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Small Molecules in the Treatment of Squamous Cell Carcinomas: Focus on Indirubins
Mirijam Schäfer1, Marie Luise Semmler1, Thoralf Bernhardt1
1Clinic and Policlinic for Dermatology and Venereology, University Medical Center Rostock, 18057 Rostock, Germany.
Abstract:
Skin cancers are the most common malignancies in the world. Among the most frequent skin cancer entities, squamous cell carcinoma (SCC) ranks second (~20%) after basal cell carcinoma (~77%). In early stages, a complete surgical removal of the affected tissue is carried out as standard therapy. To treat advanced and metastatic cancers, targeted therapies with small molecule inhibitors are gaining increasing attention. Small molecules are a heterogeneous group of protein regulators, which are produced by chemical synthesis or fermentation. The majority of them belong to the group of receptor tyrosine kinase inhibitors (RTKIs), which specifically bind to certain RTKs and directly influence the respective signaling pathway. Knowledge of characteristic molecular alterations in certain cancer entities, such as SCC, can help identify tumor-specific substances for targeted therapies. Most frequently, altered genes in SCC include TP53, NOTCH, EGFR, and CCND1. For example, the gene CCND1, which codes for cyclin D1 protein, is upregulated in nearly half of SCC cases and promotes proliferation of affected cells. A treatment with the small molecule 5'-nitroindirubin-monoxime (INO) leads to inhibition of cyclin D1 and thus inhibition of proliferation. As a component of Danggui Longhui Wan, a traditional Chinese medicine, indirubins are used to treat chronic diseases and have been shown to inhibit inflammatory reactions. Indirubins are pharmacologically relevant small molecules with proapoptotic and antiproliferative activity. In this review, we discuss the current literature on indirubin-based small molecules in cancer treatment. A special focus is on the molecular biology of squamous cell carcinomas, their alterations, and how these are rendered susceptible to indirubin-based small molecule inhibitors. The potential molecular mechanisms of the efficacy of indirubins in killing SCC cells will be discussed as well.
Insights
Small molecules like indirubins show promise for treating squamous cell carcinoma (SCC) by inhibiting cancer cell proliferation. This review explores their molecular mechanisms and potential in targeted cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Squamous cell carcinoma (SCC) is a common skin malignancy, second only to basal cell carcinoma.
- Advanced SCC requires targeted therapies, with small molecule inhibitors gaining attention.
- Key molecular alterations in SCC include TP53, NOTCH, EGFR, and CCND1.
Purpose of the Study:
- To review the literature on indirubin-based small molecules for cancer treatment.
- To focus on the molecular biology of SCC and its susceptibility to indirubin inhibitors.
- To discuss potential molecular mechanisms of indirubin efficacy in SCC.
Main Methods:
- Literature review of current research on indirubins and SCC.
- Analysis of molecular alterations in SCC relevant to targeted therapies.
- Discussion of pharmacological properties and mechanisms of action of indirubins.
Main Results:
- The gene CCND1, often upregulated in SCC, promotes cell proliferation.
- 5'-nitroindirubin-monoxime (INO) inhibits cyclin D1, thereby reducing proliferation.
- Indirubins, derived from traditional Chinese medicine, exhibit proapoptotic and antiproliferative activity.
Conclusions:
- Indirubin-based small molecules are promising for SCC targeted therapy.
- Understanding SCC molecular alterations is crucial for identifying effective indirubin inhibitors.
- Further research into indirubin mechanisms can optimize SCC treatment strategies.
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