Evaluation of hair surface structure and morphology of patients with lichen planopilaris (LPP) by atomic force microscopy (AFM).

IF 2 4区 医学 Q3 DERMATOLOGY
Karolina Krawczyk-Wołoszyn, Magdalena Żychowska, Adam Reich
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Abstract

Background: Lichen planopilaris (LPP) is a chronic lymphocytic skin disease manifested by progressive scarring alopecia. The diagnosis of LPP is made based on histopathological examination, although it is not always definite. The current study evaluates the effectiveness of non-invasive atomic force microscopy (AFM) hair examination in detecting morphological differences between healthy and diseased hair.

Materials and methods: Here, three to five hairs from lesional skin of 10 LPP patients were collected and examined at nine locations using AFM. At least four images were taken at each of the nine sites. Metric measurements were taken and metric (length, width, and scale step height) and morphological features (striated and smooth surface of scales, the presence of endocuticle and cortex, shape of scales edges, scratches, pitting, cracks, globules, and wavy edge) were compared with hair from healthy controls. In addition, areas on diseased hair where the process of pathological, unnatural delamination of the hair fiber occurs are described.

Results: There was a statistically significant difference in the number of scratches in the initial sections of the LPP hair, in the intensity of wavy edges along the entire length of the tested hair, and in the number of scales with pitting in the middle section of the hair. In addition, a statistically significant higher number of scales with striated surface was found in LPP group starting at 3.5 cm from the root continuing towards the free end of the hair. Other morphological changes such as presence of cortex, globules, oval indentations, and rod-like macrofibrillar elements were also assessed, however, detailed results are not presented, as the differences shown in the number of these morphological changes were not significantly different.

Conclusion: This publication outlines the differences between virgin, healthy Caucasian hair, and the hair of LPP patients. The results of this study can be used for further research and work related to LPP. This is the first attempt to characterize the hair of LPP patients using AFM.

用原子力显微镜(AFM)评估扁平苔藓(LPP)患者的毛发表面结构和形态。
背景:扁平苔癣(LPP)是一种慢性淋巴细胞性皮肤病,表现为进行性瘢痕性脱发。扁平苔藓的诊断基于组织病理学检查,但并不总是明确的。本研究评估了无创原子力显微镜(AFM)毛发检查在检测健康毛发和病变毛发形态差异方面的有效性。在这九个部位中,每个部位至少拍摄四张图像。测量指标(长度、宽度和鳞片阶梯高度)和形态特征(鳞片的条纹和光滑表面、内胚层和皮层的存在、鳞片边缘的形状、划痕、点蚀、裂纹、球状和波浪状边缘)与健康对照组的毛发进行比较。此外,还描述了患病毛发上毛发纤维发生病理性非自然分层的区域:结果:LPP 头发最初部分的划痕数量、整个测试头发长度上波浪边缘的强度以及头发中间部分点状鳞片的数量在统计学上有显著差异。此外,从头发根部 3.5 厘米处开始一直到头发的自由末端,LPP 组中具有条纹表面的鳞片数量明显高于 LPP 组。此外,还评估了其他形态变化,如皮质、球状、椭圆形压痕和棒状大纤维素的存在,但由于这些形态变化的数量差异不明显,因此未列出详细结果:本出版物概述了健康的白种人原生头发与狼疮患者头发之间的差异。这项研究的结果可用于与 LPP 相关的进一步研究和工作。这是首次尝试使用原子力显微镜描述狼疮患者头发的特征。
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来源期刊
Skin Research and Technology
Skin Research and Technology 医学-皮肤病学
CiteScore
3.30
自引率
9.10%
发文量
95
审稿时长
6-12 weeks
期刊介绍: Skin Research and Technology is a clinically-oriented journal on biophysical methods and imaging techniques and how they are used in dermatology, cosmetology and plastic surgery for noninvasive quantification of skin structure and functions. Papers are invited on the development and validation of methods and their application in the characterization of diseased, abnormal and normal skin. Topics include blood flow, colorimetry, thermography, evaporimetry, epidermal humidity, desquamation, profilometry, skin mechanics, epiluminiscence microscopy, high-frequency ultrasonography, confocal microscopy, digital imaging, image analysis and computerized evaluation and magnetic resonance. Noninvasive biochemical methods (such as lipids, keratin and tissue water) and the instrumental evaluation of cytological and histological samples are also covered. The journal has a wide scope and aims to link scientists, clinical researchers and technicians through original articles, communications, editorials and commentaries, letters, reviews, announcements and news. Contributions should be clear, experimentally sound and novel.
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