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human pulmonary artery adventitia fibroblast medium  (AcceGen Biotechnology)


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    Structured Review

    AcceGen Biotechnology human pulmonary artery adventitia fibroblast medium
    <t>Fibroblast</t> activation in 3D-bioprinted models of pulmonary arterial <t>adventitia.</t> A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.
    Human Pulmonary Artery Adventitia Fibroblast Medium, supplied by AcceGen Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+pulmonary+artery+adventitia+fibroblasts/bio_rxiv__2022__11__11__516188-121-6-12?v=AcceGen+Biotechnology
    Average 93 stars, based on 1 article reviews
    human pulmonary artery adventitia fibroblast medium - by Bioz Stars, 2026-08
    93/100 stars

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    1) Product Images from "3D-bioprinted, phototunable hydrogel models for studying adventitial fibroblast activation in pulmonary arterial hypertension"

    Article Title: 3D-bioprinted, phototunable hydrogel models for studying adventitial fibroblast activation in pulmonary arterial hypertension

    Journal: bioRxiv

    doi: 10.1101/2022.11.11.516188

    Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.
    Figure Legend Snippet: Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.

    Techniques Used: Activation Assay, Expressing, Construct, MANN-WHITNEY, Immunostaining, Immunofluorescence



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    AcceGen Biotechnology human pulmonary artery adventitia fibroblast medium
    <t>Fibroblast</t> activation in 3D-bioprinted models of pulmonary arterial <t>adventitia.</t> A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.
    Human Pulmonary Artery Adventitia Fibroblast Medium, supplied by AcceGen Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+pulmonary+artery+adventitia+fibroblasts/bio_rxiv__2022__11__11__516188-121-6-12?v=AcceGen+Biotechnology
    Average 93 stars, based on 1 article reviews
    human pulmonary artery adventitia fibroblast medium - by Bioz Stars, 2026-08
    93/100 stars
      Buy from Supplier

    93
    AcceGen Biotechnology human pulmonary artery adventitia fibroblasts
    <t>Fibroblast</t> activation in 3D-bioprinted models of pulmonary arterial <t>adventitia.</t> A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.
    Human Pulmonary Artery Adventitia Fibroblasts, supplied by AcceGen Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+pulmonary+artery+adventitia+fibroblasts/bio_rxiv__2022__11__11__516188-86-2-8?v=AcceGen+Biotechnology
    Average 93 stars, based on 1 article reviews
    human pulmonary artery adventitia fibroblasts - by Bioz Stars, 2026-08
    93/100 stars
      Buy from Supplier

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    Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.

    Journal: bioRxiv

    Article Title: 3D-bioprinted, phototunable hydrogel models for studying adventitial fibroblast activation in pulmonary arterial hypertension

    doi: 10.1101/2022.11.11.516188

    Figure Lengend Snippet: Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.

    Article Snippet: 3D-bioprinted constructs were cultured in complete human pulmonary artery adventitia fibroblast medium (AcceGen) supplemented with 2% FBS, 50 U mL −1 penicillin, 50 × 10 −6 M mL −1 streptomycin, and 0.5 μg mL −1 amphotericin B (Sigma) for metabolic activity experiments.

    Techniques: Activation Assay, Expressing, Construct, MANN-WHITNEY, Immunostaining, Immunofluorescence

    Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.

    Journal: bioRxiv

    Article Title: 3D-bioprinted, phototunable hydrogel models for studying adventitial fibroblast activation in pulmonary arterial hypertension

    doi: 10.1101/2022.11.11.516188

    Figure Lengend Snippet: Fibroblast activation in 3D-bioprinted models of pulmonary arterial adventitia. A) Fibrotic activation in soft and stiffened 3D hydrogels measured by αSMA expression. HPAAFs in stiffened constructs were significantly more positive for αSMA than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. B) Representative confocal images of immunostaining for αSMA, actin, and DAPI in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent αSMA immunofluorescence than cells in soft constructs. Scale bar = 250 µm. C) Fibroblast proliferation in soft and stiffened 3D bioprinted constructs measured by EdU positivity. HPAAFs in stiffened constructs were significantly more positive for EdU than cells in soft constructs. Columns represent mean ± SEM, n = 3. *, p < 0.05, Mann-Whitney U test. D) Representative confocal images of immunostaining for EdU and Hoechst dye in soft and stiffened 3D hydrogels. HPAAFs in stiffened constructs showed more prevalent EdU immunofluorescence than cells in soft constructs. Scale bar = 300 µm.

    Article Snippet: [ ] Human pulmonary artery adventitia fibroblasts (HPAAFs; Accegen, Fairfield, NJ) from a 2-year-old male patient were cultured in complete HPAAF culture media according to manufacturer instructions.

    Techniques: Activation Assay, Expressing, Construct, MANN-WHITNEY, Immunostaining, Immunofluorescence