Metabolic pathways of eicosanoids-derivatives of arachidonic acid and their significance in skin.

IF 9.2 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cellular & Molecular Biology Letters Pub Date : 2025-01-17 DOI:10.1186/s11658-025-00685-y
Michał Biernacki, Elżbieta Skrzydlewska
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Abstract

The skin is a barrier that protects the human body against environmental factors (physical, including solar radiation, chemicals, and pathogens). The integrity and, consequently, the effective metabolic activity of skin cells is ensured by the cell membrane, the important structural and metabolic elements of which are phospholipids. Phospholipids are subject to continuous transformation, including enzymatic hydrolysis (with the participation of phospholipases A, C, and D) to free polyunsaturated fatty acids (PUFAs), which under the influence of cyclooxygenases (COX1/2), lipoxygenases (LOXs), and cytochrome P450 (CYPs P450) are metabolized to various classes of oxylipins, depending on the type of PUFA being metabolized and the enzyme acting. The most frequently analyzed oxylipins, especially in skin cells, are eicosanoids, which are derivatives of arachidonic acid (AA). Their level depends on both environmental factors and endogenous metabolic disorders. However, they play an important role in homeostasis mechanisms related to the structural and functional integrity of the skin, including maintaining redox balance, as well as regulating inflammatory processes arising in response to endogenous and exogenous factors reaching skin cells. Therefore, it is believed that dysregulation of eicosanoid levels may contribute to the development of skin diseases, such as psoriasis or atopic dermatitis, which in turn suggests that targeted control of the generation of specific eicosanoids may have diagnostic significance and beneficial therapeutic effects. This review is the first systemic and very detailed approach presenting both the causes and consequences of changes in phospholipid metabolism leading to the generation of eicosanoids, changes in the level of which result in specific metabolic disorders in skin cells leading to the development of various diseases. At the same time, existing literature data indicate that further detailed research is necessary to understand a clear relationship between changes in the level of specific eicosanoids and the pathomechanisms of specific skin diseases, as well as to develop an effective diagnostic and therapeutic approach.

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花生四烯酸类二十烷酸衍生物的代谢途径及其在皮肤中的意义。
皮肤是保护人体免受环境因素(物理因素,包括太阳辐射、化学物质和病原体)影响的屏障。皮肤细胞的完整性和有效的代谢活性是由细胞膜保证的,细胞膜的重要结构和代谢元素是磷脂。磷脂经过连续的转化,包括酶水解(在磷脂酶A、C和D的参与下)生成游离的多不饱和脂肪酸(PUFAs),在环加氧酶(COX1/2)、脂加氧酶(LOXs)和细胞色素P450 (CYPs P450)的影响下,根据被代谢的PUFA类型和作用的酶的不同,被代谢成各种类型的氧脂素。最常分析的氧脂类,尤其是在皮肤细胞中,是类二十烷,它是花生四烯酸(AA)的衍生物。它们的水平取决于环境因素和内源性代谢紊乱。然而,它们在与皮肤结构和功能完整性相关的稳态机制中发挥重要作用,包括维持氧化还原平衡,以及调节因内源性和外源性因素到达皮肤细胞而引起的炎症过程。因此,我们认为类二十烷酸水平的失调可能导致牛皮癣或特应性皮炎等皮肤病的发生,这反过来表明,有针对性地控制特定类二十烷酸的产生可能具有诊断意义和有益的治疗效果。这篇综述是第一个系统和非常详细的方法,提出了磷脂代谢变化导致类二十烷酸产生的原因和后果,其水平的变化导致皮肤细胞中特定的代谢紊乱,导致各种疾病的发展。同时,现有文献资料表明,需要进一步深入细致的研究,以明确特定类二十醇类蛋白水平的变化与特定皮肤病的发病机制之间的关系,并制定有效的诊断和治疗方法。
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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来源期刊
Cellular & Molecular Biology Letters
Cellular & Molecular Biology Letters 生物-生化与分子生物学
CiteScore
11.60
自引率
13.30%
发文量
101
审稿时长
3 months
期刊介绍: Cellular & Molecular Biology Letters is an international journal dedicated to the dissemination of fundamental knowledge in all areas of cellular and molecular biology, cancer cell biology, and certain aspects of biochemistry, biophysics and biotechnology.
期刊最新文献
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