Lopez-Verrilli M Alejandra, Court Felipe A
Millennium Nucleus for Regenerative Biology, P. Catholic University of Chile Santiago, Chile.
Front Physiol. 2012 Jun 13;3:205. doi: 10.3389/fphys.2012.00205. eCollection 2012.
Schwann cells (SCs) are the glial component of the peripheral nervous system, with essential roles during development and maintenance of axons, as well as during regenerative processes after nerve injury. SCs increase conduction velocities by myelinating axons, regulate synaptic activity at presynaptic nerve terminals and are a source of trophic factors to neurons. Thus, development and maintenance of peripheral nerves are crucially dependent on local signaling between SCs and axons. In addition to the classic mechanisms of intercellular signaling, the possibility of communication through secreted vesicles has been poorly explored to date. Interesting recent findings suggest the occurrence of lateral transfer mediated by vesicles from glial cells to axons that could have important roles in axonal growth and axonal regeneration. Here, we review the role of vesicular transfer from SCs to axons and propose the advantages of this means in supporting neuronal and axonal maintenance and regeneration after nerve damage.
施万细胞(SCs)是周围神经系统的神经胶质成分,在轴突的发育、维持以及神经损伤后的再生过程中发挥着重要作用。施万细胞通过包裹轴突形成髓鞘来提高传导速度,调节突触前神经末梢的突触活动,并且是神经元营养因子的来源。因此,周围神经的发育和维持关键依赖于施万细胞与轴突之间的局部信号传导。除了经典的细胞间信号传导机制外,迄今为止,通过分泌囊泡进行通讯的可能性尚未得到充分探索。最近有趣的研究结果表明,存在由胶质细胞囊泡介导的侧向转移,这种转移可能在轴突生长和轴突再生中发挥重要作用。在这里,我们综述了从施万细胞到轴突的囊泡转移的作用,并提出这种方式在支持神经损伤后神经元和轴突的维持与再生方面的优势。