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Record Information
Version2.0
Created at2022-09-12 07:24:45 UTC
Updated at2022-09-12 07:24:45 UTC
NP-MRD IDNP0326124
Secondary Accession NumbersNone
Natural Product Identification
Common Name[(1s,2s,3r,5r,6r,8s)-3-({6-[(benzoyloxy)methyl]-3,4,5-trihydroxyoxan-2-yl}oxy)-6-hydroxy-8-methyl-9,10-dioxatetracyclo[4.3.1.0²,⁵.0³,⁸]decan-2-yl]methyl benzoate
DescriptionBenzoylpaeoniflorin belongs to the class of organic compounds known as terpene glycosides. These are prenol lipids containing a carbohydrate moiety glycosidically bound to a terpene backbone. [(1s,2s,3r,5r,6r,8s)-3-({6-[(benzoyloxy)methyl]-3,4,5-trihydroxyoxan-2-yl}oxy)-6-hydroxy-8-methyl-9,10-dioxatetracyclo[4.3.1.0²,⁵.0³,⁸]decan-2-yl]methyl benzoate is found in Paeonia clusii, Paeonia delavayi, Paeonia lactiflora, Paeonia obovata, Paeonia peregrina and Paeonia suffruticosa. [(1s,2s,3r,5r,6r,8s)-3-({6-[(benzoyloxy)methyl]-3,4,5-trihydroxyoxan-2-yl}oxy)-6-hydroxy-8-methyl-9,10-dioxatetracyclo[4.3.1.0²,⁵.0³,⁸]decan-2-yl]methyl benzoate was first documented in 2021 (PMID: 35154191). Based on a literature review a small amount of articles have been published on Benzoylpaeoniflorin (PMID: 35566342) (PMID: 35851114) (PMID: 36046859) (PMID: 35745012).
Structure
Thumb
Synonyms
ValueSource
2'-O-BenzoylpaeoniflorinMeSH
4'-O-BenzoylpaeoniflorinMeSH
Chemical FormulaC30H32O12
Average Mass584.5740 Da
Monoisotopic Mass584.18938 Da
IUPAC Name[(1S,2S,3R,5R,6R,8S)-3-({6-[(benzoyloxy)methyl]-3,4,5-trihydroxyoxan-2-yl}oxy)-6-hydroxy-8-methyl-9,10-dioxatetracyclo[4.3.1.0^{2,5}.0^{3,8}]decan-2-yl]methyl benzoate
Traditional Name[(1S,2S,3R,5R,6R,8S)-3-({6-[(benzoyloxy)methyl]-3,4,5-trihydroxyoxan-2-yl}oxy)-6-hydroxy-8-methyl-9,10-dioxatetracyclo[4.3.1.0^{2,5}.0^{3,8}]decan-2-yl]methyl benzoate
CAS Registry NumberNot Available
SMILES
C[C@@]12C[C@@]3(O)O[C@H](O1)[C@]1(COC(=O)C4=CC=CC=C4)[C@H]3C[C@]21OC1OC(COC(=O)C2=CC=CC=C2)C(O)C(O)C1O
InChI Identifier
InChI=1S/C30H32O12/c1-27-14-29(36)19-12-30(27,28(19,26(41-27)42-29)15-38-24(35)17-10-6-3-7-11-17)40-25-22(33)21(32)20(31)18(39-25)13-37-23(34)16-8-4-2-5-9-16/h2-11,18-22,25-26,31-33,36H,12-15H2,1H3/t18?,19-,20?,21?,22?,25?,26+,27+,28+,29-,30+/m1/s1
InChI KeyLATYEZNGPQKAIK-KTWUNTGUSA-N
Experimental Spectra
Not Available
Predicted Spectra
Spectrum TypeDescriptionDepositor IDDepositor OrganizationDepositorDeposition DateView
1D NMR13C NMR Spectrum (1D, 25 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 100 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 252 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 1000 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 50 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 200 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 75 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 300 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 101 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 400 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 126 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 500 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 151 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 600 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 176 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 700 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 201 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 800 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR13C NMR Spectrum (1D, 226 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
1D NMR1H NMR Spectrum (1D, 900 MHz, H2O, predicted)Wishart LabWishart LabDavid Wishart2021-06-20View Spectrum
Chemical Shift Submissions
Not Available
Species
Species of Origin
Species NameSourceReference
Paeonia clusiiLOTUS Database
Paeonia delavayiLOTUS Database
Paeonia lactifloraLOTUS Database
Paeonia obovataLOTUS Database
Paeonia peregrinaLOTUS Database
Paeonia suffruticosaLOTUS Database
Chemical Taxonomy
Description Belongs to the class of organic compounds known as terpene glycosides. These are prenol lipids containing a carbohydrate moiety glycosidically bound to a terpene backbone.
