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서지반출
Cyclic tensile stress inhibits Wnt/${eta}$-catenin signaling in human periodontal ligament cells
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  • Cyclic tensile stress inhibits Wnt/${eta}$-catenin signaling in human periodontal ligament cells
  • Cyclic tensile stress inhibits Wnt/${eta}$-catenin signaling in human periodontal ligament cells
저자명
Kim. Ji-Young,Yang. Daum,Kim. Ha-Neui,Jung. Kyoung-Suk,Chang. Young-Il,Lee. Zang-Hee
간행물명
International journal of oral biology : official journal of the Korean Academy of Oral Biology and the UCLA Dental Research Institute
권/호정보
2009년|34권 2호|pp.53-59 (7 pages)
발행정보
대한구강생물학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Periodontal ligament (PDL) tissue is a connective tissue that is interposed between the roots of the teeth and the inner wall of the alveolar bone socket. PDL is always exposed to physiologic mechanical force such as masticatory force and PDL cells play important roles during orthodontic tooth movement by synthesizing and secreting different mediators involved in bone remodeling. The Wnt/${eta}$-catenin signaling pathway was recently shown to play a significant role in the control of bone formation. In the present study, we applied cyclic tensile stress of 20% elongation to cultured human PDL cells and assessed its impact after six days upon components of the Wnt/${eta}$-catenin signaling pathway. RTPCR analysis showed that Wnt1a, Wnt3a, Wnt10b and the Wnt receptor LRP5 were down-regulated, whereas the Wnt inhibitor DKK1 was up-regulated in response to these stress conditions. In contrast, little change was detected in the mRNA expression of Wnt5a, Wnt7b, Fz1, and LRP6. By western blotting we found decreased expression of the ${eta}$-catenin and p-GSK-3${eta}$ proteins. Our results thus show that mechanical stress suppresses the canonical Wnt/${eta}$-catenin signaling pathway in PDL cells.