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african green monkey kidney vero cells  (ATCC)


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    Structured Review

    ATCC african green monkey kidney vero cells
    Peptide from RNF213 truncation degrades ZIKV proteins and inhibits viral replication (A) The sequence of peptide from RNF213 truncation (PR-23) and control peptide. (B) A549 cells were infected with ZIKV (MOI = 0.01) and then treated with PR-23 (10 μM). Viral replication of cell supernatant was measured by plaque assay at 48 hpi. <t>(C–J)</t> <t>HEK293T</t> cells were treated with the indicated amount of PR-23 for 24 h, and then transfected with plasmids encoding HA-tagged ZIKV proteins. After 36 h, cell lysates were harvested and detected by western blot assay. GAPDH served as an internal control. (K) <t>Vero</t> cells were treated with the indicated dose of PR-23 for 6 h and transfected with the plasmid encoding GFP-tagged ZIKV E protein. After 36 h, the cells were fixed and subjected to immunofluorescence assay. The nucleus was stained with DAPI (blue). Images were obtained using a laser confocal microscope. Scale bars, 100 μm. Data are expressed as the mean ± SD from three independent experiments ( n = 3; ns, p > 0.05; ∗, p < 0.05; ∗∗∗, p < 0.001; ∗∗∗∗, p < 0.0001).
    African Green Monkey Kidney Vero Cells, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 18024 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/monkey+kidney+cells/Vero/pmc13266186-240-9-19
    Average 99 stars, based on 18024 article reviews
    african green monkey kidney vero cells - by Bioz Stars, 2026-10
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    1) Product Images from "RNF213 isoform 2 restricts Zika virus through antiviral signaling and viral protein degradation"

    Article Title: RNF213 isoform 2 restricts Zika virus through antiviral signaling and viral protein degradation

    Journal: iScience

    doi: 10.1016/j.isci.2026.116284

    Peptide from RNF213 truncation degrades ZIKV proteins and inhibits viral replication (A) The sequence of peptide from RNF213 truncation (PR-23) and control peptide. (B) A549 cells were infected with ZIKV (MOI = 0.01) and then treated with PR-23 (10 μM). Viral replication of cell supernatant was measured by plaque assay at 48 hpi. (C–J) HEK293T cells were treated with the indicated amount of PR-23 for 24 h, and then transfected with plasmids encoding HA-tagged ZIKV proteins. After 36 h, cell lysates were harvested and detected by western blot assay. GAPDH served as an internal control. (K) Vero cells were treated with the indicated dose of PR-23 for 6 h and transfected with the plasmid encoding GFP-tagged ZIKV E protein. After 36 h, the cells were fixed and subjected to immunofluorescence assay. The nucleus was stained with DAPI (blue). Images were obtained using a laser confocal microscope. Scale bars, 100 μm. Data are expressed as the mean ± SD from three independent experiments ( n = 3; ns, p > 0.05; ∗, p < 0.05; ∗∗∗, p < 0.001; ∗∗∗∗, p < 0.0001).
    Figure Legend Snippet: Peptide from RNF213 truncation degrades ZIKV proteins and inhibits viral replication (A) The sequence of peptide from RNF213 truncation (PR-23) and control peptide. (B) A549 cells were infected with ZIKV (MOI = 0.01) and then treated with PR-23 (10 μM). Viral replication of cell supernatant was measured by plaque assay at 48 hpi. (C–J) HEK293T cells were treated with the indicated amount of PR-23 for 24 h, and then transfected with plasmids encoding HA-tagged ZIKV proteins. After 36 h, cell lysates were harvested and detected by western blot assay. GAPDH served as an internal control. (K) Vero cells were treated with the indicated dose of PR-23 for 6 h and transfected with the plasmid encoding GFP-tagged ZIKV E protein. After 36 h, the cells were fixed and subjected to immunofluorescence assay. The nucleus was stained with DAPI (blue). Images were obtained using a laser confocal microscope. Scale bars, 100 μm. Data are expressed as the mean ± SD from three independent experiments ( n = 3; ns, p > 0.05; ∗, p < 0.05; ∗∗∗, p < 0.001; ∗∗∗∗, p < 0.0001).

