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anti 53bp1  (Novus Biologicals)


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    Structured Review

    Novus Biologicals anti 53bp1
    Anti 53bp1, supplied by Novus Biologicals, used in various techniques. Bioz Stars score: 96/100, based on 855 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/anti+53bp1/53BP1+Antibody+-+BSA+Free/us12612624-890-0-10
    Average 96 stars, based on 855 article reviews
    anti 53bp1 - by Bioz Stars, 2026-09
    96/100 stars

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    Incubation:

    Article Title: Effect of hydroxychloroquine pre-treatment on acute radiosensitivity of thyroid in young rats
    Article Snippet: .. The sections were incubated overnight at 4 °C with an anti-53BP1 (NB100-304SS, Novus, Littleton, CO, USA), anti-LC3 (PM036, MBL, Nagoya, Japan) and anti-p62/SQSTM1 (PM045, MBL) polyclonal antibody (1:1000 dilution) diluted with Chem-Mate antibody diluent (S2022, Agilent). .. The sections were subsequently incubated with an Alexa Fluor 488-conjugated goat anti-rabbit antibody (A11008, Invitrogen, Carlsbad, CA, USA or ab150081, Abcam) and counterstained with VECTASHIELD Mounting Medium containing DAPI (H-1500, Vector Laboratories, Burlingame, CA, USA).

    Article Title: Use of 6-thio-dG to treat therapy-resistant telomerasepositive pediatric brain tumors
    Article Snippet: .. The samples were incubated in blocking solution (5% donkey serum, 0.3% Triton X-100 in TBS) for 30 minutes and treated with anti-53BP1 (rabbit 1:500; Novus Biologicals) for 1 hour at room temperature. .. After washing in TBST (×3), the samples were incubated with secondary antibody Alexa-Fluor 488-conjugated donkey anti-rabbit (1:400; Jackson ImmunoResearch), and washed in TBS (×3).

    Article Title: Effect of hydroxychloroquine pre-treatment on acute radiosensitivity of thyroid in young rats.
    Article Snippet: .. The sections were incubated overnight at 4 °C with an anti-53BP1 (NB100-304SS, Novus, Littleton, CO, USA), anti-LC3 (PM036, MBL, Nagoya, Japan) and anti-p62/SQSTM1 (PM045, MBL) polyclonal antibody (1:1000 dilution) diluted with Chem-Mate antibody diluent (S2022, Agilent). .. The sections were subsequently incubated with an Alexa Fluor 488-conjugated goat antirabbit antibody (A11008, Invitrogen, Carlsbad, CA, USA or ab150081, Abcam) and counterstained with VECTASHIELD Mounting Medium containing DAPI (H-1500, Vector Laboratories, Burlingame, CA, USA).

    other:

    Article Title: PRKN-Mediated Ubiquitin-Proteasome Degradation of METTL3 Promotes Cellular Senescence.
    Article Snippet: After 72 h, IF- FISH was performed as previously described (Mao et al. 2016), with the following modifications: Cells were incubated with a primary antibody against 53BP1(1:100, NB100- 304, Novus Biologicals) for 1.5 h at room temperature; followed by incubation with Alexa Fluor 488/633 conjugated anti- rabbit IgG sencondary antibody for 1h at room temperature.

    Article Title: Light-inducible CRISPR/Cas9 system for genome editing
    Article Snippet: Alexa647 and Alexa750 conjugated Goat anti-rabbit IgG (H+L) antibody (A21245, A21039) and Cy5 conjugated Goat anti-mouse antibody (A10524) were purchased from Thermo Fisher.

    Blocking Assay:

    Article Title: Use of 6-thio-dG to treat therapy-resistant telomerasepositive pediatric brain tumors
    Article Snippet: .. The samples were incubated in blocking solution (5% donkey serum, 0.3% Triton X-100 in TBS) for 30 minutes and treated with anti-53BP1 (rabbit 1:500; Novus Biologicals) for 1 hour at room temperature. .. After washing in TBST (×3), the samples were incubated with secondary antibody Alexa-Fluor 488-conjugated donkey anti-rabbit (1:400; Jackson ImmunoResearch), and washed in TBS (×3).

