ALP ELISA kit (Human)

Category: Assay Kits
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SEB472Hu
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Product Name ALP ELISA kit (Human)
Description This assay has high sensitivity and excellent specificity for detection of Alkaline Phosphatase (ALP). No significant cross-reactivity or interference between Alkaline Phosphatase (ALP) and analogues was observed.
Synonyms AKP; ALKP; Basic Phosphatase
Method Sandwich
Detection Range 0.156-10ng/mL
Sensitivity 0.064ng/mL
Target ALP
Specificity This assay has high sensitivity and excellent specificity for detection of Alkaline Phosphatase (ALP). No significant cross-reactivity or interference between Alkaline Phosphatase (ALP) and analogues was observed.
Reactivity Human
Sample Types Serum, Plasma, Tissue Homogenates And Other Biological Fluids
Reconstitution 1.Prepare all reagents, samples and standards; 2.Add 100uL standard or sample to each well.Incubate 2 hours at 37℃; 3.Aspirate and add 100uL prepared Detection Reagent A.Incubate 1 hour at 37℃; 4.Aspirate and wash 3 times; 5.Add 100uL prepared Detection Reagent B.Incubate 30 minutes at 37℃; 6.Aspirate and wash 5 times; 7.Add 90uL Substrate Solution.Incubate 10-20 minutes at 37℃; 8.Add 50uL Stop Solution.Read at 450nm immediately.
Storage 4°C for 1 month/ -20°C for long-term(within shelf life)
Notes Colormetric
References Comparison of platelet rich fibrin and collagen as osteoblast-seeded scaffolds for bone tissue engineering applications;Combined effect of strontium and zoledronate on hydroxyapatite structure and bone cell responses;Directing chondrogenic differentiation of mesenchymal stem cells with a solid-supported chitosan thermogel for cartilage tissue engineering;Strontium and zoledronate hydroxyapatites graded composite coatings for bone prostheses;Multi‐Layered Scaffolds for Osteochondral Tissue Engineering: In Vitro Response of Co‐Cultured Human Mesenchymal Stem Cells;Antiresorption implant coatings based on calcium alendronate and octacalcium phosphate deposited by matrix assisted pulsed laser evaporation;On the Mechanism of Drug Release from Polysaccharide Hydrogels Cross-Linked with Magnetite Nanoparticles by Applying Alternating Magnetic Fields: the Case of DOXO Delivery;Antioxidant and bone repair properties of quercetin-functionalized hydroxyapatite: an in vitro osteoblast-osteoclast-endothelial cell co-culture study;Antioxidant and bone repair properties of quercetin-functionalized hydroxyapatite: An in vitro osteoblast–osteoclast–endothelial cell co-culture study;An advanced tri-culture model to evaluate the dynamic interplay among osteoblasts, osteoclasts, and endothelial cells.;Biomimetic fabrication of antibacterial calcium phosphates mediated by polydopamine. ;Strontium‐Substituted Hydroxyapatite‐Gelatin Biomimetic Scaffolds Modulate Bone Cell Response;Gradient coatings of strontium hydroxyapatite/zinc β-tricalcium phosphate as a tool to modulate osteoblast/osteoclast response;Multiple myeloma-derived exosomes are enriched of amphiregulin (AREG) and activate the epidermal growth factor pathway in the bone microenvironment …;CoCr porous scaffolds manufactured via selective laser melting in orthopedics: Topographical, mechanical, and biological characterization;Lead exposure inhibits osteoblastic differentiation and inactivates the canonical Wnt signal and recovery by icaritin in MC3T3-E1 subclone 14 cells;Macrophage inhibits the osteogenesis of fibroblasts in ultrahigh molecular weight polyethylene (UHMWPE) wear particle-induced osteolysis;Zn as the Factor of Alkaline Phosphatase in Periodontal Patients consuming Minangkabau food in West Sumatra, Indonesia;AAV-anti-miR-214 prevents collapse of the femoral head in osteonecrosis by regulating osteoblast and osteoclast activities;Matrilin-2 is a novel prognostic marker in osteosarcoma;Platinum nanoparticles supported on functionalized hydroxyapatite: Anti-oxidant properties and bone cells response;Antiosteoporotic Nanohydroxyapatite Zoledronate Scaffold Seeded with Bone Marrow Mesenchymal Stromal Cells for Bone Regeneration: A 3D In Vitro Model;
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