Acheta Jenica, Jeanette Haley, Mondschein Amanda S, Lanka Meghana, Belin Sophie, Poitelon Yannick
Albany Medical College, Department of Neuroscience and Experimental Therapeutics, Albany, NY, 12208, USA.
bioRxiv. 2025 May 14:2025.05.08.652925. doi: 10.1101/2025.05.08.652925.
Mechanosensation, the ability of cells to detect and respond to mechanical forces by transducing them into biochemical signals, is essential for various cellular processes, including morphogenesis, development, tissue homeostasis, and response to injury. In the peripheral nervous system (PNS), Schwann cells play a critical role in nerve development, myelination, and regeneration. These cells are highly responsive to mechanical cues such as tension, compression, and shear forces, which influence their fate, proliferation, differentiation, and regenerative capacity. In this study, we demonstrate that application of Low Intensity Ultrasound (LIU) transiently increases Schwann cell proliferation. Notably, our results show that LIU selectively activates TAZ, but not YAP, both nuclear transducers of the Hippo pathway. Additionally, we show that the LIU treatment upregulates nerve growth factor (NGF) expression in both Schwann cells and sensory neurons, suggesting a role for LIU in promoting neurotrophic support. This study highlights LIU as a mechanotherapeutic tool that enhances intrinsic regenerative functions in Schwann cells, such as neurotrophic support to neurons via NGF.
机械感觉,即细胞通过将机械力转化为生化信号来检测和响应机械力的能力,对于各种细胞过程至关重要,包括形态发生、发育、组织稳态和对损伤的反应。在周围神经系统(PNS)中,施万细胞在神经发育、髓鞘形成和再生中起关键作用。这些细胞对诸如张力、压缩和剪切力等机械信号高度敏感,这些信号会影响它们的命运、增殖、分化和再生能力。在本研究中,我们证明低强度超声(LIU)的应用会短暂增加施万细胞的增殖。值得注意的是,我们的结果表明,LIU选择性激活TAZ,而非YAP,二者均为Hippo通路的核转导因子。此外,我们表明LIU处理上调了施万细胞和感觉神经元中神经生长因子(NGF)的表达,表明LIU在促进神经营养支持方面发挥作用。这项研究强调LIU作为一种机械治疗工具,可增强施万细胞的内在再生功能,如通过NGF对神经元的神经营养支持。