INM-Leibniz Institute for New Materials, 66123 Saarbrücken, Germany.
Center of Experimental and Applied Cutaneous Physiology (CCP), Department of Dermatology, Venereology and Allergology, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin and Humboldt Universität zu Berlin, Charitéplatz 1, 10117 Berlin, Germany.
Int J Mol Sci. 2023 Apr 12;24(8):7121. doi: 10.3390/ijms24087121.
The presence of mechanoreceptors in glabrous skin allows humans to discriminate textures by touch. The amount and distribution of these receptors defines our tactile sensitivity and can be affected by diseases such as diabetes, HIV-related pathologies, and hereditary neuropathies. The quantification of mechanoreceptors as clinical markers by biopsy is an invasive method of diagnosis. We report the localization and quantification of Meissner corpuscles in glabrous skin using in vivo, non-invasive optical microscopy techniques. Our approach is supported by the discovery of epidermal protrusions which are co-localized with Meissner corpuscles. Index fingers, small fingers, and tenar palm regions of ten participants were imaged by optical coherence tomography (OCT) and laser scan microscopy (LSM) to determine the thickness of the stratum corneum and epidermis and to count the Meissner corpuscles. We discovered that regions containing Meissner corpuscles could be easily identified by LSM with an enhanced optical reflectance above the corpuscles, caused by a protrusion of the strongly reflecting epidermis into the stratum corneum with its weak reflectance. We suggest that this local morphology above Meissner corpuscles has a function in tactile perception.
触觉感受器存在于无毛皮肤中,使人类能够通过触摸来辨别质地。这些感受器的数量和分布决定了我们的触觉灵敏度,并且可能受到糖尿病、与 HIV 相关的病理和遗传性神经病变等疾病的影响。通过活检将机械感受器作为临床标志物进行量化是一种具有侵入性的诊断方法。我们使用活体非侵入性光学显微镜技术报告了无毛皮肤中 Meissner 小体的定位和量化。我们的方法得到了表皮突起与 Meissner 小体共定位的发现的支持。通过光学相干断层扫描 (OCT) 和激光扫描显微镜 (LSM) 对十名参与者的食指、小指和大鱼际区域进行成像,以确定角质层和表皮的厚度,并计算 Meissner 小体的数量。我们发现,LSM 可以很容易地通过小体上方的增强光学反射来识别包含 Meissner 小体的区域,这是由于强烈反射的表皮突起进入弱反射的角质层所致。我们认为 Meissner 小体上方的这种局部形态在触觉感知中具有功能。