| Field | Specification |
|---|---|
| UniProt # | |
| Applications | |
| Sensitivity | |
| Detection range | |
| Detection method | |
| Assay time | |
| Storage | |
| Shipping | |
| Catalog no. (Mfr.) | |
| Main SKU |
Scientific Background
This ELISA kit applies to the in vitro quantitative determination of Human IL-1β concentrations in serum, plasma and other biological fluids.
Assay Principle
This ELISA kit uses the Sandwich-ELISA principle. The micro ELISA plate provided in this kit has been pre-coated with an antibody specific to Human IL-1β. Standards or samples are added to the micro ELISA plate wells and combined with the specific antibody. Then a biotinylated detection antibody specific for Human IL-1β and Avidin-Horseradish Peroxidase (HRP) conjugate are added successively to each micro plate well and incubated. Free components are washed away. The substrate solution is added to each well. Only those wells that contain Human IL-1β, biotinylated detection antibody and Avidin-HRP conjugate will appear blue in color. The enzyme-substrate reaction is terminated by the addition of stop solution and the color turns yellow. The optical density (OD) is measured spectrophotometrically at a wavelength of 450 nm ± 2 nm. The OD value is proportional to the concentration of Human IL-1β. You can calculate the concentration of Human IL-1β in the samples by comparing the OD of the samples to the standard curve.
Performance Specifications
| Sensitivity | 4.69 pg/mL |
|---|---|
| Detection Range | 7.81-500 pg/mL |
| Total Assay Time | 3 h 30 min |
| Compatible Sample Types | Serum, plasma and other biological fluids |
| Species Reactivity | Human |
| Detection Method | Sandwich |
| Precision (CV) | Both intra-CV and inter-CV are < 10%. |
| Recovery Rate | 80%-120% |
| Storage | 2-8℃,12 months |
✓ Research-Grade Validation
Specificity
This kit recognizes Human IL-1β in samples. No significant cross-reactivity or interference between Human IL-1β and analogues was observed
Safety & Regulatory
Handle reagents in accordance with institutional biosafety guidelines. Refer to the Safety Data Sheet (SDS) for complete hazard and handling information. Contains components that may require special disposal procedures per local regulations.
This kit is validated for use with Serum, plasma and other biological fluids. For unlisted matrices (e.g., tissue lysate, urine), perform a spike-and-recovery experiment to confirm assay performance before generating reportable data. Sample dilution in the kit's provided diluent is recommended to minimize matrix interference.
The minimum detectable concentration (sensitivity) of this kit is 4.69 pg/mL. Values below this threshold should be reported as below the limit of detection (<LOD) and should not be extrapolated from the standard curve.
The total assay time from sample addition to absorbance reading is approximately 3 h 30 min, including all incubation, wash, and substrate steps. Hands-on time is typically 1–2 hours; most steps involve passive plate incubation. Plan the assay as a single uninterrupted session for best results.
Standard components of this Sandwich ELISA Kit typically include: pre-coated microplate (96-well strip format), lyophilized or liquid recombinant IL-1β standard, detection antibody, streptavidin-HRP conjugate, TMB substrate, stop solution, wash buffer concentrate, and sample/standard diluent. Refer to the kit insert or datasheet for the exact component list and storage requirements.
This kit uses colorimetric (TMB/HRP) detection and requires a standard microplate absorbance reader capable of measuring at 450 nm. A reference wavelength of 570 nm or 630 nm is recommended to reduce background. No specialized fluorescence or luminescence reader is needed. Ensure the instrument is calibrated and the plate is clean and free of condensation before reading.
Tissue samples may contain endogenous or exogenous proteases during processing, leading to degradation of extracted proteins. Therefore, it's necessary to add protease inhibitors during processing to ensure the integrity of target proteins. If customers can keep samples cold and handle them quickly during processing, omitting the protease inhibitor may not have a significant effect. After preparation, samples should be tested promptly or immediately aliquoted and frozen at -20°C or -80°C.
What is the range of enzyme activity of your IL-2 freeze-dried powder
What is the principle of adding stop solution to stop color reaction in ELISA experiment?
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.
