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发光二极管(波长627纳米和945纳米)治疗对一期愈合的影响:免疫组织化学分析

Effect of light-emitting diode (ʎ 627 nm and 945 nm ʎ) treatment on first intention healing: immunohistochemical analysis.

作者信息

Kerppers Ivo Ilvan, de Lima Carlos José, Fernandes Adriana Barrinha, Villaverde Antonio Balbin

机构信息

Laboratory of Neuroanatomy and Neurophysiology, Universidade Estadual do Centro-Oeste-UNICENTRO Rua Vicente Machado, 3459, CEP: 85035-180, Guarapuava, Paraná, Brazil,

出版信息

Lasers Med Sci. 2015 Jan;30(1):397-401. doi: 10.1007/s10103-014-1668-3. Epub 2014 Nov 1.

Abstract

Collagen I is not only responsible for maintaining the integrity of most tissues due to its mechanical properties, but also for its active participation in the functionality of tissues because of its interaction with cells present in the extracellular matrix. The synthesis of collagen begins with tissue injury and remains until the end of the healing process. The use of non-coherent light for healing processes is still understudied. This procedure stands out as a biostimulation method for tissue repair, which increases local circulation, cell proliferation, and collagen synthesis. This study sought to quantify collagen I in the healing process after the treatment of wounds with the light-emitting diode (LED) treatment. The histologic analysis with tissue samples stained with picrosirius red showed a statistical difference between the positive controls, LED 627 and LED 945 nm groups; the group treated with LED 627 nm showed a predominance of mature collagen. The immunohistochemical analysis showed a statistically significant high concentration of collagen I in the LED 945 nm group. The irradiation of wounds with the higher wavelength (945 nm) used in the study produced the best activity of collagen I formation in experimental model.

摘要

I型胶原蛋白不仅因其机械性能负责维持大多数组织的完整性,还因其与细胞外基质中存在的细胞相互作用而积极参与组织的功能。胶原蛋白的合成始于组织损伤,并持续到愈合过程结束。非相干光在愈合过程中的应用仍在研究中。该程序作为一种组织修复的生物刺激方法脱颖而出,可增加局部循环、细胞增殖和胶原蛋白合成。本研究旨在量化用发光二极管(LED)治疗伤口后愈合过程中的I型胶原蛋白。用天狼星红染色的组织样本进行的组织学分析显示,阳性对照组、LED 627和LED 945 nm组之间存在统计学差异;用LED 627 nm治疗的组显示成熟胶原蛋白占优势。免疫组织化学分析显示,LED 945 nm组中I型胶原蛋白的浓度具有统计学意义的高。在研究中使用的较高波长(945 nm)照射伤口在实验模型中产生了I型胶原蛋白形成的最佳活性。

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