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Effects of the Ultra-High-Frequency Electrical Field Radiofrequency Device on Mouse Skin: A Histologic and Molecular Study.

作者信息

Kim Miri, Kim Kyung-Eun, Jeong Seo-Won, Hwang Se Won, Jo Hyunmu, Lee Jahyung, Cho Daeho, Park Hyun Jeong

机构信息

Seoul, Republic of Korea; and Mercersburg, Pa.

From the Department of Dermatology, Yeouido St. Mary's Hospital, the Catholic University of Korea; the Department of Life Science, Sookmyung Women's University; and Mercersburg Academy.

出版信息

Plast Reconstr Surg. 2016 Aug;138(2):248e-255e. doi: 10.1097/PRS.0000000000002364.

DOI:10.1097/PRS.0000000000002364
PMID:27465186
Abstract

BACKGROUND

Radiofrequency technology is one of the most recently developed methods for noninvasive skin tightening and facial contouring, and works by generating thermal energy in the deep dermis. Although clinical improvements have been reported using radiofrequency devices, there are few histologic and molecular studies about the mechanisms of dermal collagen remodeling. The authors investigated the histologic effects of an ultra-high-frequency electrical field (40.68 MHz) radiofrequency device (Polargen) on collagen remodeling in hairless mouse skin and evaluated its relative molecular mechanism.

METHODS

The radiofrequency was applied to the dorsal skin of hairless mice three times per week for 2 weeks. At 21 days after initial treatment, treated skin and nontreated control skin samples were excised for semiquantitative analysis of histologic features, including collagen. The authors also checked the mRNA expression levels of collagen type 1, transforming growth factor (TGF)-β, matrix metalloproteinase-1, vascular endothelial growth factor, tumor necrosis factor-α, and interleukin-1.

RESULTS

Histologic examination revealed epidermal hyperplasia, increased collagen staining, and fat atrophy in treated skin area compared with the nontreated skin area. In addition, mRNA expression of collagen type І, TGF-β, and vascular endothelial growth factor in radiofrequency-treated areas was significantly increased compared with that in untreated control areas (p < 0.05, p < 0.05, and p < 0.01, respectively).

CONCLUSIONS

These results suggest that the device may facilitate replacement of subcutaneous fat tissue with new collagen in association with the increased mRNA levels in TGF-β and vascular endothelial growth factor. Therefore, this device may effectively reduce adipose tissue and achieve facial contouring in addition to skin tightening.

摘要

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