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Loading Control Antibody / Loading Control Antibodies

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Loading Control Antibody / Loading Control Antibodies

Loading Control Antibody Overview

Loading Control Antibody detects housekeeping proteins commonly used as internal standards in western blotting, immunohistochemistry, and other protein quantification assays. These housekeeping proteins are constitutively expressed and relatively stable across different tissues, cell types, and experimental conditions, making them reliable reference markers. By providing a baseline signal, Loading Control Antibodies enable normalization of experimental data, ensuring that differences in protein expression reflect biology rather than variability in sample handling or loading.

Common loading controls targeted by Loading Control Antibodies include β-actin, GAPDH, α-tubulin, HSP90, and histone H3. β-actin and GAPDH are widely used for cytoplasmic normalization, α-tubulin for cytoskeletal comparisons, HSP90 for stress response evaluation, and histone H3 for nuclear proteins. The Loading Control Antibody is indispensable for researchers seeking accuracy and reproducibility in protein quantification.

Because normalization is critical across nearly every protein-based assay, Loading Control Antibodies are applied across molecular biology, biochemistry, cell biology, and translational research.


Why Choose Loading Control Antibodies from NSJ Bioreagents?

NSJ Bioreagents provides Loading Control Antibodies validated for western blotting, immunohistochemistry, ELISA, and immunofluorescence. Each Loading Control Antibody is tested for specificity to housekeeping proteins, ensuring reliable detection across multiple sample types.

By choosing a Loading Control Antibody from NSJ Bioreagents, researchers gain reagents optimized for reproducibility. Our antibodies deliver consistent band intensity in western blots, reliable staining in histological sections, and strong signals in multiplex assays. With clear datasheets, recommended positive controls, and optimized protocols, NSJ Bioreagents ensures that Loading Control Antibodies provide confidence and clarity in protein studies.


Applications of Loading Control Antibodies

The Loading Control Antibody has broad applications across protein quantification and experimental normalization.

1) Western Blotting

  • Loading Control Antibodies are essential for normalization of protein levels across lanes.

  • The Loading Control Antibody provides assurance that observed differences are biological, not technical.

  • Researchers apply Loading Control Antibodies to confirm equal sample loading and transfer efficiency.

2) Immunohistochemistry and Immunofluorescence

  • Loading Control Antibodies help validate consistent expression across tissue samples.

  • The Loading Control Antibody is used to distinguish experimental changes from baseline protein levels.

  • Researchers employ Loading Control Antibodies to improve quantification in imaging-based assays.

3) Quantitative Analysis

  • The Loading Control Antibody supports normalization in densitometry and imaging software.

  • Loading Control Antibodies enable accurate comparison of protein expression between treatment groups.

  • The Loading Control Antibody helps reduce variability in quantitative proteomics workflows.

4) High-Throughput Screening and Drug Discovery

  • Loading Control Antibodies are applied in large-scale screening platforms for assay quality control.

  • The Loading Control Antibody ensures reliable normalization in compound testing and biomarker validation.

  • Researchers use Loading Control Antibodies in translational studies to validate drug-induced protein changes.

5) Cell and Molecular Biology

  • The Loading Control Antibody is used to confirm uniform transfection efficiency.

  • Loading Control Antibodies support studies of signaling pathways by normalizing phosphorylated versus total protein levels.

  • Researchers apply Loading Control Antibodies to confirm consistent protein expression across developmental or differentiation models.

6) Clinical and Translational Research

  • The Loading Control Antibody ensures accuracy in biomarker validation studies.

  • Loading Control Antibodies are used in diagnostic research to confirm reproducibility.

  • The Loading Control Antibody supports regulatory requirements for reproducibility in clinical assays.


Why Are Loading Control Antibodies Important?

Reliable protein quantification requires normalization. The Loading Control Antibody provides a means of ensuring that technical variability does not confound results, while Loading Control Antibodies more broadly empower consistent, reproducible research across biology and medicine.

In basic research, Loading Control Antibodies validate experimental integrity. In translational science, the Loading Control Antibody ensures accuracy in biomarker discovery and drug development. In clinical research, Loading Control Antibodies maintain data quality in diagnostics and therapeutic evaluation.

Clinically and experimentally, errors in normalization can mislead conclusions. By providing accurate detection of stable housekeeping proteins, the Loading Control Antibody helps researchers avoid such pitfalls and ensures trustworthy results.


Conclusion

Normalization is central to reproducibility and accuracy in protein science. The Loading Control Antibody equips researchers with reliable tools to measure housekeeping proteins, while Loading Control Antibodies more broadly support discoveries across molecular biology, drug discovery, and clinical translation. By ensuring consistent and accurate protein quantification, these antibodies remain indispensable for high-quality biomedical research.

<p>Western blot testing of 1) human HeLa, 2) human K562, 3) human MCF7, 4) human Jukrat, 5) rat brain, 6) rat kidney, 7) mouse brain and 8) mouse kidney tissue lysate with <a href="../tds/b-actin-antibody-beta-actin-antibody-r30971" target="_blank" rel="noopener">Beta Actin antibody</a>. Predicted molecular weight ~48 kDa.</p>

Western blot testing of 1) human HeLa, 2) human K562, 3) human MCF7, 4) human Jukrat, 5) rat brain, 6) rat kidney, 7) mouse brain and 8) mouse kidney tissue lysate with Beta Actin antibody. Predicted molecular weight ~48 kDa.

Found all antibodies, displaying 61 to 70
Beta Tubulin Antibody / TUBB3
Catalog No : R32611
Applications : WB, IHC-P, FACS
Reactivity : Human, Mouse, Rat
Format : Antigen affinity purified
GAPDH Antibody
Catalog No : R32661
Applications : WB, IHC-P
Reactivity : Human, Mouse, Rat
Format : Antigen affinity purified
Beta Tubulin Antibody / TUBB
Catalog No : F54148
Applications : WB
Reactivity : Mouse
Pred. Reactivity:Bovine, C. elegans, Chicken, Drosophila, Hamster, Human, Primate, Rat, Xenopus
Format : Antigen affinity purified
Beta Tubulin Antibody / TUBB2A
Catalog No : F54147
Applications : WB
Reactivity : Human, Mouse, Rat
Pred. Reactivity:Primate
Format : Antigen affinity purified
Tbp Antibody / TATA binding protein
Catalog No : RQ4014
Applications : WB, ELISA
Reactivity : Mouse, Rat
Format : Antigen affinity purified
GAPDH Antibody (clone A-7)
Catalog No : RQ4477
Applications : WB
Reactivity : Human, Mouse, Rat
Format : HRP Conjugate
GAPDH Antibody (clone BG-7)
Catalog No : RQ5051
Applications : IHC-P, WB, IF
Reactivity : Human, Mouse, Rat
Format : Purified
GAPDH Antibody (clone BH-7)
Catalog No : RQ5052
Applications : IHC-P, IF/ICC, WB
Reactivity : Human, Mouse, Rat
Format : Purified
Beta Tubulin Antibody / TUBB (clone BI-20)
Catalog No : RQ5179
Applications : IHC-P, IF/ICC, WB
Reactivity : Human, Mouse, Rat
Format : Purified
Alpha Tubulin Antibody / TUB1 (clone CI-20)
Catalog No : RQ5287
Applications : WB
Reactivity : Saccharomyces cerevisiae
Format : Purified