Role of Cutaneous Aquaporins in the Development of Xeroderma in Type 2 Diabetes

Ikarashi, Nobutomo and Mizukami, Nanaho and Pei, Chenchen and Uchino, Ryogo and Fujisawa, Izumi and Fukuda, Natsuko and Kon, Risako and Sakai, Hiroyasu and Kamei, Junzo (2021) Role of Cutaneous Aquaporins in the Development of Xeroderma in Type 2 Diabetes. Biomedicines, 9 (2). p. 104. ISSN 2227-9059

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Abstract

Xeroderma is induced by diabetes, reducing patients’ quality of life. We aimed to clarify the roles of cutaneous water channel aquaporin-3 (AQP3) in diabetic xeroderma using type 2 diabetes model db/db mice. Blood glucose levels were unchanged in 5-week-old db/db mice compared to db/+ mice (control mice), but the pathophysiology of type 2 diabetes was confirmed in 12-week-old db/db mice. The dermal water content and AQP3 expression in 5-week-old db/db mice were almost the same as those in the control mice. On the other hand, in 12-week-old db/db mice, the dermal water content and AQP3 expression were significantly decreased. The addition of glucose to HaCaT cells had no effect on AQP3, but tumor necrosis factor-α (TNF-α) decreased the AQP3 expression level. Blood TNF-α levels or skin inflammation markers in the 12-week-old db/db mice were significantly higher than those in control mice. AQP3 levels in the skin were decreased in type 2 diabetes, and this decrease in AQP3 may be one of the causes of xeroderma. Therefore, a substance that increases AQP3 may be useful for improving xeroderma. Additionally, a decrease in skin AQP3 may be triggered by inflammation. Therefore, anti-inflammatory drugs may be effective as new therapeutic agents for diabetic xerosis.

Item Type: Article
Subjects: Apsci Archives > Biological Science
Depositing User: Unnamed user with email support@apsciarchives.com
Date Deposited: 31 Dec 2022 07:21
Last Modified: 25 Sep 2023 05:27
URI: http://eprints.go2submission.com/id/eprint/5

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