Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate | CAS No. 9004-61-9

Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate

Basic Information

CAS Number

9004-61-9

Molecular Formula

C14H22NNaO11

Molecular Weight

423.39 g/mol

EINECS

232-678-0

AD

Basic Physical Properties

Water Solubility

Soluble in water.

Odor

无味

[Na+].CC(=O)N[C@@H]1C[C@H](O)[C@@H](CO)O[C@H]1O[C@@H]1[C@H](O[C@@H](O)[C@H](O)[C@H]1O)C([O-])=O

InChI

InChI=1S/C14H23NO11.Na/c1-4(17)15-5-2-6(18)7(3-16)24-14(5)26-10-8(19)9(20)13(23)25-11(10)12(21)22;/h5-11,13-14,16,18-20,23H,2-3H2,1H3,(H,15,17)(H,21,22);/q;+1/p-1/t5-,6+,7-,8-,9-,10+,11+,13-,14+;/m1./s1

InChIKey

MAKUBRYLFHZREJ-JWBQXVCJSA-M

LogP

-6.623 (est)

Synonyms & References

English

  • [BETA-SODIUM-GLUCONATE-(1,3)-BETA-N-ACETYL-D-GLUCOSAMINE-1,4-]N
  • COPOLY(BETA-GLUCURONIC ACID-[1->3]-BETA-N-ACETYLGLUCOSAMINE-[1->4] SODIUM SALT
  • HYALURONIC ACID NA-SALT
  • HYALURONIC ACID, SODIUM SALT, STREPTOCOCCUS SPECIES
  • HYALURONIC ACID SODIUM
  • HYALURONIC ACID HUMAN SODIUM SALT
  • acid hyaluronic
  • sodiuM (2S,3S,4R,5R,6R)-3-((2S,3R,5S,6R)-3-acetaMido-5-hydroxy-6-(hydroxyMethyl)tetrahydro-2H-pyran-2-yloxy)-4,5,6-trihydroxytetrahydro-2H-pyran-2-carboxylate
  • hyaluronic acid from bovine vitreous humor
  • hyaluronic acid sodium from*streptococcus zooepid
  • Hyaluronic acid from Cockscomb
  • Hyaluronic Acid
  • Hyaluronic  acid
  • Hyaluronic Acid from Bovine Vitreous Humor[Substrate for Hyaluronidase] Hyaluronic Acid from Bovine Vitreous Humor [Substrate for Hyaluronidase]
  • HYALURONIC ACID SODIUM SALT
  • Hyaluronic Acid froM Bovine Vitreous HuMor [Substrate for Hyaluronidase]

MDL Number

MFCD00131348

EC Number

232-678-0

Customs Code

3004909090

FAQ

What is Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9)?

Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) is a complex glycoside derivative. It consists of a beta-D-glucopyranuronate backbone linked to a 2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl group via an oxygen atom. This compound is a sodium salt, enhancing solubility. Its structure includes acetyl and sugar moieties, making it relevant in biochemical research and pharmaceutical applications. It is typically used as an intermediate in drug synthesis and carbohydrate-related studies.

What are the main uses of Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9)?

Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) is primarily used in pharmaceuticals as a precursor for antibiotic and antiviral drug development. It also serves in biochemical research for studying carbohydrate metabolism and glycosylation processes. In industrial settings, it may act as a chemical intermediate. Its applications are closely tied to its role in synthesizing complex sugars and derivatives, supporting medical and scientific advancements.

Is Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) safe?

Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) is generally considered safe when handled properly. It has low toxicity but should be treated with standard lab precautions to avoid skin or eye contact. Safety guidelines recommend using gloves, safety goggles, and proper ventilation. As a chemical intermediate, it may pose risks if ingested or inhaled in large quantities, so adherence to safety protocols is essential for safe handling and use.

How should Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) be stored?

Sodium 4-O-(2-acetamido-2,3-dideoxy-beta-D-ribo-hexopyranosyl)-beta-D-glucopyranuronate (CAS: 9004-61-9) should be stored in a cool, dry place, ideally at 2-8°C, to maintain stability. It is hygroscopic, so moisture exposure must be avoided. Store in airtight containers to prevent degradation. Protect from light and keep away from incompatible substances. Proper storage ensures its efficacy and safety in pharmaceutical and research contexts.

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