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Updated: Feb 14, 2026

Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
Pharmacological TLR4 Antagonism Using Topical Resatorvid Blocks Solar UV-Induced Skin Tumorigenesis in SKH-1 Mice
Karen Blohm-Mangone1, Nichole B Burkett1, Shekha Tahsin1
1The University of Arizona Cancer Center, Tucson, Arizona.
Abstract:
An urgent need exists for the development of more efficacious molecular strategies targeting nonmelanoma skin cancer (NMSC), the most common malignancy worldwide. Inflammatory signaling downstream of Toll-like receptor 4 (TLR4) has been implicated in several forms of tumorigenesis, yet its role in solar UV-induced skin carcinogenesis remains undefined. We have previously shown in keratinocyte cell culture and SKH-1 mouse epidermis that topical application of the specific TLR4 antagonist resatorvid (TAK-242) blocks acute UV-induced AP-1 and NF-κB signaling, associated with downregulation of inflammatory mediators and MAP kinase phosphorylation. We therefore explored TLR4 as a novel target for chemoprevention of UV-induced NMSC. We selected the clinical TLR4 antagonist resatorvid based upon target specificity, potency, and physicochemical properties. Here, we confirm using ex vivo permeability assays that topical resatorvid can be effectively delivered to skin, and using in vivo studies that topical resatorvid can block UV-induced AP-1 activation in mouse epidermis. We also report that in a UV-induced skin tumorigenesis model, topical resatorvid displays potent photochemopreventive activity, significantly suppressing tumor area and multiplicity. Tumors harvested from resatorvid-treated mice display reduced activity of UV-associated signaling pathways and a corresponding increase in apoptosis compared with tumors from control animals. Further mechanistic insight on resatorvid-based photochemoprevention was obtained from unsupervised hierarchical clustering analysis of protein readouts via reverse-phase protein microarray revealing a significant attenuation of key UV-induced proteomic changes by resatorvid in chronically treated high-risk SKH-1 skin prior to tumorigenesis. Taken together, our data identify TLR4 as a novel molecular target for topical photochemoprevention of NMSC. Cancer Prev Res; 11(5); 265-78. ©2018 AACRSee related editorial by Sfanos, p. 251.
Insights
Topical resatorvid, a Toll-like receptor 4 (TLR4) antagonist, effectively prevents nonmelanoma skin cancer (NMSC) development in mice. This study highlights TLR4 as a novel molecular target for UV-induced skin cancer chemoprevention.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Nonmelanoma skin cancer (NMSC) is the most common malignancy globally, necessitating novel chemopreventive strategies.
- The role of Toll-like receptor 4 (TLR4) inflammatory signaling in UV-induced skin carcinogenesis was previously undefined.
- Previous research indicated that TLR4 antagonist resatorvid (TAK-242) inhibits acute UV-induced signaling in skin cells and mouse models.
Purpose of the Study:
- To investigate Toll-like receptor 4 (TLR4) as a novel molecular target for the chemoprevention of UV-induced nonmelanoma skin cancer (NMSC).
- To evaluate the efficacy of topical resatorvid, a specific TLR4 antagonist, in preventing UV-induced skin tumorigenesis.
Main Methods:
- Confirmation of topical resatorvid skin permeability using ex vivo assays.
- In vivo studies to assess resatorvid's ability to block UV-induced AP-1 activation in mouse epidermis.
- Evaluation of resatorvid's photochemopreventive activity in a UV-induced skin tumorigenesis model in SKH-1 mice.
- Proteomic analysis using reverse-phase protein microarray to understand mechanistic insights.
Main Results:
- Topical resatorvid demonstrated effective skin delivery and successfully blocked UV-induced AP-1 activation in vivo.
- Resatorvid significantly suppressed tumor area and multiplicity in a UV-induced skin cancer model.
- Resatorvid-treated tumors exhibited reduced UV-associated signaling pathway activity and increased apoptosis.
- Proteomic analysis revealed resatorvid attenuated key UV-induced proteomic changes in chronically treated skin.
Conclusions:
- Toll-like receptor 4 (TLR4) is identified as a novel molecular target for the topical photochemoprevention of nonmelanoma skin cancer (NMSC).
- Topical resatorvid exhibits potent photochemopreventive activity against UV-induced skin tumorigenesis.
- These findings support the development of TLR4-targeted therapies for NMSC prevention.
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