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工程化微环境为卵巢癌和前列腺癌的进展和药物反应提供了新的见解。

Engineered microenvironments provide new insights into ovarian and prostate cancer progression and drug responses.

机构信息

Cancer and Molecular Medicine Program, Institute of Health and Biomedical Innovation, Queensland University of Technology, 60 Musk Avenue, Kelvin Grove, 4059 Brisbane, Australia.

Cancer and Molecular Medicine Program, Institute of Health and Biomedical Innovation, Queensland University of Technology, 60 Musk Avenue, Kelvin Grove, 4059 Brisbane, Australia; Orthopaedic Center for Musculoskeletal Research, Department of Orthopaedic Surgery, Julius-Maximilians-University Wuerzburg, Brettreichstr. 11, 97074 Wuerzburg, Germany.

出版信息

Adv Drug Deliv Rev. 2014 Dec 15;79-80:193-213. doi: 10.1016/j.addr.2014.06.001. Epub 2014 Jun 23.

Abstract

Tissue engineering technologies, which have originally been designed to reconstitute damaged tissue structure and function, can mimic not only tissue regeneration processes but also cancer development and progression. Bioengineered approaches allow cell biologists to develop sophisticated experimentally and physiologically relevant cancer models to recapitulate the complexity of the disease seen in patients. Tissue engineering tools enable three-dimensionality based on the design of biomaterials and scaffolds that re-create the geometry, chemistry, function and signalling milieu of the native tumour microenvironment. Three-dimensional (3D) microenvironments, including cell-derived matrices, biomaterial-based cell culture models and integrated co-cultures with engineered stromal components, are powerful tools to study dynamic processes like proteolytic functions associated with cancer progression, metastasis and resistance to therapeutics. In this review, we discuss how biomimetic strategies can reproduce a humanised niche for human cancer cells, such as peritoneal or bone-like microenvironments, addressing specific aspects of ovarian and prostate cancer progression and therapy response.

摘要

组织工程技术最初旨在重建受损的组织结构和功能,不仅可以模拟组织再生过程,还可以模拟癌症的发生和发展。生物工程方法使细胞生物学家能够开发复杂的、具有实验和生理相关性的癌症模型,以重现患者中所见疾病的复杂性。组织工程工具基于生物材料和支架的设计实现了三维性,这些生物材料和支架再现了天然肿瘤微环境的几何形状、化学性质、功能和信号环境。三维(3D)微环境,包括细胞衍生基质、基于生物材料的细胞培养模型以及与工程化基质成分的集成共培养,是研究与癌症进展、转移和治疗耐药性相关的蛋白水解功能等动态过程的有力工具。在这篇综述中,我们讨论了仿生策略如何为人类癌细胞复制一个拟人化的小生境,例如腹膜或骨样微环境,以解决卵巢癌和前列腺癌进展和治疗反应的特定方面。

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