Stieler Karola, Vogt Annika, Sterry Wolfram, Haas Norbert, Blume-Peytavi Ulrike
Department of Dermatology and Allergology, Clinical Research Center for Hair and Skin Science, Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and -Berlin Institute of Health, Berlin, Germany.
Skin Appendage Disord. 2020 Jan;6(1):25-31. doi: 10.1159/000503330. Epub 2019 Oct 17.
Felix Pinkus' concept of the vitreous membrane (VM) published in 1927 describes circular folds protruding into the outer root sheath (ORS), which, in his opinion, serve as interdigitations between the outer root sheath (ORS) and the VM. This concept currently seems to have fallen into oblivion.
To determine the origin and possible function of the VM in the proliferation and vascularization of the hair follicle (HF).
Serial investigation of healthy skin probes with histological (hematoxylin & eosin and periodic acid-Schiff) and immunohistochemical examination (Ki67, CD56, CD8, and collagen IV) were performed.
Morphological variations of the VM in various HFs such as protrusions and folds, the latter unilateral, bilateral or circular, some acute-angled, were found. Similarly, protrusions of the VM into the ORS were observed, that consisted of capillary tissue together with perifollicular tissue and VM mimicking minimal variants of the dermal papilla.
Pinkus' concept of the VM is revisited, reproduced and possible functions are proposed. Since these structures are found in a HF region with a high metabolic dynamism, they may be involved in differentiation or nutrition, or else be formed as a result of pressure arising from outgrowing hair shafts.
费利克斯·平库斯于1927年发表的玻璃体膜(VM)概念描述了向外根鞘(ORS)突出的环形褶皱,他认为这些褶皱是外根鞘(ORS)与玻璃体膜之间的交错结构。目前这一概念似乎已被遗忘。
确定玻璃体膜(VM)在毛囊(HF)增殖和血管形成中的起源及可能的功能。
对健康皮肤样本进行连续的组织学(苏木精-伊红染色和过碘酸-希夫染色)及免疫组织化学检查(Ki67、CD56、CD8和IV型胶原)。
发现不同毛囊(HF)中玻璃体膜(VM)的形态变化,如突出和褶皱,后者有单侧、双侧或圆形,部分呈锐角。同样观察到玻璃体膜(VM)向外根鞘(ORS)的突出,其由毛细血管组织连同毛囊周组织和类似于真皮乳头最小变体的玻璃体膜(VM)组成。
重新审视、再现了平库斯的玻璃体膜(VM)概念并提出了可能的功能。由于这些结构存在于代谢活跃的毛囊区域,它们可能参与分化或营养供应,或者是由于生长中的毛干产生的压力而形成。