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Published on: March 13, 2018
Visualizing head and neck tumors in vivo using near-infrared fluorescent transferrin conjugate
Liang Shan1, Yubin Hao, Songping Wang
1Department of Radiology, Howard University, Washington, DC 20060, USA.
Abstract:
Transferrin receptor (TfR) is overexpressed in human head and neck squamous cell carcinomas (HNSCCs). This study was carried out to investigate the feasibility of imaging HNSCC by targeting TfR using near-infrared fluorescent transferrin conjugate (TfNIR). Western blot analysis of four HNSCC cell lines revealed overexpression of TfR in all four lines compared with that in normal keratinocytes (OKFL). Immunocytochemistry further confirmed the expression of TfR and endocytosis of TfNIR in JHU-013 culture cells. Following intravenous administration of TfNIR (200 microL, 0.625 microg/microL), fluorescent signal was preferentially accumulated in JHU-013 tumor xenografts grown in the lower back (n=14) and oral base tissues (n=4) of nude mice. The signal in tumors was clearly detectable as early as 10 minutes and reached the maximum at 90 to 120 minutes postinjection. The background showed an increase, followed by a decrease at a much faster pace than tumor signal. A high fluorescent ratio of the tumor to muscle was obtained (from 1.42 to 4.15 among tumors), usually achieved within 6 hours, and correlated with the tumor size (r=.74, p=.002). Our results indicate that TfR is a promising target and that Tf(NIR)-based optical imaging is potentially useful for noninvasive detection of early HNSCC in the clinic.
Insights
Near-infrared fluorescent transferrin conjugate (TfNIR) effectively images head and neck squamous cell carcinomas (HNSCCs) by targeting the overexpressed transferrin receptor (TfR). This optical imaging shows potential for noninvasive early HNSCC detection.
Area of Science:
- Oncology
- Biomedical Imaging
- Molecular Targeting
Background:
- Transferrin receptor (TfR) is significantly overexpressed in human head and neck squamous cell carcinomas (HNSCCs).
- Targeting TfR presents a potential strategy for the specific detection of HNSCCs.
Purpose of the Study:
- To evaluate the feasibility of imaging HNSCC using a near-infrared fluorescent transferrin conjugate (TfNIR).
- To assess TfNIR as a tool for noninvasive early detection of HNSCC.
Main Methods:
- Western blot and immunocytochemistry were used to confirm TfR overexpression and TfNIR uptake in HNSCC cell lines.
- TfNIR was administered intravenously to nude mice with HNSCC xenografts for optical imaging.
- Fluorescent signal accumulation and tumor-to-background ratios were analyzed over time.
Main Results:
- TfR was overexpressed in all tested HNSCC cell lines compared to normal keratinocytes.
- TfNIR preferentially accumulated in HNSCC tumor xenografts, with detectable signals as early as 10 minutes post-injection.
- A high tumor-to-muscle fluorescent ratio was achieved, correlating with tumor size, indicating effective tumor visualization.
Conclusions:
- TfR is a viable molecular target for HNSCC imaging.
- TfNIR-based optical imaging demonstrates potential for noninvasive detection of early-stage HNSCC.
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