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polyclonal rabbit anti sk3 antibody  (Alomone Labs)


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    Structured Review

    Alomone Labs polyclonal rabbit anti sk3 antibody
    a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or <t>SK3-targeting</t> shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.
    Polyclonal Rabbit Anti Sk3 Antibody, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 95/100, based on 79 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/polyclonal+rabbit+anti+sk3+antibody/Anti-KCNN3+(KCa2%2E3%2C+SK3)+(N-term)+Antibody/bio_rxiv__64898__2026__03__19__712770-252-30-35
    Average 95 stars, based on 79 article reviews
    polyclonal rabbit anti sk3 antibody - by Bioz Stars, 2026-09
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    Images

    1) Product Images from "SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION"

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION

    Journal: bioRxiv

    doi: 10.64898/2026.03.19.712770

    a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or SK3-targeting shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.
    Figure Legend Snippet: a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or SK3-targeting shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.

    Techniques Used: Control, Whisker Assay, Expressing, shRNA, Knockdown, Single Cell, MANN-WHITNEY

    a Representative low-magnification confocal image of GFP-expressing Hb9 interneurons in the ventromedial spinal cord. The asterisk marks the soma of an identified interneuron. The central canal (cc) is indicated by the dashed line. Scale bar, 25 µm. b High-magnification images of the soma indicated in a , showing GFP fluorescence (top), SK2 immunolabeling (middle), and a merged GFP/SK2 overlay (bottom). Dashed lines delineate the somatic membrane. Scale bar, 10 µm. c-d Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( c ) and density ( d , clusters per µm 2 ) of SK2, SK3, and co-localized SK2/3 clusters at the somatic membrane. e Confocal images of an Hb9 interneuron soma showing GFP (left), SK3 immunolabeling (middle), and a merged GFP/SK3 overlay (right). Dashed lines delineate the somatic membrane. Scale bar, 20 µm. f Confocal images of an intracellularly recorded HB9 interneuron filled with biocytin (magenta), showing GFP immunofluorescence (green), SK2 (red), and SK3 immunolabeling (cyan), alongside a merged GFP/SK3 signal. Scale bar, 20 µm. g-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( g ) and density ( h ) of SK2, SK3, and co-localized clusters along the dendrites. Numbers in parentheses denote the number of cells ( c, d ) or dendrites ( g, h ) analyzed; each dot represents a single measurement. *** P < 0.001 (two-sided unpaired t-test for c and g ; One-way ANOVA for d and h ). For detailed P values, see Source data.
    Figure Legend Snippet: a Representative low-magnification confocal image of GFP-expressing Hb9 interneurons in the ventromedial spinal cord. The asterisk marks the soma of an identified interneuron. The central canal (cc) is indicated by the dashed line. Scale bar, 25 µm. b High-magnification images of the soma indicated in a , showing GFP fluorescence (top), SK2 immunolabeling (middle), and a merged GFP/SK2 overlay (bottom). Dashed lines delineate the somatic membrane. Scale bar, 10 µm. c-d Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( c ) and density ( d , clusters per µm 2 ) of SK2, SK3, and co-localized SK2/3 clusters at the somatic membrane. e Confocal images of an Hb9 interneuron soma showing GFP (left), SK3 immunolabeling (middle), and a merged GFP/SK3 overlay (right). Dashed lines delineate the somatic membrane. Scale bar, 20 µm. f Confocal images of an intracellularly recorded HB9 interneuron filled with biocytin (magenta), showing GFP immunofluorescence (green), SK2 (red), and SK3 immunolabeling (cyan), alongside a merged GFP/SK3 signal. Scale bar, 20 µm. g-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( g ) and density ( h ) of SK2, SK3, and co-localized clusters along the dendrites. Numbers in parentheses denote the number of cells ( c, d ) or dendrites ( g, h ) analyzed; each dot represents a single measurement. *** P < 0.001 (two-sided unpaired t-test for c and g ; One-way ANOVA for d and h ). For detailed P values, see Source data.

