The Experts below are selected from a list of 51 Experts worldwide ranked by ideXlab platform
I S Severina - One of the best experts on this subject based on the ideXlab platform.
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a new activator of soluble guanylate cyclase generated by nitric oxide and having antihypertensive and anti aggregation properties
1995Co-Authors: O G Busygina, N N Belushkina, N B Grigorev, I S SeverinaAbstract:The effects of aminoethylisothiuronium bromide known as a radioprotector on the activity of human platelet soluble guanylate cyclase and on ADP-induced aggregation of human platelets have been studied. It has been shown that in Tris-buffer and at definite pH values aminoethylisothiuronium bromide is converted into mercaptoethylguanidine as a result of a transguanidine rearrangement. The latter contains in its molecule both guanidine and SH-groups which appear to be the donor and acceptor of nitric oxide, respectively. It was found that after its rearrangement into mercaptoethylguanidine, aminoethylisothiuronium bromide activates human platelet soluble guanylate cyclase, inhibits ADP-induced aggregation of human platelets and accelerates their spontaneous disaggregation. The stimulating effect of aminoethylisothiuronium bromide depends on the effectiveness of its transguanidine rearrangement into mercaptoethylguanidine. A molecular mechanism of the hypotensive side effect of aminoethylisothiuronium bromide is proposed.
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guanidine thiol a new activator of soluble guanylate cyclase with antihypertensive and antiaggregatory properties
1995Co-Authors: I S Severina, N N Belushkina, O G Bussygina, N B GrigoryevAbstract:Effects of aminoethylisothiuronium bromide (AET), known as radioprotector, on human platelet soluble guanylate cyclase and on ADP-induced human platelets aggregation were studied. It was shown that AET - in Tris buffer and at certain pH values - is converted, via transguanidine rearrangement, to mercaptoethylguanidine. The latter contains in its molecule both the guanidine and SH groups which act as donor and acceptor of nitric oxide (NO), respectively. It was demonstrated that AET, after its rearrangement to mercaptoethylguanidine, is able to activate human platelet soluble guanylate cyclase, as well as to inhibit ADP-induced human stimulatory effect of AET is dependent on the effectiveness of its transguanidine rearrangement to mercaptoethylguanidine. The molecular mechanism of the hypotensive by - effect of AET is proposed.
F Noizatpirenne - One of the best experts on this subject based on the ideXlab platform.
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anti t haemolysins the effects of sialic acid removal and 2 Aminoethylisothiouronium bromide treatment of erythrocytes on immune lysis
2011Co-Authors: Burin Des N Roziers, Gwellaouen Bodivit, Philippe Chadebech, Ruben Nzouakou, Philippe Bierling, F NoizatpirenneAbstract:Background and Objectives Intravascular haemolytic reactions are reported in red-cell T-activated patients after blood transfusion. The relationship between T antigen antibodies present in normal plasma and these reactions remains unclear. In this study, we assessed the haemolytic activity of T antibodies in vitro in comparison with anti-A/B antibodies. Materials and Methods We established a haemolysis assay based on treating target red-blood-cells (RBCs) with 2-Aminoethylisothiouronium bromide (AET). Two hundred and seven blood donor sera were analysed for anti-T, anti-A/B haemolysins and anti-T agglutinins. Results Anti-T haemolysins were found in 4 (1·9%) blood donor sera using a standard haemolysis method and in 174 (84%) samples using AET-treated RBCs. Haemolysis correlated with agglutination titres (P < 10−7). With both methods, anti-T haemolysins were much weaker than anti-A and anti-B haemolysins. Gradual desialylation of RBCs showed a correlation between sialic acid level as indicated by agglutination with Sambucus nigra lectin and anti-T mediated haemolysis that was significantly increased (fold 2·4) independently of T antigen expression. Conclusion These data indicate that, in vitro, anti-T-mediated haemolysis depends primarily on the degree of desialylation of target RBCs. They suggest that the haemolytic activity of T antibodies-containing human sera is usually weak and may only become significant in the very rare setting of a profound desialylation of RBCs.
Burin Des N Roziers - One of the best experts on this subject based on the ideXlab platform.
