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Superporous Poly(ethylene glycol) Diacrylate Cryogel with a Defined Elastic Modulus for Prostate Cancer Cell Research

机译:具有确定的弹性模量的超多孔聚(乙二醇)二丙烯酸酯低温凝胶,用于前列腺癌细胞研究

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摘要

The physical and mechanical properties of the tumor microenvironment are crucial for the growth, differentiation and migration of cancer cells. However, such microenvironment is not found in the geometric constraints of 2D cell culture systems used in many cancer studies. Prostate cancer research, in particular, suffers from the lack of suitable in vitro models. Here a 3D superporous scaffold is described with thick pore walls in a mechanically stable and robust architecture to support prostate tumor growth. This scaffold is generated from the cryogelation of poly(ethylene glycol) diacrylate to produce a defined elastic modulus for prostate tumor growth. Lymph node carcinoma of the prostate (LNCaP) cells show a linear growth over 21 d as multicellular tumor spheroids in such a scaffold with points of attachments to the walls of the scaffold. These LNCaP cells respond to the growth promoting effects of androgens and demonstrate a characteristic cytoplasmic-nuclear translocation of the androgen receptor and androgen-dependent gene expression. Compared to 2D cell culture, the expression or androgen response of prostate cancer specific genes is greatly enhanced in the LNCaP cells in this system. This scaffold is therefore a powerful tool for prostate cancer studies with unique advantages over 2D cell culture systems.
机译:肿瘤微环境的物理和机械性质对于癌细胞的生长,分化和迁移至关重要。但是,在许多癌症研究中使用的2D细胞培养系统的几何约束条件中找不到这种微环境。前列腺癌的研究尤其缺乏合适的体外模型。此处描述了一种3D超多孔支架,该支架在机械稳定且坚固的体系结构中具有厚的孔壁,以支持前列腺肿瘤的生长。该支架由聚(乙二醇)二丙烯酸酯的冷冻凝胶化产生,以产生用于前列腺肿瘤生长的确定的弹性模量。前列腺淋巴结癌(LNCaP)细胞在21 d内呈线性生长,呈多细胞肿瘤球状体,在这种支架上具有与支架壁的连接点。这些LNCaP细胞响应雄激素的生长促进作用,并表现出雄激素受体和雄激素依赖性基因表达的特征性细胞质-核易位。与2D细胞培养相比,在此系统中LNCaP细胞中前列腺癌特异性基因的表达或雄激素反应大大增强。因此,该支架是前列腺癌研究的有力工具,具有优于2D细胞培养系统的独特优势。

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