Antibody–Drug Conjugates for Cancer Therapy

Антительно-лекарственные конъюгаты для терапии рака
Umbreen Hafeez, Sagun Parakh, Hui Gan, Andrew M. Scott
2020-10-16

ADC resistanceantibody-drug conjugatescytotoxic payloadmolecular imagingmonoclonal antibodies
Antibody-drug conjugates (ADCs) are novel drugs that exploit the specificity of a monoclonal antibody (mAb) to reach target antigens expressed on cancer cells for the delivery of a potent cytotoxic payload. ADCs provide a unique opportunity to deliver drugs to tumor cells while minimizing toxicity to normal tissue, achieving wider therapeutic windows and enhanced pharmacokinetic/pharmacodynamic properties. To date, nine ADCs have been approved by the FDA and more than 80 ADCs are under clinical development worldwide. In this paper, we provide an overview of the biology and chemistry of each component of ADC design. We briefly discuss the clinical experience with approved ADCs and the various pathways involved in ADC resistance. We conclude with perspectives about the future development of the next generations of ADCs, including the role of molecular imaging in drug development.
1
ADC design integrates biological and chemical considerations across the antibody, linker, and cytotoxic payload components.
2
ADCs may reduce toxicity to normal tissues while widening therapeutic windows and improving pharmacokinetic and pharmacodynamic properties.
3
Antibody–drug conjugates use monoclonal-antibody specificity to deliver potent cytotoxic payloads to cancer cells expressing target antigens.
4
Clinical efficacy can be limited by multiple ADC resistance pathways, motivating development of next-generation conjugates and molecular-imaging approaches.
5
Nine ADCs had received FDA approval, while more than 80 additional ADCs were undergoing clinical development worldwide at the time of publication.

antibody–drug conjugates (ADCs) used for cancer therapy

the biological and chemical design of ADC components, their clinical performance, mechanisms of resistance, and future development

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Publication Date
2020-10-16
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Authors
Umbreen Hafeez
Sagun Parakh
Hui Gan
Andrew M. Scott
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