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  4. Resveratrol triggers the ER stress-mediated intrinsic apoptosis of neuroblastoma cells coupled with suppression of Rho-dependent migration and consequently prolongs mouse survival
 
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Resveratrol triggers the ER stress-mediated intrinsic apoptosis of neuroblastoma cells coupled with suppression of Rho-dependent migration and consequently prolongs mouse survival

Journal
Chemico-biological Interactions
Journal Volume
382
Date Issued
2023-09-01
Author(s)
Sun, Ding-Ping
Chen, Jui-Tai
Yang, Shun-Tai
Chen, Tso-Hsiao
SHING-HWA LIU  
Chen, Ruei-Ming
DOI
10.1016/j.cbi.2023.110645
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/641434
URL
https://api.elsevier.com/content/abstract/scopus_id/85165551643
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85165551643&doi=10.1016%2fj.cbi.2023.110645&partnerID=40&md5=d1cb8f9b6eb5d1bf66ae7d3135e10bfd
Abstract
Neuroblastoma, the most common childhood tumor, are highly malignant and fatal because neuroblastoma cells extremely defend against apoptotic targeting. Traditional treatments for neuroblastomas are usually ineffective and lead to serious side effects and poor prognoses. In this study, we investigated the molecular mechanisms of resveratrol-induced insults to neuroblastoma cells and survival extension of nude mice with neuroblastomas, especially in the endoplasmic reticular (ER) stress-intracellular reactive oxygen species (iROS) axis-mediated signals. Resveratrol specifically killed neuroblastoma cells mainly via apoptosis and autophagy rather than necrosis. As to the mechanisms, resveratrol time-dependently triggered productions of Grp78 protein and iROS in neuroblastoma cells. Attenuating the ER stress-iROS signaling axis significantly suppressed resveratrol-induced autophagy, DNA damage, and cell apoptosis. Successively, resveratrol decreased phosphorylation of retinoblastoma protein and induced cell cycle arrest at the S phase, translocation of Bak protein to mitochondria, a reduction in the mitochondrial membrane potential, cascade activation of caspases-9, -3, and -6, and DNA fragmentation. Moreover, weakening the ER stress-iROS axis concomitantly overcome resveratrol-induced decreases in translocation of Rho protein to membranes and succeeding cell migration. Interestingly, administration of resveratrol did not cause significant side effects but could protect the neuroblastoma-bearing nude mice from body weight loss and consequently extended the animal survival. In parallel, resveratrol elevated levels of Grp78 and then induced cell apoptosis in neuroblastoma tissues. This study has shown that resveratrol could kill neuroblastoma cells and extend survival of animals with neuroblastomas by triggering the ER stress-iROS-involved intrinsic apoptosis and suppression of Rho-dependent cell migration. Our results imply the potential of resveratrol as a drug candidate for chemotherapy of neuroblastoma patients.
Subjects
Endoplasmic reticular stress; Intrinsic apoptosis; Neuroblastoma; Resveratrol; Rho-dependent migration; Survival extension
SDGs

[SDGs]SDG1

[SDGs]SDG3

Publisher
Elsevier Ireland Ltd
Type
journal article

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