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High Sensitive ELISA Kit for Osteocalcin (OC)
BGLAP; OT; BGP; Bone Gla Protein; Bone Gamma-Carboxyglutamate Protein; Gamma-carboxyglutamic acid-containing protein
- Product No.HEA471Hu
- Organism SpeciesHomo sapiens (Human) Same name, Different species.
- Sample TypeSerum, plasma, tissue homogenates, cell lysates and other biological fluids
- Test MethodDouble-antibody Sandwich
- Assay Length3h
- Detection Range12.5-800pg/mL
- SensitivityThe minimum detectable dose of this kit is typically less than 4.9pg/mL.
- DownloadInstruction Manual
- UOM 48T96T 96T*5 96T*10 96T*100
- FOB
US$ 490
For more details, please contact local distributors! US$ 700 US$ 3150 US$ 5950 US$ 49000
Specificity
This assay has high sensitivity and excellent specificity for detection of High Sensitive Osteocalcin (OC).
No significant cross-reactivity or interference between High Sensitive Osteocalcin (OC) and analogues was observed.
Recovery
Matrices listed below were spiked with certain level of recombinant High Sensitive Osteocalcin (OC) and the recovery rates were calculated by comparing the measured value to the expected amount of High Sensitive Osteocalcin (OC) in samples.
Matrix | Recovery range (%) | Average(%) |
serum(n=5) | 95-102 | 98 |
EDTA plasma(n=5) | 87-96 | 91 |
heparin plasma(n=5) | 85-92 | 88 |
Precision
Intra-assay Precision (Precision within an assay): 3 samples with low, middle and high level High Sensitive Osteocalcin (OC) were tested 20 times on one plate, respectively.
Inter-assay Precision (Precision between assays): 3 samples with low, middle and high level High Sensitive Osteocalcin (OC) were tested on 3 different plates, 8 replicates in each plate.
CV(%) = SD/meanX100
Intra-Assay: CV<10%
Inter-Assay: CV<12%
Linearity
The linearity of the kit was assayed by testing samples spiked with appropriate concentration of High Sensitive Osteocalcin (OC) and their serial dilutions. The results were demonstrated by the percentage of calculated concentration to the expected.
Sample | 1:2 | 1:4 | 1:8 | 1:16 |
serum(n=5) | 90-103% | 80-99% | 80-103% | 81-103% |
EDTA plasma(n=5) | 80-98% | 89-97% | 95-105% | 82-91% |
heparin plasma(n=5) | 89-97% | 87-98% | 96-103% | 78-94% |
Stability
The stability of kit is determined by the loss rate of activity. The loss rate of this kit is less than 5% within the expiration date under appropriate storage condition.
To minimize extra influence on the performance, operation procedures and lab conditions, especially room temperature, air humidity, incubator temperature should be strictly controlled. It is also strongly suggested that the whole assay is performed by the same operator from the beginning to the end.
Reagents and materials provided
Reagents | Quantity | Reagents | Quantity |
Pre-coated, ready to use 96-well strip plate | 1 | Plate sealer for 96 wells | 4 |
