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Targeting the EphB4 receptor for cancer diagnosis and therapy monitoring
Dan Li1, Shuanglong Liu, Ren Liu
1Department of Radiology, Molecular Imaging Center, University of Southern California, Los Angeles, California 90033, United States.
Abstract:
Accumulating evidence suggests that EphB4 plays key roles in cancer progression in numerous cancer types. In fact, therapies focusing on EphB4 have become potentially important components of various cancer treatment strategies. However, tumor sensitivity to EphB4 suppression may not be uniform for different cancers. In this study, we developed near-infrared fluorescence (NIRF) probes for EphB4 targeted imaging, based on EphB4-specific humanized monoclonal antibody hAb47. NIRF dye Cy5.5 was introduced to hAb47 either through the reaction with amino groups (named hAb47-Cy5.5) or sulfhydryl groups (named hAb47-Cy5.5-Mal). The resulting probes were evaluated in both HT-29 xenograft and the mAb131 (anti-EphB4) treated models. Although these methods lead to modifications of both the heavy chain and light chain of the antibody, the majority of the EphB4 binding affinity was maintained (81.62 ± 2.08% for hAb47-Cy5.5 and 77.14 ± 2.46% for hAb47-Cy5.5-Mal, respectively). hAb47-Cy5.5 was then chosen for in vivo NIRF imaging of EphB4 expression. In HT29 colorectal tumor xenografts, hAb47-Cy5.5 demonstrated significantly higher tumor uptake compared with that of the hIgG-Cy5.5 control, which was further confirmed by immunofluorescent staining. Moreover, hAb47-Cy5.5 successfully imaged the decreased EphB4 expression (confirmed by Western blot) in EphB4-targeted immunotherapy using another EphB4-specific antibody, mAb131. Collectively, hAb47-Cy5.5 could be used as a specific NIRF contrast agent for noninvasive imaging of EphB4 expression, which may predict whether an individual tumor would likely respond to EphB4 targeted interventions, as well as monitor the therapeutic response.
Insights
Researchers developed near-infrared fluorescence (NIRF) probes for EphB4 imaging. The hAb47-Cy5.5 probe successfully visualized EphB4 expression in tumors and monitored treatment response, aiding in predicting therapy effectiveness.
Area of Science:
- Oncology
- Biotechnology
- Medical Imaging
Background:
- EphB4 is implicated in various cancer progressions, making it a target for cancer therapies.
- Tumor sensitivity to EphB4 suppression varies across cancer types, necessitating precise diagnostic tools.
- Targeted therapies for EphB4 are crucial, but predicting patient response remains a challenge.
Purpose of the Study:
- To develop novel near-infrared fluorescence (NIRF) probes for EphB4 targeted imaging.
- To evaluate the efficacy of these probes in preclinical cancer models.
- To assess the potential of NIRF imaging for predicting response to EphB4-targeted therapies.
Main Methods:
- Development of NIRF probes by conjugating Cy5.5 dye to an EphB4-specific humanized monoclonal antibody (hAb47).
- Two conjugation methods were used: amino group (hAb47-Cy5.5) and sulfhydryl group (hAb47-Cy5.5-Mal).
- In vivo NIRF imaging was performed on HT-29 colorectal tumor xenografts and in models treated with an anti-EphB4 antibody (mAb131).
Main Results:
- Both hAb47-Cy5.5 and hAb47-Cy5.5-Mal probes retained significant EphB4 binding affinity.
- hAb47-Cy5.5 showed higher tumor uptake in xenografts compared to a control IgG probe.
- The probe successfully imaged decreased EphB4 expression following EphB4-targeted immunotherapy.
Conclusions:
- hAb47-Cy5.5 serves as a specific NIRF contrast agent for noninvasive EphB4 imaging.
- This imaging approach can potentially predict tumor response to EphB4-targeted interventions.
- The probe can also be utilized to monitor therapeutic response in real-time.
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