Favipiravir CAS 259793-96-9
Chemical Name:?Favipiravir
CAS No.:?259793-96-9
Molecular Fomula:?C5H4FN3O2
Molecular weight:?157.1
Appearance:?Off white solid
Assay: 99 % min
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Description
FAVIPIRAVIR?Quick Details
Chemical Name:?Favipiravir
CAS No.:?259793-96-9
Molecular Fomula:?C5H4FN3O2
Chemical Structure:
Molecular weight:?157.1
Appearance:?Off white solid
Assay: 99 % min
Typical Properties
ITEMS
SPECIFICATION
Assay?%
???99.0
Density
1.78????0.1 g/cm3
Melting point
>?151???C
Acidity coefficient (pKa)
8.77????0.60
Solubility
Dissolve in DMSO (30mg/mL), water (12mg/mL, heated)
?
FAVIPIRAVIR?Application:
Used for antiviral treatment of influenza A and B. Research has shown that in addition to influenza virus, the drug also exhibits good antiviral activity against various RNA viruses, such as Ebola virus, sand particle virus, Bunyavirus, rabies virus, etc.?
Packaging and Shipping?
1KG, 5KG, 25KG/Drum
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- 2
- 2-diallylpent-4-en-1-amine
- 4
- 95-16-9
- Ammonium sulfamate
- Benzothiazole
- cas:67889-00-3ح2
- cas:83524-75-8 | pigment black 32
- cas:928836-00-4 | 2
- cas:932745-70-5 | 4
- Chemical Minerals
- Coconut diethanolamide
- Daily Chemicals
- discount
- for sale
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- hexyl D-glucoside
- in stock
- Lauramidopropyl betaine
- LAURIC ACID MONOETHANOLAMIDE
- Petroleum Additives
- Plasticiser
- Ploymers
- price
- PVC
- quotation
- Raw Materal
- Remove term: Petroleum Additives Petroleum Additive
- SODIUM ETHYL 2-SULFOLAURATE
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Levodopa, also known as L-DOPA or 3,4-dihydroxy-L-phenylalanine, is a naturally occurring amino acid and a critical precursor in the biosynthesis of the neurotransmitters dopamine, norepinephrine, and epinephrine. With the molecular formula C9H11NO4, levodopa is a large, neutral amino acid that plays a significant role in the treatment of Parkinson’s disease due to its ability to cross the blood-brain barrier and be converted into dopamine.
Chemically, levodopa is synthesized from the precursor amino acid tyrosine through the action of the enzyme tyrosine hydroxylase. As a medication, levodopa is often formulated with a peripheral DOPA decarboxylase inhibitor to reduce its conversion to dopamine outside the brain, thereby increasing its effectiveness and reducing side effects.
Levodopa is characterized by its effectiveness in alleviating the motor symptoms of Parkinson’s disease, such as tremors, rigidity, and bradykinesia. It is typically administered orally and absorbed from the gastrointestinal tract, where it is then transported to the brain.
In summary, levodopa is a vital pharmaceutical compound used in neurology for its role in treating Parkinson’s disease by replenishing the brain’s dopamine levels. Its targeted delivery and conversion to dopamine make it an essential treatment option for managing the motor symptoms associated with this condition.


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