Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum
Context: Delphinium denudatum Wall (Ranunculaceae) is a rich source of diterpenoid alkaloids and is widely used for the treatment of various neurological disorders such as epilepsy, sciatica and Alzheimer’s disease. Objective: The present study describes crystal structure determination and cholinest...
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doaj-68d19457847541e49bdfeb79b9700a7b2020-11-25T02:06:36ZengTaylor & Francis GroupPharmaceutical Biology1388-02091744-51162017-01-0155168068610.1080/13880209.2016.12402071240207Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatumHanif Ahmad0Shujaat Ahmad1Ezzat Khan2Adnan Shahzad3Mumtaz Ali4Muhammad Nawaz Tahir5Farzana Shaheen6Manzoor Ahmad7University of MalakandUniversity of MalakandUniversity of MalakandUniversity of MalakandUniversity of MalakandUniversity of SargodhaHEJ Research Institute of Chemistry, International Center for Chemical and Biological Sciences (ICCBS) University of KarachiUniversity of MalakandContext: Delphinium denudatum Wall (Ranunculaceae) is a rich source of diterpenoid alkaloids and is widely used for the treatment of various neurological disorders such as epilepsy, sciatica and Alzheimer’s disease. Objective: The present study describes crystal structure determination and cholinesterase inhibitory potential of isotalatazidine hydrate isolated from the aerial part of Delphinium denudatum. Materials and methods: Phytochemical investigation of Delphinium denudatum resulted in the isolation of isotalatazidine hydrate in crystalline form. The molecular structure of the isolated compound was established by X-ray diffraction. The structural data (bond length and angles) of the compound were calculated by Density Functional Theory (DFT) using B3LYP/6-31 + G (p) basis set. The cholinesterase inhibitory potential of the isolated natural product was determined at various concentrations (62.5, 125, 250, 500 and 1000 μg/mL) followed by molecular docking to investigate the possible inhibitory mechanism of isotalatazidine hydrate. Results: The compound crystallized in hexagonal unit cell with space group P65. Some other electronic properties such as energies associated with HOMO-LUMO, band gaps, global hardness, global electrophilicity, electron affinity and ionization potential were also calculated by means of B3LYP/6-31 + G (p) basis set. The compound showed competitive type inhibition of both acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) with IC50 values of 12.13 μM and 21.41 μM, respectively. Discussion and conclusion: These results suggest that isotalatazidine hydrate is a potent dual cholinesterase inhibitor and can be used as a target drug in Alzheimer diseases. This is first report indicating isotalatazidine hydrate with anticholinesterase potential.http://dx.doi.org/10.1080/13880209.2016.1240207diterpenoid alkaloidx-ray structuredft calculationsacetylcholinesterase (ache) and butyrylcholinesterase (bche) inhibition |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hanif Ahmad Shujaat Ahmad Ezzat Khan Adnan Shahzad Mumtaz Ali Muhammad Nawaz Tahir Farzana Shaheen Manzoor Ahmad |
spellingShingle |
Hanif Ahmad Shujaat Ahmad Ezzat Khan Adnan Shahzad Mumtaz Ali Muhammad Nawaz Tahir Farzana Shaheen Manzoor Ahmad Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum Pharmaceutical Biology diterpenoid alkaloid x-ray structure dft calculations acetylcholinesterase (ache) and butyrylcholinesterase (bche) inhibition |
author_facet |
Hanif Ahmad Shujaat Ahmad Ezzat Khan Adnan Shahzad Mumtaz Ali Muhammad Nawaz Tahir Farzana Shaheen Manzoor Ahmad |
author_sort |
Hanif Ahmad |
title |
Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum |
title_short |
Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum |
title_full |
Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum |
title_fullStr |
Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum |
title_full_unstemmed |
Isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from Delphinium denudatum |
title_sort |
isolation, crystal structure determination and cholinesterase inhibitory potential of isotalatizidine hydrate from delphinium denudatum |
publisher |
Taylor & Francis Group |
series |
Pharmaceutical Biology |
issn |
1388-0209 1744-5116 |
publishDate |
2017-01-01 |
description |
Context: Delphinium denudatum Wall (Ranunculaceae) is a rich source of diterpenoid alkaloids and is widely used for the treatment of various neurological disorders such as epilepsy, sciatica and Alzheimer’s disease. Objective: The present study describes crystal structure determination and cholinesterase inhibitory potential of isotalatazidine hydrate isolated from the aerial part of Delphinium denudatum. Materials and methods: Phytochemical investigation of Delphinium denudatum resulted in the isolation of isotalatazidine hydrate in crystalline form. The molecular structure of the isolated compound was established by X-ray diffraction. The structural data (bond length and angles) of the compound were calculated by Density Functional Theory (DFT) using B3LYP/6-31 + G (p) basis set. The cholinesterase inhibitory potential of the isolated natural product was determined at various concentrations (62.5, 125, 250, 500 and 1000 μg/mL) followed by molecular docking to investigate the possible inhibitory mechanism of isotalatazidine hydrate. Results: The compound crystallized in hexagonal unit cell with space group P65. Some other electronic properties such as energies associated with HOMO-LUMO, band gaps, global hardness, global electrophilicity, electron affinity and ionization potential were also calculated by means of B3LYP/6-31 + G (p) basis set. The compound showed competitive type inhibition of both acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) with IC50 values of 12.13 μM and 21.41 μM, respectively. Discussion and conclusion: These results suggest that isotalatazidine hydrate is a potent dual cholinesterase inhibitor and can be used as a target drug in Alzheimer diseases. This is first report indicating isotalatazidine hydrate with anticholinesterase potential. |
topic |
diterpenoid alkaloid x-ray structure dft calculations acetylcholinesterase (ache) and butyrylcholinesterase (bche) inhibition |
url |
http://dx.doi.org/10.1080/13880209.2016.1240207 |
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