Title :
Effects of mechanical stimulation on TGF-β1 and bFGF expression of scleral fibroblasts after posterior sclera reinforcement
Author :
Guohui Wang ; Shuang Hao ; Aijun Deng
Author_Institution :
Coll. of Pharmacy & Biol. Sci., Weifang Med. Univ., Weifang, China
Abstract :
To understand the effect of mechanical stimulation on posterior sclera reinforcement (PSR), the rabbit scleral fibroblasts after PSR were subjected to stretch in vitro and TGF-β1 and bFGF expression of scleral fibroblasts were evaluated. Three-week-old rabbits were monocularly performed by eyelid suturation randomly to prepare experimental myopia eye. After 60 days, the experimental myopia eyes were treated by PSR. After 6 months, the posterior pole scleral fibroblasts (normal sclera - group A, sclera after operation - group Band fusion region of sclera and reinforcing band - group C) were isolated and cultured in vitro. The cells were subjected to cyclic stretch regimens (sine wave, 3% and 6% elongation amplitude, 0.1Hz 48h duration) by FX-4000 Tension System. The TGF-βt and bFGF expression of scleral fibroblasts were evaluated by ELISA method. The results show that the TGF-βt expression of the scleral fibroblasts after PSR was significantly increased; the scleral fibroblasts bFGF expression of the normal sclera and the sclera after operation were significantly increased and there was no difference in the scleral fibroblasts bFGF expression of the fusion region after operation. It was indicated that the mechanical stimulation could regulate the TGF-βt and bFGF expression of scleral fibroblasts and play an important role in the process of treating high myopia with PSR surgery.
Keywords :
biochemistry; biomechanics; cellular biophysics; diseases; eye; molecular biophysics; proteins; surgery; vision defects; ELISA method; FX-4000 tension system; PSR surgery; TGF-β1 expression; bFGF expression; cells; cyclic stretch regimens; elongation amplitude; experimental myopia eye; eyelid suturation; in vitro culture; in vitro stretching; mechanical stimulation; myopia treatment; posterior pole scleral fibroblasts; posterior sclera reinforcement; rabbit scleral fibroblasts; sine wave; time 6 month; time 60 day; Biomechanics; Electronic countermeasures; Extracellular; Fibroblasts; In vitro; Rabbits; Surgery; TGF-1; bFGF; mechanical stimulation; scleral fibroblast;
Conference_Titel :
Complex Medical Engineering (CME), 2013 ICME International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-2970-5
DOI :
10.1109/ICCME.2013.6548277