Human Osteocrin ELISA Kit is a Sandwich (quantitative) ELISA kit for the measurement of Human Osteocrin in Human in Cell culture supernatant, Plasma, Serum samples.
Application | Reactivity | Dilution info | Notes |
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Application sELISA | Reactivity Reacts | Dilution info - | Notes - |
Hormone that acts as a regulator of dendritic growth in the developing cerebral cortex in response to sensory experience (PubMed:27830782). Induced in the brain following membrane depolarization and inhibits dendritic branching in neurons of the developing cortex (PubMed:27830782). Probably acts by binding to natriuretic peptide receptor NPR3/NPR-C, thereby preventing binding between NPR3/NPR-C and natriuretic peptides, leading to increase cGMP production (By similarity).
Osteocrin, Musclin, OSTN
Human Osteocrin ELISA Kit is a Sandwich (quantitative) ELISA kit for the measurement of Human Osteocrin in Human in Cell culture supernatant, Plasma, Serum samples.
Sample type | Average % | Range |
---|---|---|
Sample type Serum | Average % = 120.1 | Range 81 - 145 % |
Sample type Plasma | Average % = 125.1 | Range 102 - 137 % |
Sample type Cell culture media | Average % = 135 | Range 122 - 143 % |
Human Osteocrin ELISA kit is an in vitro enzyme-linked immunosorbent assay for the quantitative measurement of human Osteocrin in serum, plasma and cell culture supernatants. This assay employs an antibody specific for human Osteocrin coated on a 96-well plate.
Osteocrin also known as OSTN is a small secreted protein with an approximate molecular mass of 13 kDa. It is expressed highly in certain tissues such as bone and muscle. Osteocrin acts mechanically by binding to natriuretic peptide receptor-C (NPR-C). This interaction plays a substantial role in mediating various physiological responses.
Osteocrin participates in the modulation of bone growth and muscle activity. It exists as part of a non-complex pathway serving as a regulatory molecule for natriuretic peptides. Osteocrin modulates the effects of natriuretic peptides by preventing their binding to clearance receptors which increases their bioavailability and prolonged action. This action impacts vascular physiology and growth regulation.
Osteocrin plays a significant role in the natriuretic peptide signaling pathway. In this pathway it functions closely with proteins such as ANP (atrial natriuretic peptide) and BNP (brain natriuretic peptide). These proteins engage in blood pressure and volume regulation by causing vasodilation and promoting natriuresis. Osteocrin modulates the effectiveness of this pathway through its interaction with NPR-C enhancing the functions by extending the half-life of the active peptides involved.
Researchers have identified osteocrin's involvement in cardiovascular conditions and osteoporosis. Osteocrin's ability to enhance natriuretic peptide availability has implications for managing cardiovascular diseases where these peptides play protective roles. Additionally osteocrin influences bone density suggesting a connection to osteoporosis. Interactions with proteins like NPR-C and BNP are critical in these conditions with osteocrin modulating their biological activity and potentially offering therapeutic benefits.
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Example of standard curve using ab313916. This standard curve is for demonstrative purposes only. A standard curve must be run with each assay.
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