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rabbit polyclonal anti piezo1 antibody  (Proteintech)


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    Structured Review

    Proteintech rabbit polyclonal anti piezo1 antibody
    Rabbit Polyclonal Anti Piezo1 Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 376 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+piezo1+antibody/Piezo1+(extracellular+domain)+Antibody/pm40812529-74-17-22
    Average 96 stars, based on 376 article reviews
    rabbit polyclonal anti piezo1 antibody - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    Centrifugation:

    Article Title: Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone.
    Article Snippet: .. Lysates were precleared with protein A/G plus-agarose beads (NC9371547, Santa Cruz, CA, USA) and pelleted by centrifugation at 7000 rpm at 4 °C for 5 min. Supernatants (precleared lysates) were then incubated with rabbit polyclonal anti-Piezo1 antibody (15,939–1-AP, Proteintech, Rosemont, IL, USA) overnight at 4 °C, followed by precipitation of the complexes after incubation with protein A/G plus-agarose beads at 4 °C. .. Immunoprecipitants were separated on 10% SDS– polyacrylamide gel and immunoblotted with mouse monoclonal anti-Cx43 (SAB4200730, Sigma) (1:200 dilution) or mouse monoclonal anti-Piezo1 antibody (MA532,876, Invitrogen) (1:500 dilution).

    Article Title: Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone
    Article Snippet: .. Lysates were precleared with protein A/G plus-agarose beads (NC9371547, Santa Cruz, CA, USA) and pelleted by centrifugation at 7000 rpm at 4 °C for 5 min. Supernatants (precleared lysates) were then incubated with rabbit polyclonal anti-Piezo1 antibody (15,939–1-AP, Proteintech, Rosemont, IL, USA) overnight at 4 °C, followed by precipitation of the complexes after incubation with protein A/G plus-agarose beads at 4 °C. .. Immunoprecipitants were separated on 10% SDS–polyacrylamide gel and immunoblotted with mouse monoclonal anti-Cx43 (SAB4200730, Sigma) (1:200 dilution) or mouse monoclonal anti-Piezo1 antibody (MA5-32,876, Invitrogen) (1:500 dilution).

    Incubation:

    Article Title: Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone.
    Article Snippet: .. Lysates were precleared with protein A/G plus-agarose beads (NC9371547, Santa Cruz, CA, USA) and pelleted by centrifugation at 7000 rpm at 4 °C for 5 min. Supernatants (precleared lysates) were then incubated with rabbit polyclonal anti-Piezo1 antibody (15,939–1-AP, Proteintech, Rosemont, IL, USA) overnight at 4 °C, followed by precipitation of the complexes after incubation with protein A/G plus-agarose beads at 4 °C. .. Immunoprecipitants were separated on 10% SDS– polyacrylamide gel and immunoblotted with mouse monoclonal anti-Cx43 (SAB4200730, Sigma) (1:200 dilution) or mouse monoclonal anti-Piezo1 antibody (MA532,876, Invitrogen) (1:500 dilution).

    Article Title: Bioinformatics analysis of the association between hsa-miR-101-3p–induced downregulation of PIEZO1 and poor prognosis in head and neck squamous cell carcinoma mediated by the focal adhesion pathway
    Article Snippet: .. Next, the primary rabbit polyclonal anti-PIEZO1 antibody (1:100; Proteintech Group, Inc.; 15939-1-AP) was added to the paraffin sections and incubated for 32 minutes using the BenchMark ULTRA automated immunohistochemistry staining instrument (Roche Diagnostics, Shanghai, China). ..

    Article Title: Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone
    Article Snippet: .. Lysates were precleared with protein A/G plus-agarose beads (NC9371547, Santa Cruz, CA, USA) and pelleted by centrifugation at 7000 rpm at 4 °C for 5 min. Supernatants (precleared lysates) were then incubated with rabbit polyclonal anti-Piezo1 antibody (15,939–1-AP, Proteintech, Rosemont, IL, USA) overnight at 4 °C, followed by precipitation of the complexes after incubation with protein A/G plus-agarose beads at 4 °C. .. Immunoprecipitants were separated on 10% SDS–polyacrylamide gel and immunoblotted with mouse monoclonal anti-Cx43 (SAB4200730, Sigma) (1:200 dilution) or mouse monoclonal anti-Piezo1 antibody (MA5-32,876, Invitrogen) (1:500 dilution).

