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human epithelial melanoma cell line a2058  (ATCC)


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    Structured Review

    ATCC human epithelial melanoma cell line a2058
    Fig. 2. – Mitochondrial activity (%) of <t>A2058</t> cells after 24 and 72 h of treatment with bullfrog oil (BFO), 5 - fluorouracil (5-FU), bullfrog oil nanoemulsion, (BFONe), bullfrog oil microemulsion (BFOMe), and bullfrog oil nanocapsules (BFONc). * Sample statistically different from the control (p < 0.05).
    Human Epithelial Melanoma Cell Line A2058, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 588 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/human+epithelial+melanoma+cell+line/A2058/pm34861632-67-1-7
    Average 97 stars, based on 588 article reviews
    human epithelial melanoma cell line a2058 - by Bioz Stars, 2026-09
    97/100 stars

    Images

    1) Product Images from "Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058)."

    Article Title: Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058).

    Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

    doi: 10.1016/j.biopha.2021.112438

    Fig. 2. – Mitochondrial activity (%) of A2058 cells after 24 and 72 h of treatment with bullfrog oil (BFO), 5 - fluorouracil (5-FU), bullfrog oil nanoemulsion, (BFONe), bullfrog oil microemulsion (BFOMe), and bullfrog oil nanocapsules (BFONc). * Sample statistically different from the control (p < 0.05).
    Figure Legend Snippet: Fig. 2. – Mitochondrial activity (%) of A2058 cells after 24 and 72 h of treatment with bullfrog oil (BFO), 5 - fluorouracil (5-FU), bullfrog oil nanoemulsion, (BFONe), bullfrog oil microemulsion (BFOMe), and bullfrog oil nanocapsules (BFONc). * Sample statistically different from the control (p < 0.05).

    Techniques Used: Activity Assay, Control

    Fig. 3. – A2058 cell death evaluation after 72 h of bullfrog oil treatment at 100 µg.mL−1. A: Untreated cells used as control; B: Cells treated with bullfrog oil; C: Cells treated with 5 – fluorouracil; D: Cells treated with bullfrog oil nanoemulsion (BFONe); E: Cells treated with bullfrog oil microemulsion (BFOMe); F: Cells treated with bullfrog oil nanocapsules (BFONc). G: Bar graph representation of average cell percentage in each cell death stage after treatment. Q1: necrosis (Annexin-V-/PI+); Q2: late apoptosis (Annexin-V+/PI+); Q3: early apoptosis (Annexin-V+/PI-); Q4: viable cells (Annexin-V-/PI-). PI: Propidium Iodide; FITC-A: Annexin V-FITC fluorescence intensity; PerCP-Cy5–5-A: Iodide propidium fluorescence intensity. n = 6. *Significant difference compared to the control (p < 0.05).
    Figure Legend Snippet: Fig. 3. – A2058 cell death evaluation after 72 h of bullfrog oil treatment at 100 µg.mL−1. A: Untreated cells used as control; B: Cells treated with bullfrog oil; C: Cells treated with 5 – fluorouracil; D: Cells treated with bullfrog oil nanoemulsion (BFONe); E: Cells treated with bullfrog oil microemulsion (BFOMe); F: Cells treated with bullfrog oil nanocapsules (BFONc). G: Bar graph representation of average cell percentage in each cell death stage after treatment. Q1: necrosis (Annexin-V-/PI+); Q2: late apoptosis (Annexin-V+/PI+); Q3: early apoptosis (Annexin-V+/PI-); Q4: viable cells (Annexin-V-/PI-). PI: Propidium Iodide; FITC-A: Annexin V-FITC fluorescence intensity; PerCP-Cy5–5-A: Iodide propidium fluorescence intensity. n = 6. *Significant difference compared to the control (p < 0.05).

    Techniques Used: Control, Fluorescence

    Fig. 4. – Intracellular ROS levels of A2058 cells after 72 h of bullfrog oil treatment at 100 µg.mL−1. BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nano capsules). * Sample statistically different from the control (p < 0.05).
    Figure Legend Snippet: Fig. 4. – Intracellular ROS levels of A2058 cells after 72 h of bullfrog oil treatment at 100 µg.mL−1. BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nano capsules). * Sample statistically different from the control (p < 0.05).

