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A Human Peripheral Blood Mononuclear Cell PBMC Engrafted Humanized Xenograft Model for Translational Immuno-oncology I-O Research
Published on: August 15, 2019
A fully human CXCR4 antibody demonstrates diagnostic utility and therapeutic efficacy in solid tumor xenografts
Babak Behnam Azad1, Samit Chatterjee1, Wojciech G Lesniak1
1The Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University, Baltimore, Maryland, USA.
Abstract:
For physiologically important cancer therapeutic targets, use of non-invasive imaging for therapeutic guidance and monitoring may improve outcomes for treated patients. The CXC chemokine receptor 4 (CXCR4) is overexpressed in many cancers including non-small cell lung cancer (NSCLC) and triple negative breast cancer (TNBC). CXCR4 overexpression contributes to tumor growth, progression and metastasis. There are several CXCR4-targeted therapeutic agents currently in clinical trials. Since CXCR4 is also crucial for normal biological functions, its prolonged inhibition could lead to unwanted toxicities. While CXCR4-targeted imaging agents and inhibitors have been reported and evaluated independently, there are currently no studies demonstrating CXCR4-targeted imaging for therapeutic guidance. Monoclonal antibodies (mAbs) are commonly used for cancer therapy and imaging. Here, an 89Zr-labeled human CXCR4-mAb (89Zr-CXCR4-mAb) was evaluated for detection of CXCR4 expression with positron emission tomography (PET) while its native unmodified analogue was evaluated for therapy in relevant models of NSCLC and TNBC. In vitro and in vivo evaluation of 89Zr-CXCR4-mAb showed enhanced uptake in NSCLC xenografts with a high expression of CXCR4. It also had the ability to detect lymph node metastases in an experimental model of metastatic TNBC. Treatment of high and low CXCR4 expressing NSCLC and TNBC xenografts with CXCR4-mAb demonstrated a therapeutic response correlating with the expression of CXCR4. Considering the key role of CXCR4 in normal biological functions, our results suggest that combination of 89Zr-CXCR4-mAb-PET with non-radiolabeled mAb therapy may provide a precision medicine approach for selecting patients with tumors that are likely to be responsive to this treatment.
Insights
This study introduces a novel imaging agent, 89Zr-CXCR4-mAb, for positron emission tomography (PET) to guide cancer therapy. The agent helps identify tumors expressing CXC chemokine receptor 4 (CXCR4), enabling personalized treatment selection.
Area of Science:
- Oncology
- Nuclear Medicine
- Immunotherapy
Background:
- CXC chemokine receptor 4 (CXCR4) is overexpressed in various cancers, including non-small cell lung cancer (NSCLC) and triple-negative breast cancer (TNBC), driving tumor growth and metastasis.
- While CXCR4-targeted therapies are in development, potential toxicities from prolonged inhibition necessitate precise patient selection.
- Current imaging and therapeutic strategies for CXCR4 are evaluated independently, lacking a combined approach for treatment guidance.
Purpose of the Study:
- To evaluate an 89Zr-labeled human CXCR4 monoclonal antibody (89Zr-CXCR4-mAb) for positron emission tomography (PET) imaging of CXCR4 expression.
- To assess the therapeutic efficacy of the non-radiolabeled CXCR4-mAb in preclinical cancer models.
- To explore the potential of combining CXCR4-targeted imaging with mAb therapy for precision medicine in NSCLC and TNBC.
Main Methods:
- Development and in vitro/in vivo evaluation of 89Zr-CXCR4-mAb for PET imaging.
- Assessment of CXCR4-mAb therapy in NSCLC and TNBC xenograft models with varying CXCR4 expression levels.
- Correlation of imaging findings with therapeutic response.
Main Results:
- 89Zr-CXCR4-mAb demonstrated enhanced uptake in NSCLC xenografts with high CXCR4 expression.
- The imaging agent successfully detected lymph node metastases in a TNBC model.
- Therapeutic response to CXCR4-mAb correlated with the level of CXCR4 expression in both NSCLC and TNBC models.
Conclusions:
- 89Zr-CXCR4-mAb-PET is a viable tool for detecting CXCR4 expression in relevant cancer models.
- Non-radiolabeled CXCR4-mAb therapy shows efficacy that is dependent on CXCR4 expression.
- Combining 89Zr-CXCR4-mAb-PET with CXCR4-mAb therapy offers a precision medicine strategy for patient selection and treatment monitoring.