    Article Title: Abnormal urodynamic changes in post-upper urinary tract dysfunction in ureteral obstruction rat models
    Article Snippet: .. Next, the slides were incubated with rabbit polyclonal anti-Piezo1 antibody (1:200, Proteintech, United States) at 37°C for 1 h in a dark, humidified box. .. After washing with PBS, the slides were incubated with FITC-conjugated goat anti-rabbit IgG (1:100, Abcam, United Kingdom) for 30 min. After washing with PBS, the slides were then incubated with 100 ng/mL DAPI for 10 min. After washing with PBS, the slides were embedded in 50% glycerol.

    Article Title: FSS in CTE triggers neuronal apoptosis through Piezo1-induced Ca 2+ homeostasis disruption.
    Article Snippet: The altered cerebrospinal fluid dynamics induced by strenuous competitive sports result in repeated exposure of neurons to abnormal fluid shear stress (FSS).. Although the stress intensity did not result in diffuse axonal injury, prolonged stimulation still induced chronic traumatic encephalopathy (CTE), characterized by neuronal dysfunction and apoptosis.. However, the mechanism underlying the effects of elevated FSS in axon-intact cells remains unclear.

    Article Title: Abnormal urodynamic changes in post-upper urinary tract dysfunction in ureteral obstruction rat models.
    Article Snippet: .. Next, the slides were incubated with rabbit polyclonal anti-Piezo1 antibody (1: 200, Proteintech, United States) at 37°C for 1 h in a dark, humidified box. .. After washing with PBS, the slides were incubated with FITCconjugated goat anti-rabbit IgG (1:100, Abcam, United Kingdom) for 30 min. After washing with PBS, the slides were then incubated with 100 ng/mLDAPI for 10 min. After washing with PBS, the slides were embedded in 50% glycerol.

    Immunohistochemistry:

    Article Title: Bioinformatics analysis of the association between hsa-miR-101-3p–induced downregulation of PIEZO1 and poor prognosis in head and neck squamous cell carcinoma mediated by the focal adhesion pathway
    Article Snippet: .. Next, the primary rabbit polyclonal anti-PIEZO1 antibody (1:100; Proteintech Group, Inc.; 15939-1-AP) was added to the paraffin sections and incubated for 32 minutes using the BenchMark ULTRA automated immunohistochemistry staining instrument (Roche Diagnostics, Shanghai, China). ..

    Staining:

    Article Title: Bioinformatics analysis of the association between hsa-miR-101-3p–induced downregulation of PIEZO1 and poor prognosis in head and neck squamous cell carcinoma mediated by the focal adhesion pathway
    Article Snippet: .. Next, the primary rabbit polyclonal anti-PIEZO1 antibody (1:100; Proteintech Group, Inc.; 15939-1-AP) was added to the paraffin sections and incubated for 32 minutes using the BenchMark ULTRA automated immunohistochemistry staining instrument (Roche Diagnostics, Shanghai, China). ..



