Antibody-drug conjugates: recent advances in conjugation and linker chemistries

Конъюгаты антитело—лекарственное средство: последние достижения в области конъюгации и химии линкеров
Kyoji Tsuchikama, Zhiqiang An
2016-10-14

antibody-drug conjugatescancer therapeuticscytotoxic payloadslinker chemistriessite-specific conjugation
The antibody-drug conjugate (ADC), a humanized or human monoclonal antibody conjugated with highly cytotoxic small molecules (payloads) through chemical linkers, is a novel therapeutic format and has great potential to make a paradigm shift in cancer chemotherapy. This new antibody-based molecular platform enables selective delivery of a potent cytotoxic payload to target cancer cells, resulting in improved efficacy, reduced systemic toxicity, and preferable pharmacokinetics (PK)/pharmacodynamics (PD) and biodistribution compared to traditional chemotherapy. Boosted by the successes of FDA-approved Adcetris® and Kadcyla®, this drug class has been rapidly growing along with about 60 ADCs currently in clinical trials. In this article, we briefly review molecular aspects of each component (the antibody, payload, and linker) of ADCs, and then mainly discuss traditional and new technologies of the conjugation and linker chemistries for successful construction of clinically effective ADCs. Current efforts in the conjugation and linker chemistries will provide greater insights into molecular design and strategies for clinically effective ADCs from medicinal chemistry and pharmacology standpoints. The development of site-specific conjugation methodologies for constructing homogeneous ADCs is an especially promising path to improving ADC design, which will open the way for novel cancer therapeutics.
1
ADC clinical effectiveness depends on coordinated molecular design of the antibody, cytotoxic payload, and chemical linker.
2
Advances in conjugation and linker chemistries are providing new strategies for constructing clinically effective ADCs.
3
Antibody-drug conjugates selectively deliver highly cytotoxic payloads to cancer cells, potentially improving efficacy, systemic toxicity, pharmacokinetics, pharmacodynamics, and biodistribution versus conventional chemotherapy.
4
FDA approvals of Adcetris® and Kadcyla® have accelerated ADC development, with approximately 60 ADCs reported in clinical trials.
5
Site-specific conjugation methods are an especially promising approach for producing homogeneous ADCs and improving therapeutic design.

antibody-drug conjugates (ADCs)

conjugation and linker chemistries for the molecular design and construction of clinically effective ADCs, including site-specific methods for homogeneous ADCs

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2016-10-14
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Kyoji Tsuchikama
Zhiqiang An
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