Calcium 2-Aminoethyl Phosphate


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  • Calcium 2-Aminoethyl Phosphate
  • 10389-08-9
  • C2H10CaNO4P
  • 183.16
  • 95.0%
  • Dietary Supplement Raw Material
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Product introduction

 Calcium 2-aminoethylphosphate (Ca-AEP or Ca-2AEP) is a compound discovered by biochemist Erwin Chargaff in 1941. It is the calcium salt of phosphorylethanolamine. Calcium 2-aminoethyl phosphate (Ca-AEP or Ca-2AEP) is also known as calcium ethylamidophosphate (calcium EAP), calcium cosamine phosphate, calcium 2-aminoethyl phosphate, calcium 2-aminoethyl phosphate  2-AEP functions as a component of cell membranes and has the property of forming a complex with minerals. This mineral transporter enters the outer layer of the outer cell membrane, where it releases its associated minerals and metabolizes itself along with the structure of the cell membrane.

Feature

 (1) High purity: Through careful extraction and manufacturing processes, high-purity 2-aminoethyl calcium phosphate can be prepared. This high purity ensures better bioavailability and reduces the possibility of adverse reactions.
 (2) Safety: Calcium 2-aminoethyl phosphate is a natural compound that has been proven to be safe for human use. It falls within a safe dosage range and exhibits no toxicity or significant side effects.
 (3) Stability: 2-aminoethyl calcium phosphate preparations exhibit excellent stability, allowing them to maintain their activity and effectiveness under various environmental and storage conditions.
 (4) Enhanced absorption: 2-aminoethyl calcium phosphate is easily absorbed by the human body. It enters the bloodstream efficiently through the intestines and distributes to different tissues and organs, thereby promoting its desired effects.

Applications

  Calcium 2-aminoethylphosphate (Ca-AEP) has broad prospects in various fields. One area of ​interest is its potential in immunomodulation.  Ca-AEP has shown the ability to modulate immune responses and enhance immune function in preclinical studies. Research suggests that Ca-AEP may have neuroprotective properties and support neuronal health.  Ca-AEP's ability to interact with cell membranes and form complexes with minerals further contributes to its potential neurological benefits.

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