Antibody-drug conjugates: an emerging concept in cancer therapy
Ravi V J Chari1, Michael L Miller, Wayne C Widdison
1ImmunoGen, Inc. 830 Winter St, Waltham, MA 02451 (USA) http://www.immunogen.com. ravi.chari@immunogen.com.
Abstract:
Traditional cancer chemotherapy is often accompanied by systemic toxicity to the patient. Monoclonal antibodies against antigens on cancer cells offer an alternative tumor-selective treatment approach. However, most monoclonal antibodies are not sufficiently potent to be therapeutically active on their own. Antibody-drug conjugates (ADCs) use antibodies to deliver a potent cytotoxic compound selectively to tumor cells, thus improving the therapeutic index of chemotherapeutic agents. The recent approval of two ADCs, brentuximab vedotin and ado-trastuzumab emtansine, for cancer treatment has spurred tremendous research interest in this field. This Review touches upon the early efforts in the field, and describes how the lessons learned from the first-generation ADCs have led to improvements in every aspect of this technology, i.e., the antibody, the cytotoxic compound, and the linker connecting them, leading to the current successes. The design of ADCs currently in clinical development, and results from mechanistic studies and preclinical and clinical evaluation are discussed. Emerging technologies that seek to further advance this exciting area of research are also discussed.
Insights
Antibody-drug conjugates (ADCs) improve cancer treatment by selectively delivering potent drugs to tumor cells, overcoming the systemic toxicity of traditional chemotherapy. Advances in ADCs enhance their efficacy and therapeutic potential.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Traditional chemotherapy causes systemic toxicity.
- Monoclonal antibodies offer tumor-selective targeting but lack potency.
- Antibody-drug conjugates (ADCs) combine antibody targeting with cytotoxic payloads.
Purpose of the Study:
- To review the evolution of antibody-drug conjugate (ADC) technology.
- To discuss improvements in ADC components (antibody, drug, linker).
- To explore current clinical developments and future technologies in ADCs.
Main Methods:
- Review of early ADC efforts and first-generation successes.
- Analysis of design principles for next-generation ADCs.
- Discussion of preclinical and clinical evaluation data.
Main Results:
- First-generation ADCs provided crucial lessons for technological advancement.
- Improvements in antibodies, cytotoxic compounds, and linkers have led to current successes.
- Numerous ADCs are in clinical development, showing promise.
Conclusions:
- ADCs represent a significant advancement in targeted cancer therapy.
- Ongoing research and emerging technologies continue to refine ADC efficacy and safety.
- ADCs offer a promising alternative to traditional chemotherapy with improved therapeutic indices.
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