Oxidative Stress Status and Its Relationship to Skin Aging.

Rachel Varga, Jeffrey Gross
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引用次数: 2

Abstract

Skin and cellular aging are impacted by various toxins in our environment such as air pollution, water contamination, an increased prevalence of light-emitting diodes, electromagnetic frequencies, various yeast and other fungi, parasitic infections, and mold and heavy metal toxicity. Basic topical skin care is insufficient to adequately protect an individual's integumentary system and other organs from these types of daily cellular stressors. These stressors impact the level of oxidative stressstatus (OSS). OSS is measurable through biomarker analysis of various body fluids including blood, saliva, urine, and breath. This poses a unique assessment challenge for aesthetic practitioners as the OSS of a patient impacts their overall aging process. Aesthetic practitioners observe the aging process through visual assessment of a patient's skin quality, skin barrier function, and the presence of solar lentigines, erythema, edema, telangiectasia, loss of collagen and elastin, bone density, and redistribution of subcutaneous tissue. Mitigating a patient's daily exposure to OS and its impacts on the skin, other organ tissues, and metabolism poses a unique challenge in medical aesthetic treatment planning. For this reason, the use of stem cells and exosomes is gaining popularity in aesthetic medicine. The purpose of this literature review is to highlight currently available research, applications, limitations, and mitigation strategies in reducing OSS on the integumentary system and aging processes.

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氧化应激状态及其与皮肤老化的关系。
皮肤和细胞老化受到环境中各种毒素的影响,如空气污染、水污染、发光二极管的日益普及、电磁频率、各种酵母和其他真菌、寄生虫感染、霉菌和重金属毒性。基本的局部皮肤护理不足以充分保护个人的皮肤系统和其他器官免受这些类型的日常细胞压力。这些应激源影响氧化应激状态(OSS)的水平。OSS可以通过各种体液的生物标记物分析来测量,包括血液、唾液、尿液和呼吸。这对审美从业者提出了一个独特的评估挑战,因为患者的OSS会影响他们的整体衰老过程。美容从业者通过视觉评估患者的皮肤质量、皮肤屏障功能、太阳痣、红斑、水肿、毛细血管扩张、胶原蛋白和弹性蛋白的丧失、骨密度和皮下组织的重新分布来观察衰老过程。减轻患者日常暴露于OS及其对皮肤、其他器官组织和新陈代谢的影响,对医学美容治疗计划提出了独特的挑战。因此,干细胞和外泌体的使用在美容医学中越来越受欢迎。本文献综述的目的是强调当前可用的研究、应用、限制和缓解策略,以减少OSS对皮肤系统和老化过程的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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