    Techniques Used: Sequencing, Control, Infection, Plaque Assay, Transfection, Western Blot, Plasmid Preparation, Immunofluorescence, Staining, Microscopy

    Related Articles

    other:

    Article Title: Anti-IFNAR1 antibodies
    Article Snippet: 23:243-251 (1980)); monkey kidney cells (CVI ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL-1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human liver cells (Hep G2, HB 8065); mouse mammary tumor (MMT 060562, ATCC CCL51); TRI cells (Mather et al., Annals N.Y. Acad.

    Article Title: Downstream processing of bispecific antibody constructs
    Article Snippet: 23: 243-251 (1980)); monkey kidney cells (CVI ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human liver cells (Hep G2,1413 8065); mouse mammary tumor (MMT 060562, ATCC CCLS 1); TRI cells (Mather et al., Annals N. Y Acad.

    Article Title: Humanized antibodies with ultralong complementary determining regions
    Article Snippet: 23:243-251 (1980); monkey kidney cells (CV1 ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL-1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human liver cells (Hep G2, HB 8065); mouse mammary tumor (MMT 060562, ATCC CCL51); TRI cells (Mather et al., Annals N.Y. Acad.

    Article Title: Low pH pharmaceutical composition comprising T cell engaging antibody constructs
    Article Snippet: 23: 243-251 (1980)); monkey kidney cells (CVI ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human liver cells (Hep G2,1413 8065); mouse mammary tumor (MMT 060562, ATCC CCL5 1); TRI cells (Mather et al., Annals N. Y Acad.

    Article Title: Anti-MCT1 antibodies and uses thereof
    Article Snippet: Reprod., 23:243-251 (1980)); monkey kidney cells (CV1 ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL-1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human liver cells (Hep G2, HB 8065); mouse mammary tumor (MMT 060562, ATCC CCL51); TRI cells (Mather et al., Annals N. Y. Acad.

    Article Title: Engineering the hinge region to drive antibody dimerization
    Article Snippet: 23:243-251, 1980); monkey kidney cells (CV1 ATCC CCL 70); African green monkey kidney cells (VERO-76, ATCC CRL-1587); human cervical carcinoma cells (HELA, ATCC CCL 2); canine kidney cells (MDCK, ATCC CCL 34); buffalo rat liver cells (BRL 3A, ATCC CRL 1442); human lung cells (W138, ATCC CCL 75); human hepatoma cells (Hep G2, HB 8065); mouse mammary tumor (MMT 060562, ATCC CCL51); TRI cells (Mather et al., Annals N. Y Acad.

    Suspension:

    Article Title: Methods for analyzing chain mispairing in multispecific binding proteins
    Article Snippet: .. Examples of mammalian host cells may include, for example, human embryonic kidney cells (e.g., 293 or 293 cells subcloned for growth in suspension culture), Expi293TM cells, Chinese hamster ovary (CHO) cells, baby hamster kidney cells (e.g., BHK, ATCC CCL 10), mouse sertoli cells (e.g., TM4 cells), monkey kidney cells (e.g., CV1 ATCC CCL 70), African green monkey kidney cells (e.g., VERO-76, ATCC CRL-1587), human cervical carcinoma cells (e.g., HELA, ATCC CCL 2), canine kidney cells (e.g., MDCK, ATCC CCL 34), buffalo rat liver cells (e.g., BRL 3A, ATCC CRL 1442), human lung cells (e.g., W138, ATCC CCL 75), human liver cells (e.g., Hep G2, HB 8065), mouse mammary tumor cells (e.g., MMT 060562, ATCC CCL51), TRI cells, MRC 5 cells, FS4 cells, a human hepatoma line (e.g., Hep G2), and myeloma cells (e.g., NS0 and Sp2/0 cells). ..

