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Persistent luminescence nanoparticles with high intensity for colorectal cancer surgery navigation and precision
Zichao Yan1, Yifei Wang1, Minghan Qiu2
1Key Laboratory of Functional Polymer Materials of Ministry of Education, College of Chemistry, Nankai University, Tianjin 300071, China. zhiy@nankai.edu.cn.
Abstract:
Surgical resection remains the main treatment for malignant tumors. Image-guided surgery aims to remove tumor tissue completely while preserving normal tissue, thereby reducing tumor recurrence rates and injury. However, challenges like tissue autofluorescence, limited probe penetration and low contrast restrict its use. Near-infrared (NIR) persistent luminescent nanoparticles (PLNPs) provide a solution by emitting persistent luminescence (PersL) even after excitation ceases, thus circumventing autofluorescence and enabling deep tumor imaging. In this study, we prepared nano-sized (140 nm hydrodynamic size) Cr3+ doped zinc gallogermanate (ZGC) using a removable template method and modified it with folate acid to obtain ZGC-FA, which exhibits NIR (695 nm) PersL with a signal-to-noise ratio of 23.9 in vivo. We utilized a colon cancer model that selectively expressed luciferase for the first time to validate the guiding efficacy of ZGC-FA in precision surgical resection. Post-intraperitoneal injection at 50 minutes, the PersL closely matched the tumor boundaries, achieving an overlap rate of approximately 98%. Complete tumor resection was achieved under PersL guidance, with only 2.3% of healthy tissue removed. This research underscores the potential of ZGC-FA in the field of surgical oncology. The precision of the ZGC-FA guided surgical approach holds promise to enhance surgical outcomes and facilitate postoperative recovery in patients.
Insights
Near-infrared persistent luminescent nanoparticles (PLNPs) offer precise tumor visualization for image-guided surgery. This study demonstrates ZGC-FA PLNPs effectively guide complete tumor resection with minimal healthy tissue removal, improving surgical outcomes.
Area of Science:
- Oncology
- Materials Science
- Biomedical Engineering
Background:
- Surgical resection is key for malignant tumors, but challenges like autofluorescence and low contrast limit precision.
- Image-guided surgery aims to improve tumor removal and preserve healthy tissue, reducing recurrence and injury.
Purpose of the Study:
- To develop and evaluate near-infrared (NIR) persistent luminescent nanoparticles (PLNPs) for enhanced image-guided tumor resection.
- To validate the efficacy of ZGC-FA PLNPs in a colon cancer model for precision surgery.
Main Methods:
- Synthesized nano-sized Cr3+ doped zinc gallogermanate (ZGC) nanoparticles using a removable template method.
- Modified ZGC with folic acid to create ZGC-FA, exhibiting NIR persistent luminescence (PersL).
- Validated ZGC-FA in a luciferase-expressing colon cancer model for surgical guidance.
Main Results:
- ZGC-FA nanoparticles showed NIR PersL (695 nm) with a high in vivo signal-to-noise ratio (23.9).
- PLNsL accurately delineated tumor boundaries (approx. 98% overlap) 50 minutes post-injection.
- Achieved complete tumor resection with only 2.3% of healthy tissue removed under ZGC-FA guidance.
Conclusions:
- ZGC-FA PLNPs demonstrate significant potential for deep tumor imaging and precise surgical guidance in oncology.
- The developed ZGC-FA nanoparticles can enhance surgical precision, leading to improved patient outcomes and recovery.
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