Angiopoietin-related growth factor (AGF) promotes epidermal proliferation, remodeling, and regeneration

Y Oike, K Yasunaga, Y Ito… - Proceedings of the …, 2003 - National Acad Sciences
Y Oike, K Yasunaga, Y Ito, S Matsumoto, H Maekawa, T Morisada, F Arai, N Nakagata…
Proceedings of the National Academy of Sciences, 2003National Acad Sciences
We report here the identification of an angiopoietin-related growth factor (AGF). To examine
the biological function of AGF in vivo, we created transgenic mice expressing AGF in
epidermal keratinocytes (K14-AGF). K14-AGF mice exhibited swollen and reddish ears,
nose and eyelids. Histological analyses of K14-AGF mice revealed significantly thickened
epidermis and a marked increase in proliferating epidermal cells as well as vascular cells in
the skin compared with nontransgenic controls. In addition, we found rapid wound closure in …
We report here the identification of an angiopoietin-related growth factor (AGF). To examine the biological function of AGF in vivo, we created transgenic mice expressing AGF in epidermal keratinocytes (K14-AGF). K14-AGF mice exhibited swollen and reddish ears, nose and eyelids. Histological analyses of K14-AGF mice revealed significantly thickened epidermis and a marked increase in proliferating epidermal cells as well as vascular cells in the skin compared with nontransgenic controls. In addition, we found rapid wound closure in the healing process and an unusual closure of holes punched in the ears of K14-AGF mice. Furthermore, we observed that AGF is expressed in platelets and mast cells, and detected at wounded skin, whereas there was no expression of AGF detected in normal skin tissues, suggesting that AGF derived from these infiltrated cells affects epidermal proliferation and thereby plays a role in the wound healing process. These findings demonstrate that biological functions of AGF in epidermal keratinocytes could lead to novel therapeutic strategies for wound care and epidermal regenerative medicine.
National Acad Sciences