Shah Jignesh, Park Suhyun, Aglyamov Salavat, Larson Timothy, Ma Li, Sokolov Konstantin, Johnston Keith, Milner Thomas, Emelianov Stanislav Y
University of Texas at Austin, Department of Biomedical Engineering, Austin, Texas 78712, USA.
J Biomed Opt. 2008 May-Jun;13(3):034024. doi: 10.1117/1.2940362.
Photothermal therapy is a noninvasive, targeted, laser-based technique for cancer treatment. During photothermal therapy, light energy is converted to heat by tumor-specific photoabsorbers. The corresponding temperature rise causes localized cancer destruction. For effective treatment, however, the presence of photoabsorbers in the tumor must be ascertained before therapy and thermal imaging must be performed during therapy. This study investigates the feasibility of guiding photothermal therapy by using photoacoustic imaging to detect photoabsorbers and to monitor temperature elevation. Photothermal therapy is carried out by utilizing a continuous wave laser and metal nanocomposites broadly absorbing in the near-infrared optical range. A linear array-based ultrasound imaging system is interfaced with a nanosecond pulsed laser to image tissue-mimicking phantoms and ex-vivo animal tissue before and during photothermal therapy. Before commencing therapy, photoacoustic imaging identifies the presence and spatial location of nanoparticles. Thermal maps are computed by monitoring temperature-induced changes in the photoacoustic signal during the therapeutic procedure and are compared with temperature estimates obtained from ultrasound imaging. The results of our study suggest that photoacoustic imaging, augmented by ultrasound imaging, is a viable candidate to guide photoabsorber-enhanced photothermal therapy.
光热疗法是一种用于癌症治疗的非侵入性、靶向性、基于激光的技术。在光热疗法期间,光能被肿瘤特异性光吸收剂转化为热能。相应的温度升高会导致局部癌症组织被破坏。然而,为了实现有效治疗,必须在治疗前确定肿瘤中光吸收剂的存在情况,并且在治疗过程中必须进行热成像。本研究调查了利用光声成像来检测光吸收剂并监测温度升高以指导光热疗法的可行性。光热疗法是通过使用连续波激光和在近红外光范围内具有广泛吸收能力的金属纳米复合材料来进行的。一个基于线性阵列的超声成像系统与纳秒脉冲激光相连接,以在光热疗法之前和期间对仿组织体模和离体动物组织进行成像。在开始治疗之前,光声成像可识别纳米颗粒的存在及其空间位置。通过在治疗过程中监测光声信号中由温度引起的变化来计算热图,并将其与从超声成像获得的温度估计值进行比较。我们的研究结果表明,由超声成像辅助的光声成像,是指导光吸收剂增强型光热疗法的一个可行选择。