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Additional file 5 of MicroRNA-210 regulates the metabolic and inflammatory status of primary human astrocytes

Authors :
Kieran, Nicholas W.
Suresh, Rahul
Dorion, Marie-France
MacDonald, Adam
Blain, Manon
Wen, Dingke
Fuh, Shih-Chieh
Ryan, Fari
Diaz, Roberto J.
Stratton, Jo Anne
Ludwin, Samuel K.
Sonnen, Joshua A.
Antel, Jack
Healy, Luke M.
Publication Year :
2022
Publisher :
figshare, 2022.

Abstract

Additional file 5: Figure S4. Astrocytic Metabolism and MCT4 Protein Expression is unchanged after 24- and 48-h 210M transfection, respectively. (A) Oxygen Consumption Rate (OCR) was measured in primary human astrocytes 24-h after transfection of 210S or 210M. n = 4 with 10 technical replicates for OCR experiments. (B) Extracellular Acidification Rate (ECAR) was measured in primary human astrocytes 24-h after transfection of 210S or 210M. n = 4 with 20 technical replicates for ECAR experiments. (C) Protein expression of MCT4 and Beta Tubulin (Beta-Tub) were measured by western blot in six separate human samples. Data is graphed as the fold change of MCT4 expression normalized to Beta-Tubulin expression and relative to the expression of 210S. For (C), each dot represents a separate human sample. (D) RT-qPCR assessment of LDHA in 210M-transfected cells relative to 210S-transfected cells 48 h after transfection. Mean �� SEM of 6 donors. Two-way ANOVA with Sidak���s correction was performed for Seahorse experiments, whereas t-test was used for MCT4 and LDHA expression. *p

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....33989a3bec2b53dd1f75cb2a89c1bfb3
Full Text :
https://doi.org/10.6084/m9.figshare.17982590.v1