KingdomOrganic compounds
Super ClassLipids and lipid-like molecules
ClassPrenol lipids
Sub ClassTerpene glycosides
Direct ParentTerpene glycosides
Alternative Parents
Substituents
  • Terpene glycoside
  • O-glycosyl compound
  • Glycosyl compound
  • Monoterpenoid
  • Nopinane monoterpenoid
  • Pinane monoterpenoid
  • Benzoate ester
  • Aromatic monoterpenoid
  • Benzoic acid or derivatives
  • Furofuran
  • Benzoyl
  • Oxepane
  • Benzenoid
  • Oxane
  • Monosaccharide
  • Dicarboxylic acid or derivatives
  • Monocyclic benzene moiety
  • Meta-dioxane
  • Tetrahydrofuran
  • Cyclic alcohol
  • Secondary alcohol
  • Hemiacetal
  • Carboxylic acid ester
  • Oxacycle
  • Organoheterocyclic compound
  • Polyol
  • Carboxylic acid derivative
  • Acetal
  • Organic oxygen compound
  • Organic oxide
  • Hydrocarbon derivative
  • Organooxygen compound
  • Alcohol
  • Aromatic heteropolycyclic compound
Molecular FrameworkAromatic heteropolycyclic compounds
External DescriptorsNot Available
Physical Properties
StateNot Available
Experimental Properties
PropertyValueReference
Melting PointNot AvailableNot Available
Boiling PointNot AvailableNot Available
Water SolubilityNot AvailableNot Available
LogPNot AvailableNot Available
Predicted Properties
PropertyValueSource
logP2.11ChemAxon
pKa (Strongest Acidic)11.54ChemAxon
pKa (Strongest Basic)-3.6ChemAxon
Physiological Charge0ChemAxon
Hydrogen Acceptor Count10ChemAxon
Hydrogen Donor Count4ChemAxon
Polar Surface Area170.44 ŲChemAxon
Rotatable Bond Count10ChemAxon
Refractivity139.13 m³·mol⁻¹ChemAxon
Polarizability30.37 ųChemAxon
Number of Rings7ChemAxon
BioavailabilityYesChemAxon
Rule of FiveNoChemAxon
Ghose FilterNoChemAxon
Veber's RuleNoChemAxon
MDDR-like RuleYesChemAxon
HMDB IDNot Available
DrugBank IDNot Available
Phenol Explorer Compound IDNot Available
FoodDB IDNot Available
KNApSAcK IDC00044106
Chemspider IDNot Available
KEGG Compound IDNot Available
BioCyc IDNot Available
BiGG IDNot Available
Wikipedia LinkNot Available
METLIN IDNot Available
PubChem Compound137704709
PDB IDNot Available
ChEBI IDNot Available
Good Scents IDNot Available
References
General References
  1. Seo CS, Shin HK: Simultaneous Analysis of 19 Marker Components for Quality Control of Oncheong-Eum Using HPLC-DAD. Molecules. 2022 May 6;27(9). pii: molecules27092992. doi: 10.3390/molecules27092992. [PubMed:35566342 ]
  2. Zheng X, Yin M, Chu S, Yang M, Yang Z, Zhu Y, Huang L, Peng H: Comparative Elucidation of Age, Diameter, and "Pockmarks" in Roots of Paeonia lactiflora Pall. (Shaoyao) by Qualitative and Quantitative Methods. Front Plant Sci. 2022 Jan 26;12:802196. doi: 10.3389/fpls.2021.802196. eCollection 2021. [PubMed:35154191 ]
  3. Li J, Chen TT, Sun NN, Yang B, Zhang MT, Yin SY, Zhang ZB, Zhang SC, Jia XB, Feng L: [Role and mechanism of Cortex Moutan components in inhibiting production of toxic advanced glycation end products (AGEs)]. Zhongguo Zhong Yao Za Zhi. 2022 Jun;47(12):3215-3223. doi: 10.19540/j.cnki.cjcmm.20211208.301. [PubMed:35851114 ]
  4. Chen WJ, Zheng YN, Zhao L, Song SH, Long F, Pei ZQ, Tang C, Xu ZG, Lyu GH: [Distribution of bioactive compounds in different tissues of Paeonia lactiflora roots by DESI-MSI and UPLC]. Zhongguo Zhong Yao Za Zhi. 2022 Aug;47(16):4333-4340. doi: 10.19540/j.cnki.cjcmm.20220514.105. [PubMed:36046859 ]
  5. Seo CS, Lee MY: Simultaneous Determination of Fourteen Marker Compounds in the Traditional Herbal Prescription, Geumgwesingihwan, Using Ultra-Performance Liquid Chromatography-Tandem Mass Spectrometry. Molecules. 2022 Jun 17;27(12):3890. doi: 10.3390/molecules27123890. [PubMed:35745012 ]
  6. LOTUS database [Link]