,保留了重要的组织特征和疾病行为。多光子激发 (MPE) 和二次谐波产生 (SHG) 成像技术用于对人胰腺组织中的基质胶原固有信号以及在光学可访问的微流控组织模型内的活细胞-胶原相互作用进行成像。我们进一步用抗癌药物紫杉醇评估了该模型的剂量反应。这种 PDAC 基质-癌症微环境的生物工程模型提供了一个补充平台,用于阐明复杂的基质-癌症相互关系,并在更接近关键 PDAC 微环境特征的人源化系统中评估潜在治疗方法的疗效。