N-trityl glycine ethyl ester
Nanjing Finechem Holdings Co., LTD
Specifications
N/A
Packing & Storage
Packing
Storage Powder -20°C 3 years 4°C 2 years;In solvent -80°C 6 months, -20°C 1 month
Shipping Room temperature in continental US; may vary elsewhere
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General Information
Chemical & Physical Properties
Safety Information
Synthetic Route
Biological Activity
Common Names Trt-Gly-OEt
Structure
CAS No. 18514-46-0 Boiling Point (℃) 459.1ºC at 760mmHg
Molecular Weight 345.434 Melting Point (℃) 110-112°C
Density 1.11g/cm3 Vapor Specific Gravity N/A
Molecular Formula C23H23NO2 Flash Point (℃) 231.4ºC
Solubility N/A Autoignition Temperature (℃) N/A
Personal Protective Equipment Eyeshields;Gloves;type N95 (US);type P1 (EN143) respirator filter
Hazard Codes T+:Very toxic
Safety Phrases S1-S28-S45
RIDADR NONH for all modes of transport
WGK Germany  3
SYMPTOMS PREVENTION FIRST AID
Inhalation Cough. Sore throat. Use local exhaust or breathing protection. Fresh air, rest.
Skin Redness. Burning sensation. Itching. Protective gloves. Remove contaminated clothes. Rinse and then wash skin with water and soap.
Eyes Redness. Pain. Wear safety goggles. First rinse with plenty of water for several minutes (remove contact lenses if easily possible), then refer for medical attention.
Ingestion Abdominal pain. Nausea. Vomiting. Do not eat, drink, or smoke during work. Wash hands before eating. Rinse mouth. Induce vomiting (ONLY IN CONSCIOUS PERSONS!). Refer for medical attention.
Description DL-Lysine (Lysine) is an α-amino acid that is used in the biosynthesis of proteins.
Target Km: 100-400 μM (amino acid transporter b0,+)[1]
In Vitro DL-Lysine (Lys) is a high affinity, basic amino acid substrate for amino acid transporter b0,+ with Km value ranging from 100-400 μM[1].
References [1]. Nguyen TV, et al. PEPT1 enhances the uptake of gabapentin via trans-stimulation of b0,+ exchange. Pharm Res. 2007 Feb;24(2):353-60.
Synonyms
N-Trityl-glycinethylester
N-TRITYLGLYCINE ETHYL ESTER
ethyl 2-(tritylamino)ethanoate
ethyl 2-[(triphenylmethyl)amino]acetate
ethyl-N-(triphenylmethyl)glycinate
N-trityl-glycine ethyl ester
MFCD00026893
N-(triphenylmethyl)-glycine,ethyl ester
ethyl N-triphenylmethyl glycine ester
ethyl n-tritylglycinate
N-Trityl-glycin-aethylester
Product Description
Introduction: N-Trityl Glycine Ethyl Ester is a chemical compound derived from glycine, a non-essential amino acid with various biological functions. This product possesses unique properties and finds applications in the pharmaceutical, research, and chemical industries.

Raw Materials: N-Trityl Glycine Ethyl Ester is synthesized using high-quality raw materials, including glycine and ethyl ester. Glycine is obtained through appropriate chemical reactions or enzymatic methods, ensuring its purity and effectiveness. Ethyl ester is a compound that enhances the stability and bioavailability of the final product.

Production Process: The production of N-Trityl Glycine Ethyl Ester involves controlled steps to ensure consistent product quality. Glycine is first obtained from the appropriate source and then reacted with ethyl ester under specific conditions. The reaction mixture undergoes purification techniques such as chromatography and crystallization, resulting in a pure and crystalline form of N-Trityl Glycine Ethyl Ester.

Market Trends: N-Trityl Glycine Ethyl Ester has gained attention in the pharmaceutical and research industries due to its potential applications. In the pharmaceutical sector, it serves as a building block for the synthesis of various drug molecules targeting specific diseases and disorders. In research, N-Trityl Glycine Ethyl Ester is utilized as a starting material for the development of novel compounds and chemical reactions. The market demand for N-Trityl Glycine Ethyl Ester is driven by the continuous need for innovative molecules and compounds in drug discovery and research.

Amino Acid Status: Glycine is a non-essential amino acid that plays crucial roles in protein synthesis, neurotransmission, and metabolism. It is involved in various physiological processes, including the production of glutathione, an important antioxidant. By esterifying glycine with ethyl ester, N-Trityl Glycine Ethyl Ester offers enhanced stability and solubility, making it suitable for various applications in the chemical and pharmaceutical industries.

Conclusion: N-Trityl Glycine Ethyl Ester is a valuable compound with diverse applications in the pharmaceutical, research, and chemical industries. Its synthesis from high-quality raw materials and stringent production processes ensure consistent product quality. The market demand for N-Trityl Glycine Ethyl Ester is expected to continue growing due to its unique properties and potential applications in drug discovery and research. With its versatile applications and potential contributions to pharmaceutical development and scientific advancements, N-Trityl Glycine Ethyl Ester offers a valuable option for formulation and application in different industries, providing a convenient means to support drug synthesis, chemical reactions, and research endeavors.

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