Anti-Inflammatory Activity of Novel (S)-Naproxen Derivatives and free radical
hemolysis of human erythrocytes and human platelets aggregation, to screen for potential
Hemolysis and ATP release from human and rat erythrocytes under conditions of hypoxia: a comparative studyLuneva, Oksana G.,
Novozhilova, T. S.,
Alekseeva, Natalya V.,
Rodnenkov, Oleg V.,
Deev, Leonid I.,
Maksimov, Georgy V.,
Grygorczyk, Ryszard,
Orlov, Sergei N.,
Sidorenko, Svetlana V. . In this work we have studied effects of hypoxia on red blood cell
hemolysis in humans and rats and compared
Structure, Biodegradation, and In Vitro Bioactivity of Zn–1%Mg Alloy Strengthened by High-Pressure TorsionMartynenko N.,
Anisimova N.,
Rybalchenko O.,
Kiselevskiy M.,
Rybalchenko G.,
Tabachkova N.,
Zheleznyi M.,
Temralieva D.,
Bazhenov V.,
Koltygin A.,
Sannikov A.,
Dobatkin S. in the bioactivity of the alloy after HPT:
hemolysis, cellular colonization and Escherichia coli growth inhibition
Anti-Inflammatory Activity of Novel (S)-Naproxen Derivatives and free radical
hemolysis of human erythrocytes and human platelets aggregation, to screen for potential