N-Acetyl-DL-phenyla...

N-Acetyl-DL-phenylalanine CAS 2901-75-9
N-Acetyl-DL-phenylalanine CAS 2901-75-9
N-Acetyl-DL-phenylalanine CAS 2901-75-9
N-Acetyl-DL-phenylalanine CAS 2901-75-9
N-Acetyl-DL-phenylalanine CAS 2901-75-9

N-Acetyl-DL-phenylalanine CAS 2901-75-9

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10 Kilogram

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  • Min.Order :10 Kilogram
  • Purity: 98.0%min
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  • Appearance:White powder with a faint yellow powder
  • Application:Biochemical
  • PackAge:1kg/foil bag; 25kg/drum
  • ProductionCapacity:300|Metric Ton|Year
  • Storage:Inert atmosphere,Store in freezer, under -20°C
  • Transportation:By sea /Air / Courier

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Wuhan Fortuna Chemical Co.,Ltd established in 2006, is a big integrative chemical enterprise being engaged in Pharmaceutical & its intermediates, Food/Feed additives, Fine chemicals in distributing the products of our own company and affiliated enterprises, are the members of Hubei E-commerce Chamber.

Our company has professional persons who major in chemical R&D and sicentific management, supply fine chemical products with high quality and close service, also supply custom-tailored products according to our clients’ requirement.

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Since Wuhan Fortuna Chemical Co., Ltd founded, we continuously innovate our products and improve our service, sales network. Hence, we initiate the first sale mode on net in China, which is the retail trade of small package bring along wholesale of diversified management modes. Our products are exported widely to South Korea, Vietnam, Australia, Europe and South America, highly recommended by our clients.

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Details:

N-Acetyl-DL-phenylalanine is a chemically modified derivative of the amino acid phenylalanine. Here's a structured overview of its characteristics and applications:

Chemical Structure

Base Compound: Phenylalanine, an essential amino acid with a benzene ring attached to a CH? group and an amino acid backbone (NH?-CH-COOH).

  • Modification:

    • N-Acetylation: An acetyl group (COCH?) replaces one hydrogen on the amino group (NH? → NH-COCH?).

    • DL Configuration: A racemic mixture containing both D- and L-enantiomers, unlike natural L-phenylalanine found in proteins.

Key Properties

Solubility: Enhanced solubility in organic solvents compared to unmodified phenylalanine, due to acetylation.

Stability: The acetyl group protects the amino group, improving stability during chemical reactions.

Stereochemistry: The DL form is non-chiral in mixture, making it distinct from enantiomerically pure L-forms.

Synthesis

Method: Reacting phenylalanine with acetylating agents (e.g., acetic anhydride or acetyl chloride) under controlled conditions to target the amino group.

Purpose: Acetylation prevents unwanted side reactions at the amino group during peptide synthesis or other biochemical processes.

Applications

  1. Peptide Synthesis:

    Serves as a building block with a protected amino group, facilitating stepwise peptide chain assembly.
  2. Biochemical Research:

    Used to study amino acid transport, metabolism, and enzyme specificity (e.g., how acetylation affects biological activity).
  3. Pharmaceuticals:

    Potential prodrug applications, where acetylation alters absorption or bioavailability.
  4. Industrial Uses:

    Precursor in synthesizing specialty chemicals or polymers requiring modified amino acids.

Safety and Handling

Precautions: Standard lab practices for organic compounds (gloves, goggles, ventilation).

Storage: Stable at room temperature in a dry environment; hygroscopic in some forms.

Biological Considerations

Metabolism: The acetyl group may slow degradation, altering its metabolic pathway compared to free phenylalanine.

Natural Occurrence: Not found in nature due to the racemic DL mixture; purely synthetic.

Differentiation from Similar Compounds

N-Acetyl-L-phenylalanine: Enantiomerically pure (L-form only), used in contexts requiring specific stereochemistry.

DL vs. L Forms: The racemic DL mixture is typically chosen for non-stereosensitive applications or cost-effective synthesis.

Summary

N-Acetyl-DL-phenylalanine is a versatile derivative of phenylalanine, optimized for stability and reactivity in synthetic and biochemical contexts. Its racemic nature and acetylated amino group make it valuable in peptide synthesis, research, and industrial applications, distinguishing it from natural amino acid forms.

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