    Immunostaining:

    Article Title: Stiffness Drives Endothelial Senescence and Inflammation in Aging and Doxorubicin-Induced Vascular Dysfunction
    Article Snippet: .. Samples were mounted with DAPI antifade medium and stored at –20 ◦ C. Reagents used for immunostaining: Formaldehyde (Fisher Scientific, 10630813, 4% in PBS); TritonX-100 (Sigma, X100, 0.1% in PBS); Bovine serum albumin (Sigma, A9418-50G, 1% in PBS); Vectashield Mounting media DAPI (Vector Laboratories, A300-081A, N/A); anti- γ -H2AX (Thermo Fisher, A300-081A, 1:800); anti-p21 (Proteintech, 67362-1-Ig, 1:100); anti-p53 (Proteintech, 60283-1-Ig, 1:100); anti-Yap (Santa Cruz, SC-101199, 1:200); anti-Tubulin (Proteintech, 66031-1-Ig, 1:100); anti-53BP1 (Novus Biotech, NB100-305, 1:2000); anti- γ -H2AX (Millipore, 05-636, 1:2000); Rabbit 647 Alexa (Life Technologies, A31573, 1:800); Mouse 488 Alexa (Life Technologies, A-11001, 1:800); Cy3 rabbit anti-mouse (Jackson Immuno, 315-165-300, 1:200); Alexa Fluor donkey 488 anti-rabbit (Thermo Fisher, A-21206, 1:200); 488 Phalloidin (Thermo Fisher, 6A12379, 1:250); CoraLite 594 Phalloidin (Proteintech, PF00003, 1:200); NucBlue Live Ready Probes (Thermo, R37605, 2 drops/mL). ..



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    RPA1 depletion and cisplatin sensitivity. A. Representative western blot of RPA1 knock down (KD) using siRNA in PEO4 cells. B. Clonogenic assay of cisplatin sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest Cisplatin dose was 18 %. C. Immunofluorescent analysis of <t>53BP1</t> and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with cisplatin (5 μM) for 24 hours. D. Quantification of 53BP1 nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. F. Cell cycle analysis of UT and cisplatin (5 μM) treated control PEO4 and PEO4_RPA1_KD cells G. Annexin V analysis of UT and cisplatin (5 μM) treated PEO4 and PEO4_RPA1_KD cells. H. Representative western blot of RPA1 knock down (KD) using siRNA in A2780cis cells. I. Clonogenic assay of cisplatin sensitivity in control A2780cis and RPA1_KD_ A2780cis cells. A2780cis plating efficiency at the highest Cisplatin dose was 32 %. J. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. K. Cell cycle analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. L. Annexin V analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. UT = untreated cells; T = cisplatin treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.
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    RPA1 depletion and cisplatin sensitivity. A. Representative western blot of RPA1 knock down (KD) using siRNA in PEO4 cells. B. Clonogenic assay of cisplatin sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest Cisplatin dose was 18 %. C. Immunofluorescent analysis of <t>53BP1</t> and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with cisplatin (5 μM) for 24 hours. D. Quantification of 53BP1 nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. F. Cell cycle analysis of UT and cisplatin (5 μM) treated control PEO4 and PEO4_RPA1_KD cells G. Annexin V analysis of UT and cisplatin (5 μM) treated PEO4 and PEO4_RPA1_KD cells. H. Representative western blot of RPA1 knock down (KD) using siRNA in A2780cis cells. I. Clonogenic assay of cisplatin sensitivity in control A2780cis and RPA1_KD_ A2780cis cells. A2780cis plating efficiency at the highest Cisplatin dose was 32 %. J. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. K. Cell cycle analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. L. Annexin V analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. UT = untreated cells; T = cisplatin treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.
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    RPA1 depletion and cisplatin sensitivity. A. Representative western blot of RPA1 knock down (KD) using siRNA in PEO4 cells. B. Clonogenic assay of cisplatin sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest Cisplatin dose was 18 %. C. Immunofluorescent analysis of <t>53BP1</t> and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with cisplatin (5 μM) for 24 hours. D. Quantification of 53BP1 nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. F. Cell cycle analysis of UT and cisplatin (5 μM) treated control PEO4 and PEO4_RPA1_KD cells G. Annexin V analysis of UT and cisplatin (5 μM) treated PEO4 and PEO4_RPA1_KD cells. H. Representative western blot of RPA1 knock down (KD) using siRNA in A2780cis cells. I. Clonogenic assay of cisplatin sensitivity in control A2780cis and RPA1_KD_ A2780cis cells. A2780cis plating efficiency at the highest Cisplatin dose was 32 %. J. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. K. Cell cycle analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. L. Annexin V analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. UT = untreated cells; T = cisplatin treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.
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    Image Search Results


