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Updated: Aug 16, 2026

Potentiation of Anticancer Antibody Efficacy by Antineoplastic Drugs: Detection of Antibody-drug Synergism Using the Combination Index Equation
Published on: January 19, 2019
Anticancer therapeutics: "Addictive" targets, multi-targeted drugs, new drug combinations
Henk J Broxterman1, Nafsika H Georgopapadakou
1Department Of Medical Oncology, Vrije Universiteit Medical Center, De Boelelaan 1117, 1081 HV Amsterdam, The Netherlands. H.Broxterman@VUmc.nl
Abstract:
The annual meeting of the American Association for Cancer Research (AACR) provided a panoramic view of new developments and trends in cancer research. In the area of new drug development, a recurrent theme was receptor tyrosine kinase (TK) inhibitors, with multi-targeted, small molecule inhibitors - highly potent against a family of receptors such as vascular endothelial growth factor receptor (VEGFR), platelet-derived growth factor (PDGFR) and the receptor tyrosine kinase KIT - taking centre stage. Several agents interfering with intracellular targets that are components of key oncogenic signaling pathways, such as RAF kinase, phosphatidylinositol 3-kinase (PI3K)/Akt or Src, are in preclinical and early clinical development. "Addictive" targets, such as the Bcr-Abl fusion protein in chronic myeloid leukemia (CML), are critical for maintaining the malignant phenotype and hence represent an Achilles' heel for selective drugs. Significantly, novel targeted therapeutics currently in clinical development do not generally lead to cures or long-term survival for most intractable cancers; resistance may eventually develop. Anti-metastatic agents and anti-adhesion drugs, which collectively act on tumor cell-stroma interactions (anti-stromal therapy), are also actively pursued. In addition, forms of cell death other than apoptosis - cellular senescence, cancer cell-specific cell-cycle processes and the hypoxic environment - are being explored in order to identify novel targets for more selective therapy. This report also highlights developments aimed at more safe and effective drug combinations. Evaluating drug combinations, and elucidating the rationale for combinations of old (cytotoxic) and new (biological) anticancer agents, are promising research areas and taxane-based combinations are presented as examples. The report is based on presentations at AACR 2005 and related publications of the first half of 2005.
Insights
New cancer research highlights targeted therapies like receptor tyrosine kinase inhibitors and intracellular pathway modulators. While promising, these treatments face challenges with resistance and long-term efficacy for many cancers.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- The American Association for Cancer Research (AACR) annual meeting showcased advancements in cancer research.
- Key areas included novel drug development and therapeutic strategies.
Purpose of the Study:
- To summarize emerging trends and developments in cancer research presented at AACR 2005.
- To highlight new drug targets and combination therapies.
Main Methods:
- Review of presentations at AACR 2005 and publications from early 2005.
- Focus on receptor tyrosine kinase (TK) inhibitors and intracellular signaling pathway targets.
Main Results:
- Multi-targeted TK inhibitors (e.g., VEGFR, PDGFR, KIT) are prominent.
- Agents targeting intracellular pathways (RAF kinase, PI3K/Akt, Src) are in development.
- Exploration of "addictive" targets like Bcr-Abl for selective drug development.
- Development of anti-metastatic and anti-stromal therapies.
- Investigation of alternative cell death pathways (senescence) and tumor microenvironment (hypoxia) for novel targets.
- Research into safe and effective drug combinations, including cytotoxic and biological agents.
Conclusions:
- Novel targeted therapeutics show promise but do not yet offer cures for most intractable cancers, with resistance being a concern.
- Combination therapies, particularly taxane-based ones, are a promising area for enhancing efficacy.
- Identifying novel targets through diverse mechanisms like targeting tumor-stroma interactions and alternative cell death pathways is crucial for advancing cancer treatment.
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