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adsc  (ATCC)


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    Structured Review

    ATCC adsc
    Characterization of <t>ADSC</t> EVs <t>and</t> <t>UC-MSC</t> EVs. (a) Size and concentration measurement by NTA; (b) Morphology visualization with Cryo-TEM with EVs indicated by red arrows (scale bar: 100 nm); (c) EV related biomarkers in the EV groups and cell lysate (CL) detected with Western blot, including positive markers TSG101, HSP70, CD63 and negative marker calnexin.
    Adsc, supplied by ATCC, used in various techniques. Bioz Stars score: 96/100, based on 484 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+adscs/pmc13003219-37-21-22?v=ATCC
    Average 96 stars, based on 484 article reviews
    adsc - by Bioz Stars, 2026-06
    96/100 stars

    Images

    1) Product Images from "Extracellular vesicles modulate skin aging biomarkers in a 3D reconstructed full-thickness skin model"

    Article Title: Extracellular vesicles modulate skin aging biomarkers in a 3D reconstructed full-thickness skin model

    Journal: Frontiers in Cell and Developmental Biology

    doi: 10.3389/fcell.2026.1784998

    Characterization of ADSC EVs and UC-MSC EVs. (a) Size and concentration measurement by NTA; (b) Morphology visualization with Cryo-TEM with EVs indicated by red arrows (scale bar: 100 nm); (c) EV related biomarkers in the EV groups and cell lysate (CL) detected with Western blot, including positive markers TSG101, HSP70, CD63 and negative marker calnexin.
    Figure Legend Snippet: Characterization of ADSC EVs and UC-MSC EVs. (a) Size and concentration measurement by NTA; (b) Morphology visualization with Cryo-TEM with EVs indicated by red arrows (scale bar: 100 nm); (c) EV related biomarkers in the EV groups and cell lysate (CL) detected with Western blot, including positive markers TSG101, HSP70, CD63 and negative marker calnexin.

    Techniques Used: Concentration Assay, Western Blot, Marker

    Bulk transcriptomic analysis of a reconstructed skin model after treatment with ADSC EVs and UC-MSC EVs. (a,b) Volcano plots and heatmaps showing commonly DEGs regulated by high and low doses of (a) ADSC EVs and (b) UC-MSC EVs, with 5-8 replicates per group; (c,d) Top GO terms enriched among DEGs modulated by (c) ADSC EVs and (d) UC-MSC EVs, as identified in the GO database.
    Figure Legend Snippet: Bulk transcriptomic analysis of a reconstructed skin model after treatment with ADSC EVs and UC-MSC EVs. (a,b) Volcano plots and heatmaps showing commonly DEGs regulated by high and low doses of (a) ADSC EVs and (b) UC-MSC EVs, with 5-8 replicates per group; (c,d) Top GO terms enriched among DEGs modulated by (c) ADSC EVs and (d) UC-MSC EVs, as identified in the GO database.

    Techniques Used:

    Comprehensive profiling of miRNA and protein cargo in EVs. (a) Venn diagram illustrating miRNAs in the two groups of EVs; (b) Top abundantly expressed miRNAs identified in each EV types; (c) Overlap between predicted target genes of shared miRNAs and DEGs from T-skin™ transcriptomic analysis; (d) Identified proteins in the two groups of EVs revealed by Venn plot; (e) Top expressed proteins in the two types of EVs; (f) Selected DEPs that upregulated in ADSC EVs compared to UC-MSC EVs.
    Figure Legend Snippet: Comprehensive profiling of miRNA and protein cargo in EVs. (a) Venn diagram illustrating miRNAs in the two groups of EVs; (b) Top abundantly expressed miRNAs identified in each EV types; (c) Overlap between predicted target genes of shared miRNAs and DEGs from T-skin™ transcriptomic analysis; (d) Identified proteins in the two groups of EVs revealed by Venn plot; (e) Top expressed proteins in the two types of EVs; (f) Selected DEPs that upregulated in ADSC EVs compared to UC-MSC EVs.

