Hwang Yoonha, Ahn Jinhyo, Mun Jungho, Bae Sangyoon, Jeong Young Uk, Vinokurov Nikolay A, Kim Pilhan
Opt Express. 2014 May 19;22(10):11465-75. doi: 10.1364/OE.22.011465.
The recent development of THz sources in a wide range of THz frequencies and power levels has led to greatly increased interest in potential biomedical applications such as cancer and burn wound diagnosis. However, despite its importance in realizing THz wave based applications, our knowledge of how THz wave irradiation can affect a live tissue at the cellular level is very limited. In this study, an acute inflammatory response caused by pulsed THz wave irradiation on the skin of a live mouse was analyzed at the cellular level using intravital laser-scanning confocal microscopy. Pulsed THz wave (2.7 THz, 4 μs pulsewidth, 61.4 μJ per pulse, 3Hz repetition), generated using compact FEL, was used to irradiate an anesthetized mouse's ear skin with an average power of 260 mW/cm(2) for 30 minutes using a high-precision focused THz wave irradiation setup. In contrast to in vitro analysis using cultured cells at similar power levels of CW THz wave irradiation, no temperature change at the surface of the ear skin was observed when skin was examined with an IR camera. To monitor any potential inflammatory response, resident neutrophils in the same area of ear skin were repeatedly visualized before and after THz wave irradiation using a custom-built laser-scanning confocal microscopy system optimized for in vivo visualization. While non-irradiated control skin area showed no changes in the number of resident neutrophils, a massive recruitment of newly infiltrated neutrophils was observed in the THz wave irradiated skin area after 6 hours, which suggests an induction of acute inflammatory response by the pulsed THz wave irradiation on the skin via a non-thermal process.
近期,太赫兹源在广泛的太赫兹频率和功率水平上取得了发展,这使得人们对其在癌症和烧伤伤口诊断等潜在生物医学应用方面的兴趣大幅增加。然而,尽管太赫兹波在实现相关应用中具有重要性,但我们对太赫兹波辐照在细胞水平上如何影响活组织的了解却非常有限。在本研究中,使用活体激光扫描共聚焦显微镜在细胞水平上分析了脉冲太赫兹波辐照对活小鼠皮肤引起的急性炎症反应。使用紧凑型自由电子激光产生的脉冲太赫兹波(2.7太赫兹,脉冲宽度4微秒,每个脉冲61.4微焦,重复频率3赫兹),通过高精度聚焦太赫兹波辐照装置,以260毫瓦/平方厘米的平均功率照射一只麻醉小鼠的耳部皮肤30分钟。与在连续太赫兹波辐照的类似功率水平下使用培养细胞进行的体外分析不同,当用红外相机检查皮肤时,未观察到耳部皮肤表面温度变化。为监测任何潜在的炎症反应,使用为体内可视化优化的定制激光扫描共聚焦显微镜系统,在太赫兹波辐照前后反复观察耳部皮肤同一区域的常驻中性粒细胞。未辐照的对照皮肤区域常驻中性粒细胞数量没有变化,而在太赫兹波辐照的皮肤区域,6小时后观察到大量新浸润的中性粒细胞募集,这表明脉冲太赫兹波辐照通过非热过程诱导了皮肤的急性炎症反应。