首页> 外文会议>Advances in heat and mass transfer in biotechnology-1998 >Cellular signaling mechanisms lnvolved in the 3-Dimensional assembly and differentiation of PC12 pheochromocytoma cells under simulated microgravity in NASA rotating wall wessel bioreactors
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Cellular signaling mechanisms lnvolved in the 3-Dimensional assembly and differentiation of PC12 pheochromocytoma cells under simulated microgravity in NASA rotating wall wessel bioreactors

机译:在NASA旋转壁式容器生物反应器中在模拟微重力下参与PC12嗜铬细胞瘤细胞的3维组装和分化的细胞信号传导机制

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Rotating Wall Vessel (RWV) Bioreactors simulate microgravity and facilitate 3-D tissue-like assembly through spatial co-localization and cell-cell interactions. This unique cell culture venue is well suited to assess the role of micro-environmental cues in the assmbly and tissue-specific differentation of cells culture. Our long term goal is to use RWV Bioreactors for generating functional neuroendocrine 3-D constructs which may be useful as clinical replacement tissue in treating neurodegenerative diseases. As a model we are using PC12 pheochromocytoma cells, a bipotential rat adrenal medullary tumor cell line.PC 12 cells differentiate, depending on exogenous factors, either along the neuronal or the neuroendocrine pathway. PC12 cells, when maintained for up to 20 days in RWV Bioreactors, form macroscopic tissue-like aggregates which exhibit enhanced expression of neuroendocrine, adrenergic differentiation markers (Lelkes et al., In Vitro Devel. Biol, 1998, 34: 316-325). We hypothesized that exposure of PC12 cells to the "simulated microgravity" culture conditions in the RWV Bioreactors, might selectively activate signal transduction pathways leading to enhanced neuroendocrine adrenergic differentiation. Using quantitative RT-PCR we demonstrated rapid upregulation of an adrenergic marker, phenylethanolamine-N-methyl transferase (PNMT), in short term RWV cultures. Concomitantly, we found, by electrophoretic mobility shift assays, differential induction of nuclear transcription factors, such as GRE and SP-1, which are known to be involved in the glucocorticoid-induced activation of PNMT. Conversely, upon short term culture of PC12 cells in RWV, the neuronal traits of the cells were impaired. Upon exposure to simulated microgravity, MAPK signaling (erk and jnk) was constitutively activated, while nerve-growth factor (NGF)-induced activation of erk, was abrogated. These results suggest that the culture conditions in the RWV Bioreactors are sufficient to induce PC12 cell differentiation towards the neuroendocrine, phenotype by upregulating "adrenergic" gene expression, while downregulating neurotrophin signaling pathways.
机译:旋转壁容器(RWV)生物反应器通过空间共定位和细胞间相互作用来模拟微重力并促进3-D组织样组装。这个独特的细胞培养场所非常适合评估微环境提示在细胞培养的组织特异性分化中的作用。我们的长期目标是使用RWV生物反应器生成功能性神经内分泌3-D构建体,这些构建体可用作治疗神经退行性疾病的临床替代组织。作为模型,我们使用的是PC12嗜铬细胞瘤细胞,这是一种双能大鼠肾上腺髓样肿瘤细胞系。PC12细胞根据外源因素沿神经元或神经内分泌途径分化。当PC12细胞在RWV生物反应器中维持长达20天时,会形成宏观的组织样聚集体,表现出神经内分泌,肾上腺素能分化标志物增强的表达(Lelkes等,In Vitro Devel。Biol,1998,34:316-325)。 。我们假设将PC12细胞暴露于RWV生物反应器中的“模拟微重力”培养条件,可能会选择性激活信号转导途径,导致神经内分泌肾上腺素能增强。使用定量RT-PCR,我们证明了在短期RWV培养中,肾上腺素标记物苯乙醇胺-N-甲基转移酶(PNMT)的快速上调。同时,我们通过电泳迁移率变动分析发现了核转录因子(例如GRE和SP-1)的差异诱导,已知这些转录因子参与糖皮质激素诱导的PNMT活化。相反,在RWV中短期培养PC12细胞后,细胞的神经元性状受损。暴露于模拟微重力下,MAPK信号传导(erk和jnk)被组成性激活,而神经生长因子(NGF)诱导的erk激活被取消。这些结果表明,RWV生物反应器中的培养条件足以通过上调“肾上腺素”基因表达,同时下调神经营养蛋白信号通路来诱导PC12细胞向神经内分泌,表型分化。

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