From single- to multi-target drugs in cancer therapy: when aspecificity becomes an advantage
1Division of Molecular Oncology, Institute for Cancer Research and Treatment (IRCC), University of Turin Medical School, Str. Provinciale 142, 10060, Candiolo (Torino), Italy. annalisa.petrelli@ircc.it
Abstract:
Targeted therapies by means of compounds that inhibit a specific target molecule represent a new perspective in the treatment of cancer. In contrast to conventional chemotherapy which acts on all dividing cells generating toxic effects and damage of normal tissues, targeted drugs allow to hit, in a more specific manner, subpopulations of cells directly involved in tumor progression. Molecules controlling cell proliferation and death, such as Tyrosine Kinase Receptors (RTKs) for growth factors, are among the best targets for this type of therapeutic approach. Two classes of compounds targeting RTKs are currently used in clinical practice: monoclonal antibodies and tyrosine kinase inhibitors. The era of targeted therapy began with the approval of Trastuzumab, a monoclonal antibody against HER2, for treatment of metastatic breast cancer, and Imatinib, a small tyrosine kinase inhibitor targeting BCR-Abl, in Chronic Myeloid Leukemia. Despite the initial enthusiasm for the efficacy of these treatments, clinicians had to face soon the problem of relapse, as almost invariably cancer patients developed drug resistance, often due to the activation of alternative RTKs pathways. In this view, the rationale at the basis of targeting drugs is radically shifting. In the past, the main effort was aimed at developing highly specific inhibitors acting on single RTKs. Now, there is a general agreement that molecules interfering simultaneously with multiple RTKs might be more effective than single target agents. With the recent approval by FDA of Sorafenib and Sunitinib--targeting VEGFR, PDGFR, FLT-3 and c-Kit--a different scenario has been emerging, where a new generation of anti-cancer drugs, able to inhibit more than one pathway, would probably play a major role.
Insights
Targeted cancer therapies are shifting from single-molecule inhibitors to multi-target drugs. This new approach aims to overcome drug resistance by simultaneously inhibiting multiple Tyrosine Kinase Receptors (RTKs) pathways involved in tumor progression.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Conventional chemotherapy causes widespread toxicity.
- Targeted therapies offer greater specificity against cancer cells.
- Tyrosine Kinase Receptors (RTKs) are key regulators of cell proliferation and survival.
Purpose of the Study:
- To review the evolution of targeted cancer therapy.
- To highlight the challenges of drug resistance in cancer treatment.
- To discuss the emerging strategy of multi-target RTK inhibition.
Main Methods:
- Review of clinical practice and drug approvals.
- Analysis of mechanisms underlying cancer drug resistance.
- Examination of the rationale for developing multi-target inhibitors.
Main Results:
- Initial targeted therapies (e.g., Trastuzumab, Imatinib) showed efficacy but faced resistance.
- Drug resistance often arises from the activation of alternative RTK pathways.
- Newer drugs (e.g., Sorafenib, Sunitinib) target multiple RTKs, indicating a shift in therapeutic strategy.
Conclusions:
- The development of multi-target RTK inhibitors represents a significant advancement in cancer treatment.
- Simultaneous inhibition of multiple pathways is a promising strategy to overcome drug resistance.
- Future cancer therapies will likely focus on broad-spectrum RTK inhibition for improved efficacy.
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