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Published on: April 7, 2011
Mechanistic insights into carbon dot-aceclofenac interactions: An experimental and theoretical approach
Karthik Krishnasamy1, Thangavel Subramani2
1Department of Chemistry, Nandha Arts and Science College, Erode, 638052, Tamil Nadu, India.
Abstract:
In this study, carbon dots (CDs) were synthesized from Tribulus terrestris leaves (TTLF) through a greener, chemical-free method, underscoring environmental sustainability and their biocompatibility. Aceclofenac (ACE), a widely used nonsteroidal anti-inflammatory drug (NSAID), was selected to investigate its interaction with CDs and to explore the potential of CDs as nanocarriers for drug delivery. The AC complex interaction was examined using a multi-level computational framework complemented by FT-IR and UV-Vis experimental data. These analyses provide detailed mechanistic insights into non-covalent interactions, electronic perturbations, hydrogen bonding, charge transfer, and stabilization mechanisms in the AC complex. These findings offer a foundational mechanistic and analytical understanding that can guide future studies on ACE delivery and formulation optimization, highlighting the potential of green CDs as sustainable nanocarriers for therapeutic agents.
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