The Procter & Gamble Company, Cincinnati, OH, United States of America.
Loftus Plastic Surgery Center, Fort Wright, KY, United States of America.
PLoS One. 2021 Nov 29;16(11):e0260095. doi: 10.1371/journal.pone.0260095. eCollection 2021.
Ablative fractional laser treatment is considered the gold standard for skin rejuvenation. In order to understand how fractional laser works to rejuvenate skin, we performed microarray profiling on skin biopsies to identify temporal and dose-response changes in gene expression following fractional laser treatment. The backs of 14 women were treated with ablative fractional laser (Fraxel®) and 4 mm punch biopsies were collected from an untreated site and at the treated sites 1, 3, 7, 14, 21 and 28 days after the single treatment. In addition, in order to understand the effect that multiple fractional laser treatments have on skin rejuvenation, several sites were treated sequentially with either 1, 2, 3, or 4 treatments (with 28 days between treatments) followed by the collection of 4 mm punch biopsies. RNA was extracted from the biopsies, analyzed using Affymetrix U219 chips and gene expression was compared between untreated and treated sites. We observed dramatic changes in gene expression as early as 1 day after fractional laser treatment with changes remaining elevated even after 1 month. Analysis of individual genes demonstrated significant and time related changes in inflammatory, epidermal, and dermal genes, with dermal genes linked to extracellular matrix formation changing at later time points following fractional laser treatment. When comparing the age-related changes in skin gene expression to those induced by fractional laser, it was observed that fractional laser treatment reverses many of the changes in the aging gene expression. Finally, multiple fractional laser treatments, which cover different regions of a treatment area, resulted in a sustained or increased dermal remodeling response, with many genes either differentially regulated or continuously upregulated, supporting previous observations that maximal skin rejuvenation requires multiple fractional laser treatments. In conclusion, fractional laser treatment of human skin activates a number of biological processes involved in wound healing and tissue regeneration.
消融性微剥脱激光治疗被认为是皮肤年轻化的金标准。为了了解微剥脱激光如何使皮肤年轻化,我们对皮肤活检标本进行了微阵列分析,以确定在微剥脱激光治疗后,随时间推移和剂量反应的基因表达变化。14 名女性的背部接受了消融性微剥脱激光(Fraxel®)治疗,从未治疗的部位和治疗后的部位(治疗后 1、3、7、14、21 和 28 天)采集 4mm 打孔活检标本。此外,为了了解多次微剥脱激光治疗对皮肤年轻化的影响,我们对多个部位进行了顺序治疗,每次治疗间隔 28 天,治疗次数分别为 1、2、3 或 4 次,然后采集 4mm 打孔活检标本。从活检标本中提取 RNA,使用 Affymetrix U219 芯片进行分析,并比较未治疗部位和治疗部位的基因表达。我们发现,微剥脱激光治疗后 1 天即可观察到基因表达的显著变化,即使在 1 个月后仍保持升高。对单个基因的分析表明,炎症、表皮和真皮基因的表达发生了显著的、与时间相关的变化,真皮基因与细胞外基质形成的变化在微剥脱激光治疗后更晚的时间点出现。将皮肤基因表达的年龄相关性变化与微剥脱激光诱导的变化进行比较后,观察到微剥脱激光治疗逆转了许多与衰老相关的基因表达变化。最后,覆盖治疗区域不同部位的多次微剥脱激光治疗导致真皮重塑反应持续或增强,许多基因的表达要么差异调节,要么持续上调,这支持了之前的观察结果,即最大程度的皮肤年轻化需要多次微剥脱激光治疗。总之,人体皮肤的微剥脱激光治疗激活了参与伤口愈合和组织再生的许多生物学过程。