Potten C S, Allen T D
J Cell Sci. 1975 Mar;17(3):413-47. doi: 10.1242/jcs.17.3.413.
A variable amount of cornified tissue removed from mouse dorsal epidermis results in stimulation of the entire basal layer. Stimulation does not appear to be dependent on damage to an indiviaual epidermal proliferative unit (EPU). The immediate reaction to wounding is a rapid movement of cells from the basal layer to the differentiating compartment resulting in depopulation of the basal layer, which is followed by a burst in DNA-synthetic activity. The result of the increased transit of cells through the epidermis is that various aspects of keratinization can appear abnormal. The Langerhans cells show several changes, often appearing suprabasal and becoming smaller, rounded cells with a less-clear cytoplasm and fewer granules. The initial migratory reaction results in a largely normal epidermis on the third day. This reaction is followed by a transient hyperplasia which reaches its peak on the sixth to seventh day and gradually returns to normal by the fourteenth to fifteenth day. The hyperplasia is characterized by a loss of the ordered stacking of cornified cells which become shorter and thicker than normal. There is a return to the stacked state beginning on the tenth day. The Langerhans frequency is apparently at its lowest on days 6-7 when the proliferation levels are at their maximum. An inverse relationship appears to exist between relative Langerhans cell frequency and cell proliferation rate. The data suggest that the frequency of Langerhans granules also changes during the course of the hyperplasia, peak levels being observed just before the decline in proliferative activity.
从小鼠背部表皮去除不同量的角质化组织会刺激整个基底层。这种刺激似乎不依赖于对单个表皮增殖单位(EPU)的损伤。受伤后的即时反应是细胞从基底层快速移动到分化区室,导致基底层细胞减少,随后DNA合成活性激增。细胞通过表皮的转运增加的结果是角质化的各个方面可能出现异常。朗格汉斯细胞显示出几种变化,通常出现在基底层上方,变成较小的圆形细胞,细胞质不太清晰,颗粒较少。最初的迁移反应在第三天导致表皮基本正常。这种反应之后是短暂的增生,在第六至第七天达到峰值,并在第十四至第十五天逐渐恢复正常。增生的特征是角质化细胞有序堆积的丧失,这些细胞变得比正常的更短更厚。从第十天开始恢复到堆积状态。朗格汉斯细胞频率在第6 - 7天增殖水平最高时显然处于最低水平。相对朗格汉斯细胞频率与细胞增殖率之间似乎存在反比关系。数据表明,在增生过程中朗格汉斯颗粒的频率也会发生变化,在增殖活性下降之前观察到峰值水平。