Targeting Mitochondria-Located circRNA SCAR Alleviates NASH via Reducing mROS Output (2020) CELL. 10.1016/j.cell.2020.08.009
Serotonin-licensed macrophages potentiate chemoresistance via inositol metabolic crosstalk in ovarian cancer (2025) Cell Metabolism. 10.1016/j.cmet.2025.11.011
Synovial inflammatory macrophage-derived extracellular vesicles exacerbate cartilage lesions with a FMRP-selectively sorted manner in osteoarthritis (2026) Bone Research. 10.1038/s41413-025-00502-4
Increased Liver Localization of Lipopolysaccharides in Human and Experimental NAFLD (2019) HEPATOLOGY. 10.1002/hep.31056
HIC1 suppresses Tumor Progression and Enhances CD8+ T Cells Infiltration Through Promoting GSDMD-induced Pyroptosis in Gastric Cancer (2025) Advanced Science. 10.1002/advs.202412083
TET3-overexpressing macrophages promote endometriosis (2024) JOURNAL OF CLINICAL INVESTIGATION. 10.1172/JCI181839
Microneedles combining delivery of hUMSC-derived exosomes and EGCG mitigate UV-induced skin damage (2025) JOURNAL OF NANOBIOTECHNOLOGY. 10.1186/s12951-025-03735-x
LncRNA-AC006129.1 reactivates a SOCS3-mediated anti-inflammatory response through DNA methylation-mediated CIC downregulation in schizophrenia (2020) MOLECULAR PSYCHIATRY. 10.1038/s41380-020-0662-3
Lactate-driven ATP6V1B2 lactylation triggers asthmatic inflammation by linking lysosomal dysfunction to mitochondrial ROS-dependent pyroptosis (2026) Redox Biology. 10.1016/j.redox.2026.104059
Microneedle delivery of CAR-M-like engineered macrophages alleviates intervertebral disc degeneration through enhanced efferocytosis capacity (2025) Cell Reports Medicine. 10.1016/j.xcrm.2025.102079
Thymosin α1 reverses oncolytic adenovirus-induced M2 polarization of macrophages to improve antitumor immunity and therapeutic efficacy (2024) Cell Reports Medicine. 10.1016/j.xcrm.2024.101751
1,25-Dihydroxyvitamin D3 protects against placental inflammation by suppressing NLRP3-mediated IL-1β production via Nrf2 signaling pathway in preeclampsia (2024) METABOLISM-CLINICAL AND EXPERIMENTAL. 10.1016/j.metabol.2024.156058
Global Lactylome Reveals Lactylation‐Dependent Mechanisms Underlying CXC Motif Chemokine Ligand 12 Expression in Pulmonary Endothelium During Acute Respiratory Distress Syndrome (2025) MedComm. 10.1002/mco2.70344
Central carbon metabolism exhibits unique characteristics during the handling of fungal patterns by monocyte-derived dendritic cells (2024) Redox Biology. 10.1016/j.redox.2024.103187
Multimodal hybrid nanozymes with antioxidant catalytic and antibiotic-free antibacterial activities for enhanced multi-target sepsis therapy (2026) Cell Reports Medicine. 10.1016/j.xcrm.2025.102541
RGD-HSA-TAC nanoparticles targeted delivery of tacrolimus and attenuation of podocyte injury in diabetic kidney disease (2025) JOURNAL OF NANOBIOTECHNOLOGY. 10.1186/s12951-025-03108-4
pH-responsive ZIF-8@quercetin nanoparticles induce pyroptosis for targeted gastric cancer therapy (2026) Materials Today Bio. 10.1016/j.mtbio.2026.102806
CircARCN1 aggravates atherosclerosis by regulating HuR-mediated USP31 mRNA in macrophages (2024) CARDIOVASCULAR RESEARCH. 10.1093/cvr/cvae148
Modulation of neuronal α1-adrenergic receptor reduces tauopathy and neuroinflammation by inhibiting the STING/NF-κB/NLRP3 signaling pathway in Alzheimer’s disease mice (2025) Journal of Neuroinflammation. 10.1186/s12974-025-03506-3
EGR1-Driven Re-Epithelialization Enabled by Rutin-Based Self-Assembled Hydrogel Platform for Oral Ulcer Therapy (2025) Advanced Healthcare Materials. 10.1002/adhm.202500996
Targeted Delivery of Avacopan via Sortase A–Modified Extracellular Vesicles Attenuates Endotoxin-Induced Retinal Inflammation (2026) Advanced Healthcare Materials. 10.1002/adhm.202504723
Impaired membrane lipids in ischemic stroke: a key player in inflammation and thrombosis (2025) Journal of Neuroinflammation. 10.1186/s12974-025-03464-w
TRIM50 promotes NLRP3 inflammasome activation by directly inducing NLRP3 oligomerization (2022) EMBO REPORTS. 10.15252/embr.202154569
Lappaconitine hydrobromide prevents NLRP3-GSDMD-mediated pyroptosis to alleviate sepsis-induced acute lung injury by enhancing NR1H3 (2026) Journal of Pharmaceutical Analysis. 10.1016/j.jpha.2026.101631
Enhancer RNA lnc-CES1-1 inhibits decidual cell migration by interacting with RNA-binding protein FUS and activating PPARγ in URPL (2021) Molecular Therapy-Nucleic Acids. 10.1016/j.omtn.2021.02.018