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.

Abstract

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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