Extracorporeal Shock Wave Treatment (ESWT) Improves In Vitro Functional Activities of Ruptured Human Tendon-Derived Tenocytes

被引:35
作者
Leone, Laura [1 ]
Vetrano, Mario [2 ,3 ]
Ranieri, Danilo [1 ]
Raffa, Salvatore [1 ]
Vulpiani, Maria Chiara [2 ,3 ]
Ferretti, Andrea [2 ,3 ]
Torrisi, Maria Rosaria [1 ,3 ]
Visco, Vincenzo [1 ,3 ]
机构
[1] Univ Roma La Sapienza, Ist Pasteur Fdn Cenci Bolognetti, Dept Clin & Mol Med, Rome, Italy
[2] Univ Roma La Sapienza, Dept Ortophaed & Traumatol, Rome, Italy
[3] StAndrea Hosp, Rome, Italy
关键词
HUMAN ACHILLES-TENDON; GENE-EXPRESSION; BASIC SCIENCE; ROTATOR CUFF; III COLLAGEN; PROLIFERATION; DIFFERENTIATION; TENDINOPATHY; CULTURE; INJURY;
D O I
10.1371/journal.pone.0049759
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In vitro models of human tenocytes derived from healthy as well as from ruptured tendons were established, characterized and used at very early passage (P1) to evaluate the effects of Extracorporeal Shock Wave Treatment (ESWT). The molecular analysis of traditional tenocytic markers, including Scleraxis (Scx), Tenomodulin (Tnm), Tenascin-C (Tn-C) and Type I and III Collagens (Col I and Col III), permitted us to detect in our samples the simultaneous expression of all these genes and allowed us to compare their levels of expression in relationship to the source of the cells and treatments. In untreated conditions, higher molecular levels of Scx and Col I in tenocytes from pathological compared to healthy samples have been detected, suggesting - in the cells from injured tendon - the natural trigger of an early differentiation and repairing program, which depends by Scx and requires an increase in collagen expression. When ESWT (at the dose of 0.14 mJ/mm(2)) was applied to cultured tenocytes explanted from injured source, Scx and Col I were significantly diminished compared to healthy counterpart, indicating that such natural trigger maybe delayed by the treatment, in order to promote cellular repair. Herein, we show for the first time that ESWT enhances in vitro functional activities of ruptured tendon-derived tenocytes, such as proliferation and migration, which could probably contributes to tendon healing in vivo.
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页数:9
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