Introduction:Basic information about CAS 88894-91-1|GRF (1-44) (BOVINE), including its chemical name, molecular formula, synonyms, physicochemical properties, and safety information, etc.
| Common Name | GRF (1-44) (BOVINE) |
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| CAS Number | 88894-91-1 | Molecular Weight | 5107.84 |
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| Density | / | Boiling Point | / |
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| Molecular Formula | C220H366N72O66S | Melting Point | / |
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| MSDS | / | Flash Point | / |
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Names
| Name | GRE(1-44),Bovine |
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| Synonym | More Synonyms |
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GRF (1-44) (BOVINE) BiologicalActivity
| Description | GHRF, bovine (bGRF(1-44)-NH2) is the bovine growth hormone (GH)-releasing factor (GHRF). GHRF, bovine increases the release of bovine GH, and shows a synergistic effect with Hydrocortisone (HY-N0583)[1][2]. |
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| Related Catalog | Research Areas >>EndocrinologySignaling Pathways >>GPCR/G Protein >>GHSR |
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| In Vitro | GHRF, bovine (0.001 nM-100 nM; 6 h) increases growth hormone (GH) release from bovine anterior pituitary cells, with maximum release of 262% above control at 100 nM[1]. GHRF, bovine (0.0001 nM-100 nM; 24 h) linearly increases GH secretion and is enhanced by Hydrocortisone (HY-N0583) (Cortisol, 10 ng/mL) in anterior pituitary cells cultured in media containing fetal calf serum (FCS)[1]. |
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| In Vivo | GHRF, bovine (12 mg/d; i.v.drip; from 118 to 181 d postpartum) has no influence on the mRNA abundance of the liver-type glucose transporter in the liver or kidney of postpartum bovine[2]. GHRF, bovine (12 mg/d; i.v.drip; from 118 to 181 d postpartum) also doesn’t alter the mRNA abundance of the erythrocyte-type or the intestinal-type glucose transporter in the kidney of postpartum bovine, but results individual differences in the mRNA abundance of the intestinal-type glucose transporter in liver[2]. |
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Chemical & Physical Properties
| Molecular Formula | C220H366N72O66S |
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| Molecular Weight | 5107.84 |
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| Storage condition | -20°C |
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Safety Information
| Hazard Codes | Xn |
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| WGK Germany | 3.0 |
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Synonyms