Wang Xinlong, Tian Fenghua, Reddy Divya D, Nalawade Sahil S, Barrett Douglas W, Gonzalez-Lima Francisco, Liu Hanli
1 Department of Bioengineering, University of Texas at Arlington, Arlington, TX, USA.
2 Joint Graduate Program between University of Texas at Arlington and UT Southwestern Medical Center at Dallas, University of Texas at Arlington, Arlington, TX, USA.
J Cereb Blood Flow Metab. 2017 Dec;37(12):3789-3802. doi: 10.1177/0271678X17691783. Epub 2017 Feb 9.
Transcranial infrared laser stimulation (TILS) is a noninvasive form of brain photobiomulation. Cytochrome-c-oxidase (CCO), the terminal enzyme in the mitochondrial electron transport chain, is hypothesized to be the primary intracellular photoacceptor. We hypothesized that TILS up-regulates cerebral CCO and causes hemodynamic changes. We delivered 1064-nm laser stimulation to the forehead of healthy participants ( n = 11), while broadband near-infrared spectroscopy was utilized to acquire light reflectance from the TILS-treated cortical region before, during, and after TILS. Placebo experiments were also performed for accurate comparison. Time course of spectroscopic readings were analyzed and fitted to the modified Beer-Lambert law. With respect to the placebo readings, we observed (1) significant increases in cerebral concentrations of oxidized CCO (Δ[CCO]; >0.08 µM; p < 0.01), oxygenated hemoglobin (Δ[HbO]; >0.8 µM; p < 0.01), and total hemoglobin (Δ[HbT]; >0.5 µM; p < 0.01) during and after TILS, and (2) linear interplays between Δ[CCO] versus Δ[HbO] and between Δ[CCO] versus Δ[HbT]. Ratios of Δ[CCO]/Δ[HbO] and Δ[CCO]/Δ[HbT] were introduced as TILS-induced metabolic-hemodynamic coupling indices to quantify the coupling strength between TILS-enhanced cerebral metabolism and blood oxygen supply. This study provides the first demonstration that TILS causes up-regulation of oxidized CCO in the human brain, and contributes important insight into the physiological mechanisms.
经颅红外激光刺激(TILS)是一种非侵入性的脑光生物刺激形式。细胞色素c氧化酶(CCO)是线粒体电子传递链中的末端酶,被认为是主要的细胞内光受体。我们假设TILS可上调脑内CCO并引起血流动力学变化。我们对11名健康参与者的前额进行1064纳米激光刺激,同时利用宽带近红外光谱在TILS刺激前、刺激期间和刺激后获取经TILS处理的皮质区域的光反射率。还进行了安慰剂实验以进行准确比较。对光谱读数的时间进程进行分析并拟合到修正的比尔-朗伯定律。与安慰剂读数相比,我们观察到:(1)在TILS刺激期间和刺激后,脑内氧化型CCO浓度(Δ[CCO];>0.08µM;p<0.01)、氧合血红蛋白(Δ[HbO];>0.8µM;p<0.01)和总血红蛋白(Δ[HbT];>0.5µM;p<0.01)显著增加;(2)Δ[CCO]与Δ[HbO]之间以及Δ[CCO]与Δ[HbT]之间存在线性相互作用。引入Δ[CCO]/Δ[HbO]和Δ[CCO]/Δ[HbT]的比值作为TILS诱导的代谢-血流动力学耦合指数,以量化TILS增强的脑代谢与血氧供应之间的耦合强度。本研究首次证明TILS可导致人脑中氧化型CCO上调,并为生理机制提供了重要见解。