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V Tassani

Publications and source records attributed to V Tassani.

5 recordsLinked to original sources

The contribution of endogenous polyamines to the permeability transition of rat liver mitochondria.

Spermine and spermidine are present in rat liver mitochondria at the concentrations of 3.5 and 1.8 nanomoles/mg protein, respectively. Addition of 50 microM Ca2+ and 1 mM Pi to respiring mitochondria induces, concomitantly with mitochondrial swelling and Mg2+ efflux, a consistent release of polyamines, which is either prevented by cyclosporin A or Mg2+. Addition of 0.1 mM spermine to mitochondria deenergized by Ca2+ and phosphate restores, like 1 mM Mg2+, transmembrane potential at the physiological level, while either cyclosporin A or ADP are ineffective. The presence of polyamines in the matrix space should be considered relevant, like Mg2+, in controlling the permeability transition of liver mitochondria.

Animals↗

The alterations in the energy linked properties induced in rat liver mitochondria by acetylsalicylate are prevented by cyclosporin A or Mg2+.

The alterations in rat liver mitochondria induced by acetylsalicylate in the presence of low concentrations of Ca2+ (large amplitude swelling, permeability to 14C]sucrose, collapse of transmembrane potential and effluxes of endogenous Mg2+ and accumulated Ca2+) were fully prevented by either cyclosporin A or Mg2+. Cyclosporin A and Mg2+ were also capable of restoring transmembrane potential upon its decrease induced by acetylsalicylate. The loss of endogenous Mg2+ was the primary effect promoted by acetylsalicylate; the other noxious effects followed. These results indicate that Mg2+ are fundamental components of the mitochondrial permeability barrier and that their loss might be responsible for the membrane transition induced by acetylsalicylate.

Animals↗

Inhibition of mitochondrial permeability transition by polyamines and magnesium: importance of the number and distribution of electric charges.

The protective effects of Mg2+ and various natural and synthetic polyamines on the permeability transition of isolated rat liver mitochondria have been compared. The permeability transition was induced by incubating the mitochondria in a sucrose medium at pH 7.4 in the presence of 100 microM Ca2+ and 1 mM phosphate and was monitored via the release of endogenous Mg2+, sucrose permeation, mitochondria swelling and the fall of transmembrane potential. By all of these parameters (only the traces of delta psi have been reported) spermine fully inhibited the transition at 25 microM concentration, spermidine and caldine at 250 microM and Mg2+ at 500 microM concentration. Both putrescine and dien exhibited only a partial protection even at 2.5 mM concentration. The protective action resulted strictly dependent on the number of the positive charges of each cation. In the case of polyamines this number is also determined by the nature of the methylene carbon chains of each compound.

Animals↗

Anaplerotic effect of propionyl carnitine in rat heart mitochondria.

Carnitine and propionyl carnitine both increase production of 14CO2 from [1-14C]pyruvate but only the latter, in a process inhibited by malonate, increases oxygen uptake and 14CO2 evolution from [2-14C]pyruvate. Carnitine increases the rate of formation of acetyl carnitine from pyruvate to a greater extent than propionyl carnitine. These effects of carnitine and propionyl carnitine are not detectable in mitochondria (e.g., rat liver) deficient in carnitine acetyl transferase activity.

Acetylcarnitine↗