Jung YeonGyun, Kim Ikwhan, Jung Da-Ryung, Ha Ji Hoon, Lee Eun Kyung, Kim Jin Mo, Kim Jin Young, Jang Jun-Hwan, Bae Jun-Tae, Shin Jae-Ho, Cho Yoon Soo
Burn Institute, Hangang Sacred Heart Hospital, Hallym University College of Medicine, Seoul 07247, Republic of Korea.
Department of Integrative Biology, Kyungpook National University, Daegu 41566, Republic of Korea.
Microorganisms. 2024 Oct 29;12(11):2179. doi: 10.3390/microorganisms12112179.
Skin aging involves biomechanical changes like decreased elasticity, increased wrinkle formation, and altered barrier function. The skin microbiome significantly impacts this process. Here, we investigated the effects of decreased abundance and increase in other skin microorganisms on skin biomechanical properties in 60 healthy Koreans from Seoul, divided into younger (20-29 years) and older (60-75 years) groups. Metagenomic sequencing and skin assessments showed that the older group exhibited decreased dominance and increased microbial diversity, correlating with reduced skin elasticity and increased wrinkles. In the younger age group, the enriched pathways included zeatin biosynthesis, distinct biotin metabolism pathways, and cofactor and vitamin metabolism in the younger age group, whereas pathways related to lipid metabolism, energy metabolism, and responses to environmental stressors, including UV damage and pollution, were enriched in the older group, according to functional analysis results. Network analysis indicated higher microbial connectivity in the younger group, suggesting a more stable community, whereas the older group's community displayed higher modularity, indicating more independent and specialized clusters. This study enhances our understanding of the impact of skin microbiome changes on skin aging, particularly the anti-aging effects of . Future research should focus on the physiological mechanisms of skin microbiota on skin aging and explore therapeutic potentials to enhance skin health.
皮肤老化涉及生物力学变化,如弹性降低、皱纹形成增加和屏障功能改变。皮肤微生物群对这一过程有显著影响。在此,我们调查了60名来自首尔的健康韩国人(分为年轻组(20 - 29岁)和老年组(60 - 75岁))中皮肤微生物丰度降低和其他皮肤微生物增加对皮肤生物力学特性的影响。宏基因组测序和皮肤评估表明,老年组微生物优势度降低且微生物多样性增加,这与皮肤弹性降低和皱纹增加相关。功能分析结果显示,年轻组中富集的通路包括玉米素生物合成、独特的生物素代谢通路以及辅因子和维生素代谢,而老年组中与脂质代谢、能量代谢以及对包括紫外线损伤和污染在内的环境应激源的反应相关的通路富集。网络分析表明年轻组中微生物连通性更高,表明群落更稳定,而老年组的群落显示出更高的模块性,表明有更多独立和专门的簇。这项研究增进了我们对皮肤微生物群变化对皮肤老化影响的理解,特别是对……的抗衰老作用的理解。未来的研究应聚焦于皮肤微生物群对皮肤老化的生理机制,并探索增强皮肤健康的治疗潜力。