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Updated: Jan 13, 2026

Cell Population Analyses During Skin Carcinogenesis
Published on: August 21, 2013
Resistance to SMO Inhibitors in Advanced Basal Cell Carcinoma: A Case Highlighting the Role of Molecular Tumor
Federica Papaccio1, Ramona Marrapodi1, Laura Eibenschutz2
1Laboratory of Cutaneous Physiopathology and Integrated Center of Metabolomics Research, San Gallicano Dermatological Institute, IRCCS, Via Elio Chianesi 53, 00144 Rome, Italy.
Abstract:
Basal cell carcinoma (BCC) is the most common skin cancer, predominantly affecting sun-exposed areas. It typically grows slowly and rarely metastasizes, though untreated cases can cause significant tissue destruction and morbidity. Its pathogenesis primarily involves dysregulation of the Hedgehog (HH) signaling pathway, mainly through mutations in PTCH1 or SMO genes, leading to chronic activation of downstream GLI transcription factors. Accordingly, current targeted therapies for locally advanced, unresectable, or metastatic BCC focus on SMO inhibition, using orally administered drugs such as vismodegib and sonidegib. Although these therapies have shown success, many patients develop resistance, with about 50% harboring mutated SMO. In numerous cases, genetic determinants (sometimes pre-existing) of resistance remain unidentified, complicating patient management. Here, we report a case of a 58-year-old female with advanced BCC who initially exhibited a favorable response to sonidegib but developed resistance after approximately one year. This resistance was not attributable to the acquired mutations in SMO but rather to intra-tumor heterogeneity and additional mutations in critical driver genes, including TP53, APC, FGFR1 and NOTCH1, which likely enable HH pathway inhibition. To our knowledge, this is the first report documenting a sonidegib resistance mechanism in BCC that is independent of HH pathway mutations. This case highlights the complexity of resistance mechanisms to HH inhibitors and underscores the critical need for comprehensive molecular tumor profiling prior to initiating targeted therapy.
Insights
Resistance to Hedgehog (HH) pathway inhibitors in advanced basal cell carcinoma (BCC) can occur through mechanisms beyond SMO mutations. This case highlights intra-tumor heterogeneity and other gene mutations as potential drivers of treatment failure in BCC.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Basal cell carcinoma (BCC) is the most common skin cancer, often driven by Hedgehog (HH) signaling pathway dysregulation.
- Targeted therapies like sonidegib inhibit SMO, a key component of the HH pathway, but resistance is a significant clinical challenge.
- SMO mutations are a known cause of resistance, but other mechanisms remain incompletely understood.
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