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anti t haemolysins the effects of sialic acid removal and 2 Aminoethylisothiouronium bromide treatment of erythrocytes on immune lysis
2011Co-Authors: Burin Des N Roziers, Gwellaouen Bodivit, Philippe Chadebech, Ruben Nzouakou, Philippe Bierling, F NoizatpirenneAbstract:Background and Objectives Intravascular haemolytic reactions are reported in red-cell T-activated patients after blood transfusion. The relationship between T antigen antibodies present in normal plasma and these reactions remains unclear. In this study, we assessed the haemolytic activity of T antibodies in vitro in comparison with anti-A/B antibodies. Materials and Methods We established a haemolysis assay based on treating target red-blood-cells (RBCs) with 2-Aminoethylisothiouronium bromide (AET). Two hundred and seven blood donor sera were analysed for anti-T, anti-A/B haemolysins and anti-T agglutinins. Results Anti-T haemolysins were found in 4 (1·9%) blood donor sera using a standard haemolysis method and in 174 (84%) samples using AET-treated RBCs. Haemolysis correlated with agglutination titres (P < 10−7). With both methods, anti-T haemolysins were much weaker than anti-A and anti-B haemolysins. Gradual desialylation of RBCs showed a correlation between sialic acid level as indicated by agglutination with Sambucus nigra lectin and anti-T mediated haemolysis that was significantly increased (fold 2·4) independently of T antigen expression. Conclusion These data indicate that, in vitro, anti-T-mediated haemolysis depends primarily on the degree of desialylation of target RBCs. They suggest that the haemolytic activity of T antibodies-containing human sera is usually weak and may only become significant in the very rare setting of a profound desialylation of RBCs.
N B Grigoryev - One of the best experts on this subject based on the ideXlab platform.
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guanidine thiol a new activator of soluble guanylate cyclase with antihypertensive and antiaggregatory properties
1995Co-Authors: I S Severina, N N Belushkina, O G Bussygina, N B GrigoryevAbstract:Effects of aminoethylisothiuronium bromide (AET), known as radioprotector, on human platelet soluble guanylate cyclase and on ADP-induced human platelets aggregation were studied. It was shown that AET - in Tris buffer and at certain pH values - is converted, via transguanidine rearrangement, to mercaptoethylguanidine. The latter contains in its molecule both the guanidine and SH groups which act as donor and acceptor of nitric oxide (NO), respectively. It was demonstrated that AET, after its rearrangement to mercaptoethylguanidine, is able to activate human platelet soluble guanylate cyclase, as well as to inhibit ADP-induced human stimulatory effect of AET is dependent on the effectiveness of its transguanidine rearrangement to mercaptoethylguanidine. The molecular mechanism of the hypotensive by - effect of AET is proposed.
N N Belushkina - One of the best experts on this subject based on the ideXlab platform.
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a new activator of soluble guanylate cyclase generated by nitric oxide and having antihypertensive and anti aggregation properties
1995Co-Authors: O G Busygina, N N Belushkina, N B Grigorev, I S SeverinaAbstract:The effects of aminoethylisothiuronium bromide known as a radioprotector on the activity of human platelet soluble guanylate cyclase and on ADP-induced aggregation of human platelets have been studied. It has been shown that in Tris-buffer and at definite pH values aminoethylisothiuronium bromide is converted into mercaptoethylguanidine as a result of a transguanidine rearrangement. The latter contains in its molecule both guanidine and SH-groups which appear to be the donor and acceptor of nitric oxide, respectively. It was found that after its rearrangement into mercaptoethylguanidine, aminoethylisothiuronium bromide activates human platelet soluble guanylate cyclase, inhibits ADP-induced aggregation of human platelets and accelerates their spontaneous disaggregation. The stimulating effect of aminoethylisothiuronium bromide depends on the effectiveness of its transguanidine rearrangement into mercaptoethylguanidine. A molecular mechanism of the hypotensive side effect of aminoethylisothiuronium bromide is proposed.
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guanidine thiol a new activator of soluble guanylate cyclase with antihypertensive and antiaggregatory properties
1995Co-Authors: I S Severina, N N Belushkina, O G Bussygina, N B GrigoryevAbstract:Effects of aminoethylisothiuronium bromide (AET), known as radioprotector, on human platelet soluble guanylate cyclase and on ADP-induced human platelets aggregation were studied. It was shown that AET - in Tris buffer and at certain pH values - is converted, via transguanidine rearrangement, to mercaptoethylguanidine. The latter contains in its molecule both the guanidine and SH groups which act as donor and acceptor of nitric oxide (NO), respectively. It was demonstrated that AET, after its rearrangement to mercaptoethylguanidine, is able to activate human platelet soluble guanylate cyclase, as well as to inhibit ADP-induced human stimulatory effect of AET is dependent on the effectiveness of its transguanidine rearrangement to mercaptoethylguanidine. The molecular mechanism of the hypotensive by - effect of AET is proposed.