Chen Kevin C
Department of Chemical and Biomedical Engineering, Joint College of Engineering for Florida A&M University, Florida State University, 2525 Pottsdamer Street, Tallahassee, 32310, USA.
J Theor Biol. 2006 Feb 21;238(4):863-81. doi: 10.1016/j.jtbi.2005.06.035. Epub 2005 Aug 29.
Microdialysis has been used for studying neurochemistry in brain regions that respond to afferent inputs or administered drugs. As the knowledge derived from and concerning microdialysis grows, so do the concerns over its invasiveness and, hence, the credibility of resulting data. Recent experimental and theoretical studies impugned the validity of the microdialysis zero-net-flux (ZNF) method in measuring brain extracellular neurotransmitters, suggesting that the tissue trauma resulting from probe implantation seriously compromises its worth. This paper developed a theoretical model to study the influences of two categories of tissue trauma on microdialysis ZNF operation: (1) morphological alterations in tissue extracellular structure and (2) physiological impairment of neurotransmitter release and uptake processes. Model results show that alterations of tissue extracellular structure negligibly affect the accuracy of the ZNF method in determining the basal level of extracellular neurotransmitter but do affect the fundamental characteristics of microdialysis: the extraction efficiency and relative recovery. An inhibited or damaged neurotransmitter uptake process always decreases the efficiency of microdialysis extraction, but rise of the relative recovery of neurotransmitters with the same uptake inhibition/damage occurs only when there is far more damage to the neurotransmitter release than to the uptake process in the tissue. A criterion for this rising trend of microdialysis relative recovery is discussed in terms of trauma parameters and neurotransmitter uptake inhibition.
微透析已被用于研究大脑中对传入输入或给药药物有反应的区域的神经化学。随着从微透析中获得的知识以及与微透析相关的知识不断增长,人们对其侵入性以及由此产生的数据的可信度的担忧也与日俱增。最近的实验和理论研究对微透析零净通量(ZNF)方法在测量脑细胞外神经递质方面的有效性提出了质疑,表明探针植入造成的组织损伤严重损害了其价值。本文建立了一个理论模型,以研究两类组织损伤对微透析ZNF操作的影响:(1)组织细胞外结构的形态改变;(2)神经递质释放和摄取过程的生理损伤。模型结果表明,组织细胞外结构的改变对ZNF方法确定细胞外神经递质基础水平的准确性影响可忽略不计,但确实会影响微透析的基本特性:提取效率和相对回收率。神经递质摄取过程受到抑制或损伤总是会降低微透析提取效率,但只有当组织中神经递质释放的损伤远大于摄取过程的损伤时,相同摄取抑制/损伤情况下神经递质的相对回收率才会升高。本文根据损伤参数和神经递质摄取抑制情况讨论了微透析相对回收率这种上升趋势的一个标准。