Suzuki Motofumi, Kobayashi Hisataka, Hanaoka Hirofumi
Division of Fundamental Technology Development, Near InfraRed Photo-ImmunoTherapy Research Institute, Kansai Medical University, Hirakata 573-1010, Osaka, Japan.
Molecular Imaging Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892-1088, USA.
Cancers (Basel). 2024 Jul 17;16(14):2558. doi: 10.3390/cancers16142558.
Near-infrared photoimmunotherapy (NIR-PIT) is a new cancer therapy that uses NIR light and conjugates of a tumor-targeting monoclonal antibody and phthalocyanine dye. In clinical practice, frontal and cylindrical diffusers are the only options for NIR illumination. However, illumination in a narrow space is technically difficult with such diffusers. Therefore, we evaluated a lateral illumination system using a lateral emitting laser (LEL) fiber. The LEL fiber illuminated a certain area in a lateral direction. NIR-PIT with an LEL fiber reduced luciferase activity in a light-dose-dependent manner in A431-GFP-luc cells in vitro and significantly suppressed tumor proliferation in a xenograft mouse model. To evaluate the usefulness of the LEL fiber in the illumination of a narrow space, a tumor was illuminated from the inside of a cylinder, mimicking a narrow space, and the fluorescence intensity in the tumor was monitored. In the frontal diffuser, NIR light was unevenly delivered and little light reached a distal tumor area from the illuminated side. By contrast, the LEL fiber allowed a uniform illumination of the entire tumor, and a loss of fluorescence was observed even in distal areas. These findings suggested that the LEL fiber can be used for NIR-PIT and is suitable for NIR light illumination in a narrow space.
近红外光免疫疗法(NIR-PIT)是一种新型癌症治疗方法,它利用近红外光以及肿瘤靶向单克隆抗体与酞菁染料的偶联物。在临床实践中, frontal和圆柱形扩散器是近红外照明的唯一选择。然而,使用此类扩散器在狭窄空间进行照明在技术上存在困难。因此,我们评估了一种使用侧向发射激光(LEL)光纤的侧向照明系统。LEL光纤在侧向方向照亮一定区域。在体外,使用LEL光纤的NIR-PIT以光剂量依赖的方式降低了A431-GFP-luc细胞中的荧光素酶活性,并在异种移植小鼠模型中显著抑制了肿瘤增殖。为了评估LEL光纤在狭窄空间照明中的实用性,模拟狭窄空间,从圆柱体内部对肿瘤进行照明,并监测肿瘤中的荧光强度。在frontal扩散器中,近红外光传递不均匀,从照明侧很少有光到达远端肿瘤区域。相比之下,LEL光纤能够对整个肿瘤进行均匀照明,甚至在远端区域也观察到荧光损失。这些发现表明,LEL光纤可用于NIR-PIT,适用于狭窄空间的近红外光照明。