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    Alomone Labs rabbit polyclonal anti piezo1 antibody
    f-SPIONs-mediated magnetic actuation upregulates <t>Piezo1</t> expression via activation of actin cytoskeleton dynamics. a RT-qPCR analysis of Piezo1 mRNA expression levels across different peripheral nerve tissues. b, c ( b ) RT-qPCR and ( c ) Western blot analyses of Piezo1 expression in Schwann cells from normal control, magnetic stimulation, f-SPIONs control, and magnetic field control groups. d Immunofluorescence imaging of F-actin and Piezo1 expression and subcellular distribution across different treatment groups: ( d 1 ) normal control, ( d 2 ) magnetic stimulation, ( d 3 ) f-SPIONs only, and ( d 4 ) magnetic field only groups. e Quantitative analysis of fluorescence intensity of F-actin and Piezo1 across different treatment groups. f Subcellular fluorescence distribution of F-actin and Piezo1 within soma and neurite compartments under magnetic stimulation. g, h Piezo1 expression levels measured by ( g ) RT-qPCR and ( h ) Western blot in magnetic stimulation, Cyto D, magnetic + Cyto D, and magnetic + Anisomycin groups. i Immunofluorescence imaging of F-actin and Piezo1 expression in SCs treated with ( i 1 ) magnetic stimulation, ( i 2 ) Cyto D, ( i 3 ) magnetic stimulation + Cyto D, and ( i 4 ) magnetic stimulation + Anisomycin. j Quantitative comparison of F-actin and Piezo1 fluorescence intensity across different treatment groups. Data are representative of three independent replicates. “n” indicates the total number of cells measured. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001
    Rabbit Polyclonal Anti Piezo1 Antibody, supplied by Alomone Labs, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    rabbit polyclonal anti piezo1 antibody - by Bioz Stars, 2026-09
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    Proteintech rabbit polyclonal anti piezo1 antibody
    f-SPIONs-mediated magnetic actuation upregulates <t>Piezo1</t> expression via activation of actin cytoskeleton dynamics. a RT-qPCR analysis of Piezo1 mRNA expression levels across different peripheral nerve tissues. b, c ( b ) RT-qPCR and ( c ) Western blot analyses of Piezo1 expression in Schwann cells from normal control, magnetic stimulation, f-SPIONs control, and magnetic field control groups. d Immunofluorescence imaging of F-actin and Piezo1 expression and subcellular distribution across different treatment groups: ( d 1 ) normal control, ( d 2 ) magnetic stimulation, ( d 3 ) f-SPIONs only, and ( d 4 ) magnetic field only groups. e Quantitative analysis of fluorescence intensity of F-actin and Piezo1 across different treatment groups. f Subcellular fluorescence distribution of F-actin and Piezo1 within soma and neurite compartments under magnetic stimulation. g, h Piezo1 expression levels measured by ( g ) RT-qPCR and ( h ) Western blot in magnetic stimulation, Cyto D, magnetic + Cyto D, and magnetic + Anisomycin groups. i Immunofluorescence imaging of F-actin and Piezo1 expression in SCs treated with ( i 1 ) magnetic stimulation, ( i 2 ) Cyto D, ( i 3 ) magnetic stimulation + Cyto D, and ( i 4 ) magnetic stimulation + Anisomycin. j Quantitative comparison of F-actin and Piezo1 fluorescence intensity across different treatment groups. Data are representative of three independent replicates. “n” indicates the total number of cells measured. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001
    Rabbit Polyclonal Anti Piezo1 Antibody, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+piezo1+antibody/Piezo1+(extracellular+domain)+Antibody/pm40812529-74-17-22
    Average 96 stars, based on 1 article reviews
    rabbit polyclonal anti piezo1 antibody - by Bioz Stars, 2026-09
    96/100 stars
      Buy from Supplier

