Curcumin, an active component of the rhizome turmeric, has gained much attention as a plant‐based compound with pleiotropic pharmacological properties. It possesses anti‐inflamma-tory, antioxidant, hypoglycemic, antimicrobial, neuroprotective, and immunomodulatory activities. However, the health‐promoting utility of curcumin is constrained due to its hydrophobic nature, water insolubility, poor bioavailability, rapid metabolism, and systemic elimination. Therefore, an innovative stride was taken, and complexes of metals with curcumin have been synthesized. Cur-cumin usually reacts with metals through the β‐diketone moiety to generate metal–curcumin com-plexes. It is well established that curcumin strongly chelates several metal ions, including boron, cobalt, copper, gallium, gadolinium, gold, lanthanum, manganese, nickel, iron, palladium, plati-num, ruthenium, silver, vanadium, and zinc. In this review, the pharmacological, chemopreventive, and therapeutic activities of metal–curcumin complexes are discussed. Metal–curcumin complexes increase the solubility, cellular uptake, and bioavailability and improve the antioxidant, anti‐inflam-matory, antimicrobial, and antiviral effects of curcumin. Metal–curcumin complexes have also demonstrated efficacy against various chronic diseases, including cancer, arthritis, osteoporosis, and neurological disorders such as Alzheimer’s disease. These biological activities of metal–curcu-min complexes were associated with the modulation of inflammatory mediators, transcription fac-tors, protein kinases, antiapoptotic proteins, lipid peroxidation, and antioxidant enzymes. In addi-tion, metal–curcumin complexes have shown usefulness in biological imaging and radioimaging. The future use of metal–curcumin complexes may represent a new approach in the prevention and treatment of chronic diseases.
CITATION STYLE
Prasad, S., Dubourdieu, D., Srivastava, A., Kumar, P., & Lall, R. (2021, July 1). Metal–curcumin complexes in therapeutics: An approach to enhance pharmacological effects of curcumin. International Journal of Molecular Sciences. MDPI. https://doi.org/10.3390/ijms22137094
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