Standard | 2 | Standard Diluent | 1×20mL |
Detection Reagent A | 1×120µL | Assay Diluent A | 1×12mL |
Detection Reagent B | 1×120µL | Assay Diluent B | 1×12mL |
TMB Substrate | 1×9mL | Stop Solution | 1×6mL |
Wash Buffer (30 × concentrate) | 1×20mL | Instruction manual | 1 |
Assay procedure summary
1. Prepare all reagents, samples and standards;
2. Add 100µL standard or sample to each well. Incubate 1 hours at 37°C;
3. Aspirate and add 100µL prepared Detection Reagent A. Incubate 1 hour at 37°C;
4. Aspirate and wash 3 times;
5. Add 100µL prepared Detection Reagent B. Incubate 30 minutes at 37°C;
6. Aspirate and wash 5 times;
7. Add 90µL Substrate Solution. Incubate 10-20 minutes at 37°C;
8. Add 50µL Stop Solution. Read at 450nm immediately.
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Magazine | Citations |
Acta Biomaterialia | Surface engineering of titanium with potassium hydroxide and its effects on the growth behavior of mesenchymal stem cells PubMed: 19963080 |
Annals of RSCB | Biochemical study of the influence of ad type biophytomodulators in healing of bone defects in rats. Analelesnbc: source |
Asian-Australasian Association of Animal Societies | Variability of Osteocalcin Status in Chinese Holstein Cattle: Do Phylogeny, Vitamin D or Gene Polymorphisms Matter? Ajas: source |
Nutrition | Dyslipidemic high-fat diet affects adversely bone metabolism in mice associated with impaired antioxidant capacity ScienceDirect: S0899900709004717 |
Experimental Biology and Medicine | Osteogenic activity of silymarin through enhancement of alkaline phosphatase and osteocalcin in osteoblasts and tibia-fractured mice Rsm: source |
Archives of Oral Biology | Oxytocin promotes bone formation during the alveolar healing process in old acyclic female rats ScienceDirect: S0003996912001021 |
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Life Sciences | Exendin-4 Increases Bone Mineral Density in Type 2 Diabetic OLETF Rats Potentially Through the Down-Regulation of SOST/Sclerostin in Osteocytes PubMed: 23357248 |
Romanian Journal of Morphology and Embryology | Serum changes induced by intramedullar experimental administration of bisphosphonates PubMed: 21424089 |
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International Journal of Cardiology | Valvular osteoclasts in calcification and aortic valve stenosis severity. Pubmed: 23452891 |
Food Science & Nutrition | Effects and mechanisms of 8-prenylnaringenin on osteoblast MC3T3-E1 and osteoclast-like cells RAW264.7 Onlinelibrary: fsn3.109 |
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Basic & Clinical Pharmacology & Toxicology | Treatment with Carnitine Enhances Bone Fracture Healing under Osteoporotic and/or Inflammatory Conditions Wiley:Source |
Food Sci Nutr. | Effects and mechanisms of 8‐prenylnaringenin on osteoblast MC3T3‐E1 and osteoclast‐like cells RAW264. 7 Pubmed:Pmc4221832 |
Journal of Cranio-Maxillofacial Surgery | The use of TriCalcium Phosphate (TCP) and stem cells for the regeneration of osteoperiosteal critical-size mandibular bony defects, an in vitro and preclinical study Pubmed:24485270 |
Naunyn-Schmiedeberg's Archives of Pharmacology | Treatment with α-lipoic acid enhances the bone healing after femoral fracture model of rats Pubmed:25038619 |
FEBS Letters | Low-intensity pulsed ultrasound-induced ATP increases bone formation via the P2X7 receptor in osteoblast-like MC3T3-E1 cells Pubmed:25542352 |
American Diabetes Association | Pathophysiological mechanism of bone loss in type 2 diabetes involves inverse regulation of osteoblast function by PPARγ coactivator-1α and skeletal muscle atrogenes: adiponectin receptor 1 as a potential target for reversing diabetes-induced osteopenia Pubmed:25633418 |
International Journal of Nanomedicine | Immobilizing osteogenic growth peptide with and without fibronectin on a titanium surface: effects of loading methods on mesenchymal stem cell differentiation Pubmed:25678785 |
Medical Journal fo the Islamic Republic of Iran | Transplantation of mesenchymal stem cells, recombinant human BMP-2,and their combination in accelerating the union after osteotomy and increasing, the mechanical strength of extracorporeally irradiated femoral autograft in rat models Pubmed:25679008 |
BioMed Research International | Inhibition of osteoclast activation by phloretin through disturbing αvβ3 integrin-c-Src pathway Pubmed:25834823 |
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Int J Mol Med | Curcumin alleviates glucocorticoid-induced osteoporosis through the regulation of the Wnt signaling pathway PubMed: 26677102 |
Experimental And Therapeutic Medicine | Antiosteoporotic effect of icariin in ovariectomized rats is mediated via the Wnt/β-catenin pathway Pubmed:27347050 |
International Journal of Life Sciences Research | Impact of Curcumin and Flaxseed Oil on Bone Turnover in Glucocorticoid-Injected Female Rats profile:303311214 |
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Biological Trace Element Research | Effect of Sodium Fluoride on Bone Biomechanical and Histomorphometric Parameters and on Insulin Signalingand Insulin Sensitivity in Ovariectomized Rats. Pubmed:26876375 |
ANNALS OF ANIMAL SCIENCE | Comparison of the effect of a standard inclusion level of inorganic zinc to organic form at lowered level on bone development in growing male Ross broiler chickens journalprintahead:87 |
Annals of Animal Science | Comparison of the Effect of a Standard Inclusion Level of Inorganic Zinc to Organic Form at Lowered Level on Bone Development in Growing Male Ross Broiler Chickens view:87 |
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Protective Effect of Soybean and Mushroom against Glucocorticoid-Induced Osteoporosis in Female Rats : | |
