Safety profile of AZT derivatives: Organoselenium moieties confer different cytotoxic responses in fresh human erythrocytes during in vitro exposures

溶血 化学 磷脂酰丝氨酸 体外 细胞毒性 生物化学 脂质过氧化 细胞凋亡 药理学 抗氧化剂 磷脂 生物 免疫学
作者
Assis Ecker,Rafael S. da Silva,Matheus Mülling dos Santos,Daniel Mendes Pereira Ardisson-Araújo,Oscar E. D. Rodrigues,João Batista Teixeira da Rocha,Nilda Vargas Barbosa
出处
期刊:Journal of Trace Elements in Medicine and Biology [Elsevier]
卷期号:50: 240-248 被引量:8
标识
DOI:10.1016/j.jtemb.2018.07.002
摘要

The incorporation of selenium in the structure of nucleosides is a promising strategy to develop novel therapeutic molecules.To assess the toxic effects of three AZT derivatives containing organoselenium moieties on human erythrocytes.Freshly human erythrocytes were acutely treated with AZT and selenium derivatives SZ1 (chlorophenylseleno), SZ2 (phenylseleno) and SZ3 (methylphenylseleno) at concentrations ranging from 10 to 500 μM. Afterwards, parameters related to membrane damage, redox dyshomeostasis and eryptosis were determined in the cells.The effects of AZT and derivatives toward erythrocytes differed considerably. Overall, the SZ3 exhibited similar effect profiles to the prototypal AZT, without causing cytotoxicity. Contrary, the derivative SZ1 induced hemolysis and increased the membrane fragility of cells. Reactive species generation, lipid peroxidation and thiol depletion were also substantially increased in cells after exposure to SZ1. δ-ALA-D and Na+/K+-ATPase activities were inhibited by derivatives SZ1 and SZ2. Additionally, both derivatives caused eryptosis, promoting cell shrinkage and translocation of phosphatidylserine at the membrane surface. The size and granularity of erythrocytes were not modified by any compound.The insertion of either chlorophenylseleno or, in a certain way, phenylseleno moietes in the structure of AZT molecule was harmful to erythrocytes and this effect seems to involve a pro-oxidant activity. This was not true for the derivative encompassing methylphenylseleno portion, making it a promising candidate for pharmacological studies.
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