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Phenyl 2-pyridyl ketoxime induces cellular senescence-like alterations via nitric oxide production in human diploid fibroblasts

Authors
Yang, Kyeong EunJang, Hyun-JinHwang, In-HuChung, Young-HoChoi, Jong-SoonLee, Tae-HoonChung, Yun-JoLee, Min-SeungLee, Mi YoungYeo, Eui-JuJang, Ik-Soon
Issue Date
Apr-2016
Publisher
WILEY
Keywords
cellular senescence; human diploid fibroblast; nitric oxide; phenyl 2-pyridyl ketoxime; reactive oxygen species
Citation
AGING CELL, v.15, no.2, pp.245 - 255
Journal Title
AGING CELL
Volume
15
Number
2
Start Page
245
End Page
255
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/8424
DOI
10.1111/acel.12429
ISSN
1474-9726
Abstract
Phenyl-2-pyridyl ketoxime (PPKO) was found to be one of the small molecules enriched in the extracellular matrix of near-senescent human diploid fibroblasts (HDFs). Treatment of young HDFs with PPKO reduced the viability of young HDFs in a dose- and time-dependent manner and resulted in senescence-associated -galactosidase (SA--gal) staining and G2/M cell cycle arrest. In addition, the levels of some senescence-associated proteins, such as phosphorylated ERK1/2, caveolin-1, p53, p16(ink4a), and p21(waf1), were elevated in PPKO-treated cells. To monitor the effect of PPKO on cell stress responses, reactive oxygen species (ROS) production was examined by flow cytometry. After PPKO treatment, ROS levels transiently increased at 30min but then returned to baseline at 60min. The levels of some antioxidant enzymes, such as catalase, peroxiredoxin II and glutathione peroxidase I, were transiently induced by PPKO treatment. SOD II levels increased gradually, whereas the SOD I and III levels were biphasic during the experimental periods after PPKO treatment. Cellular senescence induced by PPKO was suppressed by chemical antioxidants, such as N-acetylcysteine, 2,2,6,6-tetramethylpiperidinyloxy, and L-buthionine-(S,R)-sulfoximine. Furthermore, PPKO increased nitric oxide (NO) production via inducible NO synthase (iNOS) in HDFs. In the presence of NOS inhibitors, such as L-NG-nitroarginine methyl ester and L-NG-monomethylarginine, PPKO-induced transient NO production and SA--gal staining were abrogated. Taken together, these results suggest that PPKO induces cellular senescence in association with transient ROS and NO production and the subsequent induction of senescence-associated proteins.
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