Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “CYSTAMINE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

Effects of cysteamine and cystamine on the sonochemical accumulation of hydrogen peroxide--implications for their mechanisms of action in ultrasound-exposed cells.

Based on the observed cytoprotective effect of the intracellularly permeable radical scavenger cysteamine (+NH3CH2CH2SH) in cells exposed to ultrasound and the lack of protection by its oxidized cell-nonpermeable form, cystamine (+NH3CH2CH2S-SCH2CH2NH3+), it was suggested that inertial cavitation (the growth of small gas bubbles present in the liquid exposed to ultrasound and their subsequent violent collapse) and associated free radical production may occur intracellularly (Radiat. Res. 89:369; 1982). Here we demonstrate that high concentrations (> 10 mM) of the thiol cysteamine effectively lower H2O2 yields following ultrasound exposure in argon- and air-saturated phosphate buffered saline (PBS), while cystamine is less effective under argon and practically without effect in air-saturated PBS. Direct removal of H2O2 by cysteamine is the dominant mechanism while scavenging of the H2O2 precursors .OH and superoxide plays a lesser role. Since H2O2 is a known cytotoxic species capable of penetrating cells if produced extracellularly, these results offer an alternative hypothesis for the protective effect of cysteamine and the lack of protection by cystamine, based on their differential ability to lower ultrasound-dependent H2O2 yields, without the necessity of invoking intracellular cavitation.

Argon↗

Zinc ejection as a new rationale for the use of cystamine and related disulfide-containing antiviral agents in the treatment of AIDS.

The highly conserved and mutationally intolerant retroviral zinc finger motif of the HIV-1 nucleocapsid protein (NC) is an attractive target for drug therapy due to its participation in multiple stages of the viral replication cycle. A literature search identified cystamine, thiamine disulfide, and disulfiram as compounds that have been shown to inhibit HIV-1 replication by poorly defined mechanisms and that have electrophilic functional groups that might react with the metal-coordinating sulfur atoms of the retroviral zinc fingers and cause zinc ejection. 1H NMR studies reveal that these compounds readily eject zinc from synthetic peptides with sequences corresponding to the HIV-1 NC zinc fingers, as well as from the intact HIV-1 NC protein. In contrast, the reduced forms of disulfiram and cystamine, diethyl dithiocarbamate and cysteamine, respectively, were found to be ineffective at zinc ejection, although cysteamine formed a transient complex with the zinc fingers. Studies with HIV-1-infected human T-cells and monocyte/macrophage cultures revealed that cystamine and cysteamine possess significant antiviral properties at nontoxic concentrations, which warrant their consideration as therapeutically useful anti-HIV agents.

Acquired Immunodeficiency Syndrome↗

Effects of cystamine and cysteamine on the peroxidation of lipids and the release of proteins from mitochondria.

1. Cystamine slightly stimulated the peroxidation of lipids in mitochondria. Maximal effects were obtained at low concentrations (0.5mm). 2. Cysteamine, when allowed to autoxidize, had much stronger effects than cystamine. 3. Cysteamine and GSH did not induce peroxidation when their autoxidation was counteracted. 4. When kept reduced, cysteamine prevented the ascorbate-induced peroxidation of lipids. GSH was less efficient. 5. Cystamine as well as cysteamine prevented the loss of proteins from mitochondria induced by ascorbate, whereas cadaverine, GSSG and GSH were inefficient.

Animals↗

Radioprotection of lipogenesis from glucose (U-14C) and activities of pyridine nucleotide dehydrogenases in liver of gamma-irradiated female rats by cystamine.

Whole-body gamma-irradiation (1200 R) of female rats significantly increased liver glycogen and incorporation of glucose (U-14C) into liver fatty acids. Administration of cystamine before irradiation protected the enhanced lipogenesis from glucose (U-14C), but afforded only a partial protection of liver glycogen levels. Irradiation significantly decreased the activities of liver pyruvate kinase and isocitrate dehydrogenase, and this decrease was not prevented by the administration of cystamine before irradiation. A significant increase in the activity of liver malate dehydrogenase (dehydrogenating) was noted in irradiated rats, which was not prevented by the administration of cystamine before irradiation. Irradiation did not affect the activities of combined hexose monophosphate pathway dehydrogenases and of malate dehydrogenase (decarboxylating).

Animals↗

Influence of rat blood on radiation protection of mammalian cells by cysteamine and cystamine in vitro.

The protective effect of cystamine and cystamine on T-cells in normal growth-medium was studied in the presence of whole rate blood (WRB). The protective effectiveness of both agents was increased by the addition of WRB, but much less so on the activity of cystamine. In the presence of WRB a dose-reduction factor of 1-5 was obtained at the low concentration of 0-05 mM cysteamine. The increase in protection was not due to induction of anoxia or to a release of glutathione from the rat red cell. The increase in protection may be due to protector RS radicals reacting with rat red cells.

Animals↗

Effect of local injection of cysteamine and cystamine on somatostatin and neuropeptide Y levels in the rat striatum.

