DocumentCode
347042
Title
Slow going-active and passive transport in axons
Author
Galbraith, J.A.
Author_Institution
Lab. of Neurobiol., Nat. Inst. of Health, Bethesda, MD, USA
Volume
1
fYear
1999
fDate
1999
Abstract
Material can be moved throughout a cell in a variety of ways. The simplest manner is diffusion that relies upon a concentration gradient, but needs no external energy source. While efficient for short distances, this technique is not adequate for nerve cells where the axonal processes are quite long and material is synthesized only in the cell body. In this case an energy dependent system is used to actively supply material independent of concentration. In axons, diffusion has been augmented by slow transport which moves cytoskeletal proteins and soluble enzymes at rates of approximately 1 μm/min. Little is known about the mechanisms of slow transport and although culture systems provide ready access to individual axons, the distances involved are often small enough that diffusion contributes a significant amount to the total supply of material. By using a larger isolated system that allows these competing transport effects to be separated the authors have been able to characterize them individually, and investigate their relative contributions along the axon
Keywords
biodiffusion; cellular transport; neurophysiology; active transport; axons; cell body; competing transport effects; concentration gradient; cytoskeletal proteins; energy dependent system; external energy source; isolated system; passive transport; slow transport; soluble enzymes; Biochemistry; Diseases; Fluorescence; Laboratories; Monitoring; Nerve fibers; Neurons; Proteins; Radioactive materials; Spatial resolution;
fLanguage
English
Publisher
ieee
Conference_Titel
[Engineering in Medicine and Biology, 1999. 21st Annual Conference and the 1999 Annual Fall Meetring of the Biomedical Engineering Society] BMES/EMBS Conference, 1999. Proceedings of the First Joint
Conference_Location
Atlanta, GA
ISSN
1094-687X
Print_ISBN
0-7803-5674-8
Type
conf
DOI
10.1109/IEMBS.1999.802478
Filename
802478
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