Wu Changqiang, Chen Wei, Yan Shuang, Zhong Jie, Du Liang, Yang Chenwu, Pu Yu, Li Yang, Lin Jiafu, Zeng Mei, Zhang Xiaoming
Medical Imaging Key Laboratory of Sichuan Province and School of Medical Imaging, North Sichuan Medical College, Nanchong 637000, P. R. China.
Department of Radiology, Affiliated Hospital of North Sichuan Medical College, Nanchong 637000, P. R. China.
Regen Biomater. 2024 Mar 14;11:rbae019. doi: 10.1093/rb/rbae019. eCollection 2024.
Non-invasive image-guided precise photothermal/photodynamic therapy (PTT/PDT) has been proven to be an effective local treatment modality but incompetent against metastases. Hence, the combination of local PTT/PDT and systemic immunotherapy would be a promising strategy for tumor eradication. Herein, a magnetic resonance imaging (MRI)-visualized PTT/PDT agent (SIDP NMs) was constructed, and the efficacy of its multimodal combination with a programmed cell death 1 (PD-1) inhibitor in the treatment of melanoma and metastases was studied. Due to the hydrophobic encapsulation of indocyanine green within the micellar core, SIDP NMs exhibited excellent photothermal/photodynamic properties and stability under an 808 nm near-infrared laser. cell experiments showed that SIDP NMs had a good killing effect. After incubating with B16-F10 cells for 24 h and irradiating with an 808-nm laser for 10 min, cell viability decreased significantly. Magnetic resonance imaging experiments in melanoma-bearing mice have shown that the dynamic distribution of SIDP NMs in tumor tissue could be monitored by WI and -MAP non-invasively due to the presence of superparamagnetic iron oxide nanocrystal in SIDP NMs. When the 808 nm laser was irradiated at the maximum focusing time point shown by MRI, the temperature of the tumor area rapidly increased from 32°C to 60.7°C in 5 min. In mouse melanoma ablation and distant tumor immunotherapy studies, SIDP NMs provided excellent MRI-guided PTT/PDT results and, when combined with PD-1 inhibitor, have great potential to cure primary tumors and eradicate metastases.
无创图像引导的精确光热/光动力疗法(PTT/PDT)已被证明是一种有效的局部治疗方式,但对转移灶无效。因此,局部PTT/PDT与全身免疫疗法相结合将是一种有前景的肿瘤根除策略。在此,构建了一种磁共振成像(MRI)可视化的PTT/PDT剂(SIDP纳米颗粒),并研究了其与程序性细胞死亡1(PD-1)抑制剂联合用于治疗黑色素瘤及转移灶的疗效。由于吲哚菁绿被疏水包裹在胶束核心内,SIDP纳米颗粒在808纳米近红外激光照射下表现出优异的光热/光动力性能和稳定性。细胞实验表明,SIDP纳米颗粒具有良好的杀伤效果。与B16-F10细胞孵育24小时后,用808纳米激光照射10分钟,细胞活力显著下降。在荷黑色素瘤小鼠中的磁共振成像实验表明,由于SIDP纳米颗粒中存在超顺磁性氧化铁纳米晶体,其在肿瘤组织中的动态分布可通过WI和 -MAP进行无创监测。当在MRI显示的最大聚焦时间点照射808纳米激光时,肿瘤区域的温度在5分钟内从32°C迅速升至60.7°C。在小鼠黑色素瘤消融和远处肿瘤免疫治疗研究中,SIDP纳米颗粒提供了优异的MRI引导的PTT/PDT结果,并且与PD-1抑制剂联合使用时,具有治愈原发性肿瘤和根除转移灶的巨大潜力。