Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, Department of Biomedical Engineering, Jinan University, Guangzhou, 510632, China; Center for Hybrid Nanostructure (CHyN), Department of Physics, University of Hamburg, Hamburg, 22761, Germany.
Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, Department of Biomedical Engineering, Jinan University, Guangzhou, 510632, China.
Biosens Bioelectron. 2023 Feb 15;222:114995. doi: 10.1016/j.bios.2022.114995. Epub 2022 Dec 7.
Surgical resection is a critical procedure for treatment of solid tumor, which commonly suffers from postoperative local recurrence due to the possibility of positive surgical margin. Although the widely used clinical imaging techniques (CT, MRI, PET, etc.) show beneficial effects in providing a macroscopic view of preoperative tumor position, they are still failing to provide intraoperative real-time imaging navigation during the surgery and need oral or intravenous injection contrast agents with risk of adverse effects. In this work, we present a nano-spray assisted photothermal imaging system for in vitro cells discrimination as well as in vivo visualization of tumor position and border that guides real-time precise tumor resection during surgery (even for tiny tumor less than 3 mm). Herein, the nano-spray were prepared by RGD peptide functionalized polydopamine (PDA-RGD) nanospheres with excellent photothermal conversion efficiency (54.27%), stability and reversibility, which target ανβ3 integrin overexpressed tumor cells. Such PDA-RGD serve as nanothermometers that convert and amplify biological signal to intuitive thermal image signal, depicting the tumor margin in situ. In comparison to conventional imaging techniques, our approach through topical spraying together with portable infrared camera has the characteristics of low cost, convenient, no radiation hazard, real-time intraoperative imaging-guidance and avoiding the adverse effects risk of oral or intravenous contrast agent. This technology provides a new universal tool for potentially assisting surgeons' decision in real-time during surgery and aiding to improved outcome.
手术切除是治疗实体瘤的关键程序,但由于存在阳性手术切缘的可能性,术后常发生局部复发。尽管广泛应用的临床影像学技术(CT、MRI、PET 等)在提供术前肿瘤位置的宏观视图方面显示出有益效果,但它们仍然无法在手术过程中提供术中实时成像导航,并且需要口服或静脉注射造影剂,存在不良反应的风险。在这项工作中,我们提出了一种纳米喷雾辅助光热成像系统,用于体外细胞区分以及体内肿瘤位置和边界的可视化,从而在手术过程中实时指导精确肿瘤切除(即使是小于 3mm 的微小肿瘤)。在此,纳米喷雾是由 RGD 肽功能化的聚多巴胺(PDA-RGD)纳米球制备的,具有优异的光热转换效率(54.27%)、稳定性和可逆性,可靶向过表达的 ανβ3 整合素肿瘤细胞。这种 PDA-RGD 用作纳米温度计,将生物信号转换和放大为直观的热图像信号,原位描绘肿瘤边界。与传统的成像技术相比,我们通过局部喷涂结合便携式红外相机的方法具有成本低、方便、无辐射危害、实时术中成像引导以及避免口服或静脉造影剂不良反应风险的特点。这项技术为潜在地协助外科医生在手术过程中实时做出决策并帮助改善结果提供了一种新的通用工具。