Hypoxia Modulates Sodium Chloride Co-transporter via CaMKII-β Pathway: An In Vitro Study with mDCT15 Cells

缺氧通过 CaMKII-β 通路调节氯化钠共转运体:mDCT15 细胞体外研究

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作者:Lijuan Liang, Kohei Ueda, Sayoko Ogura, Tatsuo Shimosawa

Background

Hypoxia plays a crucial role in regulating various cellular functions, including ion-transport mechanisms in the kidney. The sodium-chloride co-transporter (NCC) is essential for sodium reabsorption in the distal convoluted tubule (DCT). However, the effects of hypoxia on NCC expression and its regulatory pathways remain unclear. We aimed to explore the effects and potential mechanisms of hypoxia on NCC in vitro.

Conclusions

Hypoxia, mediated through cobalt chloride treatment, upregulates NCC expression via the CaMKII-β pathway in mDCT15 cells.

Methods

mDCT15 cells were treated with cobalt chloride (CoCl2) at a concentration of 300 μmol/L to induce hypoxia. The cells were harvested at different time points, namely 30 min, 1 h, 6 h, and 24 h, and the expression of NCC and CaMKII-β was analyzed using Western blot.

Results

A time-dependent upregulation of NCC and CaMKII-β expression in response to CoCl2-induced hypoxia. KN93 reversed the effect of CoCl2 on NCC and phosphorylated NCC expression. Conclusions: Hypoxia, mediated through cobalt chloride treatment, upregulates NCC expression via the CaMKII-β pathway in mDCT15 cells.

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