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Published on: February 22, 2019
Development of a Deimmunized Bispecific Immunotoxin dDT2219 against B-Cell Malignancies
Joerg U Schmohl1,2, Deborah Todhunter3, Elizabeth Taras4
1University of Minnesota Masonic Cancer Center, Section of Molecular Cancer Therapeutics, Therapeutic Radiology-Radiation Oncology, University of Minnesota, Minneapolis, MN 55455, USA. joerg.schmohl@med.uni-tuebingen.de.
Abstract:
Diphtheria toxin (DT) related targeted toxins are effective in cancer treatment, but efficacy diminishes in time because of their immunogenic potential and/or former vaccinations. In order to overcome this limitation for DT2219, a promising bispecific targeted toxin which targets CD19 and CD22, we deimmunized the DT moiety, and thereby developed an exciting improved drug (dDT2219) which still has the potential to sufficiently target B-cell malignancies but also limits clearance because of its reduced immunogenicity. The DT moiety was modified by inducing point mutations in prominent positions on the molecular surface. The new engineered dDT2219 was tested for activity, efficacy, and specificity using functional assays, proliferation assays, and flow cytometry. Furthermore, 12 samples of Chronic Lymphatic Leukemia (CLL) patients were used to assess binding. Immunogenicity was determined using a BALB/c mouse model. dDT2219 was efficient and specific against B-cell malignancies such as Bukitt-Lymphoma cell lines Daudi and Raji. dDT2219 showed specific binding on targets and on CLL samples. Intraperitoneal vaccination of immune competent mice showed that even after multiple administrations with increasing doses, induction of neutralizing antibodies was significantly lower in the dDT2219 treated animal group. The new dDT2219 combines potent anti-tumor cell activity with a reduced immunogenicity. With regard to the frequent development of neutralizing antibodies after multiple administrations with immunotoxins, dDT2219 shows promise to overcome this limitation and thus might maintain effectiveness even after multiple treatment cycles.
Insights
A new deimmunized diphtheria toxin (DT) drug, dDT2219, effectively targets B-cell malignancies with reduced immunogenicity. This engineered toxin shows promise for sustained efficacy in cancer treatment, even after multiple administrations.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Diphtheria toxin (DT)-related targeted toxins show promise for cancer therapy.
- Their efficacy is often limited by immunogenicity and prior vaccinations.
- DT2219 is a bispecific targeted toxin targeting CD19 and CD22 for B-cell malignancies.
Purpose of the Study:
- To develop an improved, deimmunized version of DT2219 (dDT2219) with reduced immunogenicity.
- To evaluate the efficacy, specificity, and immunogenicity of dDT2219 against B-cell malignancies.
- To assess the potential of dDT2219 to overcome limitations of current immunotoxins.
Main Methods:
- Deimmunization of the DT moiety in DT2219 by introducing point mutations.
- Functional assays, proliferation assays, and flow cytometry to test activity, efficacy, and specificity.
- Assessment of binding on Chronic Lymphatic Leukemia (CLL) patient samples and immunogenicity in a mouse model.
Main Results:
- dDT2219 demonstrated efficient and specific activity against B-cell malignancies like Burkitt Lymphoma cell lines (Daudi, Raji).
- Specific binding was observed on target cells and CLL patient samples.
- Mice treated with dDT2219 showed significantly lower induction of neutralizing antibodies after multiple administrations compared to controls.
Conclusions:
- The engineered dDT2219 combines potent anti-tumor activity with reduced immunogenicity.
- dDT2219 shows potential to overcome the challenge of neutralizing antibody development, maintaining effectiveness over multiple treatment cycles.
- This improved immunotoxin offers a promising therapeutic strategy for B-cell malignancies.
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