    Techniques Used: Nano-Emulsion, Capsules, Control

    Fig. 5. - Representative image of fluorescent microscopy of A2058 cells treated with different samples over 24 h: left panel 6 h of treatment; middle panel 12 h of treatment; right panel 24 h of treatment. Cell structures stained with Hoechst (Hoe) aqueous solution (blue fluorescence) and bullfrog oil Nile red (NR) stained (red fluorescence). Contrast images (Cont) with purple fluorescence (merge of Hoe and NR). Control (untreated cells); BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nanocapsules). Scale bars represent 20 µm.
    Figure Legend Snippet: Fig. 5. - Representative image of fluorescent microscopy of A2058 cells treated with different samples over 24 h: left panel 6 h of treatment; middle panel 12 h of treatment; right panel 24 h of treatment. Cell structures stained with Hoechst (Hoe) aqueous solution (blue fluorescence) and bullfrog oil Nile red (NR) stained (red fluorescence). Contrast images (Cont) with purple fluorescence (merge of Hoe and NR). Control (untreated cells); BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nanocapsules). Scale bars represent 20 µm.

    Techniques Used: Microscopy, Staining, Fluorescence, Control, Nano-Emulsion

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    Article Snippet: .. Human epithelial melanoma cell line (A375), human skin lymph node derived melanoma cell line (A2058 [ ]), human primary epidermal melanocyte cell line (HEMn), and human skin keratinocyte cell line (HaCaT) cells were purchased from American Type Culture Collection (ATCC, Rockville, MD, USA). ..



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    Fig. 2. – Mitochondrial activity (%) of A2058 cells after 24 and 72 h of treatment with bullfrog oil (BFO), 5 - fluorouracil (5-FU), bullfrog oil nanoemulsion, (BFONe), bullfrog oil microemulsion (BFOMe), and bullfrog oil nanocapsules (BFONc). * Sample statistically different from the control (p < 0.05).

    Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

    Article Title: Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058).

    doi: 10.1016/j.biopha.2021.112438

    Figure Lengend Snippet: Fig. 2. – Mitochondrial activity (%) of A2058 cells after 24 and 72 h of treatment with bullfrog oil (BFO), 5 - fluorouracil (5-FU), bullfrog oil nanoemulsion, (BFONe), bullfrog oil microemulsion (BFOMe), and bullfrog oil nanocapsules (BFONc). * Sample statistically different from the control (p < 0.05).

    Article Snippet: The Human epithelial melanoma cell line A2058 (ATCC® CRL-11147TM) and the Bullfrog (Rana catesbeiana Shaw) adipose tissue were kindly donated by Prof. Dr. José Alexandre Barbuto from the Institute of Biomedical Sciences, Tumor Immunology Laboratory – São Paulo University (USP) (São Paulo, SP, Brazil) and Asmara Produtos Naturais Ltda. (Natal, RN, Brazil), respectively.

    Techniques: Activity Assay, Control

    Fig. 3. – A2058 cell death evaluation after 72 h of bullfrog oil treatment at 100 µg.mL−1. A: Untreated cells used as control; B: Cells treated with bullfrog oil; C: Cells treated with 5 – fluorouracil; D: Cells treated with bullfrog oil nanoemulsion (BFONe); E: Cells treated with bullfrog oil microemulsion (BFOMe); F: Cells treated with bullfrog oil nanocapsules (BFONc). G: Bar graph representation of average cell percentage in each cell death stage after treatment. Q1: necrosis (Annexin-V-/PI+); Q2: late apoptosis (Annexin-V+/PI+); Q3: early apoptosis (Annexin-V+/PI-); Q4: viable cells (Annexin-V-/PI-). PI: Propidium Iodide; FITC-A: Annexin V-FITC fluorescence intensity; PerCP-Cy5–5-A: Iodide propidium fluorescence intensity. n = 6. *Significant difference compared to the control (p < 0.05).

    Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

    Article Title: Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058).

    doi: 10.1016/j.biopha.2021.112438

    Figure Lengend Snippet: Fig. 3. – A2058 cell death evaluation after 72 h of bullfrog oil treatment at 100 µg.mL−1. A: Untreated cells used as control; B: Cells treated with bullfrog oil; C: Cells treated with 5 – fluorouracil; D: Cells treated with bullfrog oil nanoemulsion (BFONe); E: Cells treated with bullfrog oil microemulsion (BFOMe); F: Cells treated with bullfrog oil nanocapsules (BFONc). G: Bar graph representation of average cell percentage in each cell death stage after treatment. Q1: necrosis (Annexin-V-/PI+); Q2: late apoptosis (Annexin-V+/PI+); Q3: early apoptosis (Annexin-V+/PI-); Q4: viable cells (Annexin-V-/PI-). PI: Propidium Iodide; FITC-A: Annexin V-FITC fluorescence intensity; PerCP-Cy5–5-A: Iodide propidium fluorescence intensity. n = 6. *Significant difference compared to the control (p < 0.05).

    Article Snippet: The Human epithelial melanoma cell line A2058 (ATCC® CRL-11147TM) and the Bullfrog (Rana catesbeiana Shaw) adipose tissue were kindly donated by Prof. Dr. José Alexandre Barbuto from the Institute of Biomedical Sciences, Tumor Immunology Laboratory – São Paulo University (USP) (São Paulo, SP, Brazil) and Asmara Produtos Naturais Ltda. (Natal, RN, Brazil), respectively.

