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AB313501

Human Alkaline Phosphatase ELISA kit

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Human Alkaline Phosphatase ELISA kit is a Sandwich ELISA for the measurement of Human Alkaline Phosphatase in Human in Cell Culture Media, Biofluids samples.

View Alternative Names

AP-TNAP, TNS-ALP, TNSALP, Alkaline phosphatase liver/bone/kidney isozyme, Phosphoamidase, Phosphocreatine phosphatase, ALPL

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Sandwich ELISA - Human Alkaline Phosphatase ELISA kit (AB313501)
  • sELISA

Supplier Data

Sandwich ELISA - Human Alkaline Phosphatase ELISA kit (AB313501)

Example of standard curve using ab313501. This standard curve is for demonstrative purposes only. A standard curve must be run with each assay.

Key facts

Detection method

Colorimetric

Sample types

Cell culture supernatant, Plasma, Serum

Reacts with

Human

Assay type

Sandwich

Results type

Quantitative

Sensitivity

= 2 mIU/mL

Range

2 - 500 mIU/mL

Assay Platform

Pre-coated microplate (12 x 8 well strips)

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "sELISA": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" } } }

Product details

Human Alkaline Phosphatase ELISA kit is an in vitro enzyme-linked immunosorbent assay for the quantitative measurement of human Alkaline Phosphatase in serum, plasma and cell culture supernatants. This assay employs an antibody specific for human Alkaline Phosphatase coated on a 96-well plate.

Recovery

[ { "sample": "Plasma", "range": "119 - 150 %", "average": "= 140.2" }, { "sample": "Serum", "range": "127 - 147 %", "average": "= 134.7" }, { "sample": "Cell culture media", "range": "125 - 146 %", "average": "= 135.8" } ]

What's included?

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Properties and storage information

Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
-20°C
Appropriate long-term storage conditions
-20°C
Storage information
-20°C

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

Alkaline Phosphatase also known as ALP or ALKPHOS is an enzyme that removes phosphate groups from various molecules like nucleotides and proteins. This enzymatic activity requires alkaline conditions with a pH optimum around 8–10. ALP is anchored to the cell membrane and exists in several isoforms each with a mass around 57-70 kDa. Different tissues express specific isoforms such as bone liver kidney and placenta. Osteoblasts for example show high levels of alkaline phosphatase expression often detected by techniques like ALP staining or alkaline phosphatase staining.
Biological function summary

Alkaline phosphatase plays important roles in dephosphorylation processes. Particularly in bone it is associated with osteoblast activity where it is important for bone mineralization. The enzyme is not known to be part of a large protein complex but its activity aids in the conversion of inorganic pyrophosphate into phosphate which promotes the deposition of calcium phosphate in bone. ALP staining and ALP staining osteoblast can be used in laboratory settings for studying the mineralization and function of osteoblasts.

Pathways

Alkaline phosphatase is key in the regulation of the phosphate group levels within the organism particularly in the bone mineralization process. It participates in the vitamin D metabolic pathway which influences calcium and phosphorus homeostasis. Its function has a dynamic relationship with proteins like NPP1 which regulates levels of inorganic pyrophosphate acting counter to alkaline phosphatase's phosphate-producing activity.

Defects in alkaline phosphatase activity are linked to conditions like hypophosphatasia and hyperphosphatasia where mineralization processes are disrupted. In hypophosphatasia decreased ALP activity leads to improper bone formation due to accumulation of inorganic pyrophosphate. This interaction is notable alongside proteins such as tissular nonspecific alkaline phosphatase. On the other hand elevated ALP levels often indicate liver or bone disease pathology where increased enzyme levels reflect altered tissue turnover.

Product protocols

Target data

Alkaline phosphatase that metabolizes various phosphate compounds and plays a key role in skeletal mineralization and adaptive thermogenesis (PubMed : 12162492, PubMed : 23688511, PubMed : 25982064). Has broad substrate specificity and can hydrolyze a considerable variety of compounds : however, only a few substrates, such as diphosphate (inorganic pyrophosphate; PPi), pyridoxal 5'-phosphate (PLP) and N-phosphocreatine are natural substrates (PubMed : 12162492, PubMed : 2220817). Plays an essential role in skeletal and dental mineralization via its ability to hydrolyze extracellular diphosphate, a potent mineralization inhibitor, to phosphate : it thereby promotes hydroxyapatite crystal formation and increases inorganic phosphate concentration (PubMed : 23688511, PubMed : 25982064). Acts in a non-redundant manner with PHOSPHO1 in skeletal mineralization : while PHOSPHO1 mediates the initiation of hydroxyapatite crystallization in the matrix vesicles (MVs), ALPL/TNAP catalyzes the spread of hydroxyapatite crystallization in the extracellular matrix (By similarity). Also promotes dephosphorylation of osteopontin (SSP1), an inhibitor of hydroxyapatite crystallization in its phosphorylated state; it is however unclear whether ALPL/TNAP mediates SSP1 dephosphorylation via a direct or indirect manner (By similarity). Catalyzes dephosphorylation of PLP to pyridoxal (PL), the transportable form of vitamin B6, in order to provide a sufficient amount of PLP in the brain, an essential cofactor for enzymes catalyzing the synthesis of diverse neurotransmitters (PubMed : 20049532, PubMed : 2220817). Additionally, also able to mediate ATP degradation in a stepwise manner to adenosine, thereby regulating the availability of ligands for purinergic receptors (By similarity). Also capable of dephosphorylating microbial products, such as lipopolysaccharides (LPS) as well as other phosphorylated small-molecules, such as poly-inosine : cytosine (poly I : C) (PubMed : 28448526). Acts as a key regulator of adaptive thermogenesis as part of the futile creatine cycle : localizes to the mitochondria of thermogenic fat cells and acts by mediating hydrolysis of N-phosphocreatine to initiate a futile cycle of creatine dephosphorylation and phosphorylation (By similarity). During the futile creatine cycle, creatine and N-phosphocreatine are in a futile cycle, which dissipates the high energy charge of N-phosphocreatine as heat without performing any mechanical or chemical work (By similarity).
See full target information Alkaline phosphatase, tissue-nonspecific isozyme
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