Chen Kevin C
Laboratory of Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, 37 Convent Drive MSC 4264, Building 37, Room 5120, Bethesda, MD 20892-4264, USA.
Neurosci Res. 2003 Jun;46(2):251-6. doi: 10.1016/s0168-0102(03)00091-9.
In the microdialysis zero-net-flux (ZNF) method the extraction efficiency is conventionally obtained by linear regression. The linear analysis may become invalid for certain analytes that have nonlinear uptake/release processes in the tissue. To examine this hypothesis, a nonlinear model was used to numerically investigate the nonlinearity of the ZNF plot caused by nonlinear uptake and release processes. Three findings from this analysis are: (i) the ZNF method is markedly insensitive to the nonlinear active processes; (ii) a slow infusion rate or a long probe membrane can suppress the nonlinearity; (iii) the release under autoreceptor control does not affect the slope and linearity of the concentration difference plot. It is concluded that in the nM infusion range, the ZNF method is unable to distinguish whether or not the tissue clearance process is nonlinear. During electrical stimulation, neurotransmitter overflow may cause the microdialysis ZNF method to exhibit nonlinearity.
在微透析零净通量(ZNF)方法中,传统上通过线性回归来获得提取效率。对于某些在组织中具有非线性摄取/释放过程的分析物,线性分析可能无效。为了检验这一假设,使用非线性模型对由非线性摄取和释放过程引起的ZNF图的非线性进行了数值研究。该分析得出的三个结果是:(i)ZNF方法对非线性活性过程明显不敏感;(ii)缓慢的输注速率或较长的探针膜可以抑制非线性;(iii)自受体控制下的释放不影响浓度差图的斜率和线性。得出的结论是,在纳摩尔输注范围内,ZNF方法无法区分组织清除过程是否是非线性的。在电刺激期间,神经递质溢出可能导致微透析ZNF方法表现出非线性。