| Field | Specification |
|---|---|
| Mfr No | |
| Accession Number | |
| Alternative Names | TNF-α; TNF; DADB-70P7.1; DIF; TNF-alpha; TNFA; TNFSF2; APC1 protein; TNF superfamily; member 2; macrophage-derived; monocyte-derived; cachectin; tumor necrosis factor alpha; TNFSF7 |
| Assay Time | |
| Assay Type | |
| Detection Method | |
| Gene ID | |
| Product Type | |
| Reactivity | |
| Sample Type(s) | Cell culture supernatants, Serum, Plasma, Other biological fluids |
| Shipping | |
| Storage |
Features & Benefits
EliKine™ Rat TNF-α ELISA Kit has high sensitivity and excellent specificity for detection of Rat TNF-α. No significant cross-reactivity or interference between Rat TNF-α and analogues was observed.
Background
Tumor necrosis factor acts as a cytokine, binding TNF receptors and plays a role in regulation of cell proliferation, induction of apoptosis, and inflammatory response.
This Rat TNF-α ELISA kit is validated for use with Cell culture supernatants, Serum, Plasma, Other biological fluids. Samples should be collected, processed, and stored correctly to preserve analyte integrity — avoid repeated freeze-thaw cycles and centrifuge to remove particulates before use. Dilute samples exceeding the kit's detection range using the supplied assay diluent. Hemolytic, icteric, or lipemic samples may affect assay performance and should be tested with caution.
This is a sandwich ELISA kit employing an HRP (horseradish peroxidase)-conjugated secondary antibody paired with a TMB (3,3′,5,5′-tetramethylbenzidine) colorimetric substrate. In the sandwich format, the target analyte Rat TNF-α captured on the microplate surface is detected by the conjugated antibody, generating a colorimetric signal proportional to analyte concentration. The reaction is stopped and absorbance measured at 450 nm on a standard microplate reader.
The complete protocol, from sample addition to final plate reading, requires approximately 3–5 hours. This includes two incubation periods (analyte binding and detection antibody steps), intermediate wash cycles to remove unbound material, 15–30 minutes of TMB substrate development, and final stop-solution addition before absorbance reading. Exact timing will vary with experience level and the number of samples processed in parallel.
Required equipment: (1) a microplate spectrophotometer capable of reading absorbance at 450 nm (reference wavelength 540–570 nm recommended for background correction); (2) precision single-channel or multichannel pipettes; (3) a plate washer or multichannel aspirator; (4) a microcentrifuge for sample clarification; and (5) a 37°C incubator or stable room-temperature environment. No fluorescence or luminescence reader is required — standard colorimetric plate readers are fully compatible with this kit.
This ELISA kit is formally validated for Rat. Cross-reactivity with species not listed in the specification has not been independently characterized. Variability in protein sequence homology across species means that performance in unlisted species cannot be guaranteed without additional validation. For cross-species detection requirements or non-standard sample matrices, please contact BioHippo support or refer to the manufacturer's technical team for guidance.
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.
Exercise Mimetic Exosomes Re‐establish the Extracellular Matrix Metabolic Balance and Alleviate the Inflammatory Macrophage Infiltration in Intervertebral Disc Degeneration.(KTE9007-9.600)
Author:Zhao, Ke, et al. Publication name: Advanced Healthcare Materials IF:9.600
Sirolimus loaded chitosan functionalized PLGA nanoparticles protect against sodium iodate-induced retinal degeneration(KTE9007-6.819)
Author:R Suri, TC Nag, N Mehra, YR Neupane, S Shafi Publication name:Journal of Drug Delivery IF:6.819
Integrated network pharmacology and metabolomics to investigate the effects and possible mechanisms of Dehydroevodiamine against ethanol-induced gastric ulcers(KTE9007-5.4)
Author:Wang X, Chang L, Chen L, et al Publication name:Journal of Ethnopharmacology IF:5.4
β-Cyclodextrin-based supramolecular micelles of diosgenin conjugated with anti-CD64 antibody for rheumatoid arthritis(KTE9007-3.99)
Author:Batra P, Shende P Publication name:Colloids and Surfaces A: Physicochemical and Engineering Aspects IF:3.99
Investigating the colon toxicity and carcinogenic role of monosodium glutamate compared with Dimethylhydrazine in male Wistar rats: Exploring the link to childhood colon cancer risk.(KTE9007-3.7)
Author:Rajendran, Meenakshi Sundari, et al. Publication name: Journal of King Saud University-Science IF:3.7
The antibiotics supplemented bone cement improved the masquelet's induced membrane in a rat femur critical size defect model(KTE9007-2.687)
Author:N Ziroglu, A Koluman, B Kaleci, B Tanriverdi Publication name:Injury IF:2.687
Granzyme K, Regulated by the N6-Methyladenosine Methyltransferase Wilms’ tumor 1-associate protein, Enhances Myocardial Infarction Injury.(KTE9007-2.600)
Author:Lyu, Qing, and Le Li. Publication name:DNA and Cell Biology IF:2.600
Effect of Hydroalcoholic Extract and Terpene‐Rich Oil of Vetiveria zizanioides L. Roots in Chronic Kidney Disease in Rats.(KTE9007-2.3)
Author:Yeram, Pranali B., Amisha Vora, and Yogesh A. Kulkarni. Publication name:Chemistry & Biodiversity IF:2.3
Effect of lupeol on insulin resistance in adipose tissue by modulating the expression of insulin and inflammatory signaling molecules in high-fat diet and sucrose …(KTE9007-1.9)
Author:Daniel Priscilla, et al. Publication name:Bioinformation IF:1.9
Synthesis and evaluation of novel Schiff's base Indole derivatives as Anti-inflammatory agents(KTE9007-1.704)
Author:D Singh Publication name:eurchembull IF:1.704
Anti-inflammatory effect of Faloak (Sterculia quadrifida R. Br) stem bark on TNF-α, IL-1β, and IL-6 in DENV-3-infected Wistar rats.(KTE9007-0.9)
Author:Riwu, Audrey Gracelia, et al. Publication name:Open Veterinary Journal IF:0.9
Anti-osteoarthritic Effect of High Bioavailable Curcumin Formulation by Balancing Cartilage Synthesis and Cartilage Degradation in MIA-induced Osteoarthritis Rats.(KTE9007-0.6)
Author:Chalichem, Nehru Sai Suresh, et al. Publication name:Pharmacognosy Magazine IF:0.6
Anti-osteoarthritic Effect of High Bioavailable Curcumin Formulation by Balancing Cartilage Synthesis and Cartilage Degradation in MIA-induced Osteoarthritis Rats.(KTE9007-0.600)
Author:Chalichem, Nehru Sai Suresh, et al. Publication name:Pharmacognosy Magazine IF:0.600