Comper W D, Preston B N, Austin L
Neurochem Res. 1983 Jul;8(7):943-55. doi: 10.1007/BF00964554.
Axonal transport has been extensively studied for a period of 20-30 years, but there is still no general consensus concerning the mechanism by which this transport process operates. An important development in this regard is the recent studies in the physical biochemistry group in the Department of Biochemistry at Monash University where it has been demonstrated that ordered flows may be generated spontaneously in polymer systems under non-equilibrium conditions. The new phenomenon exhibits many novel features, particularly with respect to polymer transport, which bear marked similarity to the behaviour of components in axonal transport. This article sets out to essentially bring to the attention of those in the neurosciences some of the properties of ordered structured flows in polymer solutions. These properties may generate a different view in the understanding of the mechanism of axonal transport.
轴突运输已经被广泛研究了20到30年,但对于这种运输过程的运作机制仍未达成普遍共识。在这方面的一个重要进展是,莫纳什大学生物化学系物理生物化学小组最近的研究表明,在非平衡条件下,聚合物系统中可能会自发产生有序流动。这种新现象展现出许多新颖的特征,特别是在聚合物运输方面,这与轴突运输中各组分的行为有着显著的相似性。本文旨在将聚合物溶液中有序结构流动的一些特性,本质上提请神经科学领域的人士关注。这些特性可能会在对轴突运输机制的理解上产生不同的观点。