Computational analysis of phytochemicals from Crocus sativus L. and Rosmarinus officinalis L. for potential neuroprotective activity

Authors

  • Rakshita Dhyani Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Shubhra Pandey Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Trisha Mazumdar Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Chaitali Ghosh Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Thoudam Regina Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Mayandi Divya Gnaneswari Department of Zoology, Gargi College, New Delhi-110049, Delhi, India
  • Smriti Sharma Department of Zoology, Gargi College, New Delhi-110049, Delhi, India

DOI:

https://doi.org/10.56042/ijbb.v63i8.24174

Keywords:

Dopamine, Gene enrichment, Neurodegeneration, Phytochemicals, Rosmarinus officinalis L

Abstract

Neurotransmitters such as dopamine and serotonin are chemical messengers essential for normal brain function, and their imbalance has been linked to several mental and neurodegenerative disorders. The present study aims to identify natural compounds from Crocus sativus L. and Rosmarinus officinalis L. with antidepressant or anti-neurodegenerative potential for future therapeutic use, as a safer and cost-effective alternative to synthetic drugs. A series of in silico studies was carried out to achieve this. Phytoconstituents of C. sativus and R. officinalis were retrieved from IMPPAT 2.0 database, and descriptors were generated using PaDEL-Descriptor. Ligands with XlogP values between 1.5 and 2.7 were shortlisted and docked with dopamine D2 receptor (DRD2). The Swiss Target Prediction database was used to identify probable targets of the top compound found in the docking study. DAVID was used for gene ontology and KEGG pathway enrichment analysis. Kaempferol and DMAC-3,8 from C. sativus and cirsimaritin from R. officinalis were identified as potential agonists of the dopamine D2 receptor, as they showed strong binding with the D2 receptor comparable to a standard agonist drug. Machine learning models predicted IC₅₀ values with high accuracy, while pathway analysis of the two lead compounds (kaempferol and cirsimaritin) linked them to some key neuroprotective processes, signifying their potential against depression and other neurodegenerative disorders.

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Published

2026-07-21

Issue

Section

Papers

How to Cite

Computational analysis of phytochemicals from Crocus sativus L. and Rosmarinus officinalis L. for potential neuroprotective activity. (2026). Indian Journal of Biochemistry and Biophysics (IJBB), 63(8), 969-978. https://doi.org/10.56042/ijbb.v63i8.24174

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