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Preclinical Evaluation of an Engineered Single-Chain Fragment Variable-Fragment Crystallizable Targeting Human CD44
Philipp Diebolder1,2, Cedric Mpoy1, Jalen Scott1
1Department of Radiation Oncology, Washington University School of Medicine, St. Louis, Missouri.
Abstract:
Glycoprotein CD44 and alternative splice variants are overexpressed in many cancers and cancer stem cells. Binding of hyaluronic acid to CD44 activates cell signaling pathways, inducing cell proliferation, cell survival, and invasion. As such, CD44 is regarded as an excellent target for cancer therapy when this interaction can be blocked. In this study, we developed a CD44-specific antibody fragment and evaluated it for imaging CD44-positive cancers using PET. Methods: A human single-chain fragment variable (scFv) was generated by phage display, using the extracellular domain of recombinant human CD44. The specificity and affinity of the scFv-CD44 were evaluated using recombinant and tumor cell-expressed CD44. Epitope mapping of the putative CD44 binding site was performed via overlapping peptide microarray. The scFv-CD44 was reformatted into a bivalent scFv-Fc-CD44, based on human IgG1-fragment crystallizable (Fc). The scFv-Fc-CD44 was radiolabeled with 64Cu and 89Zr. The purified reagents were injected into athymic nude mice bearing CD44-positive human tumors (MDA-MB-231, breast cancer, triple-negative). Biodistribution studies were performed at different times after injection of [64Cu]Cu-NOTA-scFv-Fc-CD44 or [89Zr]Zr-DFO-scFv-Fc-CD44. PET/CT imaging was conducted with [89Zr]Zr-DFO-scFv-Fc-CD44 on days 1 and 7 after injection and compared with a scFv-Fc control antibody construct targeting glycophorin A. Results: Epitope mapping of the scFv binding site revealed a linear epitope within the extracellular domain of human CD44, capable of blocking binding to native hyaluronic acid. Switching from a monovalent scFv to a bivalent scFv-Fc format improved its binding affinity toward native CD44 on human breast cancer cells by nearly 200-fold. In vivo biodistribution data showed the highest tumor uptake and tumor-to-blood ratios for [89Zr]Zr-DFO-scFv-Fc-CD44 between days 5 and 7. PET imaging confirmed excellent tumor specificity for [89Zr]Zr-DFO-scFv-Fc-CD44 when compared with the control scFv-Fc. Conclusion: We developed a CD44-specific scFv-Fc construct that binds with nanomolar affinity to human CD44. When radiolabeled with 64Cu or 89Zr, it demonstrated specific uptake in CD44-expressing MDA-MB-231 tumors. The high tumor uptake (∼56% injected dose/g) warrants clinical investigation of [89Zr]Zr-DFO-scFv-Fc-CD44 as a versatile PET imaging agent for patients with CD44-positive tumors.
Insights
Researchers developed a CD44-specific antibody fragment for imaging cancers. Radiolabeled with 89Zr, the agent showed high uptake in CD44-positive tumors, indicating potential for PET imaging in cancer patients.
Area of Science:
- Oncology
- Immunology
- Radiochemistry
Background:
- Glycoprotein CD44 is overexpressed in many cancers and cancer stem cells.
- CD44 facilitates cancer cell proliferation, survival, and invasion via hyaluronic acid binding.
- Targeting the CD44-hyaluronic acid interaction is a promising strategy for cancer therapy.
Purpose of the Study:
- To develop and evaluate a CD44-specific antibody fragment for Positron Emission Tomography (PET) imaging of CD44-positive cancers.
- To assess the specificity, affinity, and in vivo performance of the developed imaging agent.
Main Methods:
- Generated a human single-chain fragment variable (scFv) targeting CD44 via phage display.
- Reformatted scFv into a bivalent scFv-Fc construct and radiolabeled with 64Cu and 89Zr.
- Evaluated biodistribution and PET/CT imaging in mice bearing CD44-positive human breast tumors (MDA-MB-231).
Main Results:
- The bivalent scFv-Fc construct demonstrated a nearly 200-fold improvement in binding affinity to CD44 compared to monovalent scFv.
- In vivo studies showed high tumor uptake (up to ~56% injected dose/g) and tumor-to-blood ratios for 89Zr-labeled agent between days 5 and 7.
- PET imaging confirmed excellent tumor specificity, distinguishing CD44-positive tumors from controls.
Conclusions:
- A CD44-specific scFv-Fc antibody fragment with nanomolar affinity was successfully developed.
- Radiolabeled constructs ([64Cu]- and [89Zr]-) showed specific uptake in CD44-expressing tumors.
- [89Zr]Zr-DFO-scFv-Fc-CD44 is a promising PET imaging agent for clinical investigation in CD44-positive cancers.
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