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Hedgehog pathway as a drug target: Smoothened inhibitors in development
1Division of Hematology/Oncology, Department of Internal Medicine, University of Kansas, Kansas City, MO, USA.
Abstract:
Emerging laboratory and clinical investigations demonstrate that Hedgehog signaling (Hh) represents a novel therapeutic target in various human cancers. This conserved signaling pathway precisely regulates self-renewal and terminal differentiation in embryonic development, but is typically silenced in adult tissues, with reactivation usually only during tissue repair. Aberrant Hh pathway signaling has been implicated in the pathogenesis, self-renewal, and chemotherapy resistance of a growing number of solid and hematologic malignancies. Major components of the Hh pathway include the Hh ligands (Sonic, Desert, and Indian), the transmembrane receptor Patched, the signal transducer Smoothened (Smo), and transcription factors Gli1-3 which regulate the transcription of Hh target genes. Mutations in Hh pathway genes, increased Hh signaling in tumor stroma, and Hh overexpression in self-renewing cells (cancer stem cells) have been described, and these different modes of Hh signaling have implications for the design of Hh pathway inhibitors and their integration into conventional treatment regimens. Discovery of a naturally-occurring Smo inhibitor, cyclopamine, and the identification of Hh pathway mutations and over expression in cancer cells prompted the development of several cyclopamine derivatives. Encouraging laboratory and in vivo data has resulted in Phase I and II clinical trials of Smo inhibitors. In this review, we will discuss the current understanding of Hh pathway signaling in malignancy and Smo antagonists in development. Recent data with these agents shows that they are well-tolerated and may be effective for subsets of patients. Challenges remain for appropriate patient selection and the optimal combination and sequence of these targeted therapies into current treatment paradigms.
Insights
Hedgehog (Hh) signaling is a novel cancer target. Inhibitors targeting Smoothened (Smo) show promise in clinical trials for cancer patients, with good tolerance and potential efficacy in specific groups.
Area of Science:
- Oncology
- Molecular Biology
- Developmental Biology
Background:
- Hedgehog (Hh) signaling is crucial for embryonic development, regulating self-renewal and differentiation.
- This pathway is typically silenced in adult tissues but reactivates during repair.
- Aberrant Hh signaling contributes to cancer development, self-renewal, and chemotherapy resistance in various malignancies.
Purpose of the Study:
- To review the role of Hh pathway signaling in cancer.
- To discuss Smoothened (Smo) antagonists as potential cancer therapeutics.
- To explore the implications of Hh signaling in cancer stem cells and treatment resistance.
Main Methods:
- Review of laboratory and clinical investigations on Hh signaling in cancer.
- Analysis of the components and regulation of the Hh pathway (ligands, Patched, Smo, Gli transcription factors).
- Examination of Smo inhibitors, including cyclopamine and its derivatives, in preclinical and clinical studies.
Main Results:
- Hh pathway components and mutations are implicated in cancer pathogenesis.
- Smo inhibitors have demonstrated good tolerability and potential efficacy in early-phase clinical trials.
- Different modes of Hh signaling in tumors (stroma, cancer stem cells) influence therapeutic strategies.
Conclusions:
- Hedgehog signaling is a validated therapeutic target in oncology.
- Smo antagonists are a promising class of targeted cancer therapies.
- Further research is needed for optimal patient selection and integration of Hh inhibitors into treatment regimens.
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