    Techniques: Control, Fluorescence

    Fig. 4. – Intracellular ROS levels of A2058 cells after 72 h of bullfrog oil treatment at 100 µg.mL−1. BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nano capsules). * Sample statistically different from the control (p < 0.05).

    Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

    Article Title: Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058).

    doi: 10.1016/j.biopha.2021.112438

    Figure Lengend Snippet: Fig. 4. – Intracellular ROS levels of A2058 cells after 72 h of bullfrog oil treatment at 100 µg.mL−1. BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nano capsules). * Sample statistically different from the control (p < 0.05).

    Article Snippet: The Human epithelial melanoma cell line A2058 (ATCC® CRL-11147TM) and the Bullfrog (Rana catesbeiana Shaw) adipose tissue were kindly donated by Prof. Dr. José Alexandre Barbuto from the Institute of Biomedical Sciences, Tumor Immunology Laboratory – São Paulo University (USP) (São Paulo, SP, Brazil) and Asmara Produtos Naturais Ltda. (Natal, RN, Brazil), respectively.

    Techniques: Nano-Emulsion, Capsules, Control

    Fig. 5. - Representative image of fluorescent microscopy of A2058 cells treated with different samples over 24 h: left panel 6 h of treatment; middle panel 12 h of treatment; right panel 24 h of treatment. Cell structures stained with Hoechst (Hoe) aqueous solution (blue fluorescence) and bullfrog oil Nile red (NR) stained (red fluorescence). Contrast images (Cont) with purple fluorescence (merge of Hoe and NR). Control (untreated cells); BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nanocapsules). Scale bars represent 20 µm.

    Journal: Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie

    Article Title: Nanostructured systems increase the in vitro cytotoxic effect of bullfrog oil in human melanoma cells (A2058).

    doi: 10.1016/j.biopha.2021.112438

    Figure Lengend Snippet: Fig. 5. - Representative image of fluorescent microscopy of A2058 cells treated with different samples over 24 h: left panel 6 h of treatment; middle panel 12 h of treatment; right panel 24 h of treatment. Cell structures stained with Hoechst (Hoe) aqueous solution (blue fluorescence) and bullfrog oil Nile red (NR) stained (red fluorescence). Contrast images (Cont) with purple fluorescence (merge of Hoe and NR). Control (untreated cells); BFO (bullfrog oil), BFONe (bullfrog oil nano emulsion), BFOMe (bullfrog oil microemulsion), BFONc (bullfrog oil nanocapsules). Scale bars represent 20 µm.

    Article Snippet: The Human epithelial melanoma cell line A2058 (ATCC® CRL-11147TM) and the Bullfrog (Rana catesbeiana Shaw) adipose tissue were kindly donated by Prof. Dr. José Alexandre Barbuto from the Institute of Biomedical Sciences, Tumor Immunology Laboratory – São Paulo University (USP) (São Paulo, SP, Brazil) and Asmara Produtos Naturais Ltda. (Natal, RN, Brazil), respectively.

    Techniques: Microscopy, Staining, Fluorescence, Control, Nano-Emulsion

    The effect of Nutramil TM Complex and Nutramil TM Complex without calcium caseinate on mRNA expression of genes in human melanoma WM-115 and  WM-266-4  cells lines.

    Journal: Nutrients

    Article Title: Biological Effect of Food for Special Medical Purposes (Nutramil TM Complex) on Melanoma Cells in In Vitro Study

    doi: 10.3390/nu16244287

    Figure Lengend Snippet: The effect of Nutramil TM Complex and Nutramil TM Complex without calcium caseinate on mRNA expression of genes in human melanoma WM-115 and WM-266-4 cells lines.

    Article Snippet: This research was conducted with use of human primary melanoma cell line WM115 (ATCC ® CRL-1675TM), human malignant melanoma cell line WM266-4 (ATCC ® CRL-1676TM), and human foreskin fibroblast cell line BJ (ATCC ® CRL-2522TM).

    Techniques: Expressing

    Journal: Cell Genomics

    Article Title: A cis -regulatory lexicon of DNA motif combinations mediating cell-type-specific gene regulation

    doi: 10.1016/j.xgen.2022.100191

    Figure Lengend Snippet:

    Article Snippet: WM-266-4 human malignant melanoma cell line was obtained from ATCC (CRL-1676) and grown in DMEM F:12 (ThermoFisher, 11995-065) supplemented with 10% FBS.

    Techniques: Virus, Recombinant, Reverse Transcription, SYBR Green Assay, Staining, Library Quantification, HiChIP, Software