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    Proteintech rabbit polyclonal anti piezo 1
    f-SPIONs-mediated magnetic actuation upregulates <t>Piezo1</t> expression via activation of actin cytoskeleton dynamics. a RT-qPCR analysis of Piezo1 mRNA expression levels across different peripheral nerve tissues. b, c ( b ) RT-qPCR and ( c ) Western blot analyses of Piezo1 expression in Schwann cells from normal control, magnetic stimulation, f-SPIONs control, and magnetic field control groups. d Immunofluorescence imaging of F-actin and Piezo1 expression and subcellular distribution across different treatment groups: ( d 1 ) normal control, ( d 2 ) magnetic stimulation, ( d 3 ) f-SPIONs only, and ( d 4 ) magnetic field only groups. e Quantitative analysis of fluorescence intensity of F-actin and Piezo1 across different treatment groups. f Subcellular fluorescence distribution of F-actin and Piezo1 within soma and neurite compartments under magnetic stimulation. g, h Piezo1 expression levels measured by ( g ) RT-qPCR and ( h ) Western blot in magnetic stimulation, Cyto D, magnetic + Cyto D, and magnetic + Anisomycin groups. i Immunofluorescence imaging of F-actin and Piezo1 expression in SCs treated with ( i 1 ) magnetic stimulation, ( i 2 ) Cyto D, ( i 3 ) magnetic stimulation + Cyto D, and ( i 4 ) magnetic stimulation + Anisomycin. j Quantitative comparison of F-actin and Piezo1 fluorescence intensity across different treatment groups. Data are representative of three independent replicates. “n” indicates the total number of cells measured. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001
    Rabbit Polyclonal Anti Piezo 1, supplied by Proteintech, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+polyclonal+anti+piezo1+antibody/Piezo1+(extracellular+domain)+Antibody/pmc12245448-9-0-5
    Average 96 stars, based on 1 article reviews
    rabbit polyclonal anti piezo 1 - by Bioz Stars, 2026-09
    96/100 stars
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    Image Search Results


    f-SPIONs-mediated magnetic actuation upregulates Piezo1 expression via activation of actin cytoskeleton dynamics. a RT-qPCR analysis of Piezo1 mRNA expression levels across different peripheral nerve tissues. b, c ( b ) RT-qPCR and ( c ) Western blot analyses of Piezo1 expression in Schwann cells from normal control, magnetic stimulation, f-SPIONs control, and magnetic field control groups. d Immunofluorescence imaging of F-actin and Piezo1 expression and subcellular distribution across different treatment groups: ( d 1 ) normal control, ( d 2 ) magnetic stimulation, ( d 3 ) f-SPIONs only, and ( d 4 ) magnetic field only groups. e Quantitative analysis of fluorescence intensity of F-actin and Piezo1 across different treatment groups. f Subcellular fluorescence distribution of F-actin and Piezo1 within soma and neurite compartments under magnetic stimulation. g, h Piezo1 expression levels measured by ( g ) RT-qPCR and ( h ) Western blot in magnetic stimulation, Cyto D, magnetic + Cyto D, and magnetic + Anisomycin groups. i Immunofluorescence imaging of F-actin and Piezo1 expression in SCs treated with ( i 1 ) magnetic stimulation, ( i 2 ) Cyto D, ( i 3 ) magnetic stimulation + Cyto D, and ( i 4 ) magnetic stimulation + Anisomycin. j Quantitative comparison of F-actin and Piezo1 fluorescence intensity across different treatment groups. Data are representative of three independent replicates. “n” indicates the total number of cells measured. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001

    Journal: Journal of Nanobiotechnology

    Article Title: f-SPION-mediated magnetic stimulation induces reparative Schwann cell reprogramming via cytoskeletal dynamics - gated activation of Piezo1

    doi: 10.1186/s12951-026-04105-x

    Figure Lengend Snippet: f-SPIONs-mediated magnetic actuation upregulates Piezo1 expression via activation of actin cytoskeleton dynamics. a RT-qPCR analysis of Piezo1 mRNA expression levels across different peripheral nerve tissues. b, c ( b ) RT-qPCR and ( c ) Western blot analyses of Piezo1 expression in Schwann cells from normal control, magnetic stimulation, f-SPIONs control, and magnetic field control groups. d Immunofluorescence imaging of F-actin and Piezo1 expression and subcellular distribution across different treatment groups: ( d 1 ) normal control, ( d 2 ) magnetic stimulation, ( d 3 ) f-SPIONs only, and ( d 4 ) magnetic field only groups. e Quantitative analysis of fluorescence intensity of F-actin and Piezo1 across different treatment groups. f Subcellular fluorescence distribution of F-actin and Piezo1 within soma and neurite compartments under magnetic stimulation. g, h Piezo1 expression levels measured by ( g ) RT-qPCR and ( h ) Western blot in magnetic stimulation, Cyto D, magnetic + Cyto D, and magnetic + Anisomycin groups. i Immunofluorescence imaging of F-actin and Piezo1 expression in SCs treated with ( i 1 ) magnetic stimulation, ( i 2 ) Cyto D, ( i 3 ) magnetic stimulation + Cyto D, and ( i 4 ) magnetic stimulation + Anisomycin. j Quantitative comparison of F-actin and Piezo1 fluorescence intensity across different treatment groups. Data are representative of three independent replicates. “n” indicates the total number of cells measured. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001

