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Updated: Aug 8, 2026

Near Infrared Photoimmunotherapy for Mouse Models of Pleural Dissemination
Published on: February 9, 2021
Tumor-targeted small molecule for dual-modal imaging-guided phototherapy upon near-infrared excitation
Xiaoqing Meng1, Wenjun Li, Zhihong Sun
1Guangdong Key Laboratory of Nanomedicine, Shenzhen Engineering Laboratory of Nanomedicine and Nanoformulations, CAS Key Lab of Health Informatics, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China. xq.meng@siat.ac.cn.
Abstract:
Near-infrared (NIR) organic dyes have received increasing attention in recent years as diagnostic and therapeutic agents in the field of tumor research. In this study, IR-822, a near-infrared fluorescence (NIRF) heptamethine cyanine dye, was chosen as a fluorophore due to its high extinction coefficients, and native preferential tumor accumulation property. To enhance its specificity in tumor imaging, N1-(pyridin-4-ylmethyl)ethane-1,2-diamine (PY) was conjugated to IR-822 as a pH-sensing receptor, forming a fluorophore-spacer-receptor molecular probe (IR-PY) that can modulate the fluorescence emission intensity through a fast photoinduced electron-transfer process, which allowed the probe to "switch on" significantly in an acidic tumor microenvironment and which realized enhanced NIRF imaging in vivo. Having a strong NIR absorption at 600-850 nm, this small-molecule IR-PY showed not only high spatial resolution photoacoustic (PA) imaging in mice, but also effective tumor photothermal ablation in vivo. After photothermal therapy (PTT) with IR-PY under NIR 808 nm laser irradiation, the mice exhibited remarkable ablation with no tumor recurrence after treatment. Therefore, a single smart small-molecule probe IR-PY has been designed, synthesized and verified as an "all in one" multifunctional agent, including pH sensitivity, tumor targeting, "switch-on" near-infrared fluorescence imaging, high-spatial-resolution PA imaging and efficient near-infrared photothermal therapy, which is promising for clinical application in NIRF/PA dual-modal imaging-guided cancer diagnosis and treatment.
Insights
A novel pH-sensitive near-infrared probe (IR-PY) enhances tumor imaging and enables effective photothermal therapy. This "all-in-one" agent shows promise for dual-modal imaging-guided cancer diagnosis and treatment.
Area of Science:
- Biomedical Engineering
- Organic Chemistry
- Oncology
Background:
- Near-infrared (NIR) organic dyes are crucial for tumor research, offering diagnostic and therapeutic potential.
- IR-822, a heptamethine cyanine dye, exhibits high extinction coefficients and preferential tumor accumulation.
- Enhancing specificity in tumor imaging requires targeted molecular probes.
Purpose of the Study:
- To develop a multifunctional molecular probe for enhanced tumor imaging and therapy.
- To create a pH-sensitive probe that 'switches on' fluorescence in acidic tumor microenvironments.
- To evaluate the probe's efficacy in near-infrared fluorescence (NIRF), photoacoustic (PA) imaging, and photothermal therapy (PTT).
Main Methods:
- Conjugation of N¹-(pyridin-4-ylmethyl)ethane-1,2-diamine (PY) to IR-822 to create the pH-sensing probe (IR-PY).
- Utilizing a photoinduced electron-transfer mechanism for pH-dependent fluorescence modulation.
- In vivo evaluation of IR-PY for NIRF/PA imaging and PTT in mice.
Main Results:
- The IR-PY probe demonstrated significant 'switch-on' fluorescence in acidic tumor environments.
- High-spatial-resolution PA imaging and effective tumor ablation via PTT were achieved in vivo.
- No tumor recurrence was observed after photothermal therapy using IR-PY.
Conclusions:
- The small-molecule IR-PY probe functions as a versatile agent for pH-sensitive imaging and PTT.
- IR-PY offers 'all-in-one' capabilities: pH sensitivity, tumor targeting, 'switch-on' NIRF, PA imaging, and PTT.
- This probe holds significant promise for clinical translation in dual-modal imaging-guided cancer management.
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