Rational design of NIR-II molecule-engineered nanoplatform for preoperative downstaging and imaging-guided surgery of orthotopic hepatic tumor

Author:

Pan Qi,Li Ke,Kang Xueqin,Li Kaixuan,Cheng Zihe,Wang Yafei,Xu Yuye,Li Lei,Li Na,Wu Guilong,Yang Sha,Qi Shuo,Chen Guodong,Tan Xiaofeng,Zhan Yonghua,Tang Li,Zhan Wenhua,Yang Qinglai

Abstract

AbstractOrthotopic advanced hepatic tumor resection without precise location and preoperative downstaging may cause clinical postoperative recurrence and metastasis. Early accurate monitoring and tumor size reduction based on the multifunctional diagnostic-therapeutic integration platform could improve real-time imaging-guided resection efficacy. Here, a Near-Infrared II/Photoacoustic Imaging/Magnetic Resonance Imaging (NIR-II/PAI/MRI) organic nanoplatform IRFEP-FA-DOTA-Gd (IFDG) is developed for integrated diagnosis and treatment of orthotopic hepatic tumor. The IFDG is designed rationally based on the core “S-D-A-D-S” NIR-II probe IRFEP modified with folic acid (FA) for active tumor targeting and Gd-DOTA agent for MR imaging. The IFDG exhibits several advantages, including efficient tumor tissue accumulation, good tumor margin imaging effect, and excellent photothermal conversion effect. Therefore, the IFDG could realize accurate long-term monitoring and photothermal therapy non-invasively of the hepatic tumor to reduce its size. Next, the complete resection of the hepatic tumor in situ lesions could be realized by the intraoperative real-time NIR-II imaging guidance. Notably, the preoperative downstaging strategy is confirmed to lower the postoperative recurrence rate of the liver cancer patients under middle and advanced stage effectively with fewer side effects. Overall, the designed nanoplatform demonstrates great potential as a diagnostic-therapeutic integration platform for precise imaging-guided surgical navigation of orthotopic hepatic tumors with a low recurrence rate after surgery, providing a paradigm for diagnosing and treating the advanced tumors in the future clinical translation application. Graphical Abstract

Funder

Shaanxi Provincial Education Department Service for Local Scientific Research Program

Shaanxi Social Development Science and Technology Plan

Science and Technology Innovation Platform of Shaanxi Key Laboratory of Brain Disorders, Xi’an Medical University

Hospital fund of the Second Affiliated Hospital of Xi’an Medical University

Natural Science Basic Research Key Program of Shaanxi Province

the Natural Science Foundation of Hunan Province of China

the Key Research and Development Program in Ningxia Province of China

Health Commission of Ningxia Hui Autonomous Region Science and Technology Support Project for Quality Development of Medical Institutions

the Beijing Xisike Clinical Oncology Research Foundation

the National Natural Science Foundation of China

the Science and Technology Innovation Program of Hunan Province “Huxiang Young Talents Plan”

the Key Research and Development Program of Hunan Province,China

Publisher

Springer Science and Business Media LLC

Subject

Pharmaceutical Science,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,Medicine (miscellaneous),Bioengineering

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