Department of Chemistry, Penn State University, University Park, PA, 16802, USA.
The Huck Institutes of the Life Sciences, Penn State University, University Park, PA, 16802, USA.
Adv Biol (Weinh). 2021 Jul;5(7):e2100090. doi: 10.1002/adbi.202100090. Epub 2021 Apr 15.
Metastatic breast cancer is one of the deadliest forms of malignancy, primarily driven by its characteristic micro-environment comprising cancer cells interacting with stromal components. These interactions induce genetic and metabolic alterations creating a conducive environment for tumor growth. In this study, a physiologically relevant 3D vascularized breast cancer micro-environment is developed comprising of metastatic MDA-MB-231 cells and human umbilical vein endothelial cells loaded in human dermal fibroblasts laden fibrin, representing the tumor stroma. The matrix, as well as stromal cell density, impacts the transcriptional profile of genes involved in tumor angiogenesis and cancer invasion, which are hallmarks of cancer. Cancer-specific canonical pathways and activated upstream regulators are also identified by the differential gene expression signatures of these composite cultures. Additionally, a tumor-associated vascular bed of capillaries is established exhibiting dilated vessel diameters, representative of in vivo tumor physiology. Further, employing aspiration-assisted bioprinting, cancer-endothelial crosstalk, in the form of collective angiogenesis of tumor spheroids bioprinted at close proximity, is identified. Overall, this bottom-up approach of tumor micro-environment fabrication provides an insight into the potential of in vitro tumor models and enables the identification of novel therapeutic targets as a preclinical drug screening platform.
转移性乳腺癌是最致命的恶性肿瘤之一,主要由其特征性的微环境驱动,包括癌细胞与基质成分相互作用。这些相互作用诱导遗传和代谢改变,为肿瘤生长创造有利环境。在这项研究中,开发了一种生理相关的 3D 血管化乳腺癌微环境,其中包含转移性 MDA-MB-231 细胞和加载在人真皮成纤维细胞中的人脐静脉内皮细胞,代表肿瘤基质。基质以及基质细胞密度会影响肿瘤血管生成和癌症浸润相关基因的转录谱,这些基因是癌症的标志。通过这些复合培养物的差异基因表达特征,还确定了癌症特异性的经典途径和激活的上游调节剂。此外,还建立了肿瘤相关的毛细血管血管床,表现出扩张的血管直径,代表体内肿瘤生理学。此外,通过采用抽吸辅助生物打印,在近距离生物打印的肿瘤球体中以集体血管生成的形式识别出癌症-内皮细胞串扰。总的来说,这种自下而上的肿瘤微环境制造方法深入了解了体外肿瘤模型的潜力,并为作为临床前药物筛选平台的新型治疗靶点的识别提供了可能。