Human Apoptosis regulator BAX ELISA Kit

SKU:BHE10501415
Overview
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Quantitative ELISA kit for measuring human Apoptosis regulator BAX in serum, plasma, and tissue homogenates to support cell biology studies. Sensitivity 0.312 ng/mL, detection range 1.25 ng/mL–80 ng/mL, typical assay time 1–5 h.
Target BAX
Species Homo sapiens (Human)
Sample Type(s) serum, plasma, tissue homogenates
Assay Type Sandwich ELISA (quantitative)
Sensitivity 0.312 ng/mL
Detection Range 1.25 ng/mL-80 ng/mL
Assay Time 1-5h
Options selector
Catalog no. Size
CSB-E09344h-96T 96 T
CSB-E09344h-96TX5 96 T×5
CSB-E09344h-96TX10 96 T×10
Available Options

Select from the available variant options shown for this product. Availability and lead time can vary by option.

  • Options: Size (96 T, 96 T×10, 96 T×5).
  • Lead time: options listed as "In Stock at Manufacturer" typically ship in 5–7 business days; other statuses may take longer.
  • Storage: refer to the product datasheet for storage and handling.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No CSB-E09344h
Alternative Names Apoptosis regulator BAX ELISA Kit; BAX ELISA Kit; Bax-protein ELISA Kit; BAX_HUMAN ELISA Kit; BAXA ELISA Kit; Baxdelta2G9 ELISA Kit; Baxdelta2G9omega ELISA Kit; Baxdelta2omega ELISA Kit; Bcl-2-like protein 4 ELISA Kit; BCL2 associated X protein ELISA Kit; BCL2 associated X protein omega ELISA Kit; BCL2 associated X protein transcript variant delta2 ELISA Kit; Bcl2-L-4 ELISA Kit; BCL2L4 ELISA Kit; membrane isoform alpha ELISA Kit
Assay Time
  • 1-5h
Assay Type
  • Sandwich ELISA (quantitative)
Detection Range 1.25 ng/mL-80 ng/mL
Detection Wavelength 450 nm
Product Type
  • ELISA Kits
Reactivity
  • Human
Sample Type(s) serum, plasma, tissue homogenates
Sensitivity 0.312 ng/mL
Species Homo sapiens (Human)
Target BAX
UniProt # Q07812

Background

Apoptosis regulator BAX is a biological molecule commonly studied in cell biology research. It is commonly used as a molecular readout in mechanistic and biomarker-focused studies.

UniProt: Q07812

Biological context

Researchers often monitor Apoptosis regulator BAX in serum, plasma, and tissue homogenates to better understand themes such as signal transduction pathways, cell cycle control, and stress-response programs. In many model systems, measured levels can shift with physiology, experimental perturbation, or disease-associated changes, making careful biological interpretation important.

Interpreting changes in measured levels

Depending on sample matrix and study design, increases or decreases in Apoptosis regulator BAX may reflect differences in expression, secretion, turnover, or compartmentalization rather than a single mechanism. Interpretation is typically strengthened by evaluating related molecules (for example, phosphorylation-dependent signaling nodes, stress markers, and organelle proteins) and by keeping pre-analytical variables consistent across groups.

Nomenclature

In publications and databases, Apoptosis regulator BAX may also appear under names such as Apoptosis regulator BAX and BAX. When comparing studies, confirm that the reported analyte refers to the same molecule and species context.

Why ELISA data are widely used

ELISA is a common approach for quantitative measurement of proteins and biomarkers in complex samples, enabling comparisons across experimental groups and time points. When integrating results with other readouts, consider species biology, sample type, and the broader pathway context that Apoptosis regulator BAX participates in.

Can’t Find What You’re Looking For? We can help you source the best match or customize an ELISA solution for your study. Options may include alternative target synonyms, different species reactivity, sample type/matrix compatibility (serum/plasma/lysate/supernatant), assay format (sandwich/competitive), sensitivity/range, detection chemistry (colorimetric/fluorescent/chemiluminescent), plate format (pre-coated/uncoated, strips vs full plate), and bulk or custom packaging. Click Talk to a Scientist to submit a request form, email us at support@biohippo.com, or explore our Research Services for additional support. Our team will be in contact with you shortly.

Molekularni mehanizmi ishemijsko-reperfuzionog oštećenja tokom resekcije jetre

M Gmijović,Универзитет у Нишу,2024

Syringic and ascorbic acids prevent NDMA-induced pulmonary fibrogenesis, inflammation, apoptosis, and oxidative stress through the regulation of PI3K-Akt/PKB-mTOR-PTEN signaling pathway

OT Somade,Metabolism open,2023

Canagliflozin-loaded chitosan-hyaluronic acid microspheres modulate AMPK/NF-κB/NLRP3 axis: A new paradigm in the rectal therapy of ulcerative colitis

M Nasr,Biomedicine & Pharmacotherapy,2022

Chitosan protects liver against ischemia-reperfusion injury via regulating Bcl-2/Bax, TNF-α and TGF-β expression

H Saleh,International Journal of Biological Macromolecules,2020

Upregulation of long non‑coding RNA CCEPR is associated with poor prognosis and contributes to the progression of ovarian cancer through regulating the Wnt/β‑catenin signaling pathway

Zhen Chen,Molecular Medicine,2020

1,25-dihydroxyvitamin-D3 promotes neutrophil apoptosis in periodontitis with type 2 diabetes mellitus patients via the p38/MAPK pathway

Tang Y, et al,Medicine,2018

Effects of organophosphorus flame retardant TDCPP on normal human corneal epithelial cells: Implications for human health

Ping Xiang.et al,Environmental Pollution,2017

Antitumor effect and mechanism of action of polysaccharides extracted from Polygonum perfoliatum L whole plant in human lung carcinoma A549 cell line

Lai X.et al,Tropical Journal of Pharmaceutical Research,2016

Modulation of drug-resistant membrane and apoptosis proteins of breast cancer stem cells by targeting berberine liposomes

Ma X et al,Biomaterials.,2013

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