Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies
Abstract Phytochemicals are inevitable part of human civilization. It is impossible to say exactly when menfolk started to take plant portions to cure various diseases. Phytochemical investigation of diethyl ether and ethanol extracts of Magnolia grandiflora green seed cones has been carried out. Ex...
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doaj-3c42d32871854f2693569071b90cfb1a2020-11-25T01:13:05ZengWileyFood Science & Nutrition2048-71772019-05-01751761176710.1002/fsn3.1016Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studiesBo Garza0Alondra Echeverria1Felipe Gonzalez2Orlando Castillo3Thomas Eubanks4Debasish Bandyopadhyay5Department of Chemistry The University of Texas Rio Grande Valley Edinburg TexasDepartment of Chemistry The University of Texas Rio Grande Valley Edinburg TexasDepartment of Chemistry The University of Texas Rio Grande Valley Edinburg TexasDepartment of Chemistry The University of Texas Rio Grande Valley Edinburg TexasDepartment of Chemistry The University of Texas Rio Grande Valley Edinburg TexasDepartment of Chemistry The University of Texas Rio Grande Valley Edinburg TexasAbstract Phytochemicals are inevitable part of human civilization. It is impossible to say exactly when menfolk started to take plant portions to cure various diseases. Phytochemical investigation of diethyl ether and ethanol extracts of Magnolia grandiflora green seed cones has been carried out. Extraction, isolation, and identification of the phytochemicals were carried out. Structures were determined by various analytical methods including extensive nuclear magnetic resonance, gas chromatography‐mass spectroscopy, and X‐ray crystallographic analyses. Structures of the three compounds viz. 5,5′‐diallyl‐[1,1′‐biphenyl]‐2,2′‐diol (I), 3′,5‐diallyl‐[1,1′‐biphenyl]‐2,4′‐diol (II), and (3S,3aS,8S,9aS,10aR,10bS,E)‐8‐hydroxy‐3,6,9a‐trimethyl‐3a,4,5,8,9,9a,10a,10b‐octahydrooxireno[2′,3′:9,10]cyclodeca[1,2‐b]furan‐2(3H)‐one (III) were confirmed by X‐ray crystallographic analysis. GS‐MS studies of the isolated oil, eluted with hexanes, revealed the presence of eight compounds including two highly bio‐privileged molecules 5,5′‐diallyl‐2′‐methoxy‐[1,1′‐biphenyl]‐2‐ol (IV) and 1‐(4‐isopropylbenzyl)‐1,3‐dihydro‐2H‐benzo[d]imidazol‐2‐one (V). The druggability of the five compounds has also been determined by in silico studies. The isolated compounds and/or their semi‐synthetic products may find application in natural drug development research.https://doi.org/10.1002/fsn3.1016druggabilitygas chromatography‐mass spectroscopyMagnolia grandifloraphytoceuticalphytochemicalX‐ray crystallography |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bo Garza Alondra Echeverria Felipe Gonzalez Orlando Castillo Thomas Eubanks Debasish Bandyopadhyay |
spellingShingle |
Bo Garza Alondra Echeverria Felipe Gonzalez Orlando Castillo Thomas Eubanks Debasish Bandyopadhyay Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies Food Science & Nutrition druggability gas chromatography‐mass spectroscopy Magnolia grandiflora phytoceutical phytochemical X‐ray crystallography |
author_facet |
Bo Garza Alondra Echeverria Felipe Gonzalez Orlando Castillo Thomas Eubanks Debasish Bandyopadhyay |
author_sort |
Bo Garza |
title |
Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies |
title_short |
Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies |
title_full |
Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies |
title_fullStr |
Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies |
title_full_unstemmed |
Phytochemical investigation of Magnolia grandiflora green seed cones: Analytical and phytoceutical studies |
title_sort |
phytochemical investigation of magnolia grandiflora green seed cones: analytical and phytoceutical studies |
publisher |
Wiley |
series |
Food Science & Nutrition |
issn |
2048-7177 |
publishDate |
2019-05-01 |
description |
Abstract Phytochemicals are inevitable part of human civilization. It is impossible to say exactly when menfolk started to take plant portions to cure various diseases. Phytochemical investigation of diethyl ether and ethanol extracts of Magnolia grandiflora green seed cones has been carried out. Extraction, isolation, and identification of the phytochemicals were carried out. Structures were determined by various analytical methods including extensive nuclear magnetic resonance, gas chromatography‐mass spectroscopy, and X‐ray crystallographic analyses. Structures of the three compounds viz. 5,5′‐diallyl‐[1,1′‐biphenyl]‐2,2′‐diol (I), 3′,5‐diallyl‐[1,1′‐biphenyl]‐2,4′‐diol (II), and (3S,3aS,8S,9aS,10aR,10bS,E)‐8‐hydroxy‐3,6,9a‐trimethyl‐3a,4,5,8,9,9a,10a,10b‐octahydrooxireno[2′,3′:9,10]cyclodeca[1,2‐b]furan‐2(3H)‐one (III) were confirmed by X‐ray crystallographic analysis. GS‐MS studies of the isolated oil, eluted with hexanes, revealed the presence of eight compounds including two highly bio‐privileged molecules 5,5′‐diallyl‐2′‐methoxy‐[1,1′‐biphenyl]‐2‐ol (IV) and 1‐(4‐isopropylbenzyl)‐1,3‐dihydro‐2H‐benzo[d]imidazol‐2‐one (V). The druggability of the five compounds has also been determined by in silico studies. The isolated compounds and/or their semi‐synthetic products may find application in natural drug development research. |
topic |
druggability gas chromatography‐mass spectroscopy Magnolia grandiflora phytoceutical phytochemical X‐ray crystallography |
url |
https://doi.org/10.1002/fsn3.1016 |
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