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Genetic Encoding of a Non-Canonical Amino Acid for the Generation of Antibody-Drug Conjugates Through a Fast Bioorthogonal Reaction
Published on: September 14, 2018
Site-Specifically Labeled Antibody-Drug Conjugate for Simultaneous Therapy and ImmunoPET
Pierre Adumeau1,2, Delphine Vivier1,2, Sai Kiran Sharma2
1Department of Chemistry , Hunter College of the City University of New York , New York , New York 10028 , United States.
Abstract:
The conjugation of antibodies with cytotoxic drugs can alter their in vivo pharmacokinetics. As a result, the careful assessment of the in vivo behavior, and specifically the tumor-targeting properties, of antibody-drug conjugates represents a crucial step in their development. In order to facilitate this process, we have created a methodology that facilitates the dual labeling of an antibody with both a toxin and a radionuclide for positron emission tomography (PET). To minimize the impact of these modifications, this chemoenzymatic approach leverages strain-promoted azide-alkyne click chemistry to graft both cargoes to the heavy chain glycans of the immuoglobulin's Fc domain. As a proof-of-concept, a HER2-targeting trastuzumab immunoconjugate was created bearing both a monomethyl auristatin E (MMAE) toxin as well as the long-lived positron-emitting radiometal 89Zr ( t1/2 ≈ 3.3 days). Both the tumor targeting and therapeutic efficacy of the 89Zr-trastuzumab-MMAE immunoconjugate were validated in vivo using a murine model of HER2-expressing breast cancer. The site-specifically dual-labeled construct enabled the clear visualization of tumor tissue via PET imaging, producing tumoral uptake of ∼70%ID/g. Furthermore, a longitudinal therapy study revealed that the immunoconjugate exerts significant antitumor activity, leading to a >90% reduction in tumor volume over the course of 20 days.
Insights
We developed a dual-labeling method for antibody-drug conjugates using click chemistry. This approach enables simultaneous toxin and radionuclide attachment for improved tumor targeting and therapeutic efficacy in cancer models.
Area of Science:
- Bioconjugation Chemistry
- Molecular Imaging
- Cancer Therapeutics
Background:
- Antibody-drug conjugates (ADCs) require careful in vivo pharmacokinetic assessment.
- Evaluating tumor targeting of ADCs is critical for development.
- Current methods may impact ADC behavior.
Purpose of the Study:
- To develop a methodology for dual labeling of antibodies with toxins and radionuclides.
- To facilitate in vivo assessment of antibody-drug conjugates.
- To enable simultaneous imaging and therapy of antibody-drug conjugates.
Main Methods:
- Chemoenzymatic approach utilizing strain-promoted azide-alkyne click chemistry.
- Dual labeling of antibody heavy chain glycans in the Fc domain.
- Proof-of-concept using HER2-targeting trastuzumab with monomethyl auristatin E (MMAE) and 89Zr.
Main Results:
- Successful site-specific dual labeling of trastuzumab with MMAE and 89Zr.
- Demonstrated clear tumor visualization via PET imaging with ~70%ID/g uptake.
- Validated significant antitumor activity with >90% tumor volume reduction in a murine model.
Conclusions:
- The dual-labeling methodology enables precise cargo attachment.
- This approach facilitates in vivo evaluation of ADCs for imaging and therapy.
- The 89Zr-trastuzumab-MMAE immunoconjugate shows promising tumor targeting and therapeutic potential.
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