Welcome to LookChem.com Sign In|Join Free
  • or
[1-14C]-Cinnamic acid is a radiolabeled organic compound, where the carbon-14 isotope is incorporated at the first carbon position of the cinnamic acid molecule. Cinnamic acid, also known as trans-3-phenylpropenoic acid, is a naturally occurring organic compound found in plants and is an intermediate in the biosynthesis of lignin. It has a molecular formula of C9H8O2 and is characterized by a phenyl ring attached to a triple-bonded propenoic acid chain. The radiolabeled version, [1-14C]-cinnamic acid, is used in various biochemical and metabolic studies to trace the movement and transformation of [1-14C]-cinnamic acid within biological systems. This radiolabeled compound is particularly useful for research purposes, as the carbon-14 isotope allows for the detection and quantification of cinnamic acid and its metabolic products through radioactive decay, providing valuable insights into its role in cellular processes and potential applications in fields such as pharmacology and agriculture.

4457-45-8

Post Buying Request

4457-45-8 Suppliers

Recommended suppliers

  • Product
  • FOB Price
  • Min.Order
  • Supply Ability
  • Supplier
  • Contact Supplier

4457-45-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 4457-45-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,4,5 and 7 respectively; the second part has 2 digits, 4 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 4457-45:
(6*4)+(5*4)+(4*5)+(3*7)+(2*4)+(1*5)=98
98 % 10 = 8
So 4457-45-8 is a valid CAS Registry Number.

4457-45-8Upstream product

4457-45-8Downstream Products

4457-45-8Relevant academic research and scientific papers

Kinetic and solvent isotope effects on biotransformation of aromatic amino acids and their derivatives

Kańska, Marianna,Jemielity, Jacek,Paj?k, Ma?gorzata,Pa?ka, Katarzyna,Podsadni, Katarzyna,Winnicka, El?bieta

, p. 627 - 634 (2016/12/26)

Aromatic amino acids such as l-phenylalanine, l-tryptophan, 3′,4′-dihydroxy-l-phenylalanine (l-DOPA), and their derivatives 3′,4′-dihydroxyphenylacelaldehyde (DOPAL) and 3′,4′-dihydroxyphenylethanol (DOPET), play an essential role in human metabolic processes. Incorrect or slow biotransformation of these compounds leads to some metabolic dysfunctions and in some cases to some neurodegenerative diseases. Therefore, studies of the biotransformation mechanisms of these metabolites draw biochemists' and medical researchers' attention. This study investigates the mechanisms of biotransformation of the aforementioned compounds using kinetic (KIE) and solvent (SIE) isotope effect methods. The overview presents the results and the numerical values of KIE and SIE methods, obtained in the study of biotransformation of l-phenylalanine, 5′-chloro-l-tryptophan, and l-DOPA, catalyzed by the enzymes from the lyases group (phenylalanine ammonia lyase, tryptophan indole-lyase, and tyrosine decarboxylase). Deuterium KIE was also determined during the deamination of 2′-chloro-l-phenylalanine in the presence of the enzyme l-phenylalanine dehydrogenase, as well as in the conversion of DOPAL into DOPET catalyzed by the enzyme alcohol dehydrogenase. The values of KIE and SIE have been determined using a noncompetitive spectrophotometric and a competitive (combined with internal radioactivity standard) radiometric methods.

Post a RFQ

Enter 15 to 2000 letters.Word count: 0 letters

Attach files(File Format: Jpeg, Jpg, Gif, Png, PDF, PPT, Zip, Rar,Word or Excel Maximum File Size: 3MB)

1 Customer Service

What can I do for you?
Get Best Price

Get Best Price for 4457-45-8