Melanoma
2 Results
- Original Article Tumor BiologyOpen Access
HPV8 Field Cancerization in a Transgenic Mouse Model Is due to Lrig1+ Keratinocyte Stem Cell Expansion
Journal of Investigative DermatologyVol. 137Issue 10p2208–2216Published online: June 5, 2017- Simone Lanfredini
- Carlotta Olivero
- Cinzia Borgogna
- Federica Calati
- Kathryn Powell
- Kelli-Jo Davies
- and others
Cited in Scopus: 22β-Human papillomaviruses (HPVs) cause near ubiquitous latent skin infection within long-lived hair follicle (HF) keratinocyte stem cells. In patients with epidermodysplasia verruciformis, β-HPV viral replication is associated with skin keratosis and cutaneous squamous cell carcinoma. To determine the role of HF keratinocyte stem cells in β-HPV-induced skin carcinogenesis, we utilized a transgenic mouse model in which the keratin 14 promoter drives expression of the entire HPV8 early region (HPV8tg). - Original Article AppendagesOpen Access
Effects of Imiquimod on Hair Follicle Stem Cells and Hair Cycle Progression
Journal of Investigative DermatologyVol. 136Issue 11p2140–2149Published online: July 1, 2016- Nicole Amberg
- Martin Holcmann
- Gabriel Stulnig
- Maria Sibilia
Cited in Scopus: 24Topical imiquimod (IMQ) application is widely used as a model for psoriasiform-like skin inflammation in mice. Although the effects on the epidermis are well characterized, it is unclear how IMQ affects hair follicles and cycling. Here we investigated how IMQ affects hair follicle stem cells and whether the timing of IMQ application influences the immune infiltrate. Our results show that IMQ application at mid and late telogen activated hair follicle stem cells leading to premature hair cycle entry (anagen), which was accompanied by massive infiltration of inflammatory macrophages and gamma delta T cells, whereas the number of the respective resident populations decreased.