School of Life Sciences, Jilin University, Changchun 130012, China.
Institute of Special Wild Economic Animals and Plants, Chinese Academy of Agricultural Sciences, 4899 Juye Street, Changchun 130112, China.
Int J Mol Sci. 2021 Apr 29;22(9):4715. doi: 10.3390/ijms22094715.
The hair follicle dermal papilla is critical for hair generation and de novo regeneration. When cultured in vitro, dermal papilla cells from different species demonstrate two distinguishable growth patterns under the conventional culture condition: a self-aggregative three dimensional spheroidal (3D) cell pattern and a two dimensional (2D) monolayer cell pattern, correlating with different hair inducing properties. Whether the loss of self-aggregative behavior relates to species-specific differences or the improper culture condition remains unclear. Can the fixed 2D patterned dermal papilla cells recover the self-aggregative behavior and 3D pattern also remains undetected. Here, we successfully constructed the two growth patterns using sika deer () dermal papilla cells and proved it was the culture condition that determined the dermal papilla growth pattern. The two growth patterns could transit mutually as the culture condition was exchanged. The fixed 2D patterned sika deer dermal papilla cells could recover the self-aggregative behavior and transit back to 3D pattern, accompanied by the restoration of hair inducing capability when the culture condition was changed. In addition, the global gene expressions during the transition from 2D pattern to 3D pattern were compared to detect the potential regulating genes and pathways involved in the recovery of 3D pattern and hair inducing capability.
毛囊真皮乳头对于毛发的生成和从头再生至关重要。当在体外培养时,不同物种的真皮乳头细胞在常规培养条件下表现出两种可区分的生长模式:自我聚集的三维球形(3D)细胞模式和二维(2D)单层细胞模式,与不同的毛发诱导特性相关。真皮乳头细胞自我聚集行为的丧失是否与物种特异性差异有关,或者与不当的培养条件有关尚不清楚。固定的 2D 模式化真皮乳头细胞是否能够恢复自我聚集行为以及 3D 模式也尚未被发现。在这里,我们使用梅花鹿真皮乳头细胞成功构建了这两种生长模式,并证明是培养条件决定了真皮乳头的生长模式。两种生长模式可以随着培养条件的改变而相互转换。当培养条件改变时,固定的 2D 模式化梅花鹿真皮乳头细胞可以恢复自我聚集行为并返回到 3D 模式,伴随着毛发诱导能力的恢复。此外,比较了从 2D 模式到 3D 模式转换过程中的全基因表达,以检测涉及 3D 模式和毛发诱导能力恢复的潜在调节基因和途径。