    Derivative Assay:

    Article Title: Interleukin-2 muteins for the expansion of T-regulatory cells
    Article Snippet: .. Examples of suitable mammalian host cell lines include the COS-7 line of monkey kidney cells (ATCC CRL 1651) (Gluzman et al., 1981, Cell 23:175), L cells, 293 cells, C127 cells, 3T3 cells (ATCC CCL 163), Chinese hamster ovary (CHO) cells, or their derivatives such as Veggie CHO and related cell lines which grow in serum-free media (Rasmussen et al., 1998, Cytotechnology 28: 31), HeLa cells, BHK (ATCC CRL 10) cell lines, and the CVI/EBNA cell line derived from the African green monkey kidney cell line CVI (ATCC CCL 70) as described by McMahan et al., 1991, EMBO J. ..



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    Image Search Results


    Peptide from RNF213 truncation degrades ZIKV proteins and inhibits viral replication (A) The sequence of peptide from RNF213 truncation (PR-23) and control peptide. (B) A549 cells were infected with ZIKV (MOI = 0.01) and then treated with PR-23 (10 μM). Viral replication of cell supernatant was measured by plaque assay at 48 hpi. (C–J) HEK293T cells were treated with the indicated amount of PR-23 for 24 h, and then transfected with plasmids encoding HA-tagged ZIKV proteins. After 36 h, cell lysates were harvested and detected by western blot assay. GAPDH served as an internal control. (K) Vero cells were treated with the indicated dose of PR-23 for 6 h and transfected with the plasmid encoding GFP-tagged ZIKV E protein. After 36 h, the cells were fixed and subjected to immunofluorescence assay. The nucleus was stained with DAPI (blue). Images were obtained using a laser confocal microscope. Scale bars, 100 μm. Data are expressed as the mean ± SD from three independent experiments ( n = 3; ns, p > 0.05; ∗, p < 0.05; ∗∗∗, p < 0.001; ∗∗∗∗, p < 0.0001).

    Journal: iScience

    Article Title: RNF213 isoform 2 restricts Zika virus through antiviral signaling and viral protein degradation

    doi: 10.1016/j.isci.2026.116284

    Figure Lengend Snippet: Peptide from RNF213 truncation degrades ZIKV proteins and inhibits viral replication (A) The sequence of peptide from RNF213 truncation (PR-23) and control peptide. (B) A549 cells were infected with ZIKV (MOI = 0.01) and then treated with PR-23 (10 μM). Viral replication of cell supernatant was measured by plaque assay at 48 hpi. (C–J) HEK293T cells were treated with the indicated amount of PR-23 for 24 h, and then transfected with plasmids encoding HA-tagged ZIKV proteins. After 36 h, cell lysates were harvested and detected by western blot assay. GAPDH served as an internal control. (K) Vero cells were treated with the indicated dose of PR-23 for 6 h and transfected with the plasmid encoding GFP-tagged ZIKV E protein. After 36 h, the cells were fixed and subjected to immunofluorescence assay. The nucleus was stained with DAPI (blue). Images were obtained using a laser confocal microscope. Scale bars, 100 μm. Data are expressed as the mean ± SD from three independent experiments ( n = 3; ns, p > 0.05; ∗, p < 0.05; ∗∗∗, p < 0.001; ∗∗∗∗, p < 0.0001).

    Article Snippet: Human embryonic kidney (HEK293T), human lung adenocarcinoma (A549), and African green monkey kidney (Vero) cells were purchased from the American Type Culture Collection (ATCC), IFNAR-knockout A549 cells were kindly provided by Prof. Genhong Cheng (Guangzhou National Laboratory).

    Techniques: Sequencing, Control, Infection, Plaque Assay, Transfection, Western Blot, Plasmid Preparation, Immunofluorescence, Staining, Microscopy