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Inhibiting the aberrant activation of Wnt/β-catenin signaling by selenium supplementation ameliorates deoxynivalenol-induced toxicity and catabolism in chondrocytes

Wang, Xiaoqing (författare)
Outpatient Service Office, Shaanxi Provincial People's Hospital, Xi'an, Shaanxi, China
Jin, Zhankui (författare)
Department of Orthopaedics, Shaanxi Provincial People's Hospital, Xi'an, Shaanxi, China
Chen, Ming (författare)
Department of Orthopaedics, Shaanxi Provincial People's Hospital, Xi'an, Shaanxi, China
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Duan, Dapeng (författare)
Department of Orthopaedics, Shaanxi Provincial People's Hospital, Xi'an, Shaanxi, China
Lammi, Mikko, 1961- (författare)
Umeå universitet,Institutionen för integrativ medicinsk biologi (IMB),Chondrogenic and Osteogenic Differentiation
Guo, Xiong (författare)
School of Public Health, Xi'an Jiaotong University Health Science Center, Xi'an, Shaanxi, China
Chang, Yanhai (författare)
Department of Orthopaedics, Shaanxi Provincial People's Hospital, Xi'an, Shaanxi, China
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 (creator_code:org_t)
2019-12-06
2020
Engelska.
Ingår i: Journal of Cellular Physiology. - : Wiley-Blackwell. - 0021-9541 .- 1097-4652. ; 235:5, s. 4434-4442
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Kashin-Beck disease (KBD) is an endemic degenerative osteoarticular disorder associated with physical disability and a heavy economic burden. Contamination by mycotoxin deoxynivalenol (DON) and selenium deficiency have been proposed to be key etiological factors for KBD, and can work together to aggravate the progression of KBD. Nevertheless, the mechanism of DON in KBD remains elusive. In the present study, exposure to DON dose-dependently suppressed cell viability and expression of pro-proliferation marker PCNA in human chondrocytes, whereas it enhanced lactate dehydrogenase release, cell apoptosis, and caspase-3/9 activity. In addition, DON incubation shifted metabolism homeostasis towards catabolism by suppressing the transcription of collagen II and aggrecan, and the production of sulphated glycosaminoglycans and TIMP-1, while increasing matrix metalloproteinase levels (MMP-1 and MMP-13). Mechanistically, DON exposure induced the activation of Wnt/β-catenin signaling. Intriguingly, blocking this pathway reversed the adverse effects of DON on cytotoxic damage and metabolism disruption to catabolism. Notably, supplementation with selenium reduced DON-induced activation of the Wnt/β-catenin pathway. Moreover, selenium addition abrogated cytotoxic injury and excessive pro-catabolic gene expression in chondrocytes upon DON conditions. These findings confirm that DON may facilitate the development of KBD by inducing cell injury, inhibiting matrix synthesis, and increasing cellular catabolism by activating the Wnt/β-catenin signaling, which were partially reversed by selenium supplementation. Thus, the current study may presents a new viewpoint for how selenium supplementation ameliorates the development of KBD by inhibiting DON-induced cytotoxic injury and metabolism imbalance in chondrocytes.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Cell- och molekylärbiologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Cell and Molecular Biology (hsv//eng)
MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Farmakologi och toxikologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Pharmacology and Toxicology (hsv//eng)
MEDICIN OCH HÄLSOVETENSKAP  -- Hälsovetenskap -- Näringslära (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Health Sciences -- Nutrition and Dietetics (hsv//eng)

Nyckelord

Kashin-Beck disease
chondrocyte cytotoxic damage
deoxynivalenol
metabolism disorder
selenium
cellforskning
cell research
mikrobiologi
Microbiology
Nutrition
näringslära

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