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CAS 144-90-1 DL-3-Aminoisobutyric Acid Pharmaceutical Intermediates

CAS 144-90-1 DL-3-Aminoisobutyric Acid Pharmaceutical Intermediates

  • CAS 144-90-1 DL-3-Aminoisobutyric Acid Pharmaceutical Intermediates
CAS 144-90-1 DL-3-Aminoisobutyric Acid Pharmaceutical Intermediates
Product Details:
Place of Origin: Made in China
Brand Name: Zhihua
Model Number: Handmade
Payment & Shipping Terms:
Minimum Order Quantity: 1 Piece
Price: To be negotiated
Packaging Details: 1KGS/Carton
Delivery Time: 3-20Days
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 1000Ton/Month
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Detailed Product Description
Product Name: DL-3-Aminoisobutyric Acid CAS: 144-90-1
Molecular Formula: NH2CH2CH(CH3)COOH Molecular Weight: 103.12
Synonyms: DL-3-AMinoisobutyric Acid Apperance: White Powder
Type: Pharmaceutical Intermediates Certification: COA
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Pharmaceutical DL-3-Aminoisobutyric acid


DL-3-Aminoisobutyric acid Intermediates


CAS 144-90-1 Pharmaceutical Intermediates

CAS 144-90-1 DL-3-Aminoisobutyric acid


3-aminoisobutyric acid is a beta-amino-acid that is isobutyric acid in which one of the methyl hydrogens is substituted by an amino group. It has a role as a metabolite. It derives from an isobutyric acid. It is a conjugate acid of a 3-aminoisobutyrate. It is a tautomer of a 3-aminoisobutanoic acid zwitterion.



CAS 144-90-1
Synonyms DL-BETA-AMINOISOBUTYRICACID;Methylalanine;2-Methyl-3-aminopropanoicacid;2-Methyl-3-aminopropionicacid;3-amino-2-methChemicalbookylpropanoicacid;3-azanyl-2-methyl-propanoicacid;3-aminoisobutyricac;DL-3-AMinoisobutyricacidDL-3-AMinoisobutyricacid
Molecular formula NH2CH2CH(CH3)COOH
Molecular weight 103.12
Purity 99%
Appearance White powder
EINECS number 205-644-8


3-Amino-2-methylpropanoic acid could induce browning of white fat and hepatic β-oxidation and is inversely correlated with cardiometabolic risk factors.


Weight is slightly decreased in the mice by the end of 3-Amino-2-methylpropanoic acid (BAIBA) treatment. Analysis of body composition using MRI demonstrates BAIBA treatment significantly decreases body fat in the mice. Consistent with the effects on thermogenic and β-oxidation gene expression and body weights, analysis with metabolic cages indicates that oxygen consumption (VO2) and whole body energy expenditure are increased in the BAIBA treated mice without any significant difference in activity or food intake. The mice are also challenged with an intraperitoneal glucose tolerance test (IPGTT). BAIBA is found to significantly improve the glucose tolerance in the mice as determined by the area under the curve of the IPGTT


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