71 research outputs found
Impact of metal on the DNA photocleavage activity and cytotoxicity of ferrocenyl terpyridine 3d metal complexes
Ferrocenyl terpyridine 3d metal complexes and their analogues, viz. [M(Fc-tpy)2](ClO4)2 (1-4), [Zn(Ph-tpy)2](ClO4)2 (5) and [Zn(Fc-dpa)2]X2 (X = ClO4, 6; PF6, 6a), where M = Fe(II) in 1, Co(II) in 2, Cu(II) in 3 and Zn(II) in 4, Fc-tpy is 4'-ferrocenyl-2,2':6',2''-terpyridine, Ph-tpy is 4'-phenyl-2,2':6',2''-terpyridine and Fc-dpa is ferrocenyl-N,N-dipicolylmethanamine, are prepared and their DNA binding and photocleavage activity in visible light studied. Complexes 2, 4, 5 and 6a that are structurally characterized by X-ray crystallography show distorted octahedral geometry with the terpyridyl ligands binding to the metal in a meridional fashion, with Fc-dpa in 6a showing a facial binding mode. The Fc-tpy complexes display a charge transfer band in the visible region. The ferrocenyl (Fc) complexes show a quasi-reversible Fc+-Fc redox couple within 0.48 to 0.66 V vs. SCE in DMF-0.1 M TBAP. The DNA binding constants of the complexes are 104 M-1. Thermal denaturation and viscometric data suggest DNA surface binding through electrostatic interaction by the positively charged complexes. Barring the Cu(II) complex 3, the complexes do not show any chemical nuclease activity in the presence of glutathione. Complexes 1-4 exhibit significant plasmid DNA photocleavage activity in visible light via a photoredox pathway. Complex 5, without the Fc moiety, does not show any DNA photocleavage activity. The Zn(II) complex 4 shows a significant PDT effect in HeLa cancer cells giving an IC50 value of 7.5 µ M in visible light, while being less toxic in the dark (IC50 = 49 µ M)
Photocytotoxic organometallic compounds
69-82Organometallic
compounds have recently found applications in medicinal chemistry and as
diagnostic tools in chemical biology. Naturally occurring biomolecules, viz.,
cobalamine, NiFe hydrogenase, Acetyl-CoA synthase, etc., also contain
metal-carbon bonds. Among organometallic compounds having medicinal importance,
(arene)ruthenium complexes, radioactive technetium complexes and ferrocene
conjugates are notable ones. Applications of photoactive organometallic
complexes or metal complexes conjugated with an organometallic moiety are of
recent origin. Photodynamic therapy (PDT) is a promising method to treat cancer
cells in presence of light. This review primarily focuses on different aspects
of the chemistry of organometallic complexes showing photocytotoxic activities.
Half-sandwich tungsten, iron or ruthenium complexes are known to show
photonuclease and/or photo-crosslinking activity. Photoinduced organometallic
CO releasing molecules also exert photocytotoxic activity. Attempts have been
made in this review to highlight the photocytotoxic behavior of various metal
complexes when conjugated with a photoactive organometallic moiety, viz.,
ferrocene
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