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Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Selumetinib for the treatment of cancer
Kristen Keon Ciombor1, Tanios Bekaii-Saab
1The Ohio State University Comprehensive Cancer Center, Division of Medical Oncology, Department of Medicine , Columbus, OH , USA.
Abstract:
Introduction: The MAPK pathway is essential for regulation of cellular proliferation, differentiation and survival. Multiple human cancers have demonstrated activation of Raf-mitogen-activated kinase kinase (MEK)-extracellular signal-related kinase signaling, a hallmark of these tumors. Efforts to inhibit various protein kinases in this pathway have led to the development of MEK inhibitors. Selumetinib is one such drug, functioning as an oral, selective non-ATP-competitive MEK1/2 inhibitor. Areas covered: In this article, the authors discuss the underlying biology of MEK inhibition and its rationale in cancer treatment. Furthermore, the authors summarize the clinical development of selumetinib in various tumor types, from initial Phase I studies to randomized Phase II studies, both as monotherapy or in combination with other chemotherapeutics. Expert opinion: Given the frequency of activated MAPK signaling in multiple tumor types, the potent MEK inhibitor selumetinib had strong preclinical and early clinical rationale, particularly in those tumors harboring KRAS or BRAF mutations. While efficacy signals have been seen in various tumor types treated with selumetinib, better biomarkers are needed to select patients most likely to respond favorably to this agent. Furthermore, combinatorial therapy with selumetinib and other targeted agents can likely be optimized to maximize the antitumor effect of inhibiting RAS/MAPK signaling.
Insights
Selumetinib, a MEK inhibitor, shows promise in treating cancers with activated MAPK signaling, especially those with KRAS or BRAF mutations. Further research is needed to identify optimal biomarkers and combination therapies for improved patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The MAPK pathway is crucial for cell growth and survival.
- Aberrant MAPK signaling, particularly Raf-MEK-ERK, is common in human cancers.
- MEK inhibitors represent a targeted approach to cancer therapy.
Purpose of the Study:
- To review the biological basis and rationale for MEK inhibition in cancer.
- To summarize the clinical development of selumetinib.
- To discuss the potential of selumetinib in various cancer types.
Main Methods:
- Review of preclinical data and clinical trial results (Phase I and II) for selumetinib.
- Analysis of selumetinib's efficacy as monotherapy and in combination regimens.
- Discussion of the role of KRAS and BRAF mutations in MEK inhibitor response.
Main Results:
- Selumetinib is an oral, selective, non-ATP-competitive MEK1/2 inhibitor.
- Clinical studies have investigated selumetinib in diverse tumor types.
- Efficacy signals have been observed, particularly in tumors with specific mutations.
Conclusions:
- Selumetinib demonstrates preclinical and early clinical rationale for targeting MAPK-driven cancers.
- Biomarker development is essential for patient selection.
- Optimizing combination therapies may enhance antitumor effects.
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