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Assessment of Acute Wound Healing using the Dorsal Subcutaneous Polyvinyl Alcohol Sponge Implantation and Excisional Tail Skin Wound Models.
Published on: March 25, 2020
Monocyte/macrophage androgen receptor suppresses cutaneous wound healing in mice by enhancing local TNF-alpha
Jiann-Jyh Lai1, Kuo-Pao Lai, Kuang-Hsiang Chuang
1George Whipple Lab for Cancer Research, Department of Pathology, Wilmot Cancer Center, University of Rochester Medical Center, Rochester, New York, USA.
Abstract:
Cutaneous wounds heal more slowly in elderly males than in elderly females, suggesting a role for sex hormones in the healing process. Indeed, androgen/androgen receptor (AR) signaling has been shown to inhibit cutaneous wound healing. AR is expressed in several cell types in healing skin, including keratinocytes, dermal fibroblasts, and infiltrating macrophages, but the exact role of androgen/AR signaling in these different cell types remains unclear. To address this question, we generated and studied cutaneous wound healing in cell-specific AR knockout (ARKO) mice. General and myeloid-specific ARKO mice exhibited accelerated wound healing compared with WT mice, whereas keratinocyte- and fibroblast-specific ARKO mice did not. Importantly, the rate of wound healing in the general ARKO mice was dependent on AR and not serum androgen levels. Interestingly, although dispensable for wound closure, keratinocyte AR promoted re-epithelialization, while fibroblast AR suppressed it. Further analysis indicated that AR suppressed wound healing by enhancing the inflammatory response through a localized increase in TNF-alpha expression. Furthermore, AR enhanced local TNF-alpha expression via multiple mechanisms, including increasing the inflammatory monocyte population, enhancing monocyte chemotaxis by upregulating CCR2 expression, and enhancing TNF-alpha expression in macrophages. Finally, targeting AR by topical application of a compound (ASC-J9) that degrades AR protein resulted in accelerated healing, suggesting a potential new therapeutic approach that may lead to better treatment of wound healing.
Insights
Androgen receptor (AR) signaling inhibits skin wound healing, particularly in males. Blocking AR in myeloid cells accelerated healing by reducing inflammation and increasing TNF-alpha, suggesting new therapeutic targets.
Area of Science:
- Dermatology
- Endocrinology
- Immunology
Background:
- Cutaneous wound healing is slower in elderly males than females, implicating sex hormones.
- Androgen receptor (AR) signaling inhibits skin wound repair, but its cell-specific roles are unclear.
Purpose of the Study:
- To investigate the cell-specific roles of AR in cutaneous wound healing.
- To elucidate the mechanisms by which AR signaling affects inflammation and healing.
Main Methods:
- Generated and analyzed cell-specific AR knockout (ARKO) mouse models for cutaneous wound healing.
- Assessed wound closure rates, re-epithelialization, inflammatory cell infiltration, and TNF-alpha expression.
- Utilized topical AR degradation compound (ASC-J9) for therapeutic assessment.
Main Results:
- General and myeloid-specific ARKO mice showed accelerated wound healing.
- Keratinocyte AR promoted re-epithelialization, while fibroblast AR suppressed it.
- AR signaling suppressed healing by increasing inflammation via TNF-alpha, enhanced monocyte recruitment (CCR2), and macrophage activation.
Conclusions:
- Myeloid cell AR signaling significantly inhibits cutaneous wound healing by promoting inflammation.
- Targeting AR, particularly in myeloid cells, offers a promising therapeutic strategy for enhancing wound repair.