    Article Snippet: The membranes were subsequently incubated overnight at 4 °C with specific primary antibodies: rabbit polyclonal anti-Piezo1 antibody (1:1000, Alomone Labs, Cat. #APC-087, Jerusalem, Israel), rabbit polyclonal anti-Piezo1 antibody (1:1000, Thermo Fisher Scientific, Cat. #PA5-116998, Waltham, MA, USA), rabbit monoclonal anti-NCAM antibody (neural cell adhesion molecule, 1:1000, Abcam, Cat. #ab220360, Cambridge, UK), rabbit monoclonal anti-integrin β1 antibody (1:1000, Abcam, Cat. #ab179471, Cambridge, UK), rabbit monoclonal anti-c-Jun antibody (1:1000, Abcam, Cat. #ab40766, Cambridge, UK), rabbit monoclonal anti-STAT3 antibody (1:1000, Abcam, Cat. #ab68153, Cambridge, UK), and mouse monoclonal anti-GAPDH antibody (1:1000, Proteintech, Cat. #60004-1-Ig, Wuhan, China).

    Techniques: Expressing, Activation Assay, Quantitative RT-PCR, Western Blot, Control, Immunofluorescence, Imaging, Fluorescence, Comparison

    f-SPION-mediated magnetic actuation activates Ca 2 ⁺ dynamics in Schwann cells via Piezo1 ion channel signaling. a 1 - d 1 Representative Ca 2 ⁺ fluorescence images of SCs in the ( a 1 ) normal control, ( b 1 ) magnetic stimulation, ( c1 ) f-SPIONs control, and ( d 1 ) magnetic field control groups. a 2 -d 2 Corresponding Ca 2 ⁺ signal trajectories from the four groups, showing temporal changes in intracellular calcium. e, f Quantification of ( e ) relative fluorescence intensity change (ΔF/F₀) and ( f ) peak fluorescence intensity (F max /F 0 ) of Ca 2 ⁺ signaling in different treatment groups. g 1 -j 1 Representative Ca 2 ⁺ fluorescence images in ( g 1 ) magnetic stimulation, ( h 1 ) Cyto D, ( i 1 ) magnetic stimulation + Cyto D, and (j 1 ) magnetic stimulation + Anisomycin groups. g 2 -j 2 Corresponding Ca 2 ⁺ signal trajectories showing real-time intracellular Ca 2 ⁺ fluctuations under the above treatments. k, l Quantification of ( k ) ΔF/F₀ and ( l ) F max /F 0 in different cytoskeleton intervention groups. m 1 -p 1 Representative Ca 2 ⁺ fluorescence imaging of SCs in ( m 1 ) magnetic stimulation, ( n 1 ) GsMTx4 (Piezo1 inhibitor), ( o 1 ) magnetic stimulation + GsMTx4, and ( p 1 ) Yoda1 (Piezo1 agonist) groups. m 2 -p 2 Corresponding Ca 2 ⁺ signal trajectories under the above intervention groups. q, r Quantification of ( q ) ΔF/F₀ and ( r ) F max /F 0 across Piezo1-specific intervention groups. Each experiment was independently repeated three times. “n” indicates the total number of cells measured. Baseline fluorescence intensity (F₀) was normalized to the first 50 s of imaging. GMF exposure was initiated after 50 s, and Ca 2 ⁺ time-lapse imaging continued for a total of 650 s. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001

