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Updated: Jun 14, 2026

Cerenkov Luminescence Imaging (CLI) for Cancer Therapy Monitoring
Published on: November 13, 2012
Integrated theranostic nanoplatform empowers precision cancer care via radionuclide-labeled NIR-II
Guo-Ling Zhang1, Da-Yong Hou2, Yixuan Chen3
1Shaanxi Key Laboratory of Phytochemistry, AIE Research Center, College of Chemistry and Chemical Engineering, Baoji University of Arts and Sciences, Baoji, China.
Abstract:
Malignant tumours frequently evade conventional therapies due to their complexity and high recurrence rates. To overcome these limitations, an integrated theranostic nanoplatform was developed through modification of a NIR-II emitting aggregation-induced emission photosensitizer with folic acid and the polydentate ligand (DOTA), followed by radiolabeling with 68Ga. This strategy not only enhances cancer targeting precision but also confers superior positron emission tomography/computed tomography (PET/CT) imaging capabilities to the nanoparticles ([68Ga]DOTA-FA-BBTD-4C NPs). This nanoparticle demonstrates specific targeting and high-affinity binding to folate receptor alpha in glioblastoma cells, achieving clear tumour delineation by PET/CT imaging at 0.5 h post-injection and enabling accurate tumour resection guided by fluorescence imaging within a 12-h surgical window. Furthermore, the AIE-active photosensitizer-based platform simultaneously mediates synergistic phototherapy through localised hyperthermia and reactive oxygen species generation, effectively inducing apoptosis and cell cycle arrest to prevent tumour recurrence in female mice model. This multifunctional theranostic nanoplatform represents an advancement in cancer diagnosis and treatment, offering promising translational potential for clinical applications.

