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Lim, Min Hyuk
Intelligence and Control-based BioMedicine Lab
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Microgravity induces autophagy via mitochondrial dysfunction in human Hodgkin's lymphoma cells

Author(s)
Jeong, Ae JinKim, Yoon JaeLim, Min HyukLee, HaeriNoh, KumheeKim, Byung-HakChung, Jin WoongCho, Chung-HyunKim, SungwanYe, Sang-Kyu
Issued Date
2018-10
DOI
10.1038/s41598-018-32965-3
URI
https://scholarworks.unist.ac.kr/handle/201301/66032
Citation
SCIENTIFIC REPORTS, v.8, pp.14646
Abstract
Gravitational forces can impose physical stresses on the human body as it functions to maintain homeostasis. It has been reported that astronauts exposed to microgravity experience altered biological functions and many subsequent studies on the effects of microgravity have therefore been conducted. However, the anticancer mechanisms of simulated microgravity remain unclear. We previously showed that the proliferation of human Hodgkin's lymphoma (HL) cells was inhibited when these cells were cultured in time-averaged simulated microgravity (taSMG). In the present study, we investigated whether taSMG produced an anticancer effect. Exposure of human HL cells to taSMG for 2 days increased their reactive oxygen species (ROS) production and NADPH oxidase family gene expression, while mitochondria! mass, ATPase, ATP synthase, and intracellular ATP levels were decreased. Furthermore, human HL cells exposed to taSMG underwent autophagy via AMPK/Akt/mTOR and MAPK pathway modulation; such autophagy was inhibited by the ROS scavenger N-acetylcysteine (NAC). These results suggest an innovative therapeutic approach to HL that is markedly different from conventional chemotherapy and radiotherapy.
Publisher
NATURE PUBLISHING GROUP
ISSN
2045-2322
Keyword
OXIDATIVE STRESSCANCER-CELLSSTEM-CELLSTHERAPEUTIC IMPLICATIONSNADPH OXIDASESPROLIFERATIONDISEASEMECHANISMSDAMAGETRIAL

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