揭开瑞尔黑变病之谜:从发病机制、诊断到治疗的最新进展。

IF 3.9 3区 医学 Q2 CELL BIOLOGY Pigment Cell & Melanoma Research Pub Date : 2023-07-04 DOI:10.1111/pcmr.13108
Yuecen Ding, Zhongyi Xu, Leihong Flora Xiang, Chengfeng Zhang
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引用次数: 0

摘要

瑞尔黑变病是一种色素沉着过度的疾病,对个体有重大的心理和社会影响。在过去10 多年来,新的分类已经被开发出来,这就提出了如何对瑞尔黑变病进行分类的问题。这种疾病的机制尚不清楚,尽管由过敏性致敏以及遗传、紫外线辐射和自身免疫因素引起的IV型超敏反应是罪魁祸首。临床表现、皮肤镜检查、反射共聚焦显微镜、贴片/光片测试、组织病理学和一种新型多模态皮肤成像系统已用于诊断。多种治疗方法,包括局部皮肤美白剂、口服氨甲环酸、甘草甜素化合物、化学果皮、激光和光疗法(强脉冲光、1064nm Q开关Nd:YAG激光、755nm PicoWay激光、1927 nm非烧蚀部分铊纤维激光、新型脉冲型微针射频),效果得到改善。还总结了可能的生物标志物及其与其他自身免疫性疾病的关系的最新发现。
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Unveiling the mystery of Riehl's melanosis: An update from pathogenesis, diagnosis to treatment

Riehl's melanosis is a hyperpigmentation disorder that has a significant psychological and social impact on individuals. In the past 10 years, new categories have been developed, raising questions about how to classify Riehl's melanosis. The mechanism of this disease remains unclear, although the type IV hypersensitivity response caused by allergic sensitization, as well as genetic, ultraviolet radiation, and autoimmune factors, is to blame. Clinical manifestation, dermoscopy, reflectance confocal microscopy, patch/photopatch testing, histopathology, and a novel multimodality skin imaging system have been used for the diagnosis. A variety of therapies including topical skin-lightening agents, oral tranexamic acid, glycyrrhizin compound, chemical peels, and lasers and light therapies (intense pulsed light, 1064-nm Q-Switched Nd: YAG laser, 755-nm PicoWay laser, nonablative 1927-nm fractional thulium fiber laser, new pulsed-type microneedling radiofrequency), with improved effectiveness. The latest findings on possible biomarkers and their relationship to other autoimmune diseases were also summarized.

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来源期刊
Pigment Cell & Melanoma Research
Pigment Cell & Melanoma Research 医学-皮肤病学
CiteScore
8.90
自引率
2.30%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Pigment Cell & Melanoma Researchpublishes manuscripts on all aspects of pigment cells including development, cell and molecular biology, genetics, diseases of pigment cells including melanoma. Papers that provide insights into the causes and progression of melanoma including the process of metastasis and invasion, proliferation, senescence, apoptosis or gene regulation are especially welcome, as are papers that use the melanocyte system to answer questions of general biological relevance. Papers that are purely descriptive or make only minor advances to our knowledge of pigment cells or melanoma in particular are not suitable for this journal. Keywords Pigment Cell & Melanoma Research, cell biology, melatonin, biochemistry, chemistry, comparative biology, dermatology, developmental biology, genetics, hormones, intracellular signalling, melanoma, molecular biology, ocular and extracutaneous melanin, pharmacology, photobiology, physics, pigmentary disorders
期刊最新文献
The Lipid Droplet Protein DHRS3 Is a Regulator of Melanoma Cell State. UVA Irradiation Promotes Melanoma Cell Proliferation Mediated by OPN3 Independently of ROS Production. Issue Information Bay 11-7082, an NF-κB Inhibitor, Prevents Post-Inflammatory Hyperpigmentation Through Inhibition of Inflammation and Melanogenesis. Low-Dose Baricitinib Plus Narrow-Band Ultraviolet B for the Treatment of Progressive Non-Segmental Vitiligo: A Prospective, Controlled, Open-Label Study.
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