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Altering the fate of stem cells from midgut of Heliothis virescens:the effect of calcium ions

机译:改变Heliosthis virescens中肠干细胞的命运:钙离子的作用

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Cultured stem cells from larval midgut tissue of the lepidopteran Heliothis virescens respond to alterations in external calcium ion concentration (Ca(2+) (out)) by changing the rate of stem cell proliferation and by differentiating to larval or non-larval phenotypes. Decreasing the external concentration of Ca(2+) with the Ca(2+) chelating agent EGTA increased proliferation of stem cells in culture, and doubled the proportion of cells differentiating to columnar and goblet cells typical of larval midgut compared to controls. In contrast, increasing inward transport of Ca(2+) into the cells by increasing the concentration of external calcium ion concentration, or by incubation with the Ca(2+) ionophore A23187 (which tends to open inward plasma membrane Ca(2+) channels), induced dose-dependent differentiation to non-midgut cell types such as squamous and scale-like cells. However, the latter treatments did not significantly alter stem cell proliferation or differentiation to normal larval midgut epithelium.
机译:从鳞翅目Heliothis virescens的幼虫中肠组织培养的干细胞通过改变干细胞增殖的速率和区分幼虫或非幼虫表型来响应外部钙离子浓度的变化(Ca(2+)(out))。与对照相比,用Ca(2+)螯合剂EGTA降低Ca(2+)的外部浓度可增加培养物中干细胞的增殖,并使分化为幼虫中肠典型的柱状和杯状细胞的细胞比例增加一倍。相反,通过增加外部钙离子浓度的浓度,或通过与Ca(2+)离子载体A23187(倾向于打开向内质膜Ca(2+)的孵育),来增加Ca(2+)向细胞的向内运输。通道)诱导剂量依赖性分化为非中肠细胞类型,例如鳞状和鳞状细胞。然而,后一种治疗并未明显改变干细胞向正常幼虫中肠上皮的增殖或分化。

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