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Published on: November 12, 2019
Development and Characterization of Nanobody-Derived CD47 Theranostic Pairs in Solid Tumors
You Zhang1, Di Zhang1, Shuxian An1
1Department of Nuclear Medicine, Institute of Clinical Nuclear Medicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, China.
Abstract:
Overexpression of CD47 is frequently observed in various types of human malignancies, inhibiting myeloid-mediated elimination of tumor cells and affecting the prognosis of cancer patients. By mapping biomarker expression, immuno-positron emission tomography has been increasingly used for patient screening and response monitoring. By immunization alpacas with recombinant human CD47, we prepared a CD47-targeting nanobody C2 and developed [68Ga]Ga-NOTA-C2, followed by an exploration of the diagnostic value in CD47-expressing tumor models including gastric-cancer patient-derived xenograft models. By fusing C2 to an albumin binding domain (ABD), we synthesized ABDC2, which had increased in vivo half-life and improved targeting properties. We further labeled ABDC2 with 68Ga/89Zr/177Lu to develop radionuclide theranostic pairs and evaluated the pharmacokinetics and theranostic efficacies of the agents in cell- and patient-derived models. Both C2 and ABDC2 specifically reacted with human CD47 with a high K D value of 23.50 and 84.57 pM, respectively. [68Ga]Ga-NOTA-C2 was developed with high radiochemical purity (99 >%, n = 4) and visualized CD47 expression in the tumors. In comparison to the rapid renal clearance and short half-life of [68Ga]Ga-NOTA-C2, both [68Ga]Ga-NOTA-ABDC2 and [89Zr]Zr-DFO-ABDC2 showed prolonged circulation and increased tumor uptake, with the highest uptake of [89Zr]Zr-DFO-ABDC2 occurring at 72 h post-injection. Moreover, [177Lu]Lu-DOTA-ABDC2 radioimmunotherapy suppressed the tumor growth but was associated with toxicity, warranting further optimization of the treatment schedules. Taken together, we reported a series of nanobody-derived CD47-targeted agents, of which [68Ga]Ga-NOTA-C2 and [89Zr]Zr-DFO-ABDC2 are readily translatable. Optimization and translation of CD47-targeted theranostic pair may provide new prospects for CD47-targeted management of solid tumors.
Insights
Researchers developed novel CD47-targeting nanobodies for cancer diagnosis and therapy. These agents, including [68Ga]Ga-NOTA-C2 and [89Zr]Zr-DFO-ABDC2, show promise for managing solid tumors by targeting CD47 overexpression.
Area of Science:
- Oncology
- Radiochemistry
- Immunotherapy
Background:
- CD47 overexpression in malignancies inhibits anti-tumor immunity and impacts patient prognosis.
- Immuno-positron emission tomography (PET) aids in patient screening and response monitoring for cancer.
- Targeting CD47 offers a potential strategy for overcoming tumor immune evasion.
Purpose of the Study:
- To develop and evaluate CD47-targeting nanobodies for diagnostic and therapeutic applications in cancer.
- To explore the utility of radiolabeled nanobodies for immuno-PET imaging and radionuclide therapy.
- To assess the efficacy of CD47-targeted agents in preclinical models of CD47-expressing tumors.
Main Methods:
- Alpaca immunization with recombinant human CD47 to generate CD47-targeting nanobody C2.
- Development of radiolabeled nanobodies: [68Ga]Ga-NOTA-C2, [68Ga]Ga-NOTA-ABDC2, [89Zr]Zr-DFO-ABDC2, and [177Lu]Lu-DOTA-ABDC2.
- Evaluation in CD47-expressing tumor models, including patient-derived xenografts, assessing binding affinity, pharmacokinetics, tumor uptake, and therapeutic efficacy.
Main Results:
- Nanobodies C2 and ABDC2 demonstrated high affinity for human CD47 (KD 23.50 and 84.57 pM).
- [68Ga]Ga-NOTA-C2 successfully visualized CD47 expression in tumors.
- ABDC2-based agents ([68Ga]Ga-NOTA-ABDC2, [89Zr]Zr-DFO-ABDC2) exhibited prolonged circulation and enhanced tumor uptake compared to C2.
- [177Lu]Lu-DOTA-ABDC2 showed tumor growth suppression but with associated toxicity.
Conclusions:
- A series of CD47-targeted nanobody-derived agents were successfully developed.
- [68Ga]Ga-NOTA-C2 and [89Zr]Zr-DFO-ABDC2 are readily translatable for diagnostic applications.
- CD47-targeted theranostic pairs hold promise for future solid tumor management strategies, requiring further optimization for therapeutic use.
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