Area of research
Spectroscopy · Molecular Biology
Research interest
Research interests include Mass Spectrometry Techniques and Applications, Metabolomics and Mass Spectrometry Studies, Botanical Research and Chemistry, and Analytical chemistry methods development.
Origanum majorana L. protects against neuroinflammation-mediated cognitive impairment: a phyto-pharmacological study
Neuromodulatory Activity of Dietary Phenolics Derived from <i>Corchorus olitorius</i> L.
High resolution UPLC-MS/MS profiling of polyphenolics in the methanol extract of Syzygium samarangense leaves and its hepatoprotective activity in rats with CCl4-induced hepatic damage
Polyphenols LC-MS2 profile of Ajwa date fruit (Phoenix dactylifera L.) and their microemulsion: Potential impact on hepatic fibrosis
Characterization of hepatoprotective metabolites from Artemisia annua and Cleome droserifolia using HPLC/PDA/ESI/MS–MS
Gadolinium in human brain sections and colocalization with other elements
Investigations of the Copper Peptide Hepcidin-25 by LC-MS/MS and NMR
Polyphenols from Tamarix nilotica: LC–ESI-MSn Profiling and In Vivo Antifibrotic Activity
Complementarity of molecular and elemental mass spectrometric imaging of Gadovist™ in mouse tissues
Destabilizing the interplay between miR-1275 and IGF2BPs by <i>Tamarix articulata</i> and quercetin in hepatocellular carcinoma
Dual Internal Standards with Metals and Molecules for MALDI Imaging of Kidney Lipids
Simultaneous determination of eight neonicotinoid insecticide residues and two primary metabolites in cucumbers and soil by liquid chromatography–tandem mass spectrometry coupled with QuEChERS
Identification of phenolic secondary metabolites from <i>Schotia brachypetala</i> Sond. (Fabaceae) and demonstration of their antioxidant activities in <i>Caenorhabditis elegans</i>
Identification of phenolic secondary metabolites from<i> Schotia brachypetala</i> Sond. (Fabaceae) and demonstration of their antioxidant activities in <i>Caenorhabditis elegans</i>
Evaluation of Plant Phenolic Metabolites as a Source of Alzheimer's Drug Leads
Inductively Coupled Plasma Mass Spectrometry-Based Method for the Specific Quantification of Sulfenic Acid in Peptides and Proteins
Bridging the Gap between Molecular and Elemental Mass Spectrometry: Higher Energy Collisional Dissociation (HCD) Revealing Elemental Information
Structure-based design and synthesis of novel pseudosaccharine derivatives as antiproliferative agents and kinase inhibitors
Dual labeling of biomolecules using MeCAT and DOTA derivatives: application to quantitative proteomics