利用SiO2/Au纳米壳和二极管激光器进行体外皮肤伤口焊接

Mohammad Khosroshahi, Mohammad Sadegh Nourbakhsh
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引用次数: 7

摘要

背景与目的包覆金的二氧化硅纳米颗粒具有等离子体共振的光学响应。共振发生的波长取决于核和壳的大小,这使得纳米壳可以根据特定的应用进行定制。本体外实验的目的是合成并使用不同浓度的金纳米壳作为外源材料进行皮肤组织焊接,并研究激光焊接参数(辐照度、扫描次数和扫描速度)对修复皮肤性能的影响。材料与方法制备了两种蛋白焊料溶液,混合白蛋白焊料和两种不同浓度的金纳米壳(1和2 ml)。用手术刀在脱毛绵羊皮条表面做一个2mm厚、20mm长的切口,加入焊料溶液后,用二极管激光(810 nm)照射,改变辐照度I (24-83 W/cm2)、激光扫描次数Ns(2-10次)和扫描速度vs (0.2-0.42 mm/s)。温度T采用数字k型温度计(CHY502A1, CHY Firemate Co., Taiwan)监测,探头直径为0.5 mm,响应时间为0.1 s。焊接完成约30分钟后,在拉伸试验中评估拉伸强度σ。结果两种金纳米壳浓度下,修复皮肤的抗拉强度均随激光辐照度的增加而增加。在一定辐照度下,修复切口的抗拉强度随Ns的增大而增大,随Ns的减小而减小,辐照度越高,组织温升越大。结论只要对操作条件进行优化,金纳米壳可以用于激光组织焊接。在我们的案例中,最佳参数为:σ = 0.16 N/mm2,温度为1 ~ 60 W/cm2,温度为65°C, Ns = 10, vs=0.2mm/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro skin wound soldering using SiO2/Au nanoshells and a diode laser

Background and objective

Gold-coated silica core nanoparticles have an optical response dictated by plasmon resonance. The wavelength at which the resonance occurs depends on the core and shell sizes, allowing nanoshells to be tailored to particular applications. The purpose of this in vitro study was to synthesize and use different concentrations of gold nanoshells as exogenous material for skin tissue soldering and to examine the effect of laser soldering parameters (irradiance, number of scans and scan velocity) on the properties of repaired skin.

Materials and methods

Two protein solder solutions mixed with albumin solder and two different gold nanoshell concentrations (1 and 2 ml) were prepared. A 2-mm-thick, 20-mm-long incision was made on the surface of depilated sheep skin strips using a surgical blade, and after the addition of the solder solution, it was irradiated with a diode laser (810 nm), varying the irradiance I (24–83 W/cm2), the number of laser scans Ns (2–10 scans), and the scan velocity vs (0.2–0.42 mm/s). The temperature T was monitored using a digital K-type thermometer (CHY502A1, CHY Firemate Co., Taiwan) that was positioned under the skin with a probe diameter of 0.5 mm and a response time of 0.1 s. Approximately 30 min after the completion of the soldering process, the tensile strength σ was evaluated in a tensile test.

Results

The results show that the tensile strength of the repaired skin increased with increasing laser irradiance for both gold nanoshell concentrations. At a constant irradiance, the tensile strength of the repaired incisions increased with increasing Ns and decreasing vs. A higher irradiance resulted in a larger tissue temperature rise.

Conclusion

It was demonstrated that gold nanoshells can be used for laser tissue soldering, provided that the operating conditions are carefully optimized. In our case the optimal parameters were: σ = 0.16 N/mm2 at I  60 W/cm2, T  65 °C, Ns = 10 and vs=0.2mm/s.

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