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In Vivo Immunofluorescence Localization for Assessment of Therapeutic and Diagnostic Antibody Biodistribution in Cancer Research
Published on: September 16, 2019
Antibody-mediated delivery of therapeutics for cancer therapy
Sagun Parakh1,2,3, Adam C Parslow1,3, Hui K Gan1,2,3
1a Tumour Targeting Laboratory , Olivia Newton-John Cancer Research Institute , Melbourne , Australia.
Introduction:
Antibody-conjugated therapies (ACTs) combine the specificity of monoclonal antibodies to target cancer cells directly with highly potent payloads, often resulting in superior efficacy and/or reduced toxicity. This represents a new approach to the treatment of cancer. There have been highly promising clinical trial results using this approach with improvements in linker and payload technology. The breadth of current trials examining ACTs in haematological malignancies and solid tumours indicate the potential for clinical impact.
Areas Covered:
This review will provide an overview of ACTs currently in clinical development as well as the principles of antibody delivery and types of payloads used, including cytotoxic drugs, radiolabelled isotopes, nanoparticle-based siRNA particles and immunotoxins.
Expert Opinion:
The focus of much of the clinical activity in ACTs has, understandably, been on their use as a monotherapy or in combination with standard of care drugs. This will continue, as will the search for better targets, linkers and payloads. Increasingly, as these drugs enter routine clinical care, important questions will arise regarding how to optimise ACT treatment approaches, including investigation of resistance mechanisms, biomarker and patient selection strategies, understanding of the unique toxicities of these drugs, and combinatorial approaches with standard therapies as well as emerging therapeutic agents like immunotherapy.
Insights
Antibody-conjugated therapies (ACTs) offer a novel cancer treatment approach by combining targeted antibodies with potent payloads. Ongoing research focuses on optimizing ACTs for improved efficacy and reduced toxicity in various cancers.
Area of Science:
- Oncology
- Pharmacology
- Biotechnology
Background:
- Antibody-conjugated therapies (ACTs) represent a significant advancement in cancer treatment, leveraging monoclonal antibodies for targeted delivery of potent payloads.
- Improvements in linker and payload technology have led to promising clinical trial results, indicating ACTs' potential impact on both hematological malignancies and solid tumors.
Purpose of the Study:
- To provide a comprehensive overview of antibody-conjugated therapies (ACTs) currently in clinical development.
- To discuss the fundamental principles of antibody delivery and the diverse range of payloads utilized in ACTs.
Main Methods:
- Review of current clinical trials and research on antibody-conjugated therapies (ACTs).
- Analysis of antibody delivery mechanisms and payload types, including cytotoxic drugs, radiolabeled isotopes, siRNA nanoparticles, and immunotoxins.
Main Results:
- ACTs have demonstrated significant potential in clinical trials for various cancers.
- Advancements in linker and payload technology are enhancing the efficacy and safety profile of ACTs.
Conclusions:
- While ACTs show promise as monotherapy or in combination with standard drugs, further research is needed.
- Future directions include optimizing treatment strategies, understanding resistance mechanisms, identifying biomarkers, and exploring combinations with immunotherapy.
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