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Home > Biochemical Engineering > Amino Acids and Derivatives (Find 4186 items)

Amino Acids and Derivatives

N-Formyl-L-leucine

(6113-61-7)
A synthetic substrate of the lipase inhibitor lipstatin

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2-(Methylphenylamino)ethanol

(93-90-3)
Intermediate of dye cationic blue X-GRRL and cationic pink FG.

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Phenylalanine, 4-chloro-, methyl ester, hydrochloride (1:1)

(14173-40-1)
Tryptophan hydroxylase inhibitor. Crossing the blood-brain barrier is superior to P-chlorophenylalanine.

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FMOC-GLU(OTBU)-OH H2O

(204251-24-1)
Protective structural unit for introducing glutamic acid into peptides.

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BOC-GLY-OME

(31954-27-5)
N-[(1,1-Dimethylethoxy)carbonyl]glycine Methyl Ester is a amino acid glycine (G615990) derivative, used widely in various synthetic preparations of pharmaceutical goods and antioxidants.N-[(1,1-Dimethylethoxy)carbonyl]glycine Methyl Ester can be used in the preparation of Pregabalin (P704800), a GABA analogue used as an anticonvulsant.

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Alanine, N,N-bis(carboxymethyl)-, sodium salt (1:3)

(164462-16-2)
Green chelating agent MGDA.Na3 as chelating agent, is applicable to a variety of fields. Meanwhile, it has excellent toxicological safety property and stable biodegradability.
As a metal ion chelating agent, MGDA.Na3 can chelate metal ions to form stable soluble complexes.
MGDA.Na3 can be used in wide pH scope, and create synergistic effect with boicides in the system.
MGDA.Na3 can work as substitute for salts of phosphonates, NTA, EDTA, citrate and the other chelating agents

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(2R,3S)-N-Benzoyl-3-phenylisoserine

(132201-33-3)
(2R,3S)-N-Benzoyl-3-phenylisoserine is an intermediate in the preparation of potent anticancer drug Paclitaxel (P132500) used to study the location of the binding sites. (2R,3S)-N-Benzoyl-3-phenylisoserine shows cytotoxic, antiviral andimmunomodulatory activity.

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Amino acids are organic compounds containing basic amino groups and acidic carboxyl groups. The hydrogen atoms on the carbon atoms of carboxylic acids are replaced by amino groups. Amino acid derivatives are substances composed of amino acids through a series of reactions. Various substances in the body, such as epinephrine and thyroid hormone, are amino acid derivatives.

Frequently Asked Questions

What are Amino Acids and Derivatives used for in the pharmaceutical industry?

Amino Acids and Derivatives serve as essential building blocks in the synthesis of peptides, proteins, and active pharmaceutical ingredients (APIs). They are widely used in drug formulation, nutritional supplements, and as chiral intermediates in asymmetric synthesis. Certain derivatives also function as prodrugs or enhance drug bioavailability, making them critical in modern therapeutic development.

How do I ensure the quality of Amino Acids and Derivatives from a supplier?

To ensure high quality, verify that the supplier complies with international standards such as ISO, GMP, and REACH. Request Certificates of Analysis (CoA), review their quality control protocols, and confirm they perform rigorous testing for purity, enantiomeric excess (for chiral amino acids), and residual solvents. Reputable suppliers also provide traceability documentation and stability data.

What are common applications of Amino Acid Derivatives in biotechnology?

Amino Acid Derivatives are extensively used in biotechnology for peptide synthesis, enzyme inhibitors, cell culture media, and as components in diagnostic reagents. They also play roles in developing biosimilars, vaccine adjuvants, and targeted drug delivery systems due to their biocompatibility and structural versatility.

Are natural and synthetic Amino Acids interchangeable in pharmaceutical formulations?

Not always. While both can be chemically identical, regulatory pathways, impurity profiles, and sourcing documentation differ significantly. Natural amino acids derived from fermentation may carry biological contaminants, whereas synthetic versions offer higher batch-to-batch consistency. Regulatory agencies often require justification for interchangeability based on safety and efficacy data.

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