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Published on: February 3, 2015
IL13Rα2-Targeting Antibodies for Immuno-PET in Solid Malignancies
Leah Gajecki1, Irina V Lebedeva2, Yu-Rou Liao2
1Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
Interleukin-13 receptor α-2 (IL13Rα2) is a cell surface receptor frequently expressed in solid malignancies, such as glioblastoma and melanoma, with limited expression in healthy tissue, rendering it an ideal target for noninvasive and specific tumor delineation. In this study, we report the development of 5 novel IL13Rα2-targeted human monoclonal antibodies (mAbs) KLG-1-5; in subsequent in vitro and in vivo studies after radiolabeling with 89Zr, we evaluate their performance to identify a lead candidate. Methods: Five novel human anti-IL13Rα2 mAbs KLG-1-5 were developed and in vitro binding properties and target specificity assessed. In vivo 89Zr-immuno-PET using KLG-1-5 was conducted in a subcutaneous U-87 MG glioblastoma mouse model, and a mass dose titration study was conducted with lead candidate KLG-3. Ex vivo biodistribution results were used to derive prospective dosimetry of 177Lu-labeled KLG-3. Targeting with KLG-3 was also verified in an A-375 melanoma model using the optimized conditions determined in the U-87 MG xenograft model. Results: In vitro studies confirmed target specificity and pico- to low nanomolar binding affinity. Immuno-PET studies with KLG-1-5 in U-87 MG xenografts demonstrated continuously increasing tumoral uptake with maximal uptake at 144 h after tracer injection, clearance of the unbound tracer from the blood pool, and little uptake in any other normal tissues, leading to high-contrast images. KLG-3 provided the highest tumoral uptake and tumor-to-normal tissue ratios and was chosen as the lead candidate, and further dose optimization with this antibody led to tumoral uptake of 97 ± 6 maximum percent of injected dose per gram at 144 h after tracer injection. Ex vivo biodistribution-derived prospective dosimetry for 177Lu-labeled KLG-3 predicted a favorable therapeutic index, encouraging the development of IL13Rα2-targeted radioimmunotherapy. Of note, KLG-3 performed similarly well in a melanoma model, emphasizing the versatility of this antibody. Conclusion: Lead candidate anti-IL13Rα2 mAb KLG-3 validated highly specific target binding in human glioblastoma and melanoma models, resulting in high-contrast PET images with minimal accumulation in off-target healthy tissues. Prospective dosimetry of its 177Lu-labeled counterpart suggested therapeutic efficacy at relatively low injected activities, supporting further pursuit of KLG-3 in future translational radioimmunotherapy applications.
Insights
Five novel monoclonal antibodies targeting Interleukin-13 receptor α-2 (IL13Rα2) were developed. The lead candidate, KLG-3, demonstrated high specificity and tumor uptake in glioblastoma and melanoma models, supporting its use in radioimmunotherapy.
Area of Science:
- Immunology
- Oncology
- Radiochemistry
Background:
- Interleukin-13 receptor α-2 (IL13Rα2) is a promising target for cancer therapy due to its high expression in malignancies like glioblastoma and melanoma, and limited presence in healthy tissues.
- Development of targeted therapies requires specific agents for accurate tumor delineation and effective treatment delivery.
Purpose of the Study:
- To develop and evaluate novel human monoclonal antibodies (mAbs) targeting IL13Rα2 for potential use in cancer imaging and therapy.
- To identify a lead antibody candidate for further development in IL13Rα2-positive solid tumors.
Main Methods:
- Five novel human anti-IL13Rα2 mAbs (KLG-1-5) were generated and characterized for in vitro binding affinity and specificity.
- In vivo studies involved 89Zr-immuno-PET imaging in U-87 MG glioblastoma and A-375 melanoma xenograft mouse models.
- Mass dose titration and biodistribution studies were performed with the lead candidate (KLG-3) to predict dosimetry for 177Lu-labeled radioimmunotherapy.
Main Results:
- In vitro assays confirmed high specificity and low nanomolar binding affinity for all developed mAbs.
- 89Zr-immuno-PET imaging revealed excellent tumor targeting, high tumor-to-normal tissue ratios, and rapid blood pool clearance for KLG-1-5, with KLG-3 showing superior performance.
- KLG-3 demonstrated maximal tumoral uptake of 97 ± 6% injected dose per gram at 144 hours post-injection in glioblastoma models and showed similar efficacy in melanoma models.
Conclusions:
- The lead anti-IL13Rα2 mAb, KLG-3, exhibits high specificity and effectively delineates IL13Rα2-expressing tumors in glioblastoma and melanoma models, producing high-contrast PET images.
- Prospective dosimetry for 177Lu-labeled KLG-3 suggests a favorable therapeutic index, supporting its potential for targeted radioimmunotherapy applications.