    Techniques Used: Expressing, Fluorescence, Immunolabeling, Membrane, Whisker Assay, Immunofluorescence

    Related Articles

    SDS Page:

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION
    Article Snippet: Protein concentrations were determined using a detergent-compatible assay (Bio-Rad). .. Equal amounts of protein (40 μg per lane) were separated on 4-15% gradient SDS-PAGE stain-free gels (Bio-Rad), transferred to nitrocellulose membranes, and probed overnight at 4 °C with either a polyclonal rabbit anti-SK3 antibody (1:500, Alomone Labs, APC-025) or an anti-actin antibody (1:1,000, A2066, Sigma-Aldrich) in Tris-buffered saline containing 5% fat-free milk. .. Membranes were then incubated for 1 h at room temperature with a goat anti-rabbit horseradish peroxidase-conjugated secondary antibody (1:40,000; Thermo Fisher).

    Staining:

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION
    Article Snippet: Protein concentrations were determined using a detergent-compatible assay (Bio-Rad). .. Equal amounts of protein (40 μg per lane) were separated on 4-15% gradient SDS-PAGE stain-free gels (Bio-Rad), transferred to nitrocellulose membranes, and probed overnight at 4 °C with either a polyclonal rabbit anti-SK3 antibody (1:500, Alomone Labs, APC-025) or an anti-actin antibody (1:1,000, A2066, Sigma-Aldrich) in Tris-buffered saline containing 5% fat-free milk. .. Membranes were then incubated for 1 h at room temperature with a goat anti-rabbit horseradish peroxidase-conjugated secondary antibody (1:40,000; Thermo Fisher).

    Saline:

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION
    Article Snippet: Protein concentrations were determined using a detergent-compatible assay (Bio-Rad). .. Equal amounts of protein (40 μg per lane) were separated on 4-15% gradient SDS-PAGE stain-free gels (Bio-Rad), transferred to nitrocellulose membranes, and probed overnight at 4 °C with either a polyclonal rabbit anti-SK3 antibody (1:500, Alomone Labs, APC-025) or an anti-actin antibody (1:1,000, A2066, Sigma-Aldrich) in Tris-buffered saline containing 5% fat-free milk. .. Membranes were then incubated for 1 h at room temperature with a goat anti-rabbit horseradish peroxidase-conjugated secondary antibody (1:40,000; Thermo Fisher).



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    a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or <t>SK3-targeting</t> shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.
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    FIGURE 3 Analysis of KCa channel expression in mice tail arteries. (a) Immunoblot analysis. Lysates from six tail arteries from different mice were assessed, and HUVECs were included as a positive control. Samples were assessed for β-actin to confirm adequate sample loading. (b) Immunofluorescent analysis of KCa channels. Staining with <t>SK3</t> and IK antibodies was evaluated under control conditions (untreated) and after pre- adsorption with blocking peptides (Ab Block). Staining for VE-cadherin and IEL was included to identify endothelial cells and potential location of myoendothelial projections. Line represents 10 μ. (c) Grouped data for immunofluorescence. The number of clusters associated with holes in the IEL was quantified for each field of view (an area of 82 μ squared), and data is presented as means ± SEM for 6–20 fields of view from n = 4 arteries from different mice.
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    Image Search Results


    a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or SK3-targeting shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.

    Journal: bioRxiv

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION

    doi: 10.64898/2026.03.19.712770

    Figure Lengend Snippet: a-c Voltage traces from ventromedial interneurons of the rhythmogenic CPG region (L1-L2) recorded under control conditions ( a ), after tamapin application (10 nM, b ), or after lei-dab7 application (10 nM, c ). d Bar graph showing the proportion of interneurons displaying bursting in response to increasing concentrations of lei-dab7 (teal) or tamapin (purple). e Representative action potentials evoked by near-threshold current injections under control conditions (black), tamapin (purple), or lei-dab7 (teal). f-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying AHP amplitude ( f ), AHP duration ( g ), and firing frequency ( h ) under the three conditions. i-k Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying burst duration ( i ), amplitude ( j ), and frequency ( k ) across interneurons treated with apamin (pink), tamapin (purple), or lei-dab7 (teal). l-o Representative voltage traces from interneurons expressing control shRNA ( l ) or SK3-targeting shRNA ( m-o ), showing heterogeneous bursting phenotypes: bursts at rest/rheobase ( m ), bursts requiring stronger depolarization ( n ), and elliptic bursting dynamics ( o ). p-r Raincloud plots comparing burst duration ( p ), amplitude ( q ), and frequency ( r ) in interneurons after SK3 knockdown (orange) and after apamin application (pink). Numbers in parentheses denote recorded cells; each dot represents a single cell. Data points plotted beyond the dashed vertical line indicate values outside the axis range. n.s., not significant; * P < 0.05; ** P < 0.01; *** P < 0.001 (two-sided Fisher’s exact test for d ; Kruskal-Wallis with Dunn’s post hoc test versus control for f-h and i-k ; two-sided Mann-Whitney test for p-r ). For detailed P values, see Source Data.

