Efficacy of photobiomodulation using diode laser 650 nm combined with nano-cellulose and nano-amorphous calcium phosphate in bone healing of rabbit tibial defects assessed by H&E staining and computed tomography.

IF 1.1 Q3 DENTISTRY, ORAL SURGERY & MEDICINE Minerva dental and oral science Pub Date : 2024-04-01 Epub Date: 2023-09-15 DOI:10.23736/S2724-6329.23.04793-9
Ahmed F Allam, Ahmed A Zaky, Hanaa M Elshenawy, Engie M Safwat, Mohammad L Hassan, Alessandro E DI Lauro, Mohamed A Nassar, Said K Taha
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Abstract

Background: The purpose of the current study was to evaluate the effect of Diode LLLT 650 nm, TEMPO oxidized Nano-fibrillated cellulose mixed with Nano-Amorphous calcium phosphate, and their combination on bone healing in rabbit tibia using H&E staining and computed tomography.

Methods: Eighteen adult male New Zealand rabbits were selected, two circular bone defects were created in each tibia, resulting in four bony defects in each rabbit, representing the four tested groups; group A (negative control), group B (filled with mineralized nano-cellulose), group C (combination), group D (laser). Animals were euthanized after two weeks and one month, defects were assessed by CT for bone density, then histological samples were examined by H&E stain.

Results: In both evaluation periods, group D recorded the greatest mean area percent of new bone formation and bone density, followed by group A, while group C recorded the lowest value. Groups A and D showed full closure of the defects, while groups B and C showed partial defect closure with retained bone graft material. H&E and CT showed that Laser group had the best results of defects healing, bone density and new bone formation, followed by the negative control group.

Conclusions: Diode laser 650nm photobiomodulation significantly improved bone defects healing. Mineralized nano-cellulose experimental bone substitute material showed a delayed effect in bone healing and graft material resorption. The combination of LLLT with the graft material had no positive outcome on bone defect healing.

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通过 H&E 染色和计算机断层扫描评估使用 650 纳米二极管激光器结合纳米纤维素和纳米无定形磷酸钙进行光生物调制对兔胫骨缺损骨愈合的效果。
研究背景本研究的目的是利用 H&E 染色和计算机断层扫描评估 650 nm 的二极管激光光束、TEMPO 氧化纳米纤维素与纳米无定形磷酸钙混合液以及它们的组合对兔胫骨骨愈合的影响:选取 18 只成年雄性新西兰兔,在每只兔的胫骨上创建两个圆形骨缺损,每只兔有四个骨缺损,分别代表四个试验组:A 组(阴性对照)、B 组(填充矿化纳米纤维素)、C 组(组合)、D 组(激光)。动物分别在两周和一个月后安乐死,用 CT 评估缺损部位的骨密度,然后用 H&E 染色法检查组织学样本:结果:在两个评估期间,D组新骨形成的平均面积百分比和骨密度最高,A组次之,C组最低。A 组和 D 组显示缺损完全闭合,而 B 组和 C 组显示部分缺损闭合并保留了植骨材料。H&E 和 CT 显示,激光组在缺损愈合、骨密度和新骨形成方面效果最好,阴性对照组次之:结论:二极管激光 650nm 光生物调制能明显改善骨缺损愈合。矿化纳米纤维素实验骨替代材料在骨愈合和移植材料吸收方面表现出延迟效应。将 LLLT 与移植材料结合使用对骨缺损愈合没有积极作用。
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来源期刊
Minerva dental and oral science
Minerva dental and oral science DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
2.50
自引率
5.00%
发文量
61
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