Publication: Neurogenic and pericytic plasticity of conditionally immortalized cells derived from renal erythropoietin‐producing cells
Neurogenic and pericytic plasticity of conditionally immortalized cells derived from renal erythropoietin‐producing cells
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Bapst, A. M., Knöpfel, T., Nolan, K. A., Imeri, F., Schuh, C. D., Hall, A. M., Guo, J., Katschinski, D. M., & Wenger, R. H. (2022). Neurogenic and pericytic plasticity of conditionally immortalized cells derived from renal erythropoietin‐producing cells. Journal of Cellular Physiology, 237(5), 2420–2433. https://doi.org/10.1002/jcp.30677
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In adult mammals, the kidney is the main source of circulating erythropoietin (Epo), the master regulator of erythropoiesis. In vivo data in mice demonstrated multiple subtypes of interstitial renal Epo-producing (REP) cells. To analyze the differentiation plasticity of fibroblastoid REP cells, we used a transgenic REP cell reporter mouse model to generate conditionally immortalized REP-derived (REPD) cell lines. Under nonpermissive conditions, REPD cells ceased from proliferation and acquired a stem cell-like state, with strongly enh
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Bapst, A. M., Knöpfel, T., Nolan, K. A., Imeri, F., Schuh, C. D., Hall, A. M., Guo, J., Katschinski, D. M., & Wenger, R. H. (2022). Neurogenic and pericytic plasticity of conditionally immortalized cells derived from renal erythropoietin‐producing cells. Journal of Cellular Physiology, 237(5), 2420–2433. https://doi.org/10.1002/jcp.30677