- Product Details
Keywords
- Methyl-2-deoxy-D-ribofuranoside diacetate
- Methyl 3,5-di-O-acetyl-2-deoxy-D-ribofuranoside
- METHYL-2-DEOXY-D-RIBOFURANOSIDE DIACETATE
Quick Details
- ProName: Methyl-2-deoxy-D-ribofuranoside diacet...
- CasNo: 151767-35-0
- Appearance: white powder
- Application: Pharmaceutical and Cosmetic
- DeliveryTime: in 5 days
- PackAge: 1kg/Box, 25kg/Drum
- Port: Any port of China
- ProductionCapacity: 100 Kilogram/Month
- Purity: 98%
- Storage: 200kg
- Transportation: By Sea/Air/Courier
- LimitNum: 10 Kilogram
Superiority
Professional supplier Methyl-2-deoxy-D-ribofuranoside diacetate CAS 151767-35-0 with superior quality
Company profile
Wuhan Fortuna Chemical Co.,Ltd established in 2006, is a big integrative chemical enterprise being engaged in Pharmaceutical & its intermediates, Food/Feed additives, Fine chemicals in distributing the products of our own company and affiliated enterprises, are the members of Hubei E-commerce Chamber.
Our company has professional persons who major in chemical R&D and sicentific management, supply fine chemical products with high quality and close service, also supply custom-tailored products according to our clients’ requirement.
We have a positive and self-motivated management work team with a common philosophy, caring and commitment through teamwork, our team strive to achieve success in delighting our clients and ourselves.
Since Wuhan Fortuna Chemical Co., Ltd founded, we continuously innovate our products and improve our service, sales network. Hence, we initiate the first sale mode on net in China, which is the retail trade of small package bring along wholesale of diversified management modes. Our products are exported widely to South Korea, Vietnam, Australia, Europe and South America, highly recommended by our clients.
We insist on the management creed “Market is our compass, Quality is our life, Credit is our soul”. Clients’ trust is our forward powder, their satisfaction is our struggling goal.
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Details
Methyl-2-deoxy-D-ribofuranoside diacetate is a chemically modified derivative of 2-deoxy-D-ribose, a sugar central to DNA structure. Below is a detailed description of its properties and applications:
1. Chemical Structure
Core framework: A furanose ring (5-membered oxygen-containing ring) derived from D-ribose, with the hydroxyl group (-OH) at the C2 position replaced by hydrogen (hence "2-deoxy").
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Substituents:
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C1 position: Protected by a methyl group (-OCH?) as a glycosidic bond.
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C3 and C5 positions: Acetyl groups (-OAc) acting as hydroxyl-protecting groups.
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Molecular formula: Typically C??H??O? (may vary slightly depending on synthesis).
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Stereochemistry: Retains the D-configuration of natural ribose.
2. Key Properties
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Protective groups:
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The methyl group stabilizes the glycosidic bond at C1, preventing unwanted reactivity.
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Acetyl groups shield hydroxyls at C3 and C5, enabling selective functionalization in subsequent reactions.
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Solubility: Soluble in organic solvents (e.g., dichloromethane, THF) but poorly soluble in water.
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Stability: Enhanced resistance to acidic/basic conditions and oxidation due to acetyl protection.
3. Synthesis
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Starting material: Derived from 2-deoxy-D-ribose.
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Key steps:
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Methyl glycosidation: Reaction with methanol under acidic conditions (e.g., HCl) to form the methyl glycoside at C1.
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Acetylation: Selective protection of hydroxyl groups at C3 and C5 using acetic anhydride (Ac?O) or acetyl chloride (AcCl).
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4. Primary Applications
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Pharmaceutical intermediates:
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Serves as a building block for nucleoside analogs (e.g., antiviral agents like acyclovir or anticancer drugs like gemcitabine).
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Used in prodrug design, where acetyl groups are enzymatically cleaved to release active hydroxyl groups.
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Organic synthesis:
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A model compound for hydroxy protection strategies in carbohydrate chemistry.
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Facilitates glycosylation reactions to construct complex glycans or modified sugars.
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Biochemical research:
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Acts as a substrate or inhibitor for enzymes like glycosidases or kinases.
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Used to study nucleic acid metabolism or develop molecular probes.
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5. Deprotection and Functionalization
Acetyl removal: Achieved via alkaline hydrolysis (e.g., NH?/MeOH) or enzymatic cleavage.
Glycosidic bond cleavage: Acidic conditions (e.g., trifluoroacetic acid) can break the methyl glycoside to regenerate free hydroxyls for further modifications.
6. Example Use Cases
Anticancer drug synthesis: Key intermediate in producing gemcitabine, a chemotherapy agent targeting DNA replication.
DNA analog development: Used to synthesize modified deoxyribonucleotides for gene editing tools or molecular diagnostics.
For precise structural data, synthesis protocols, or literature references, consult specialized databases like SciFinder or Reaxys.