Product Name |
3-Methyl-10-ethyl-Deazaflavin |
---|---|
CAS No. | 59997-14-7 |
MF | C14H13N3O2 |
MW | 255.27 |
Purity | 98.0% |
Appearance | Yellow powder |
Packing | 1kg/bag,25kg/drum |
Apply | Dietary Supplement Raw Materials |
Product Name | 3-Methyl-10-ethyl-Deazaflavin |
---|---|
CAS Number | 59997-14-7 |
Molecular Formula | C14H13N3O2 |
Molecular Weight | 255.27 |
Purity | 98.0% |
Appearance | Yellow powder |
Packing | 1kg/bag,25kg/drum |
Apply | Dietary Supplement Raw Materials |
3-Methyl-10-Ethyl-Deazaflavin is a synthetic derivative of deazaflavin, a structural analog of flavin, a key component in many biological redox reactions. This compound is notable for its potential use as a cofactor or catalyst in various biochemical processes due to its unique structural properties. The 3-methyl and 10-ethyl modifications enhance the compound’s stability and reactivity, making it useful in research applications involving enzyme catalysis and electron transfer reactions. 3-Methyl-10-Ethyl-Deazaflavin is employed in studying enzyme mechanisms, developing novel biocatalysts, and exploring biochemical pathways. Its properties make it a valuable tool in both academic and industrial laboratories focused on biochemistry and molecular biology.
(1) High purity: TND-1128 can obtain high-purity products through refined production processes. High purity means better bioavailability and fewer adverse reactions.
(2) Stability: TND-1128 has good stability and can maintain its activity and effect under different environments and storage conditions.
(3) Easy to absorb: TND-1128 can be quickly absorbed by the human body, enters the blood circulation through the intestines, and is distributed to different tissues and organs.
3-Methyl-10-Ethyl-Deazaflavin is used primarily in biochemical research to study enzyme catalysis and electron transfer reactions. It is relevant for developing biocatalysts and exploring biochemical pathways due to its enhanced stability and reactivity, making it a valuable compound for research in enzymology and molecular biology.
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