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Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
Topically Applied Carvedilol Attenuates Solar Ultraviolet Radiation Induced Skin Carcinogenesis
Kevin M Huang1, Sherry Liang1, Steven Yeung1
1Department of Pharmaceutical Sciences, College of Pharmacy, Western University of Health Sciences, Pomona, California.
Abstract:
In previous studies, the β-blocker carvedilol inhibited EGF-induced epidermal cell transformation and chemical carcinogen-induced mouse skin hyperplasia. As exposure to ultraviolet (UV) radiation leads to skin cancer, the present study examined whether carvedilol can prevent UV-induced carcinogenesis. Carvedilol absorbs UV like a sunscreen; thus, to separate pharmacological from sunscreen effects, 4-hydroxycarbazole (4-OHC), which absorbs UV to the same degree as carvedilol, served as control. JB6 P+ cells, an established epidermal model for studying tumor promotion, were used for evaluating the effect of carvedilol on UV-induced neoplastic transformation. Both carvedilol and 4-OHC (1 μmol/L) blocked transformation induced by chronic UV (15 mJ/cm2) exposure for 8 weeks. However, EGF-mediated transformation was inhibited by only carvedilol but not by 4-OHC. Carvedilol (1 and 5 μmol/L), but not 4-OHC, attenuated UV-induced AP-1 and NF-κB luciferase reporter activity, suggesting a potential anti-inflammatory activity. In a single-dose UV (200 mJ/cm2)-induced skin inflammation mouse model, carvedilol (10 μmol/L), applied topically after UV exposure, reduced skin hyperplasia and the levels of cyclobutane pyrimidine dimers, IL1β, IL6, and COX-2 in skin. In SKH-1 mice exposed to gradually increasing levels of UV (50-150 mJ/cm2) three times a week for 25 weeks, topical administration of carvedilol (10 μmol/L) after UV exposure increased tumor latency compared with control (week 18 vs. 15), decreased incidence and multiplicity of squamous cell carcinomas, while 4-OHC had no effect. These data suggest that carvedilol has a novel chemopreventive activity and topical carvedilol following UV exposure may be repurposed for preventing skin inflammation and cancer. Cancer Prev Res; 10(10); 598-606. ©2017 AACR.
Insights
The beta-blocker carvedilol prevents skin cancer by reducing inflammation and DNA damage caused by UV radiation. This study suggests carvedilol may be repurposed for preventing UV-induced skin inflammation and cancer.
Area of Science:
- Dermatology
- Oncology
- Pharmacology
Background:
- Ultraviolet (UV) radiation is a known carcinogen causing skin cancer.
- The beta-blocker carvedilol has previously shown inhibitory effects on epidermal cell transformation and skin hyperplasia.
- Carvedilol possesses UV-absorbing properties, necessitating a control to distinguish pharmacological effects from sunscreen effects.
Purpose of the Study:
- To investigate the potential of carvedilol in preventing UV-induced carcinogenesis.
- To differentiate the chemopreventive effects of carvedilol from its UV-absorbing properties.
- To evaluate carvedilol's efficacy in reducing UV-induced skin inflammation and tumor development.
Main Methods:
- JB6 P+ cells were used to assess carvedilol's effect on UV-induced neoplastic transformation.
- 4-hydroxycarbazole (4-OHC) served as a control for UV absorption.
- Mouse models were employed to evaluate carvedilol's impact on UV-induced skin inflammation, DNA damage, and carcinogenesis.
Main Results:
- Both carvedilol and 4-OHC inhibited chronic UV-induced transformation in JB6 P+ cells.
- Carvedilol, but not 4-OHC, inhibited EGF-mediated transformation and reduced UV-induced AP-1 and NF-κB activity.
- Topical carvedilol reduced UV-induced skin hyperplasia, DNA damage, and inflammatory markers (IL1β, IL6, COX-2) in mice.
- In a chronic UV exposure mouse model, carvedilol increased tumor latency and decreased tumor incidence and multiplicity.
Conclusions:
- Carvedilol demonstrates novel chemopreventive activity against UV-induced skin carcinogenesis.
- The anti-carcinogenic effects of carvedilol are likely due to its pharmacological properties, not solely UV absorption.
- Topical carvedilol may be a potential therapeutic agent for preventing UV-induced skin inflammation and cancer.
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