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Citations for Bio-Rad :
851 - 900 of 3538 citations for Mouse Anti Human Papilloma virus type 18 718 15 since 2019
Citations are collected from bioRxiv only, the total number of publications could be much larger.
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bioRxiv - Cancer Biology 2024Quote: ... Secondary antibodies used were goat anti-mouse horse radish peroxidase (HRP)-conjugated (1706516, Bio-Rad, RRID: AB_11125547) at 1:10,000 and goat anti-rabbit HRP-conjugated (1721019 ...
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bioRxiv - Microbiology 2024Quote: ... Secondary antibodies used for immunoblots were StarBright Blue 520 goat anti-mouse (IgG; 1:10,000; Bio-Rad) and Horseradish peroxidase conjugated-goat anti-mouse (IgG ...
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bioRxiv - Cell Biology 2020Quote: ... Protein samples were run with 15% SDS-PAGE (Bio-Rad, 4561084), and then transferred to the nitrocellulose membrane (Bio-Rad ...
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bioRxiv - Cell Biology 2020Quote: ... Protein samples were loaded to 4%-15% gradient gels (Bio-rad). Antibodies for immunoblotting include rabbit anti-vinculin (1:5000 ...
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bioRxiv - Cell Biology 2020Quote: ... Proteins were separated using 4-15% SDS-PAGE gels (Bio-RAD) and transferred to PVDF membranes (Immobilon-FL ...
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bioRxiv - Immunology 2021Quote: ... resolved in 15% polyacrylamide gels and transferred to nitrocellulose membranes (BioRad). Different primary antibodies were used for the detection of interest proteins ...
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bioRxiv - Evolutionary Biology 2020Quote: The samples ran on polyacrylamide gradient gel (4-15%; Bio-Rad) followed by blotting to a nitrocellulose membrane (Bio-Rad) ...
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bioRxiv - Developmental Biology 2021Quote: ... Lysates were separated on a 4-15% SDS gel (BIO-RAD), transferred to a PVDF membrane (EMD Millipore Immobilon ...
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bioRxiv - Cancer Biology 2022Quote: ... Proteins were separated on 4-15 % precast protein gels (Bio-Rad) and transferred onto PVDF membranes ...
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bioRxiv - Molecular Biology 2019Quote: ... Samples were run on a 15% polyacrylamide TBE-UREA gel (BioRad). The gel was then transferred to a solution of 0.5 x TBE containing 10,000 x SYBR gold (Invitrogen ...
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bioRxiv - Molecular Biology 2021Quote: ... Protein samples were separated using 4-15% SDS-PAGE (BioRad 4561085) and transferred to nitrocellulose membranes ...
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bioRxiv - Microbiology 2019Quote: ... 12% or 15% gels using the Mini-PROTEAN system (Bio-Rad) and transferred to nitrocellulose membrane (GE Healthcare ...
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bioRxiv - Neuroscience 2021Quote: ... were loaded onto 4-15% Criterion TGX gels (Bio-Rad: 5671084). Proteins were transferred overnight at low voltage to PVDF membranes (Bio-Rad ...
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bioRxiv - Neuroscience 2019Quote: ... boiled and separated on a 4-15% polyacrylamide gel (Bio-Rad), transferred to PVDF membranes (Millipore Sigma) ...
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bioRxiv - Cancer Biology 2021Quote: ... Samples were separated on 4-15% Mini-Protean TGX gels (BioRad) and transferred to 0.2 μm PVDF membranes or nitrocellulose membranes (BioRad ...
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bioRxiv - Cancer Biology 2021Quote: ... resolved on 4-15% Mini-Protean TGX gels (BioRad, 456-1084), and transferred to nitrocellulose membranes using the iBlot2 system (Thermo Fisher ...
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bioRxiv - Bioengineering 2022Quote: ... ∼100 μg were loaded into 4-15% mini gel (Biorad, England). Slime was treated as follows ...
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bioRxiv - Cancer Biology 2021Quote: ... Samples were loaded on 4%– 15% precast polyacrylamide gels (Bio-Rad) and transferred to PVDF (Bio-Rad ...
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bioRxiv - Immunology 2020Quote: ... Cell lysate was loaded into 4-15% precast gels (Bio-Rad) for electrophoretic separation ...
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bioRxiv - Biochemistry 2022Quote: ... before analysis on 8% SDS-PAGE or gradient (4-15%, BioRad) gels and western blotting using anti-FMRP (Cell signaling #LS-C82231 ...
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bioRxiv - Immunology 2022Quote: Samples were subjected to SDS-PAGE (4-15% polyacrylamide; Bio-Rad). Protein equivalent to at least 2.5×105 cells was loaded per well for each sample ...
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bioRxiv - Biophysics 2019Quote: ... 4–15% precast gradient TGX Stain-FreeTM gels (Bio-Rad Laboratories) were used and visualized by stain-free enabled imager (Gel DocTM EZ Imager ...
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bioRxiv - Genetics 2020Quote: ... loaded and separated on 4-15% precast polyacrylamide gel (#4561083, Biorad). The run was carried out with a constant voltage of 100V into a running buffer composed by 25mM Tris ...
