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Angiogenesis inhibitors in clinical development for lung cancer
Roy S Herbst1, Manuel Hidalgo, A Scott Pierson
1University of Texas M.D. Anderson Cancer Center, Houston, TX, USA.
Abstract:
The use of tumor angiogenesis as a therapeutic target is based on extensive literature showing the dependence of tumors on the process of angiogenesis for growth, invasion, and metastasis. Seminal work performed by Folkman three decades ago determined that tumors beyond the size of approximately 2 mm require angiogenesis for subsequent growth and development. This basic hypothesis stimulated research in the field of angiogenesis and has resulted in the identification of factors that both enhance and inhibit this "angiogenic switch." The intent of this article is to present data on several angiogenesis inhibitors that are currently undergoing clinical evaluation in cancer patients. These agents may be particularly useful in the treatment of lung cancer, both as adjunctive therapy in early-stage or locally advanced disease, as well as in combination strategies with platinum-based therapy in metastatic disease. Although angiogenesis inhibitors have been in clinical trials for the past decade, there has been a shift in recent years towards the development of more mechanism-based and receptor-targeted agents. Interestingly, no antiangiogenic agent has been approved as such for use in cancer, perhaps because of the challenges involved in the clinical development of these novel agents. These include the potential requirement for long-term administration, difficulties in deriving biologically efficacious doses in early clinical trials, and the inability to use tumor regression as a primary endpoint in phase II trials.
Insights
Tumor angiogenesis is crucial for cancer growth, leading to the development of angiogenesis inhibitors. These agents show promise in lung cancer treatment but face clinical development challenges.
Area of Science:
- Oncology
- Vascular Biology
Background:
- Tumors rely on angiogenesis for growth, invasion, and metastasis.
- The "angiogenic switch" is a key process in tumor development.
- Folkman's research established the need for angiogenesis in tumors >2mm.
Purpose of the Study:
- To present data on angiogenesis inhibitors in clinical trials for cancer.
- To explore the potential of these agents in lung cancer treatment.
- To discuss the evolution towards targeted antiangiogenic therapies.
Main Methods:
- Review of clinical trial data for angiogenesis inhibitors.
- Analysis of therapeutic strategies for lung cancer using these agents.
- Discussion of challenges in antiangiogenic agent development.
Main Results:
- Several angiogenesis inhibitors are in clinical evaluation.
- Potential utility in early-stage and metastatic lung cancer.
- Shift towards mechanism-based and receptor-targeted agents.
Conclusions:
- Angiogenesis inhibitors offer a promising therapeutic avenue for cancer, particularly lung cancer.
- Clinical development faces hurdles including dosing, administration, and endpoint selection.
- No antiangiogenic agent is currently approved, highlighting ongoing research needs.