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CCN5 reduces ligamentum flavum hypertrophy by modulating the TGF-β pathwayopen accessCCN5 Reduces Ligamentum Flavum Hypertrophy by Modulating the TGF-beta Pathway

Other Titles
CCN5 Reduces Ligamentum Flavum Hypertrophy by Modulating the TGF-beta Pathway
Authors
Ye, SunghyeokKwon, Woo-KeunBae, TaegeunKim, SunghyunLee, Jang-BoCho, Tai-HyoungPark, Jung-YulKim, KyoungmiHur, Junho K.Hur, Junseok W.
Issue Date
Dec-2019
Publisher
WILEY
Keywords
ligamentum flavum; CRISPR; CCN5; TGF-beta 1; myofibroblast
Citation
JOURNAL OF ORTHOPAEDIC RESEARCH, v.37, no.12, pp.2634 - 2644
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF ORTHOPAEDIC RESEARCH
Volume
37
Number
12
Start Page
2634
End Page
2644
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/146572
DOI
10.1002/jor.24425
ISSN
0736-0266
Abstract
Ligamentum flavum hypertrophy (LFH) is the most important component of lumbar spinal canal stenosis. Although the pathophysiology of LFH has been extensively studied, no method has been proposed to prevent or treat it. Since the transforming growth factor-β (TGF-β) pathway is known to be critical in LFH pathology, we investigated whether LFH could be prevented by blocking or modulating the TGF-β mechanism. Human LF cells were used for the experiments. First, we created TGF-β receptor 1 (TGFBR1) knock out (KO) cells with CRISPR (clustered regularly interspaced short palindromic repeats)/Cas9 biotechnology and treated them with TGF-β1 to determine the effects of blocking the TGF-β pathway. Subsequently, we studied the effect of CCN5, which has recently been proposed to modulate the TGF-β pathway. To assess the predisposition toward fibrosis, α-smooth muscle actin (αSMA), fibronectin, collagen-1, collagen-3, and CCN2 were evaluated with quantitative real-time polymerase chain reaction, western blotting, and immunocytochemistry. The TGFBR1 KO LF cells were successfully constructed with high KO efficiency. In wild-type (WT) cells, treatment with TGF-β1 resulted in the overexpression of the messenger RNA (mRNA) of fibrosis-related factors. However, in KO cells, the responses to TGF-β1 stimulation were significantly lower. In addition, CCN5 and TGF-β1 co-treatment caused a notable reduction in mRNA expression levels compared with TGF-β1 stimulation only. The αSMA protein expression increased with TGF-β1 but decreased with CCN5 treatment. TGF-β1 induced LF cell transdifferentiation from fibroblasts to myofibroblasts. However, this cell transition dramatically decreased in the presence of CCN5. In conclusion, CCN5 could prevent LFH by modulating the TGF-β pathway.
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