Cysteamine and its dimeric form cystamine have been applied to the rat striatum by local injection. Both compounds resulted in a dose-dependent decrease of somatostatin levels. Maximal reduction of somatostatin (by about 50%) was obtained at a dose of 50 micrograms of cysteamine or cystamine after about 6 h. All three molecular weight forms of somatostatin--somatostatin-14, somatostatin-28, and the 13,000 molecular weight form of somatostatin--were reduced, as shown by size exclusion HPLC. Injection of radiolabeled cystamine revealed a fast conversion of the compound to cysteamine, suggesting it is active in the monomeric form. The levels of neuropeptide Y, which is colocalized with somatostatin in striatal neurons, failed to be changed by local or intraperitoneal injection of cysteamine, suggesting that this treatment does not affect vesicles of somatostatin/neuropeptide Y neurons.

Animals↗

The oxidation of cystamine and homocystamine by mammalian enzymes.

The oxidative deamination of cystamine and homocystamine by mammalian oxidases has been studied. The histaminase of pig kidney oxidizes homocystamine much more slowly than cystamine. The amine oxidase of mammalian liver (guinea-pig, rabbit) oxidizes homocystamine more rapidly than cystamine. Both amines are oxidized by plasma (or serum) of ruminants (ox, sheep, goat) and of the horse. In the enzymatic oxidation of homocystamine both aminogroups are removed; there is no evidence that a ring compound analogous to cystaldimine is accumulating.

Amine Oxidase (Copper-Containing)↗

[Effect of cystamine on the performance of human operators].

The performance of the man-operator was evaluated by means of an electronic recorder of tracking processes during administration of cystamine at a dose of 1.2 g. Capacity for work varied during 24 hours: it decreased by 25% at 12.00--14.00 (i.e. on the 2nd--4th working hour). Cystamine did not influence the pattern of reference variations of capacity for work and slightly increased the decline of the quality of the operator's work. An analysis of changes in the scattering of tracking errors showed that the adverse effect of cystamine on work capacity strongly influenced the mode of operation with the control system in which the scattering of tracking errors increased 3-fold.

Adolescent↗

Therapeutic effects of cystamine in a murine model of Huntington's disease.

The precise cause of neuronal death in Huntington's disease (HD) is unknown. Proteolytic products of the huntingtin protein can contribute to toxic cellular aggregates that may be formed in part by tissue transglutaminase (Tgase). Tgase activity is increased in HD brain. Treatment in R6/2 transgenic HD mice, using the transglutaminase inhibitor cystamine, significantly extended survival, improved body weight and motor performance, and delayed the neuropathological sequela. Tgase activity and N(Sigma)-(gamma-L-glutamyl)-L-lysine (GGEL) levels were significantly altered in HD mice. Free GGEL, a specific biochemical marker of Tgase activity, was markedly elevated in the neocortex and caudate nucleus in HD patients. Both Tgase and GGEL immunoreactivities colocalized to huntingtin aggregates. Cystamine treatment normalized transglutaminase and GGEL levels in R6/2 mice. These findings are consistent with the hypothesis that transglutaminase activity may play a role in the pathogenesis of HD, and they identify cystamine as a potential therapeutic strategy for treating HD patients.

Administration, Oral↗

[Cystamine and the chromosome vesting phenomenon].

The effect of radioprotector cystamine on structural chromosome mutations induced in Crepis capillaris cells by gamma-rays 137Cs is studied. Cystamine at the concentration of 0,1% causes a two-fold decrease in the frequency of structural mutations. In the "vesting" phenomenon of ring chromosomes, under the same experimental conditions, it also leads to a two-fold decrease in the frequency of exchanges, in relation to the frequency of fragment units in the initial stage, by repair of normal chromosome structure. Cystamine provides protection in structural mutagenesis at the moment of realization of primary mutagenic changes into mutations due to enzyme ligazing chromosome fragments.

Cesium Radioisotopes↗

Inactivation of human gamma-glutamylcysteine synthetase by cystamine. Demonstration and quantification of enzyme-ligand complexes.

Human erythrocyte gamma-glutamylcysteine synthetase is inactivated by the disulfide cystamine (2,2'-dithiobis-(ethylamine)) at pH 8.2 with a rate constant of 1020 min-1 mM-1. Magnesium ion and various combinations of substrates and products confer differing degrees of protection against cystamine inactivation, thus allowing the detection and quantification of certain enzyme-ligand interactions. By measuring inactivation rates as a function of ligand concentrations in incomplete reaction mixtures, we have obtained evidence for the following complexes: enzyme . Mg2+; enzyme . Mg2+ . MgATP2-; enzyme . Mg2+ . L-glutamate; enzyme . Mg2+ . MgATP2- . L-glutamate; enzyme . Mg2+ . L-gamma-glutamyl-L-alpha-aminobutyrate. The data also imply the existence of enzyme . (Mg2+)2 . MgATP2- . L-glutamate and several enzyme forms resulting from the weak binding to L-alpha-aminobutyrate. The methods used permit the calculation of cystamine inactivation rates for most of these enzyme forms and also give values for the equilibrium constants describing their formation.

