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1.
Brisdelli F Coccia C Cinque B Cifone MG Bozzi A 《Molecular and cellular biochemistry》2007,296(1-2):137-149
This work shows that 25 μM quercetin caused a marked inhibition of K562 cells growth together with a mild cytotoxicity, while
HSB-2 cells were practically unaffected. Moreover, quercetin induced caspase-3 and cytochrome c-dependent apoptosis almost exclusively in the former cell line. Exposure of K562 cells to quercetin caused also a significant
increase of cells in G2/M phase that reached the maximum peak at 24 h (4-fold with respect to the basal value). The major sensitivity exhibited by
K562 cells was only in part imputable to their higher glutathione content, as compared to HSB-2 cells, thus confirming previous
reports describing the formation of intracellular quercetin–thiol toxic adducts in cells exposed to the flavonoid. In fact,
after induction of intracellular glutathione increase we detected in both cell lines a significant rise of apoptotic cells,
again more marked in K562 cells. By contrast, glutathione-depleted cells, failed to show a decrease of apoptosis in both cell
lines, thus contradicting our previous findings and literature data. Since the yet unresolved question about the anti-oxidant
or the pro-oxidant capacity of quercetin, we investigated which of these two properties worked in our experimental model.
Interestingly, not only quercetin did not produce reactive oxygen species but also prevented their formation, as observed
in cells exposed to the oxidizing agent ter-butylhydroperoxide, acting as an efficient oxygen radicals scavenger. This result
indicates that quercetin exhibited, in these cell lines, anti-oxidant more than pro-oxidant ability. 相似文献
2.
Park HS Jun DY Han CR Kim YH 《Biochemical and biophysical research communications》2008,377(1):280-285
Phenylalanine analog, ρ-fluorophenylalanine (pFPhe)-mediated cytotoxicity and several apoptotic events including mitochondrial cytochrome c release, activation of caspase-9, -3, and -8, Bid cleavage, degradation of PARP and PLCγ-1, and DNA fragmentation were more significant in p56lck-deficient Jurkat T cells (JCaM1.6) than in wild-type Jurkat T cells (E6.1). The susceptibility of JCaM1.6 toward apoptogenic activity of pFPhe decreased after acquisition of p56lck by transfection. The p56lck kinase activity increased 1.6-fold at 15-30 min after pFPhe treatment. The pan-caspase inhibitor (z-VAD-fmk) completely blocked the pFPhe-mediated apoptotic changes except caspase-9 activation. The caspase-8 inhibitor (z-IETD-fmk), which failed to influence pFPhe-induced caspase-9 activation, completely blocked caspase-8 activation and PLCγ-1 degradation with a marked reduction in caspase-3 activation and PARP degradation, indicating pFPhe-induced caspase-8 activation as a downstream event of mitochondria-dependent activation of caspase-9. These results indicate that the deficiency of p56lck augments pFPhe-induced mitochondrial cytochrome c release and resultant apoptotic cell death in Jurkat T cells. 相似文献