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Home > Biochemical Engineering > Amino Acids and Derivatives (Find 69 items)

Amino Acids and Derivatives

SNAP

(152971-80-7)
Produced concentration-related relaxations of mouse anococcygeus, in a range similar tothat already found for NO and other nitrovasodilators.A potent relaxant of non-vascularsmooth muscle.Serves as an NO donor

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Sofosbuvir

(1190307-88-0)
PSI-7977 is a phosphoramidate prodrug of PSI-7851, a nucleoside analog that, when phosphorylated, inhibits the RNA-dependent RNA polymerase of hepatitis C virus (EC50 = 92 nM). PSI-7977 is effective in vitro and in vivo.[Cayman Chemical]

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S-Trityl-L-cysteine

(2799-07-7)
A protected cysteine for peptide synthesis.S-Trityl-L-cysteine (STLC) is a tight-binding inhibitor of Eg5 that prevents mitotic progression.It has proven antitumor activity as shown in the NCI 60 tumor cell line screen.

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Serinol

(534-03-2)
It is the main raw material for the synthetic drug iopamidol

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S-Benzyl-L-cysteine

(3054-01-1)
Used in biochemical research, as an intermediate for peptide synthesis.

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Sodium Lauroyl Sarcosinate

(137-16-6)
Sodium Lauroyl Sarcosinate is a surfactant extensively utilized in personal care products, valued for its outstanding cleansing and foaming properties. This ingredient is particularly common in shampoos and body washes, effectively removing dirt and grease while maintaining the natural moisture of hair and skin. Sodium Lauroyl Sarcosinate not only provides rich foam but also offers a gentle cleansing experience, making the usage enjoyable and comfortable for consumers. Moreover, it is widely applied in the cosmetics industry, significantly enhancing skin softness and smoothness, resulting in a more refined and elastic appearance. By incorporating this ingredient, cosmetics can better adhere to the skin, providing a more lasting makeup effect. Whether in creams, lotions, or cleansing products, Sodium Lauroyl Sarcosinate plays its unique role in improving the overall texture and appearance of the skin.

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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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