CAS No： 946870-92-4
Specifications：2mg/vial. And 5mg/vial. and 10mg/vial.
price：If you need OEM IGF-1 Lr3 price list, please contact customer service.
Storage conditions: Store at 2 - 7°C. Keep tightly closed. Store in a cool dry place.
Molecular weight: 9117.5
Molecular formula: C400H625N111O115S9
OEM IGF-1 Lr3 is produced from DNA technology.Its chemical composition including amino acid sequence and amino acid composition were identified to be identical with pituitary growth hormone.Growth hormone (HGH), whose molecular formula is C400H625N111O115S9, is a polypeptide chain composed of 191 amino acids.It is connected by disulfide between position 53 and 165 and 182 and 189, with a molecular weight of 22125.
GHRP-2 2mg Product description:
IGF-1 LR3 is a polypeptide chain that is comprised of 83 amino acids. It has a molecular structure of C990H1528N262O300S7, and it contains a molecular mass of 9200. It is sometimes known as Long r3 igf-1, and can occasionally gets confused with the peptide chain Long r2 ifg-1 because it has a similar molecular build and structural property.
Scientific study that has been based on animal test subjects has indicated that IGF-1 LR3’s basic functionality can be linked to two bodily organs; the pancreas and the liver. More to the point, its overall operation mechanics can be broken down to a secretion level, as it has been shown that it specifically works in conjunction with the following two secretions:
Insulin – This peptide hormone, which is secreted by the beta cells of the pancreas, is essentially responsible for ensuring that cells in the liver, skeletal muscles and fat tissue absorb glucose from the bloodstream properly.
IGF–1 – Also known as Insulin-like Growth Factor-1 or Somatomedin C, this liver-secreted peptide hormone is shown to be highly reactive in its nature. What this means is, its expression is responsible for promoting the construction and repair of various muscular and skeletal tissues throughout an animal test subject’s body through a series of chemical reaction of complex molecules.
It has been shown that IGF-1 LR3’s relationship with insulin is that it has the ability to boost the transport of the secretion through the bloodstream. This enables the secretion to interact on a cellular level within an animal test subject on a far more efficient basis. This would include the liver, the organ that secretes IGF-1. The problem with IGF-1 and its reactive tendencies is that they do not last all that long. Scientific study based on animal test subjects has determined that this particular secretion has a rapid half-life of just around 20 minutes. This causes the peptide to have a very limited effectiveness. However, it has been shown that IGF-1 LR3 has the capacity to boost this half-life in dramatic fashion; extending it to over a period of 20 days. This extended half-life, when paired up with the peptide’s ability to boost the rate of insulin transport, can lead to a host of boosted processes. Some of these boosted processes include an increase in RNA synthesis, and increase in protein synthesis, an increase in glucose transport, and an increase in amino acids to cells. Furthermore, its abilities also have been shown to cause a decrease in protein degradation, thus making its properties of synthesis even stronger.
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