Mostafavinia Atarodalsadat, Masteri Farahani Reza, Abbasian Mohammadreza, Vasheghani Farahani Mohammadmehdi, Fridoni Mohammadjavad, Zandpazandi Sara, Ghoreishi Seyed Kamran, Abdollahifar Mohammad Amin, Pouriran Ramin, Bayat Mohammad
Department of Anatomical Sciences and Biology, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, IR Iran.
Department of Orthopedic Surgery, Akhtar Hospital, Shahid Beheshti University of Medical Sciences, Tehran, IR Iran.
Iran Red Crescent Med J. 2015 Dec 28;17(12):e32076. doi: 10.5812/ircmj.32076. eCollection 2015 Dec.
Fractures pose a major worldwide challenge to public health, causing tremendous disability for the society and families. According to recent studies, many in vivo and in vitro experiments have shown the positive effects of PW LLLT on osseous tissue.
The aim of this study was to evaluate the outcome of infrared pulsed wave low-level laser therapy (PW LLLT) on the fracture healing process in a complete tibial osteotomy in a rat model, which was stabilized by an intramedullary pin.
This experimental study was conducted at Shahid Beheshti University of Medical Sciences in Tehran, Iran. We performed complete tibial osteotomies in the right tibias for the population of 15 female rats. The rats were divided randomly into three different groups: I) Control rats with untreated bone defects; II) Rats irradiated by a 0.972 J/cm(2) PW LLLT; and III) Rats irradiated by a 1.5 J/cm(2) PW LLLT. The right tibias were collected six weeks following the surgery and a three-point bending test was performed to gather results. Immediately after biomechanical examination, the fractured bones were prepared for histological examinations. Slides were examined using stereological method.
PW LLLT significantly caused an increase in maximum force (N) of biomechanical repair properties for osteotomized tibias in the first and second laser groups (30.0 ± 15.9 and 32.4 ± 13.8 respectively) compared to the control group (8.6 ± 4.5) LSD test, P = 0.019, P = 0.011 respectively). There was a significant increase in the osteoblast count of the first and second laser groups (0.53 ± 0.06, 0.41 ± 0.06 respectively) compared to control group (0.31 ± 0.04) (LSD test, P = 0001, P = 0.007 respectively).
This study confirmed the efficacy of PW LLLT on biomechanical strength, trabecular bone volume, callus volume, and osteoblast number of repairing callus in a complete tibial osteotomy animal model at a relatively late stage of the bone healing process.
骨折对全球公共卫生构成重大挑战,给社会和家庭带来巨大残疾。根据最近的研究,许多体内和体外实验已显示出脉冲波低强度激光疗法(PW LLLT)对骨组织的积极作用。
本研究旨在评估红外脉冲波低强度激光疗法(PW LLLT)对大鼠模型中完整胫骨截骨术骨折愈合过程的影响,该截骨术通过髓内针固定。
本实验研究在伊朗德黑兰的沙希德·贝赫什提医科大学进行。我们对15只雌性大鼠的右胫骨进行了完整的胫骨截骨术。将大鼠随机分为三组:I)未治疗骨缺损的对照大鼠;II)接受0.972 J/cm² PW LLLT照射的大鼠;III)接受1.5 J/cm² PW LLLT照射的大鼠。术后六周收集右胫骨,并进行三点弯曲试验以获取结果。生物力学检查后立即将骨折骨准备用于组织学检查。使用体视学方法检查切片。
与对照组(8.6±4.5)相比,第一和第二激光组截骨胫骨的生物力学修复性能最大力(N)显著增加(分别为30.0±15.9和32.4±13.8)(LSD检验,P分别为0.019和0.011)。与对照组(0.31±0.04)相比,第一和第二激光组的成骨细胞计数显著增加(分别为0.53±0.06和0.41±0.06)(LSD检验,P分别为0.001和0.007)。
本研究证实了PW LLLT在骨愈合过程相对晚期的完整胫骨截骨动物模型中,对修复骨痂的生物力学强度、小梁骨体积、骨痂体积和成骨细胞数量具有疗效。