    Article Snippet: Equal amounts of protein (40 μg per lane) were separated on 4-15% gradient SDS-PAGE stain-free gels (Bio-Rad), transferred to nitrocellulose membranes, and probed overnight at 4 °C with either a polyclonal rabbit anti-SK3 antibody (1:500, Alomone Labs, APC-025) or an anti-actin antibody (1:1,000, A2066, Sigma-Aldrich) in Tris-buffered saline containing 5% fat-free milk.

    Techniques: Control, Whisker Assay, Expressing, shRNA, Knockdown, Single Cell, MANN-WHITNEY

    a Representative low-magnification confocal image of GFP-expressing Hb9 interneurons in the ventromedial spinal cord. The asterisk marks the soma of an identified interneuron. The central canal (cc) is indicated by the dashed line. Scale bar, 25 µm. b High-magnification images of the soma indicated in a , showing GFP fluorescence (top), SK2 immunolabeling (middle), and a merged GFP/SK2 overlay (bottom). Dashed lines delineate the somatic membrane. Scale bar, 10 µm. c-d Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( c ) and density ( d , clusters per µm 2 ) of SK2, SK3, and co-localized SK2/3 clusters at the somatic membrane. e Confocal images of an Hb9 interneuron soma showing GFP (left), SK3 immunolabeling (middle), and a merged GFP/SK3 overlay (right). Dashed lines delineate the somatic membrane. Scale bar, 20 µm. f Confocal images of an intracellularly recorded HB9 interneuron filled with biocytin (magenta), showing GFP immunofluorescence (green), SK2 (red), and SK3 immunolabeling (cyan), alongside a merged GFP/SK3 signal. Scale bar, 20 µm. g-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( g ) and density ( h ) of SK2, SK3, and co-localized clusters along the dendrites. Numbers in parentheses denote the number of cells ( c, d ) or dendrites ( g, h ) analyzed; each dot represents a single measurement. *** P < 0.001 (two-sided unpaired t-test for c and g ; One-way ANOVA for d and h ). For detailed P values, see Source data.

    Journal: bioRxiv

    Article Title: SK2/3 CHANNELS COUPLE WITH T-TYPE CA 2+ CHANNELS TO GATE SPINAL LOCOMOTOR RHYTHM GENERATION

    doi: 10.64898/2026.03.19.712770

    Figure Lengend Snippet: a Representative low-magnification confocal image of GFP-expressing Hb9 interneurons in the ventromedial spinal cord. The asterisk marks the soma of an identified interneuron. The central canal (cc) is indicated by the dashed line. Scale bar, 25 µm. b High-magnification images of the soma indicated in a , showing GFP fluorescence (top), SK2 immunolabeling (middle), and a merged GFP/SK2 overlay (bottom). Dashed lines delineate the somatic membrane. Scale bar, 10 µm. c-d Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( c ) and density ( d , clusters per µm 2 ) of SK2, SK3, and co-localized SK2/3 clusters at the somatic membrane. e Confocal images of an Hb9 interneuron soma showing GFP (left), SK3 immunolabeling (middle), and a merged GFP/SK3 overlay (right). Dashed lines delineate the somatic membrane. Scale bar, 20 µm. f Confocal images of an intracellularly recorded HB9 interneuron filled with biocytin (magenta), showing GFP immunofluorescence (green), SK2 (red), and SK3 immunolabeling (cyan), alongside a merged GFP/SK3 signal. Scale bar, 20 µm. g-h Raincloud plots with box-and-whisker overlays (median, interquartile range) quantifying the size ( g ) and density ( h ) of SK2, SK3, and co-localized clusters along the dendrites. Numbers in parentheses denote the number of cells ( c, d ) or dendrites ( g, h ) analyzed; each dot represents a single measurement. *** P < 0.001 (two-sided unpaired t-test for c and g ; One-way ANOVA for d and h ). For detailed P values, see Source data.

    Article Snippet: Equal amounts of protein (40 μg per lane) were separated on 4-15% gradient SDS-PAGE stain-free gels (Bio-Rad), transferred to nitrocellulose membranes, and probed overnight at 4 °C with either a polyclonal rabbit anti-SK3 antibody (1:500, Alomone Labs, APC-025) or an anti-actin antibody (1:1,000, A2066, Sigma-Aldrich) in Tris-buffered saline containing 5% fat-free milk.