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international journal of molecular sciences | Evidence of the Role of R-Spondin 1 and Its Receptor Lgr4 in the Transmission of Mechanical Stimuli to Biological Signals for Bone Formation. pubmed:28272338 |
Applied Surface Science | The controlled release of simvastatin from TiO2 nanotubes to promote osteoblast differentiation and inhibit osteoclast resorption S0169433216326861 |
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Chemico-Biological Interactions | Ginsenosides Rg3 attenuates glucocorticoid-induced osteoporosis through regulating BMP-2/BMPR1A/Runx2 signaling pathway pubmed:27387537 |
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Experimental and Therapeutic Medicine | Serum N-terminal telopeptide of type I collagen as an early marker of fracture nonunion in rabbits. pubmed:28105092 |
Institute of Pharmacology | Effects of long-term administration of pantoprazole on bone mineral density in young male rats. pubmed:27552060 |
Indian Journal of Orthopaedics | N-terminal telopeptides of type I collagen and bone mineral density for early diagnosis ofnonunion: An experimental study in rabbits. pubmed:27512225 |
Biological Trace Element Research | Micromolar Levels of Sodium Fluoride Promote Osteoblast Differentiation Through Runx2 Signaling pubmed:28083749 |
J Trace Elem Med Biol | Effects of fluoride on insulin signaling and bone metabolism in ovariectomized rats. pubmed:27908407 |
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Biological Trace Element Research | Effect of Dietary Phytase Supplementation on Bone and Hyaline Cartilage Development of Broilers Fed with Organically Complexed Copper in a Cu-Deficient Diet article:10.1007 |
Revista Brasileira de Ciência Avícola | Effect of Zinc Level and Source (Zinc Oxide Vs. Zinc Glycine) on Bone Mechanical and Geometric Parameters, and Histomorphology in Male Ross 308 Broiler Chicken 10.159:1806-9061-2016-0285 |
Pharmacological Reports | Oral administration of kaempferol inhibits bone loss in rat model of ovariectomy-induced osteopenia pubmed:29031689 |
Journal of Bone and Mineral Metabolism | MiR‑142‑5p promotes bone repair by maintaining osteoblast activity pubmed:27085967 |
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Journal of Materials Chemistry B | Stabilization of Ca-deficient hydroxyapatite in biphasic calcium phosphate ceramics by adding alginate to enhance their biological performances 10.1039/C7TB02620J |
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PLoS One | Subsequent somatic axis and bone tissue metabolism responses to a low-zinc diet with or without phytase inclusion in broiler chickens Pubmed:29373588 |
Royal Society of Chemistry | Stabilization of Ca-deficient hydroxyapatite in biphasic calcium phosphate ceramics by adding alginate to enhance their biological performances c7tb02620j |
Molecular Medicine Reports | Effects of constrained dynamic loading, CKIP‑1 gene knockout and combination stimulations on bone loss caused by mechanical unloading Pubmed:29956799 |
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American Scientific Publishers | Effects of KLD-12/Recombinant Human Bone Morphogenetic Protein-2 Nanofiber Scaffold on the Osteogenic Activity of Rabbit Bone Marrow Mesenchymal Stem Cells 10.1166:jbt.2018.1719 |
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American Journal of Translational Research | Long non-coding RNA SNHG7 promotes the fracture repair through negative modulation of miR-9 |
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Bulletin of Experimental Biology and Medicine | Laboratory Monitoring of Bone Tissue Remodeling after Augmentation of Impression Intraarticular Fracture with Different Types of Bone Graft Pubmed: 31630302 |
International Journal of Nanomedicine | Nano-Hydroxyapatite Coating Promotes Porous Calcium Phosphate Ceramic-Induced Osteogenesis Via BMP/Smad Signaling Pathway Pubmed: 31632013 |
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Catalog No. | Related products for research use of Homo sapiens (Human) Organism species | Applications (RESEARCH USE ONLY!) |
RPA471Hu01 | Recombinant Osteocalcin (OC) | Positive Control; Immunogen; SDS-PAGE; WB. |
RPA471Hu02 | Recombinant Osteocalcin (OC) | Positive Control; Immunogen; SDS-PAGE; WB. |
CPA471Hu21 | OVA Conjugated Osteocalcin (OC) | Immunogen; SDS-PAGE; WB. |
CPA471Hu22 | OVA Conjugated Osteocalcin (OC) | Immunogen; SDS-PAGE; WB. |
CPA471Hu23 | OVA Conjugated Osteocalcin (OC) | Immunogen; SDS-PAGE; WB. |
CPA471Hu31 | KLH Conjugated Osteocalcin (OC) | Immunogen; SDS-PAGE; WB. |
PAA471Hu02 | Polyclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
PAA471Hu01 | Polyclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
PAA471Hu08 | Polyclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu24 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu25 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu27 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu29 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu26 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu28 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu21 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu23 | Monoclonal Antibody to Osteocalcin (OC) | WB; IHC; ICC; IP. |
MAA471Hu22 | Monoclonal Antibody to Osteocalcin (OC) | WB,IHC |
SEA471Hu | ELISA Kit for Osteocalcin (OC) | Enzyme-linked immunosorbent assay for Antigen Detection. |
HEA471Hu | High Sensitive ELISA Kit for Osteocalcin (OC) | Enzyme-linked immunosorbent assay for Antigen Detection. |
LMA471Hu | Multiplex Assay Kit for Osteocalcin (OC) ,etc. by FLIA (Flow Luminescence Immunoassay) | FLIA Kit for Antigen Detection. |
KSA471Hu01 | ELISA Kit DIY Materials for Osteocalcin (OC) | Main materials for "Do It (ELISA Kit) Yourself". |