    RPA1 depletion and cisplatin sensitivity. A. Representative western blot of RPA1 knock down (KD) using siRNA in PEO4 cells. B. Clonogenic assay of cisplatin sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest Cisplatin dose was 18 %. C. Immunofluorescent analysis of 53BP1 and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with cisplatin (5 μM) for 24 hours. D. Quantification of 53BP1 nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. F. Cell cycle analysis of UT and cisplatin (5 μM) treated control PEO4 and PEO4_RPA1_KD cells G. Annexin V analysis of UT and cisplatin (5 μM) treated PEO4 and PEO4_RPA1_KD cells. H. Representative western blot of RPA1 knock down (KD) using siRNA in A2780cis cells. I. Clonogenic assay of cisplatin sensitivity in control A2780cis and RPA1_KD_ A2780cis cells. A2780cis plating efficiency at the highest Cisplatin dose was 32 %. J. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. K. Cell cycle analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. L. Annexin V analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. UT = untreated cells; T = cisplatin treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.

    Journal: Translational Oncology

    Article Title: Clinicopathological and functional evaluation of replication protein A in epithelial ovarian cancers: A target validation study

    doi: 10.1016/j.tranon.2026.102709

    Figure Lengend Snippet: RPA1 depletion and cisplatin sensitivity. A. Representative western blot of RPA1 knock down (KD) using siRNA in PEO4 cells. B. Clonogenic assay of cisplatin sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest Cisplatin dose was 18 %. C. Immunofluorescent analysis of 53BP1 and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with cisplatin (5 μM) for 24 hours. D. Quantification of 53BP1 nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. F. Cell cycle analysis of UT and cisplatin (5 μM) treated control PEO4 and PEO4_RPA1_KD cells G. Annexin V analysis of UT and cisplatin (5 μM) treated PEO4 and PEO4_RPA1_KD cells. H. Representative western blot of RPA1 knock down (KD) using siRNA in A2780cis cells. I. Clonogenic assay of cisplatin sensitivity in control A2780cis and RPA1_KD_ A2780cis cells. A2780cis plating efficiency at the highest Cisplatin dose was 32 %. J. Quantification of γH2AX nuclear fluorescence in UT and cisplatin (5 μM) treated control PEO4 and PEO4 _RPA1_KD cells. K. Cell cycle analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. L. Annexin V analysis of UT and cisplatin (5 μM) treated control A2780cis and A2780cis_RPA1_KD treated cells. UT = untreated cells; T = cisplatin treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.

    Article Snippet: Briefly, the cells were fixed with 4 % paraformaldehyde (8187,085,000, Sigma Aldrich, UK) for 30 min, permeabilised with 300 μL per well of 0.1 % Triton (85,111, Thermo Fisher Scientific, UK) for 30 min, incubated with 3 % BSA (A7906, Sigma, UK) for 1 h, incubated with 300 μL of diluted primary antibody as follows; 53BP1 [clone:4937S, Cell Signalling, 1:200, overnight at 4°C], γH2AX [clone: JBW301, Sigma, 1:500, overnight at 4°C], Alexa-fluor 488 goat anti-Mouse secondary antibody [clone: A-11,029, 1:200 Thermo Fisher, 1 h at room temperature] and Goat anti-rabbit secondary antibody, TRITC [clone: T-2769, 1:500 Thermo Fisher, 1 h at room temperature].

