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通过在低糖环境中生长来降低肿瘤模型的缺氧部分。

Reducing the hypoxic fraction of a tumour model by growth in low glucose.

作者信息

Hlatky L, Sachs R K, Ring C S

机构信息

Cell and Molecular Biology Division, Lawrence Berkeley Laboratory, Boston, MA.

出版信息

Br J Cancer. 1989 Mar;59(3):375-80. doi: 10.1038/bjc.1989.75.

Abstract

The question of whether growth under low glucose conditions leads to a reduced amount of cell hypoxia was investigated using an in vitro tumour analogue, the sandwich system. In this multicellular system, the interplay between diffusion and consumption of oxygen and nutrients results in spatial gradients of these environmental factors. Gradients in the environment lead to biological heterogeneity within the cell population. A necrotic centre, surrounded by a viable cell border, subsequently develops. Cells adjacent to the necrotic centre in sandwiches are hypoxic and are in an environment somewhat analogous to that of cells adjacent to necrotic regions in solid tumours. Using sandwiches of the 9L and V79 cell lines, the effects of growth under low glucose conditions on the degree of hypoxia in regions adjacent to the necrotic centre were investigated. Per-cell binding of 3H-misonidazole, assessed by autoradiography, was used as an indicator of oxygen deprivation. It was found that the extent of the hypoxic region and the severity of hypoxia were considerably reduced by growing sandwiches in a glucose concentration of 0.6 mM rather than 6.5 mM. This reduction was found in conjunction with a smaller viable border; it occurred despite the fact that the average per-cell oxygen consumption is higher in the low glucose sandwiches. The data are qualitatively consistent with a joint oxygen-glucose deprivation model for cell necrosis.

摘要

使用体外肿瘤模拟物三明治系统研究了低葡萄糖条件下的生长是否会导致细胞缺氧量减少。在这个多细胞系统中,氧气和营养物质的扩散与消耗之间的相互作用导致了这些环境因素的空间梯度。环境梯度导致细胞群体内的生物异质性。随后会形成一个坏死中心,周围是一层活细胞边界。三明治中与坏死中心相邻的细胞处于缺氧状态,其环境与实体瘤中坏死区域相邻的细胞环境有些类似。利用9L和V79细胞系的三明治,研究了低葡萄糖条件下的生长对坏死中心附近区域缺氧程度的影响。通过放射自显影评估的3H-米索硝唑的细胞结合量被用作缺氧的指标。研究发现,将三明治培养在0.6 mM而非6.5 mM的葡萄糖浓度下,缺氧区域的范围和缺氧的严重程度会显著降低。这种降低伴随着较小的活细胞边界;尽管低葡萄糖三明治中平均每个细胞的耗氧量更高,但仍出现了这种情况。这些数据在定性上与细胞坏死的联合氧-葡萄糖剥夺模型一致。

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本文引用的文献

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Two-dimensional diffusion limited system for cell growth.用于细胞生长的二维扩散受限系统。
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Decreased hypoxic toxicity and binding of misonidazole by low glucose concentration.
Int J Radiat Oncol Biol Phys. 1986 Jul;12(7):1231-4. doi: 10.1016/0360-3016(86)90265-8.

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