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trpc6  (Alomone Labs)


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    Alomone Labs trpc6
    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
    Trpc6, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 95/100, based on 215 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Images

    1) Product Images from "The role of arachidonic acid metabolites in the subtype classification and pathogenesis of primary aldosteronism"

    Article Title: The role of arachidonic acid metabolites in the subtype classification and pathogenesis of primary aldosteronism

    Journal: iScience

    doi: 10.1016/j.isci.2025.114598

    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, TRPC6, TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
    Figure Legend Snippet: Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, TRPC6, TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).

    Techniques Used: Expressing, Western Blot, Labeling



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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, <t>TRPC6,</t> TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).
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    Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, TRPC6, TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).

    Journal: iScience

    Article Title: The role of arachidonic acid metabolites in the subtype classification and pathogenesis of primary aldosteronism

    doi: 10.1016/j.isci.2025.114598

    Figure Lengend Snippet: Arachidonic acid promotes Ca 2+ uptake and increases CYP11B2 expression in adrenal cortical cells (A) Confirmation of the expression of CYP11B2 in primary adrenal cortical cells. Scale bars, 50 μm. (B) Cell viability of primary adrenal cortical cells treated with different doses of arachidonic acid (AA) ( n = 4). (C) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of AA ( n = 6). (D) Aldosterone levels in cellular supernatant of primary adrenal cortical cells treated with different doses of Ang II (left) or endothelin-1 (right) along with AA ( n = 3). (E) Representative western blots showing levels of CYP11B2, CYP11B1, CYP17A1, and HSD3B2 in primary adrenal cortical cells treated with vehicle or AA. The quantitative results are shown on the right ( n = 3). (F) Changes of cytoplasmic Ca 2+ , labeled with Fura-2 AM, in primary adrenal cortical cells treated with 1 mM thapsigargin (TG) stimulation in a 1 mM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (G) Changes of mitochondrial Ca 2+ , labeled with Rhod-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with 200 μM ATP stimulation in a 300 μM extracellular Ca 2+ solution after preincubation with vehicle or AA ( n = 12). (H) Changes of endoplasmic reticulum (ER) Ca 2+ , labeled with Mag Fura-2 AM, in digitonin-permeabilized primary adrenal cortical cells treated with ATP stimulation in a Ca 2+ -free extracellular solution after preincubation with vehicle or AA ( n = 12). (I) Representative western blots showing levels of KCNJ5, Na + /K + ATPase alpha-1 subunit, NCX-1, Letm 1, MCU, VDAC, RyR2, and IP 3 R in primary adrenal cortical cells treated with vehicle or AA. (Left) Representative western blots showing levels of TRPC1, TRPC3, TRPC6, TRPV1, and TRPV4 in primary adrenal cortical cells treated with vehicle or AA. (Right) The quantitative results are shown on the left ( n = 3). The results are expressed as the mean ± SD. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001 compared with vehicle group; # p < 0.05, ## p < 0.01, ### p < 0.001, #### p < 0.0001 compared with 1 μM AA group by one-way ANOVA (B and C) and by Student’s t test (D–I).

    Article Snippet: TRPC6 , Alomone , Cat#ACC-017; RRID: AB_2040243.

    Techniques: Expressing, Western Blot, Labeling