β-D-Glucopyranoside,(3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl | CAS No. 1324005-51-7

β-D-Glucopyranoside,(3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl

Basic Information

CAS Number

1324005-51-7

Molecular Formula

C45H72O16

Molecular Weight

869.04 g/mol

AD

Basic Physical Properties

Physical State

Powder

CC(=O)OC1COC(C(C1OC(=O)C)O)OC2CCC34CC35CCC6(C(C(CC6(C5CC(C4C2(C)C)OC7C(C(C(C(O7)CO)O)O)O)C)O)C8(CCC(O8)C(C)(C)O)C)C

InChI

InChI=1S/C45H72O16/c1-21(47)56-26-19-55-37(33(53)34(26)57-22(2)48)60-28-11-13-45-20-44(45)15-14-41(7)35(43(9)12-10-29(61-43)40(5,6)54)23(49)17-42(41,8)27(44)16-24(36(45)39(28,3)4)58-38-32(52)31(51)30(50)25(18-46)59-38/h23-38,46,49-54H,10-20H2,1-9H3

InChIKey

LRWUZSAOXSUTCO-UHFFFAOYSA-N

LogP

1.865700000000004

Topological Polar Surface Area

240.35999999999996 Ų

Hydrogen Bond Donor/Acceptor

7 / 16

Complexity

1690

Synonyms & References

English

  • β-D-Glucopyranoside,(3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl
  • Neoastragaloside I
  • CID 131637750

MDL Number

MFCD29917914

FAQ

What are the physical and chemical properties of β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl (CAS: 1324005-51-7)?

β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl is a crystalline compound with a high molecular weight (around 1000 g/mol). It has a low solubility in water but is soluble in organic solvents like ethanol and acetone. The compound is chemically stable but can react with strong acids and bases. It is also known for its epoxide functionality, which can engage in further chemical reactions such as ring-opening reactions.

How is β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl (CAS: 1324005-51-7) typically synthesized?

β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl is typically synthesized through a multistep process involving the condensation of acetylated xylose with a lanostane derivative. The reaction is catalyzed by a suitable catalyst such as a metal complex, and the process involves careful control of reactant stoichiometry and temperature to achieve high selectivity and yield. The final product is isolated through column chromatography or other purification methods.

What industries use β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl (CAS: 1324005-51-7)?

β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl is used in the pharmaceutical industry for its potential in medicinal chemistry and as a bioactive compound. It also has applications in the development of sensors and semiconductors due to its specific functional groups and molecular structure. However, detailed industrial applications may require further research and development.

What precautions should be taken when handling β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl (CAS: 1324005-51-7)?

When handling β-D-Glucopyranoside, (3β,6α,16β,20R,24S)-3-[(3,4-di-O-acetyl-β-D-xylopyranosyl)oxy]-20, 24-epoxy-16,25-dihydroxy-9,19-cyclolanostan-6-yl, safety precautions include wearing appropriate personal protective equipment (PPE) such as gloves, goggles, and a lab coat. The compound should be handled in a well-ventilated area or a fume hood to avoid inhalation of dust or vapors. In case of a spill, immediately clean up with appropriate absorbent materials and follow the safety data sheet (SDS) for proper disposal. Handling should be conducted by trained personnel familiar with the compound's properties and potential hazards.

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