    Techniques: Western Blot, Knockdown, Clonogenic Assay, Control, Fluorescence, Cell Cycle Assay, Standard Deviation

    RPA1 depletion and PARP inhibitor sensitivity in PEO4 cells. A. Clonogenic assay of talazoparib sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest dose of talazoparib was 10 %. B. Immunofluorescent analysis of 53BP1 and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with talazoparib (800 nM) for 24 hours. C. Quantification of 53BP1 nuclear fluorescence in UT and talazoparib (800 nM) treated control PEO4 and PEO4 _RPA1_KD cells. D. Quantification of γH2AX nuclear fluorescence in UT and talazoparib (800 nM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Cell cycle analysis in UT and talazoparib (800 nM) treated control PEO4 and PEO4_RPA1_KD cells F. Annexin V analysis of UT and talazoparib (800 nM) treated PEO4 and PEO4_RPA1_KD cells. G. Clonogenic assay of olaparib sensitivity in control PEO4 and RPA1_KD_ PEO4 cells. PEO4 plating efficiency at the highest dose of olaparib was 13 %. H. Quantification of γH2AX nuclear fluorescence in UT and Olaparib (6 μM) treated control PEO4 and PEO4 _RPA1_KD cells. I. Cell cycle analysis in UT and Olaparib (6 μM) treated control PEO4 and PEO4_RPA1_KD treated cells. J. Annexin V analysis of UT and Olaparib (6 μM) treated control PEO4 and PEO4_RPA1_KD treated cells. UT = untreated cells; T = talazoparib or olaparib treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.

    Journal: Translational Oncology

    Article Title: Clinicopathological and functional evaluation of replication protein A in epithelial ovarian cancers: A target validation study

    doi: 10.1016/j.tranon.2026.102709

    Figure Lengend Snippet: RPA1 depletion and PARP inhibitor sensitivity in PEO4 cells. A. Clonogenic assay of talazoparib sensitivity in control PEO4 and RPA1_KD_PEO4 cells. PEO4 plating efficiency at the highest dose of talazoparib was 10 %. B. Immunofluorescent analysis of 53BP1 and γH2AX in control PEO4 and PEO4_RPA1_KD cells untreated (UT) and treated with talazoparib (800 nM) for 24 hours. C. Quantification of 53BP1 nuclear fluorescence in UT and talazoparib (800 nM) treated control PEO4 and PEO4 _RPA1_KD cells. D. Quantification of γH2AX nuclear fluorescence in UT and talazoparib (800 nM) treated control PEO4 and PEO4 _RPA1_KD cells. E. Cell cycle analysis in UT and talazoparib (800 nM) treated control PEO4 and PEO4_RPA1_KD cells F. Annexin V analysis of UT and talazoparib (800 nM) treated PEO4 and PEO4_RPA1_KD cells. G. Clonogenic assay of olaparib sensitivity in control PEO4 and RPA1_KD_ PEO4 cells. PEO4 plating efficiency at the highest dose of olaparib was 13 %. H. Quantification of γH2AX nuclear fluorescence in UT and Olaparib (6 μM) treated control PEO4 and PEO4 _RPA1_KD cells. I. Cell cycle analysis in UT and Olaparib (6 μM) treated control PEO4 and PEO4_RPA1_KD treated cells. J. Annexin V analysis of UT and Olaparib (6 μM) treated control PEO4 and PEO4_RPA1_KD treated cells. UT = untreated cells; T = talazoparib or olaparib treated cells. The experiment was performed for samples from three independent experiments (n=3) and the error bar represent the standard deviation (SD). ** p<0.01.

    Article Snippet: Briefly, the cells were fixed with 4 % paraformaldehyde (8187,085,000, Sigma Aldrich, UK) for 30 min, permeabilised with 300 μL per well of 0.1 % Triton (85,111, Thermo Fisher Scientific, UK) for 30 min, incubated with 3 % BSA (A7906, Sigma, UK) for 1 h, incubated with 300 μL of diluted primary antibody as follows; 53BP1 [clone:4937S, Cell Signalling, 1:200, overnight at 4°C], γH2AX [clone: JBW301, Sigma, 1:500, overnight at 4°C], Alexa-fluor 488 goat anti-Mouse secondary antibody [clone: A-11,029, 1:200 Thermo Fisher, 1 h at room temperature] and Goat anti-rabbit secondary antibody, TRITC [clone: T-2769, 1:500 Thermo Fisher, 1 h at room temperature].

    Techniques: Clonogenic Assay, Control, Fluorescence, Cell Cycle Assay, Standard Deviation