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bioRxiv - Developmental Biology 2019Quote: ... Total protein was separated on 4-15% SDS-polyacrylamide gel (BioRad), and transferred to a Nitrocellulose Blotting membrane (GE Healthcare) ...
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bioRxiv - Molecular Biology 2021Quote: ... Samples were loaded onto a 15% TBE-Urea gels (Biorad, #4566055), visualized using Odyssey CLx Imaging System ...
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bioRxiv - Genetics 2020Quote: ... then separated on 4-15% SDS-PAGE gel (Bio-Rad, 4561086) together with input ...
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bioRxiv - Cell Biology 2020Quote: ... Samples were separated on 4-15% TGX precast gels (Bio-Rad), transferred onto Protran BA85 nitrocellulose membrane (GE Healthcare ...
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bioRxiv - Physiology 2021Quote: ... Protein lysates were separated on a 4-15% TGX gel (Biorad) under reducing and denaturing conditions ...
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bioRxiv - Physiology 2021Quote: ... Proteins were separated on 4-15% TGX Precast Gels (BioRad, 4561083) and transferred to PVDF membranes (Invitrogen) ...
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bioRxiv - Biochemistry 2021Quote: SDS-PAGE was carried out with 15 μL Mini-Protean (BioRad) or 60 μL Novex Wedgewell (Invitrogen ...
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bioRxiv - Biochemistry 2021Quote: ... Samples were loaded on a 4-15% PAGE (Biorad pre-cast) gel at 200 volts for 32min and stained using the silver staining kit (silver StainPlus ...
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bioRxiv - Genetics 2021Quote: ... Lysates were resolved on 4–15% precast polyacrylamide gels (Bio-Rad). Phospho-p38 MAPK (used with 1:1000 dilution ...
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bioRxiv - Cell Biology 2020Quote: ... or Bio-Rad Criterion TGX 4-15% gels (Bio-Rad 5678085) using 1x TGS buffer (Bio-Rad 1610772) ...
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bioRxiv - Neuroscience 2020Quote: ... run on a Tris-Glycine Precast Gel (4-15%, Bio-Rad) at 150V and subsequently transferred to a PVDF-FL membrane (Millipore) ...
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bioRxiv - Cell Biology 2022Quote: ... samples were run on 4-15% gradient Mini-Protean gels (BioRad) and transferred to PVDF membranes using a TransBlot Turbo system (BioRad) ...
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bioRxiv - Developmental Biology 2022Quote: ... Denatured samples were run on 4-15% polyacrylamide gels (Bio-Rad) in 1X Tris-glycine-SDS (TGS ...
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bioRxiv - Immunology 2022Quote: ... Proteins were resolved by 4-15% Tris-Glycine gel (Bio-Rad) and transferred to nitrocellulose membrane ...
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bioRxiv - Microbiology 2022Quote: ... 15 µL was mixed directly with 2× Laemmli sample buffer (BioRad) for whole-cell lysates ...
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bioRxiv - Microbiology 2022Quote: ... loaded into a 4 - 15% polyacrylamide Tris/Glycine minigel (Bio-Rad), and run at 40 V for a minimum of 16 hours at room temperature ...
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bioRxiv - Cancer Biology 2022Quote: ... and then electrophoresed in a 4-15% SDS-PAGE gel (BioRad). Protein was transferred to a PVDF membrane (BioRad) ...
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bioRxiv - Cancer Biology 2023Quote: ... or 4-15% Mini PROTEAN TGC gel (#4561084, Bio-Rad, USA), and then transferred to nitrocellulose membranes (#1620112 ...
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bioRxiv - Biochemistry 2023Quote: ... 20 ul was loaded on 4-15% TGX gels (BIO-RAD).
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bioRxiv - Microbiology 2023Quote: ... Samples were loaded onto 4-15% precast polyacrylamide gels (Bio-Rad), separated by SDS-PAGE ...
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bioRxiv - Cell Biology 2022Quote: ... and loaded into 4-15% Mini-Protean TGX gels (Biorad, 4561084). Gel was run for 1 hr at 120V after which proteins were transferred (1.3 A ...
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bioRxiv - Cell Biology 2023Quote: ... and loaded per well on 4-15% gradient polyacrylamide gels (BioRad) for SDS-PAGE analysis ...
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bioRxiv - Cell Biology 2023Quote: ... Protein samples were separated on 4-15% SDS-PAGE gels (BioRad) at 100V and electro-transferred to 0.45µm nitrocellulose membranes (BioRad ...
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bioRxiv - Pharmacology and Toxicology 2023Quote: ... Samples were then run on a 4-15% polyacrylamide gel (BioRad) at 165 V for 40 min ...
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bioRxiv - Physiology 2023Quote: Plasma fractions were separated on 4-15% polyacrylamide gradient gels (BioRad). Antibodies were ...
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bioRxiv - Cancer Biology 2024Quote: ... and loaded onto 4-15% protein gels (Biorad, Biorad 456-1084) at 30μg per well ...
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bioRxiv - Cancer Biology 2024Quote: ... and loaded onto 4-15% protein gels (Biorad, Biorad 456-1084) at 30μg per well ...