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利用基于微重力的生物反应器研究人类肿瘤中三维宿主-肿瘤相互作用的前景。

Prospects for use of microgravity-based bioreactors to study three-dimensional host-tumor interactions in human neoplasia.

作者信息

Jessup J M, Goodwin T J, Spaulding G

机构信息

Department of Surgery, New England Deaconess Hospital, Boston, Massachusetts 02215.

出版信息

J Cell Biochem. 1993 Mar;51(3):290-300. doi: 10.1002/jcb.240510308.

Abstract

Microgravity offers unique advantages for the cultivation of mammalian tissues because the lack of gravity-induced sedimentation supports three-dimensional growth in batch culture in aqueous medium. Bioreactors that simulate microgravity but operate in unit gravity provide conditions that permit human epithelial cells to grow to densities approaching 10(7) cells/ml on microcarriers in suspension, in masses up to 1 cm in diameter, and under conditions of low shear stress. While useful for many different applications in tissue culture, this culture system is especially useful for the analysis of the microenvironment in which host matrix and cells interact with infiltrating tumor cells. Growth in the microgravity-based bioreactor has supported morphological differentiation of human colon carcinoma cells when cultured with normal human stromal cells. Furthermore, these co-cultures produced factors that stimulated goblet cell production in normal colon cells in an in vivo bioassay. Early experiments also suggest that the microgravity environment will not alter the ability of epithelial cells to recognize and associate with each other and with constituents of basement membrane and extracellular matrix. These findings suggest that cells grown in bioreactors that simulate aspects of microgravity or under actual microgravity conditions will produce tissues and substances in sufficient quantity and at high enough concentration to promote characterization of molecules that control differentiation and neoplastic transformation.

摘要

微重力为哺乳动物组织的培养提供了独特优势,因为缺乏重力诱导的沉降作用有利于在水性培养基中进行分批培养时实现三维生长。模拟微重力但在单位重力下运行的生物反应器所提供的条件,能使人类上皮细胞在悬浮于微载体上时生长至接近10⁷个细胞/毫升的密度,形成直径达1厘米的团块,且处于低剪切应力条件下。尽管该培养系统在组织培养的许多不同应用中都很有用,但它对于分析宿主基质和细胞与浸润肿瘤细胞相互作用的微环境尤为有用。当与正常人类基质细胞共培养时,基于微重力的生物反应器中的生长支持了人类结肠癌细胞的形态分化。此外,这些共培养物产生的因子在体内生物测定中刺激了正常结肠细胞中杯状细胞的产生。早期实验还表明,微重力环境不会改变上皮细胞相互识别以及与基底膜和细胞外基质成分相互结合的能力。这些发现表明,在模拟微重力或实际微重力条件下的生物反应器中生长的细胞,将产生足够数量和足够高浓度的组织和物质,以促进对控制分化和肿瘤转化的分子进行表征。

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