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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Relayed magnetization transfer from nuclear Overhauser effect and chemical exchange observed by in vivo ~(31)P MRS in rat brain
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Relayed magnetization transfer from nuclear Overhauser effect and chemical exchange observed by in vivo ~(31)P MRS in rat brain

机译:体内〜(31)P MRS在大鼠脑中观察到的核Overhauser效应的中继磁化转移和化学交换

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摘要

The ~(31)P magnetization transfer effects among nuclear magnetic resonances (NMRs) of phosphocreatine (PCr), γ-adenosine-5'-triphosphate (γ-ATP) and inorganic phosphate (Pi) have been attributed to the chemical exchange reactions among PCr, ATP and Pi catalyzed by creatine kinase (CK) and ATPase enzymes and, therefore, are commonly applied in situ to measure chemical exchange fluxes involving two chemically coupled CK and ATPase reactions (i.e., PCr?ATP?Pi) by selectively saturating γ-ATP resonance. Besides the expected reductions in the Pi and PCr NMR signals upon saturating γ-ATP resonance, one particularly interesting phenomenon showing decreases in α-ATP and β-ATP signals was also observed. The underlying mechanism was investigated and identified via saturating NMR of β-ATP in the present study. The unique relayed magnetization transfer effects through spin diffusion were observed in the rat brain using in vivo ~(31)P magnetic resonance spectroscopy.
机译:磷酸肌酸(PCr),γ-腺苷-5'-三磷酸(γ-ATP)和无机磷酸盐(Pi)的核磁共振(NMR)之间的〜(31)P磁化转移效应归因于之间的化学交换反应肌酸激酶(CK)和ATPase酶催化的PCr,ATP和Pi,因此通常用于原位测量,通过选择性地使γ饱和来测量涉及两个化学偶联的CK和ATPase反应的化学交换通量(即PCr?ATP?Pi) -ATP共振。除了饱和γ-A​​TP共振时Pi和PCr NMR信号的预期减少外,还观察到一种特别有趣的现象,表明α-ATP和β-ATP信号减少。在本研究中,通过β-ATP的饱和NMR研究了潜在的机理。使用体内〜(31)P磁共振波谱在大鼠大脑中观察到了通过自旋扩散产生的独特的中继磁化传递效应。

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