Evaluation of thermodynamic bioeffects of long‐pulsed 1064 nm laser in the photothermal lipolysis

离体 脂肪组织 激光器 材料科学 光热治疗 生物医学工程 体内 脂解 化学 病理 医学 光学 内科学 纳米技术 物理 生物技术 生物
作者
Shan Wu,Zhixuan Jiang,Jiying Dong,Min Yao
出处
期刊:Lasers in Surgery and Medicine [Wiley]
卷期号:56 (1): 90-99 被引量:2
标识
DOI:10.1002/lsm.23742
摘要

Abstract Objectives To evaluate the lipolysis effect of air cooling assisted long‐pulsed 1064 laser for improving local adiposity. Materials and Methods The second‐level (pulse duration of 0.3–60 s) long‐pulsed Nd:YAG 1064 nm laser (LP1064 nm) with or without forced‐air cooling was used to irradiate ex‐vivo subcutaneous adipose tissue (SAT) of pig or human and in‐vivo inguinal fat tissue of Sprague Dawley rats. The temperature of skin surface as well as 5 mm deep SAT was monitored by a plug‐in probe thermal couple, and the former was confined to 39°C or 42°C during the treatment. Histological analysis of SAT response was evaluated by SAT sections stained with hematoxylin–eosin and oil red O. Ultra‐microstructure changes were examined by transmission electron microscopy. A pilot study on human subject utilizing LP1064 nm laser with air cooling was conducted. The changes in gross abdomen circumference and ultrasonic imaging were studied. Results Histological examination showed that LP1064 nm laser treatment induced adipocyte injury and hyperthermic lipolysis both in‐ and ex‐vivo. It was also confirmed by clinical practice on patients. By real‐time temperature monitoring, we found that in comparison with LP1064 nm laser alone, additional air cooling could increase the temperature difference between epidermis and SAT, promoting heat accumulation deep in fat tissue, as well as providing better protection for epidermis. Conclusion LP1064 nm laser provided reliable adipose tissue thermolysis when the temperature of skin surface was sustained at 39°C or 42°C for 10 min. Application of air‐cooling during the laser treatment achieved better effect and safety of photothermal lipolysis. LP1064 nm laser, as a noninvasive device, has comparable thermal lipolysis effect as other common heat‐generating devices.
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