Adenosine Triphosphate↗

[Modification by cystamine of radiation-induced free radical damage to biomolecules in tissues of mouse organs].

The method of low-temperature ESR-spectroscopy was used to study a modifying effect of cystamine on the yield of radiation-induced free radicals in different biomolecules of liver and spleen tissues of mice. Intraperitoneal administration of cystamine (150 mg/kg) 15 min before isolation and freezing of the tissues was shown to reduce by 11 per cent the yield of radicals of H-adducts of thymine DNA bases, to decrease by 23 per cent the yield of radicals of triacyglycerol and phospholipid radiolysis, and to increase by 24 per cent the yield of radicals of lipid fatty acid residues in splenic tissue. According to the criterion used, cystamine has no modifying action on the yield of free-radical damages to liver biomolecules.

Animals↗

Effect of gamma irradiation and cystamine on kidney lipids of rats.

Effect of whole body gamma irradiation (1200 r) and the effect of administration cystamine prior to irradiation has been studied on kidney total lipids, cholesterol, phospholipids (phosphatidylcholine and phosphatidylethanolamine). Irradiation significantly decreases kidney cholesterol and this decrease was not prevented by administration of cystamine prior to irradiation. Irradiation did not affect the incorporation of NaH232PO4 into kidney phosphatidylcholine and phosphatidylethanolamine but the incorporation of glucose-U-14C was significantly reduced in kidney total lipids and phosphatidylcholine. Administration of cystamine before irradiation was ineffective in modifying the incorporation of glucose-U-14C into kidney lipids and phosphatidylcholine.

Animals↗

Effect of thioltransferase on the cystamine-activated fructose 1,6-bisphosphatase by its redox regulation.

Fructose 1,6-bisphosphatase [EC. 3.1.3.11] is activated by the treatment with 0.1 mM cystamine up to about 400% compared to its original activity (dithiothreitol-reduced form). Thiol compounds (0.1 mM of cysteamine and dithiothreitol) can restore its activity effectively. Reduced glutathione, at 0.2 mM, also restores fructose 1,6-bisphosphatase activity only in the presence of cystamine. When excess cystamine is removed, the addition of 1.0 U/ml thioltransferase is able to restore FBPase activity very efficiently coexistence with 0.2 mM reduced glutathione though reduced glutathione alone does not work.

Animals↗

Pharmacodynamics and pharmacokinetics of psycholeptic drugs in the course of radiation disease. The effect of premedication with cystamine on pharmacodynamics and Pharmacokinetics of nitrazepam.

Pharmacodynamics and pharmacokinetics of psycholeptic drugs in the course of radiation disease (I). Effect of premedication with cystamine on pharmacodynamics and pharmacokinetics of nitrazepam. Acta Physiol. Pol. 1977, 28 (2): 161--168. In the experiments carried out on rats the radiation disease was evoked by exposure to 600 R. The strongest radioprotective action of cystamine was found on the 3-rd day of radiation disease. The tendency to normalization of both the pharmacodynamics (exploring mobility and anticonvulsant action) and pharmacokinetics of nitrazepam in the animals premedicated with cystamine was described.

Animals↗

Influence of cystamine on pharmacokinetics and pharmacodynamics of nitrazepam.

The influence of cystamine on pharmacokinetics of nitrazepam was studied. Experiments were performed on the third day after the administration of cystamine, since the author's previous investigations showed that the protective action of cystamine in radiation sickness was strongest at this time. CA premedication resulted in more rapid resorption, lower level of nitrazepam in blood, and more rapid elimination of the drug.

Animals↗

[Effects of cystamine on the state of glutathione system].

The action of cystamine on the glutathione system state in the erythrocytes of the peripheral blood, in the tissues of the brain and liver of the rats are studied. It was shown that the most changes in the glutathione content and activity of the glutathione metabolism enzymes are seen in the brain on the height of the cystamine protective action. The high concentration of reduced forms of the glutathione and the increasing activity of the glutathione peroxidase held in the liver for 5-th days after the intraperitoneal injection of the cystamine.

Animals↗

Palmitoyl derivatives of L-cysteine, cysteamine, L-cystine, cystamine and their incorporation into the bilayers of unilamellar liposomes.

The amino groups of the amino acids L-cysteine and L-cystine as well as their biogene amines cysteamine and cystamine were derivatized with palmitoyl residues. The obtained lipophilic R-SH and R-S-S-R components were incorporated into the bilayers of unilamellar liposomes. The resulting liposomes carrying about 2000 functional groups each remained stable and homogeneous during 60 days after incorporation of N-palmitoyl cysteamine and N,N'-dipalmitoyl cystamine. The incorporation of the lipophilic amino acid derivatives, however, destabilized the resulting liposomes. Via the thiol residues of the functionalized liposomes activated molecules can be linked to the liposomal surface by disulfide bonds.

Amino Acids↗