    Journal: Journal of Nanobiotechnology

    Article Title: f-SPION-mediated magnetic stimulation induces reparative Schwann cell reprogramming via cytoskeletal dynamics - gated activation of Piezo1

    doi: 10.1186/s12951-026-04105-x

    Figure Lengend Snippet: f-SPION-mediated magnetic actuation activates Ca 2 ⁺ dynamics in Schwann cells via Piezo1 ion channel signaling. a 1 - d 1 Representative Ca 2 ⁺ fluorescence images of SCs in the ( a 1 ) normal control, ( b 1 ) magnetic stimulation, ( c1 ) f-SPIONs control, and ( d 1 ) magnetic field control groups. a 2 -d 2 Corresponding Ca 2 ⁺ signal trajectories from the four groups, showing temporal changes in intracellular calcium. e, f Quantification of ( e ) relative fluorescence intensity change (ΔF/F₀) and ( f ) peak fluorescence intensity (F max /F 0 ) of Ca 2 ⁺ signaling in different treatment groups. g 1 -j 1 Representative Ca 2 ⁺ fluorescence images in ( g 1 ) magnetic stimulation, ( h 1 ) Cyto D, ( i 1 ) magnetic stimulation + Cyto D, and (j 1 ) magnetic stimulation + Anisomycin groups. g 2 -j 2 Corresponding Ca 2 ⁺ signal trajectories showing real-time intracellular Ca 2 ⁺ fluctuations under the above treatments. k, l Quantification of ( k ) ΔF/F₀ and ( l ) F max /F 0 in different cytoskeleton intervention groups. m 1 -p 1 Representative Ca 2 ⁺ fluorescence imaging of SCs in ( m 1 ) magnetic stimulation, ( n 1 ) GsMTx4 (Piezo1 inhibitor), ( o 1 ) magnetic stimulation + GsMTx4, and ( p 1 ) Yoda1 (Piezo1 agonist) groups. m 2 -p 2 Corresponding Ca 2 ⁺ signal trajectories under the above intervention groups. q, r Quantification of ( q ) ΔF/F₀ and ( r ) F max /F 0 across Piezo1-specific intervention groups. Each experiment was independently repeated three times. “n” indicates the total number of cells measured. Baseline fluorescence intensity (F₀) was normalized to the first 50 s of imaging. GMF exposure was initiated after 50 s, and Ca 2 ⁺ time-lapse imaging continued for a total of 650 s. Statistical significance: * p < 0.05; ** p < 0.01; *** p < 0.001

    Article Snippet: The membranes were subsequently incubated overnight at 4 °C with specific primary antibodies: rabbit polyclonal anti-Piezo1 antibody (1:1000, Alomone Labs, Cat. #APC-087, Jerusalem, Israel), rabbit polyclonal anti-Piezo1 antibody (1:1000, Thermo Fisher Scientific, Cat. #PA5-116998, Waltham, MA, USA), rabbit monoclonal anti-NCAM antibody (neural cell adhesion molecule, 1:1000, Abcam, Cat. #ab220360, Cambridge, UK), rabbit monoclonal anti-integrin β1 antibody (1:1000, Abcam, Cat. #ab179471, Cambridge, UK), rabbit monoclonal anti-c-Jun antibody (1:1000, Abcam, Cat. #ab40766, Cambridge, UK), rabbit monoclonal anti-STAT3 antibody (1:1000, Abcam, Cat. #ab68153, Cambridge, UK), and mouse monoclonal anti-GAPDH antibody (1:1000, Proteintech, Cat. #60004-1-Ig, Wuhan, China).

