Full-thickness skin rejuvenation by a novel dual-length microneedle radiofrequency device: A proof-of-concept study using human skin.

Lasers in surgery and medicine 2023 Vol.55(8) p. 758-768

Ahn GR, Jang YN, Lee SY, Kim WJ, Han HS, Yoo KH, Bae TH, Barn J, Seok J, Kim BJ

관련 도메인

Abstract

[BACKGROUND] A novel dual-length microneedle radiofrequency (DLMR) device has been developed to achieve full-thickness skin rejuvenation by stimulating the papillary and reticular dermis simultaneously. This device's dual-level targeting concept need to be validated on human skin, although its clinical efficacy has been demonstrated in a previous study.

[OBJECTIVES] This study evaluated the dual-depth targeting capability and the ability to induce rejuvenation in each layer of vertical skin anatomy, that is, the epidermis, papillary dermis, and reticular dermis, using full-thickness human facial skin samples.

[METHODS] Human facial skin samples were obtained from 13 Asian patients who had facelift surgery. To validate the dual-depth targeting concept, DMLR-treated skin samples were analyzed using a digital microscope, thermal imaging, and hematoloxylin and eosin (H&E) staining immediately after DLMR application. On samples stained with H&E, Masson's tricrome, and Verhoeff-Van Gieson, histological observation and morphometric analysis were performed. Total collagen assay (TCA) and quantitative real-time polymerase chain reaction (qPCR) were used to assess changes in total collagen content and mRNA expression levels of collagen types I/III and vimentin, respectively.

[RESULTS] The DLMR device successfully induced thermal stimulation in the papillary and reticular dermis. The thickness, stacks, and dermal-epidermal junction convolution of the epidermis treated with DLMR were significantly increased. Collagen bundles in the dermis treated with DLMR exhibited a notable increase in thickness, density, and horizontal alignment. Dermal collagen levels were significantly higher in the morphometric and TCA data, as well as in the qPCR data for dermal matrix proteins.

[CONCLUSIONS] Our DLMR device independently and precisely targeted the papillary and reticular dermis, and it appears to be an effective modality for implementing full-thickness rejuvenation.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 facelift 안면거상술 dict 1
해부 skin scispacy 1
해부 epidermis scispacy 1
해부 reticular dermis scispacy 1
해부 dermal-epidermal scispacy 1
해부 dermal matrix scispacy 1
합병증 skin samples scispacy 1
약물 TCA → Total collagen assay scispacy 1
약물 [BACKGROUND] A scispacy 1
약물 [OBJECTIVES] scispacy 1
약물 Verhoeff-Van scispacy 1
약물 [CONCLUSIONS] scispacy 1
질환 papillary scispacy 1
기타 human skin scispacy 1
기타 reticular dermis scispacy 1
기타 papillary dermis scispacy 1
기타 human facial skin samples scispacy 1
기타 patients scispacy 1
기타 hematoloxylin scispacy 1
기타 collagen scispacy 1
기타 vimentin scispacy 1
기타 dermis scispacy 1
기타 full-thickness scispacy 1

MeSH Terms

Humans; Rejuvenation; Skin; Epidermis; Dermis; Collagen; Skin Aging

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