首页> 外文期刊>Bulletin of the American Physical Society >APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Hyperpolarized $^{mathrm{89}}$Y-EDTP and $^{mathrm{89}}$Y-EDTP as potential pH-sensitive MRI agents
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APS -Joint Fall 2017 Meeting of the Texas Section of the APS, Texas Section of the AAPT, and Zone 13 of the Society of Physics Students- Event - Hyperpolarized $^{mathrm{89}}$Y-EDTP and $^{mathrm{89}}$Y-EDTP as potential pH-sensitive MRI agents

机译:APS-APS得克萨斯分部,AAPT得克萨斯分部和物理学生协会第13区的2017年秋季联合会议-事件-超极化$ ^ {mathrm {89}} $ Y-EDTP和$ ^ {mathrm {89}} $ Y-EDTP作为潜在的pH敏感MRI剂

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Transferring high thermal equilibrium polarization from electrons to nuclei, dynamic nuclear polarization (DNP) is capable of making NMR insensitive nuclei detectable at low concentration with no signal averaging. This high signal strength can be exploited in the liquid state using dissolution DNP, a process by which samples are polarized in the solid state and rapidly dissolved using a superheated solvent, creating a highly polarized, physiologically compatible liquid sample. In this study, we have investigated two ligands -- EDTP and DTPP -- as possible chelates in pH monitoring using yttrium-89. By using dissolution DNP, we have amplified the $^{mathrm{89}}$Y NMR signals of $^{mathrm{89}}$Y-DTPP and $^{mathrm{89}}$Y-EDTP by extgreater 10,000-fold and have found that both have chemical shift dependence on pH. $^{mathrm{89}}$Y-EDTP has a chemical shift linearly dependent on pH between 5.7 and 9.15 with relatively large dispersion of almost 20 ppm, whereas $^{mathrm{89}}$Y-DTPP exhibited a pH dependence on less than half this range. In vitro and potential in vivo studies of hyperpolarized $^{mathrm{89}}$Y-EDTP and $^{mathrm{89}}$Y-DTPP for pH imaging will be discussed.
机译:通过将高热平衡极化从电子转移到原子核,动态核极化(DNP)能够使低浓度的NMR不敏感核能够被检测到,而没有信号平均。可以使用溶解DNP在液态下利用这种高信号强度,该过程是将样品以固态极化并使用过热溶剂快速溶解,从而产生高度极化的生理相容性液态样品。在这项研究中,我们研究了两种配体-EDTP和DTPP-可能是使用钇89监测pH的螯合物。通过使用溶出度DNP,我们将10,000的$ ^ {mathrm {89}} $ Y-DTPP和$ ^ {mathrm {89}} $ Y-EDTP的$ ^ {mathrm {89}} $ Y NMR信号放大了10,000倍数,并且发现两者均具有对pH的化学位移依赖性。 $ ^ {mathrm {89}} $ Y-EDTP的化学位移线性依赖于5.7和9.15之间的pH,相对较大的分散度接近20 ppm,而$ ^ {mathrm {89}} $ Y-DTPP具有pH依赖性不到这个范围的一半。将讨论用于pH成像的超极化$ ^ {mathrm {89}} $ Y-EDTP和$ ^ {mathrm {89}} $ Y-DTPP的体外和潜在体内研究。

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