Studies in Humans on the Mechanism of Potent Spermicidal and Apoptosis-Inducing Activities of Vanadocene Complexes
- 1 April 2000
- journal article
- Published by Oxford University Press (OUP) in Biology of Reproduction
- Vol. 62 (4) , 939-949
- https://doi.org/10.1095/biolreprod62.4.939
Abstract
We previously demonstrated that bis-cyclopentadienyl (Cp) complexes of vanadium(IV) (vanadocenes) are potent spermicidal and apoptosis-inducing agents. To gain further insight into the structure-function relationships controlling these two properties of vanadocenes, we have synthesized analogues in which the bis-Cp rings were substituted with one or five electron-donating methyl groups. The three complexes included vanadocene dichloride (VDC), bis(methylcyclopentadienyl) vanadium dichloride (VMDC), and bis(pentamethylcyclopentadienyl) vanadium dichloride (VPMDC). The concentration-dependent effect of these vanadocenes on sperm-immobilizing activity (SIA), mitochondrial membrane potential (DeltaPsim), axonemal dynein ATPase activity, and tyrosine phosphorylation of global and axoneme-specific sperm proteins was assessed by computer-assisted sperm analysis, flow cytometry, colorimetry, and immunoblotting, respectively. Apoptosis-inducing ability was quantitated by the two-color flow cytometric terminal dideoxynucleotidyl transferase-based assay that labels 3'-hydroxyl ends of fragmented DNA. All three vanadocenes induced rapid sperm immobilization (T(1/2) < 15 sec). Substitution of the bis-Cp rings by five methyl groups augmented the SIA of VDC by 10-fold. The EC(50) values (50% inhibitory concentration) for VDC, VMDC, and VPMDC were 7.5 microM, 4.3 microM, and 0.7 microM, respectively. Whereas SIA of vanadocenes was apparent at low micromolar concentrations, the apoptosis-inducing property was evident only at higher micromolar concentrations. The concentrations of VDC, VMDC, and VPMDC required for 50% apoptosis were 49 microM, 67 microM, and 153 microM, and for 50% reduction in sperm DeltaPsim were 435 microM, 173 microM, and 124 microM, respectively. Spermicidal activity of vanadocenes was not dependent on the inhibition of ATPase or tyrosine phosphorylation of global and sperm axonemal proteins. Due to the ability of these vanadocene complexes to rapidly generate hydroxyl radicals in the presence of oxidant, our findings provide unprecedented evidence for a novel mechanism of action for spermicidal vanadocenes. The differential concentration-dependent spermicidal and apoptosis-inducing properties of vanadocenes gives them particular utility as a new class of vaginal contraceptives.Keywords
This publication has 35 references indexed in Scilit:
- Molecular Genotoxicity Profiles of Apoptosis-Inducing Vanadocene ComplexesToxicology and Applied Pharmacology, 1999
- Oxidation and the SpermatozoaSeminars in Reproductive Medicine, 1998
- Structural and biological characterization of a novel spermicidal vanadium(IV) complex: Bis(π-cyclopentadienyl)-N,N-diethyl dithiocarbamato vanadium(IV) tetrafluoro borate, [VCp2(DeDtc)](BF4)Journal of Inorganic Biochemistry, 1998
- Spermicidal Activity of Metallocene Complexes Containing Vanadium(IV) in Humans1Biology of Reproduction, 1998
- Mechanism for a New Antitumor Vanadium Complex: Hydroxyl Radical-Dependent DNA Cleavage by 1,10-Phenanthroline Vanadyl Complex in the Presence of Hydrogen PeroxideBiochemical and Biophysical Research Communications, 1995
- A New Method for the Cytofluorometric Analysis of Mitochondrial Membrane Potential Using the J-Aggregate Forming Lipophilic Cation 5,5′,6,6′-Tetrachloro-1,1′,3,3′-tetraethylbenzimidazolcarbocyanine Iodide (JC-1)Biochemical and Biophysical Research Communications, 1993
- Vanadyl‐induced Fenton‐like reaction in RNAFEBS Letters, 1990
- ESR evidence for the formation of hydroxyl radicals during the reaction of vanadyl ions with hydrogen peroxide.CHEMICAL & PHARMACEUTICAL BULLETIN, 1989
- Vanadium-mediated lipid peroxidation in microsomes from human term placentaBulletin of Environmental Contamination and Toxicology, 1988
- Bis-cyclopentadienyl Compounds of Ti, Zr, V, Nb and TaJournal of the American Chemical Society, 1954