    Techniques: Expressing, Fluorescence, Immunolabeling, Membrane, Whisker Assay, Immunofluorescence

    FIGURE 3 Analysis of KCa channel expression in mice tail arteries. (a) Immunoblot analysis. Lysates from six tail arteries from different mice were assessed, and HUVECs were included as a positive control. Samples were assessed for β-actin to confirm adequate sample loading. (b) Immunofluorescent analysis of KCa channels. Staining with SK3 and IK antibodies was evaluated under control conditions (untreated) and after pre- adsorption with blocking peptides (Ab Block). Staining for VE-cadherin and IEL was included to identify endothelial cells and potential location of myoendothelial projections. Line represents 10 μ. (c) Grouped data for immunofluorescence. The number of clusters associated with holes in the IEL was quantified for each field of view (an area of 82 μ squared), and data is presented as means ± SEM for 6–20 fields of view from n = 4 arteries from different mice.

    Journal: Physiological reports

    Article Title: Cooling-induced cutaneous vasodilatation is mediated by small-conductance, calcium-activated potassium channels in tail arteries from male mice.

    doi: 10.14814/phy2.15884

    Figure Lengend Snippet: FIGURE 3 Analysis of KCa channel expression in mice tail arteries. (a) Immunoblot analysis. Lysates from six tail arteries from different mice were assessed, and HUVECs were included as a positive control. Samples were assessed for β-actin to confirm adequate sample loading. (b) Immunofluorescent analysis of KCa channels. Staining with SK3 and IK antibodies was evaluated under control conditions (untreated) and after pre- adsorption with blocking peptides (Ab Block). Staining for VE-cadherin and IEL was included to identify endothelial cells and potential location of myoendothelial projections. Line represents 10 μ. (c) Grouped data for immunofluorescence. The number of clusters associated with holes in the IEL was quantified for each field of view (an area of 82 μ squared), and data is presented as means ± SEM for 6–20 fields of view from n = 4 arteries from different mice.

    Article Snippet: Arteries were opened longitudinally during fixation, rinsed in PBS (3 × 10 min), then in blocking buffer (donkey serum 1%, glycine 20 mM, and Tween 20 0.2% in PBS), and incubated overnight in blocking buffer (RT) with a goat polyclonal antibody to VE-cadherin (clone C-19, 1:500, catalog no. SC6458; Santa Cruz Biotechnology) and either rabbit polyclonal antibody to SK3 (1:100, catalog no. APC-025; Alomone) or a rabbit polyclonal antibody to IK1 (1:100, catalog no. APC-064; Alomone).

    Techniques: Expressing, Western Blot, Positive Control, Staining, Control, Adsorption, Blocking Assay, Immunofluorescence

    Type, sources, and dilution of antibodies.

    Journal: Biomedicines

    Article Title: Oviductal Telocytes in Patients with Uterine Myoma

    doi: 10.3390/biomedicines9081060

    Figure Lengend Snippet: Type, sources, and dilution of antibodies.

    Article Snippet: Polyclonal rabbit anti-KCNN3 (SK3) , APC-025, Alomone Labs, Jerusalem, Israel , 1:800.

    Techniques:

    Sample of human oviduct stained for CD34 (red, Alexa Fluor 594) and small-conductance calcium-activated potassium channels isoform 3 (SK3) (green, Alexa Fluor 488). The cell immunopositive for CD34 and SK3 was identified as tubal telocyte (has shown by arrows). This doubly immunopositive cell was observed in the muscular layer. Total magnification: ×400.

    Journal: Biomedicines

    Article Title: Oviductal Telocytes in Patients with Uterine Myoma

    doi: 10.3390/biomedicines9081060

    Figure Lengend Snippet: Sample of human oviduct stained for CD34 (red, Alexa Fluor 594) and small-conductance calcium-activated potassium channels isoform 3 (SK3) (green, Alexa Fluor 488). The cell immunopositive for CD34 and SK3 was identified as tubal telocyte (has shown by arrows). This doubly immunopositive cell was observed in the muscular layer. Total magnification: ×400.

    Article Snippet: Polyclonal rabbit anti-KCNN3 (SK3) , APC-025, Alomone Labs, Jerusalem, Israel , 1:800.

    Techniques: Staining