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# Title Department Research Year
71 A feasible HPTLC method for concurrent quantitation of allopurinol-montelukast co-therapy in plasma and evaluation of their hepatic and renal effects in rats: Analytical, biochemical, and histopathological study Department of Pharmaceutical Analytical Chemistry 2023
72 A novel mesna-based electrochemical sensor embellished with silver nanoparticles for ultrasensitive analysis of modafinil Human Plasma Department of Pharmaceutical Analytical Chemistry 2023
73 A novel microextraction technique aided by air agitation using a natural hydrophobic deep eutectic solvent for the extraction of fluvastatin and empagliflozin from plasma samples: application to pharmacokinetic and drug–drug interaction study† Department of Pharmaceutical Analytical Chemistry 2023
74 Formulation and evaluation of simvastatin cubosomal nanoparticles for assessing its wound healing effect Department of Pharmaceutics 2023
75 HPTLC/MS and HPTLC/UV for monitoring of degradation behavior of some β-Lactam antibiotics mixtures under ambient storage conditions Department of Pharmaceutical Analytical Chemistry 2023
76 Ruthenium nanoparticles encrusted with nitrogen & sulphur magnetic quantum dots as an efficient electrochemical sensor for simultaneous determination of itraconazole and terbinafine; a dual regimen for black fungus: Magnetic solid phase micro-extractio 2023
77 An Innovative Polymer-Based Electrochemical Sensor Encrusted with Tb Nanoparticles for the Detection of Favipiravir: A Potential Antiviral Drug for the Treatment of COVID-19 Department of Pharmaceutical Analytical Chemistry 2023
78 Bifunctional ratiometric sensor based on highly fluorescent nitrogen and sulfur biomass-derived carbon nanodots fabricated from manufactured dairy product as a precursor Department of Pharmaceutical Analytical Chemistry 2023
79 Nicotinonitrile as an essential scaffold in medicinal chemistry: an updated review (2015– present) Department of Pharmaceutical Organic Chemistry 2023
80 Development of oral formulation of Lepidium seeds significantly decreases the high blood glucose levels in diabetic rats: in vitro formulation and in vivo antidiabetic performance 2023