    Techniques Used:



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    Image Search Results


    Characterization of ADSC EVs and UC-MSC EVs. (a) Size and concentration measurement by NTA; (b) Morphology visualization with Cryo-TEM with EVs indicated by red arrows (scale bar: 100 nm); (c) EV related biomarkers in the EV groups and cell lysate (CL) detected with Western blot, including positive markers TSG101, HSP70, CD63 and negative marker calnexin.

    Journal: Frontiers in Cell and Developmental Biology

    Article Title: Extracellular vesicles modulate skin aging biomarkers in a 3D reconstructed full-thickness skin model

    doi: 10.3389/fcell.2026.1784998

    Figure Lengend Snippet: Characterization of ADSC EVs and UC-MSC EVs. (a) Size and concentration measurement by NTA; (b) Morphology visualization with Cryo-TEM with EVs indicated by red arrows (scale bar: 100 nm); (c) EV related biomarkers in the EV groups and cell lysate (CL) detected with Western blot, including positive markers TSG101, HSP70, CD63 and negative marker calnexin.

    Article Snippet: The EVs used in this study were produced by EchoBiotech (Beijing, China), using commercial human cell lines UC-MSC (ATCC #PCS-500-010) and ADSC (ATCC #PCS-500-011).

    Techniques: Concentration Assay, Western Blot, Marker

    Bulk transcriptomic analysis of a reconstructed skin model after treatment with ADSC EVs and UC-MSC EVs. (a,b) Volcano plots and heatmaps showing commonly DEGs regulated by high and low doses of (a) ADSC EVs and (b) UC-MSC EVs, with 5-8 replicates per group; (c,d) Top GO terms enriched among DEGs modulated by (c) ADSC EVs and (d) UC-MSC EVs, as identified in the GO database.

    Journal: Frontiers in Cell and Developmental Biology

    Article Title: Extracellular vesicles modulate skin aging biomarkers in a 3D reconstructed full-thickness skin model

    doi: 10.3389/fcell.2026.1784998

    Figure Lengend Snippet: Bulk transcriptomic analysis of a reconstructed skin model after treatment with ADSC EVs and UC-MSC EVs. (a,b) Volcano plots and heatmaps showing commonly DEGs regulated by high and low doses of (a) ADSC EVs and (b) UC-MSC EVs, with 5-8 replicates per group; (c,d) Top GO terms enriched among DEGs modulated by (c) ADSC EVs and (d) UC-MSC EVs, as identified in the GO database.

    Article Snippet: The EVs used in this study were produced by EchoBiotech (Beijing, China), using commercial human cell lines UC-MSC (ATCC #PCS-500-010) and ADSC (ATCC #PCS-500-011).

    Techniques:

    Comprehensive profiling of miRNA and protein cargo in EVs. (a) Venn diagram illustrating miRNAs in the two groups of EVs; (b) Top abundantly expressed miRNAs identified in each EV types; (c) Overlap between predicted target genes of shared miRNAs and DEGs from T-skin™ transcriptomic analysis; (d) Identified proteins in the two groups of EVs revealed by Venn plot; (e) Top expressed proteins in the two types of EVs; (f) Selected DEPs that upregulated in ADSC EVs compared to UC-MSC EVs.

    Journal: Frontiers in Cell and Developmental Biology

    Article Title: Extracellular vesicles modulate skin aging biomarkers in a 3D reconstructed full-thickness skin model

    doi: 10.3389/fcell.2026.1784998

    Figure Lengend Snippet: Comprehensive profiling of miRNA and protein cargo in EVs. (a) Venn diagram illustrating miRNAs in the two groups of EVs; (b) Top abundantly expressed miRNAs identified in each EV types; (c) Overlap between predicted target genes of shared miRNAs and DEGs from T-skin™ transcriptomic analysis; (d) Identified proteins in the two groups of EVs revealed by Venn plot; (e) Top expressed proteins in the two types of EVs; (f) Selected DEPs that upregulated in ADSC EVs compared to UC-MSC EVs.

    Article Snippet: The EVs used in this study were produced by EchoBiotech (Beijing, China), using commercial human cell lines UC-MSC (ATCC #PCS-500-010) and ADSC (ATCC #PCS-500-011).

    Techniques: