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female coronary artery ecs  (ATCC)


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    Structured Review

    ATCC female coronary artery ecs
    (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in <t>female</t> vs male patient <t>arteries.</t> Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 <t>(ECs,</t> red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.
    Female Coronary Artery Ecs, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 157 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/female coronary artery ecs/product/ATCC
    Average 95 stars, based on 157 article reviews
    female coronary artery ecs - by Bioz Stars, 2026-02
    95/100 stars

    Images

    1) Product Images from "Mitochondrial Dysfunction in Endothelial Cells Drives Greater Vascular Impairment in Females with Diabetes-Associated Peripheral Artery Disease"

    Article Title: Mitochondrial Dysfunction in Endothelial Cells Drives Greater Vascular Impairment in Females with Diabetes-Associated Peripheral Artery Disease

    Journal: bioRxiv

    doi: 10.1101/2025.09.22.677648

    (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in female vs male patient arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 (ECs, red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.
    Figure Legend Snippet: (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in female vs male patient arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 (ECs, red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.

    Techniques Used: Marker, Expressing, Clinical Proteomics, MANN-WHITNEY

    (A) Schematic to show vessel collection for myography. (B) Myography showing increased endothelial dysfunction in female vs male arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , sodium nitroprusside (SNP)-mediated relaxation (n=5-7). (C) Myography in non-injured vessels (N=5-7). (D) Plasma nitrite/nitrate levels (n=4-6). Laser Doppler imaging showing reduced blood perfusion over time with diabetes in (E) male and (F) female mice. Left, representative image of blood flow at 14 d. Right, quantification. (n=9-11). (G) Laser doppler perfusion index at 14 days (n=9-11). (H) Microvessel number (CD31+SMA+, <50 µm in diameter) in gastrocnemius tissues normalized to the number of myocytes and control non-ischemic limbs (n=9-11). (I) Tubule formation of male and female murine ECs shows an altered phenotype. (J) Tubulogenesis is reduced in female ECs under diabetic conditions. Left, Wimasis platform for vessel coverage and networks. Right , quantification (n=5/group). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001.
    Figure Legend Snippet: (A) Schematic to show vessel collection for myography. (B) Myography showing increased endothelial dysfunction in female vs male arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , sodium nitroprusside (SNP)-mediated relaxation (n=5-7). (C) Myography in non-injured vessels (N=5-7). (D) Plasma nitrite/nitrate levels (n=4-6). Laser Doppler imaging showing reduced blood perfusion over time with diabetes in (E) male and (F) female mice. Left, representative image of blood flow at 14 d. Right, quantification. (n=9-11). (G) Laser doppler perfusion index at 14 days (n=9-11). (H) Microvessel number (CD31+SMA+, <50 µm in diameter) in gastrocnemius tissues normalized to the number of myocytes and control non-ischemic limbs (n=9-11). (I) Tubule formation of male and female murine ECs shows an altered phenotype. (J) Tubulogenesis is reduced in female ECs under diabetic conditions. Left, Wimasis platform for vessel coverage and networks. Right , quantification (n=5/group). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001.

    Techniques Used: Clinical Proteomics, Imaging, Control, MANN-WHITNEY



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    ATCC female coronary artery ecs
    (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in <t>female</t> vs male patient <t>arteries.</t> Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 <t>(ECs,</t> red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.
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    (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in <t>female</t> vs male patient <t>arteries.</t> Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 <t>(ECs,</t> red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.
    Female Ec Hcaec C Promocell 3101801 1 Age 67, supplied by PromoCell, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in female vs male patient arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 (ECs, red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.

    Journal: bioRxiv

    Article Title: Mitochondrial Dysfunction in Endothelial Cells Drives Greater Vascular Impairment in Females with Diabetes-Associated Peripheral Artery Disease

    doi: 10.1101/2025.09.22.677648

    Figure Lengend Snippet: (A) Schematic illustrating site of tissue collection from below- and above knee amputations. (B) Myography showing increased endothelial dysfunction in female vs male patient arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , No difference in vascular smooth muscle cell (VSMC), sodium nitroprusside (SNP)- mediated relaxation (n=3-5). (C) Left, representative image of microvessels in tibialis anterior (CD31 + SMA + , yellow arrows). Laminin (myocytes, white), CD31 (ECs, red) and SMA (pericytes, green); scale bar 50 μm. Right , quantification (n=5/sex). (D) Myocyte area is unaltered with sex (n=5). (E) NADPH oxidase ( Nox ) mRNA marker expression in muscle measured by qPCR, normalized to β -actin (n=5). (F) 8-isoprostane levels in plasma remain unchanged with sex (n=5). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001.

    Article Snippet: Primary human male and female coronary artery ECs were purchased from American Type Culture Collection.

    Techniques: Marker, Expressing, Clinical Proteomics, MANN-WHITNEY

    (A) Schematic to show vessel collection for myography. (B) Myography showing increased endothelial dysfunction in female vs male arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , sodium nitroprusside (SNP)-mediated relaxation (n=5-7). (C) Myography in non-injured vessels (N=5-7). (D) Plasma nitrite/nitrate levels (n=4-6). Laser Doppler imaging showing reduced blood perfusion over time with diabetes in (E) male and (F) female mice. Left, representative image of blood flow at 14 d. Right, quantification. (n=9-11). (G) Laser doppler perfusion index at 14 days (n=9-11). (H) Microvessel number (CD31+SMA+, <50 µm in diameter) in gastrocnemius tissues normalized to the number of myocytes and control non-ischemic limbs (n=9-11). (I) Tubule formation of male and female murine ECs shows an altered phenotype. (J) Tubulogenesis is reduced in female ECs under diabetic conditions. Left, Wimasis platform for vessel coverage and networks. Right , quantification (n=5/group). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001.

    Journal: bioRxiv

    Article Title: Mitochondrial Dysfunction in Endothelial Cells Drives Greater Vascular Impairment in Females with Diabetes-Associated Peripheral Artery Disease

    doi: 10.1101/2025.09.22.677648

    Figure Lengend Snippet: (A) Schematic to show vessel collection for myography. (B) Myography showing increased endothelial dysfunction in female vs male arteries. Left , endothelial-dependent relaxation in response to acetylcholine (ACh). Right , sodium nitroprusside (SNP)-mediated relaxation (n=5-7). (C) Myography in non-injured vessels (N=5-7). (D) Plasma nitrite/nitrate levels (n=4-6). Laser Doppler imaging showing reduced blood perfusion over time with diabetes in (E) male and (F) female mice. Left, representative image of blood flow at 14 d. Right, quantification. (n=9-11). (G) Laser doppler perfusion index at 14 days (n=9-11). (H) Microvessel number (CD31+SMA+, <50 µm in diameter) in gastrocnemius tissues normalized to the number of myocytes and control non-ischemic limbs (n=9-11). (I) Tubule formation of male and female murine ECs shows an altered phenotype. (J) Tubulogenesis is reduced in female ECs under diabetic conditions. Left, Wimasis platform for vessel coverage and networks. Right , quantification (n=5/group). Results are mean±SEM; two-way ANOVA, Student’s t -test or Mann–Whitney U -test; * P <0.05, ** P <0.01, *** P <0.001 and **** P <0.0001.

    Article Snippet: Primary human male and female coronary artery ECs were purchased from American Type Culture Collection.

    Techniques: Clinical Proteomics, Imaging, Control, MANN-WHITNEY