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oral human cancer cells kb  (ATCC)


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    Structured Review

    ATCC oral human cancer cells kb
    MTT assay and optical microscopy images showing the cytotoxicity of Cu–Ag–Al nanocomposites on (a)normal <t>human</t> epithelial <t>cells</t> (b) U87 glioblastoma cells, and (c) KB <t>oral</t> carcinoma cells, after 24 h exposure. Concentration-dependent cell viability trends indicate selective cytotoxicity toward <t>cancer</t> cells, while normal epithelial cells retained high viability (> 80 %) at tested concentrations. Data represent mean ± SD ( n = 3).
    Oral Human Cancer Cells Kb, supplied by ATCC, used in various techniques. Bioz Stars score: 95/100, based on 156 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/oral human cancer cells kb/product/ATCC
    Average 95 stars, based on 156 article reviews
    oral human cancer cells kb - by Bioz Stars, 2026-06
    95/100 stars

    Images

    1) Product Images from "Next-generation suturing: Moisture-pressurized and ultrasonic synthesis of Cu–Ag–Al nanorods for antibacterial dental and dialysis applications "

    Article Title: Next-generation suturing: Moisture-pressurized and ultrasonic synthesis of Cu–Ag–Al nanorods for antibacterial dental and dialysis applications

    Journal: Ultrasonics Sonochemistry

    doi: 10.1016/j.ultsonch.2025.107672

    MTT assay and optical microscopy images showing the cytotoxicity of Cu–Ag–Al nanocomposites on (a)normal human epithelial cells (b) U87 glioblastoma cells, and (c) KB oral carcinoma cells, after 24 h exposure. Concentration-dependent cell viability trends indicate selective cytotoxicity toward cancer cells, while normal epithelial cells retained high viability (> 80 %) at tested concentrations. Data represent mean ± SD ( n = 3).
    Figure Legend Snippet: MTT assay and optical microscopy images showing the cytotoxicity of Cu–Ag–Al nanocomposites on (a)normal human epithelial cells (b) U87 glioblastoma cells, and (c) KB oral carcinoma cells, after 24 h exposure. Concentration-dependent cell viability trends indicate selective cytotoxicity toward cancer cells, while normal epithelial cells retained high viability (> 80 %) at tested concentrations. Data represent mean ± SD ( n = 3).

    Techniques Used: MTT Assay, Microscopy, Concentration Assay



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    Image Search Results


    MTT assay and optical microscopy images showing the cytotoxicity of Cu–Ag–Al nanocomposites on (a)normal human epithelial cells (b) U87 glioblastoma cells, and (c) KB oral carcinoma cells, after 24 h exposure. Concentration-dependent cell viability trends indicate selective cytotoxicity toward cancer cells, while normal epithelial cells retained high viability (> 80 %) at tested concentrations. Data represent mean ± SD ( n = 3).

    Journal: Ultrasonics Sonochemistry

    Article Title: Next-generation suturing: Moisture-pressurized and ultrasonic synthesis of Cu–Ag–Al nanorods for antibacterial dental and dialysis applications

    doi: 10.1016/j.ultsonch.2025.107672

    Figure Lengend Snippet: MTT assay and optical microscopy images showing the cytotoxicity of Cu–Ag–Al nanocomposites on (a)normal human epithelial cells (b) U87 glioblastoma cells, and (c) KB oral carcinoma cells, after 24 h exposure. Concentration-dependent cell viability trends indicate selective cytotoxicity toward cancer cells, while normal epithelial cells retained high viability (> 80 %) at tested concentrations. Data represent mean ± SD ( n = 3).

    Article Snippet: MTT assay The cytotoxicity of the Cu–Ag–Al trimetallic nanocomposite (TNCNP) was evaluated using the MTT assay on normal human epithelial cells, oral human cancer cells (KB), and glioblastoma cells (U87), all procured from the American Type Culture Collection (ATCC).

    Techniques: MTT Assay, Microscopy, Concentration Assay