ORIGINAL ARTICLEPharmacognosy MagazineVol. 14 | Issue 57s | 2018 | pp. S481–7Open access
Molecular Docking and Density Function Theory Studies of Compounds from Euphorbia hirta and Bacopa monnieri to Zika Virus Structural and Nonstructural Proteins
- 1,
- 2,
- 3,
- 3,
- 3*
- 1 Bioinformatics Infrastructure Facility Centre of DBT, Queen Mary’s College (Autonomous), Chennai, Tamil Nadu, India.
- 2 Department of Microbiology and Biotechnology, Presidency College (Autonomous), Chennai, Tamil Nadu, India.
- 3 Department of Chemistry, Queen Mary’s College (Autonomous), Chennai, Tamil Nadu, India.
Published in Pharmacognosy Magazine
Correspondence: Meena Sulochana
Department of Chemistry, Queen Mary’s College (Autonomous), Chennai, Tamil Nadu, India.
Email: journal171191@gmail.com
Copyright: © 2018 Manuscript Technomedia. This is an open access article.
- Published:
- Sep 10, 2018
- Received:
- Mar 7, 2017
- Accepted:
- Apr 27, 2017
- DOI:
- 10.4103/pm.pm_89_17
How to cite
Kothandan, S., Purushothaman, I., George, S., Purushothaman, S., & Sulochana, M. (2018). Molecular Docking and Density Function Theory Studies of Compounds from Euphorbia hirta and Bacopa monnieri to Zika Virus Structural and Nonstructural Proteins. Pharmacognosy Magazine, 14(57s), S481–7. https://doi.org/10.4103/pm.pm_89_17
Abstract
Background: Zika virus is an arbovirus belongs to the genus flavivirus and pose a serious global threat. The recent 2015 outbreak in Brazil was associated with a significant increase in microcephaly cases and other neurological complications in newborn babies and WHO declared Zika to be an international public health emergency. Currently, there is no specific treatment or Vaccine available for the Zika virus, and thus due to the unavailability of the antiviral drugs, the need for the identification of novel drugs is paramount. Materials and Methods: The compounds from two medicinal plants (Bacopa monnieri and Euphorbia hirta) were selected for the in silico molecular docking studies against the structural and nonstructural proteins of Zika virus. Quantum–chemical parameters density functional theory and absorption, distribution, metabolism, and excretion‑toxicity (ADMET) was performed to identify the drug‑likeliness properties. Results: Among the tested compounds, galloylquinic acid, Bacopaside III, and Bacopaside A were identified as leads against multiple targets of Zika virus. The identified compounds also exhibited desirable quantum chemical and ADMET properties. Conclusion: Hence, the compounds hampering the active site of the three different proteins playing a prime role in replication and fusion with desirable pharmacokinetic properties could be suggested for further in vitro and in vivo analysis of Zika virus.
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Article metadata
| Title | Molecular Docking and Density Function Theory Studies of Compounds from Euphorbia hirta and Bacopa monnieri to Zika Virus Structural and Nonstructural Proteins |
|---|---|
| Authors | Sangeetha Kothandan; Indu Purushothaman; Stella George; Sasikala Purushothaman; Meena Sulochana |
| Affiliations | Bioinformatics Infrastructure Facility Centre of DBT, Queen Mary’s College (Autonomous), Chennai, Tamil Nadu, India.; Department of Microbiology and Biotechnology, Presidency College (Autonomous), Chennai, Tamil Nadu, India.; Department of Chemistry, Queen Mary’s College (Autonomous), Chennai, Tamil Nadu, India. |
| Corresponding author | journal171191@gmail.com |
| Journal | Pharmacognosy Magazine |
| Volume / Issue | Vol. 14, Issue 57s (2018) |
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