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Articles 1 - 3 of 3
Full-Text Articles in Medicinal Chemistry and Pharmaceutics
Integrating Phytochemicals And In Silico Methods For Modern Drug Discovery: A Comprehensive Review, Olorunfemi Oyewole Babalola, Kpomah Bridget, Godspower Oyubu, Sakariyau Adio Waheed, Samuel Ayomikun Ajiboye, Aderonke Elizabeth Fakayode, Adeleye Adegboyega Edema, Udensi Great Chukwuma, Rachael Taiwo Tiamiyu, Adebisola Joy Fakayode, Hameedah Oluwatoyin Adebimpe, Kosisochukwu Dematus Onyeagba, Comfort Oluseun Fakunle, Paul Olamide Ottu, Sonia Gabriel
Integrating Phytochemicals And In Silico Methods For Modern Drug Discovery: A Comprehensive Review, Olorunfemi Oyewole Babalola, Kpomah Bridget, Godspower Oyubu, Sakariyau Adio Waheed, Samuel Ayomikun Ajiboye, Aderonke Elizabeth Fakayode, Adeleye Adegboyega Edema, Udensi Great Chukwuma, Rachael Taiwo Tiamiyu, Adebisola Joy Fakayode, Hameedah Oluwatoyin Adebimpe, Kosisochukwu Dematus Onyeagba, Comfort Oluseun Fakunle, Paul Olamide Ottu, Sonia Gabriel
Chemistry & Biochemistry Faculty Publications
Phytochemicals have long played a central role in drug discovery due to their structural diversity and broad biological activity. This review explores the progression of natural product-based drug development, highlighting how traditional knowledge and modern scientific tools are increasingly being combined. Medicinal plants identified through ethnopharmacological practices continue to guide the search for bioactive compounds, while advancements in screening techniques and structural analysis have improved the isolation and characterization of these substances. The review discusses the wide range of pharmacological actions found in plant-derived compounds. Their mechanisms of action and potential for synergistic effects are examined in detail. The application …
Amorphous Quininium Aspirinate From Neat Mechanochemistry: Diffracting Nanocrystalline Domains And Quick Recrystallization Upon Exposure To Solvent Vapours, Silvina Pagola, James Howard, Johannes Merkelbach, Danny Stam
Amorphous Quininium Aspirinate From Neat Mechanochemistry: Diffracting Nanocrystalline Domains And Quick Recrystallization Upon Exposure To Solvent Vapours, Silvina Pagola, James Howard, Johannes Merkelbach, Danny Stam
Chemistry & Biochemistry Faculty Publications
Quininium aspirinate is mechanochemically prepared as a crystalline solid by liquid-assisted grinding, or as an amorphous phase (as determined by X-ray powder diffraction), by neat grinding or neat ball milling. Our previous work demonstrated using FT-IR spectroscopy that a mechanochemical reaction had occurred in the mechanically treated neat mixtures. Herein is reported that microcrystal electron diffraction (microED) afforded the discovery of two diffracting micron-size particles in the amorphous powder synthesized by manual grinding, among a majority of non-diffracting particles. Remarkably, microED data of one of them led to the known lattice parameters of quininium aspirinate. Furthermore, this so-called 'X-ray amorphous' …
Trans-Resveratrol Inhibits Calcium Influx In Thrombin-Stimulated Human Platelets, Yuliya Dobrydneva, Roy L. Williams, Peter F. Blackmore
Trans-Resveratrol Inhibits Calcium Influx In Thrombin-Stimulated Human Platelets, Yuliya Dobrydneva, Roy L. Williams, Peter F. Blackmore
Chemistry & Biochemistry Faculty Publications
1 The phytoestrogenic compound trans-resveratrol (trans-3,5,4'-trihydroxystilbene) is found in appreciable quantities in grape skins and wine. It has been shown that both products rich in trans-resveratrol and pure trans-resveratrol inhibit platelet aggregation both in vivo and in vitro. However the mechanism of this action still remains unknown.
2 An essential component of the aggregation process in platelets is an increase in intracellular free Ca2+ ([Ca2+]i). Ca2+ must enter the cell from the external media through specific and tightly regulated Ca2+ channels in the plasma membrane. The objective …