Department of Biomedical Engineering, Cornell University, Ithaca, New York 14853, USA.
Tissue Eng Part A. 2010 Jul;16(7):2147-52. doi: 10.1089/ten.tea.2009.0668.
Cell-microenvironment interactions play a critical role in the transformation of normal cells into cancer; however, the underlying mechanisms and effects are far from being well understood. Tissue Engineering provides innovative culture tools and strategies to study tumorigenesis under pathologically relevant culture conditions. Specifically, integration of biomaterials, scaffold fabrication, and micro/nano-fabrication techniques offers great promise to reveal the dynamic role of chemical, cell-cell, cell-extracellular matrix, and mechanical interactions in the pathogenesis of cancer. Due to the central importance of blood vessel formation in tumor growth, progression, and drug response, this review will discuss specific design parameters for the development of culture microenvironments to study tumor angiogenesis. Tumor engineering approaches have the potential to revolutionize our understanding of cancer, provide new platforms for testing of anti-cancer drugs, and may ultimately result in improved treatment strategies.
细胞-微环境相互作用在正常细胞向癌细胞转化中起着关键作用;然而,其潜在机制和影响远未被充分理解。组织工程提供了创新的培养工具和策略,可在与病理相关的培养条件下研究肿瘤发生。具体而言,生物材料的整合、支架制造和微/纳米制造技术有望揭示化学、细胞-细胞、细胞-细胞外基质和机械相互作用在癌症发病机制中的动态作用。由于血管形成在肿瘤生长、进展和药物反应中的核心重要性,本综述将讨论用于研究肿瘤血管生成的培养微环境的特定设计参数。肿瘤工程方法有可能彻底改变我们对癌症的理解,为抗癌药物的测试提供新的平台,并可能最终导致改进的治疗策略。