    Techniques: Fluorescence, Control, Imaging

    Magnetically triggered Ca 2 ⁺ dynamics induce Schwann cell reprogramming toward a reparative phenotype. a Schematic diagram of the experimental workflow investigating the regulatory effect of magnetically triggered Ca 2 ⁺ dynamics activation on the reparative phenotype of SCs. b Live-cell Ca 2 ⁺ fluorescence imaging showing the effects of different treatments on SC structural remodeling and morphological polarization: ( b 1 ) magnetic stimulation, ( b 2 ) GsMTx4 (Piezo1 inhibitor), ( b 3 ) magnetic stimulation + GsMTx4, and ( b 4 ) Yoda1 (Piezo1 agonist). c , d Quantification of ( c ) cell length and ( d ) Oi across Piezo1-specific intervention groups. e , f Expression of the transcription factor c-Jun measured by ( e ) RT-qPCR and ( f ) Western blot. g , h STAT3 expression levels evaluated using ( g ) RT-qPCR and ( h ) Western blot. i , j NCAM expression assessed by ( i ) RT-qPCR and ( j ) Western blot. k , l Expression of integrin β1 determined via ( k ) RT-qPCR and ( l ) Western blot. Each experiment was independently repeated three times. “n” indicates the total number of cells measured. Statistical significance: n.s., not significant; * p < 0.05; ** p < 0.01; *** p < 0.001

    Journal: Journal of Nanobiotechnology

    Article Title: f-SPION-mediated magnetic stimulation induces reparative Schwann cell reprogramming via cytoskeletal dynamics - gated activation of Piezo1

    doi: 10.1186/s12951-026-04105-x

    Figure Lengend Snippet: Magnetically triggered Ca 2 ⁺ dynamics induce Schwann cell reprogramming toward a reparative phenotype. a Schematic diagram of the experimental workflow investigating the regulatory effect of magnetically triggered Ca 2 ⁺ dynamics activation on the reparative phenotype of SCs. b Live-cell Ca 2 ⁺ fluorescence imaging showing the effects of different treatments on SC structural remodeling and morphological polarization: ( b 1 ) magnetic stimulation, ( b 2 ) GsMTx4 (Piezo1 inhibitor), ( b 3 ) magnetic stimulation + GsMTx4, and ( b 4 ) Yoda1 (Piezo1 agonist). c , d Quantification of ( c ) cell length and ( d ) Oi across Piezo1-specific intervention groups. e , f Expression of the transcription factor c-Jun measured by ( e ) RT-qPCR and ( f ) Western blot. g , h STAT3 expression levels evaluated using ( g ) RT-qPCR and ( h ) Western blot. i , j NCAM expression assessed by ( i ) RT-qPCR and ( j ) Western blot. k , l Expression of integrin β1 determined via ( k ) RT-qPCR and ( l ) Western blot. Each experiment was independently repeated three times. “n” indicates the total number of cells measured. Statistical significance: n.s., not significant; * p < 0.05; ** p < 0.01; *** p < 0.001

    Article Snippet: The membranes were subsequently incubated overnight at 4 °C with specific primary antibodies: rabbit polyclonal anti-Piezo1 antibody (1:1000, Alomone Labs, Cat. #APC-087, Jerusalem, Israel), rabbit polyclonal anti-Piezo1 antibody (1:1000, Thermo Fisher Scientific, Cat. #PA5-116998, Waltham, MA, USA), rabbit monoclonal anti-NCAM antibody (neural cell adhesion molecule, 1:1000, Abcam, Cat. #ab220360, Cambridge, UK), rabbit monoclonal anti-integrin β1 antibody (1:1000, Abcam, Cat. #ab179471, Cambridge, UK), rabbit monoclonal anti-c-Jun antibody (1:1000, Abcam, Cat. #ab40766, Cambridge, UK), rabbit monoclonal anti-STAT3 antibody (1:1000, Abcam, Cat. #ab68153, Cambridge, UK), and mouse monoclonal anti-GAPDH antibody (1:1000, Proteintech, Cat. #60004-1-Ig, Wuhan, China).

    Techniques: Activation Assay, Fluorescence, Imaging, Expressing, Quantitative RT-PCR, Western Blot