Tsitovich Pavel B, Cox Jordan M, Benedict Jason B, Morrow Janet R
Department of Chemistry, University at Buffalo, the State University of New York , Buffalo, New York 14260, United States.
Inorg Chem. 2016 Jan 19;55(2):700-16. doi: 10.1021/acs.inorgchem.5b02144. Epub 2015 Dec 30.
Paramagnetic Fe(II) and Co(II) complexes are utilized as the first transition metal examples of (1)H NMR shift agents (paraSHIFT) for thermometry applications using Magnetic Resonance Spectroscopy (MRS). The coordinating ligands consist of TACN (1,4,7-triazacyclononane) and CYCLEN (1,4,7,10-tetraazacyclododecane) azamacrocycles appended with 6-methyl-2-picolyl groups, denoted as MPT and TMPC, respectively. (1)H NMR spectra of the MPT- and TMPC-based Fe(II) and Co(II) complexes demonstrate narrow and highly shifted resonances that are dispersed as broadly as 440 ppm. The six-coordinate complex cations, M(MPT) and M(TMPC), vary from distorted octahedral to distorted trigonal prismatic geometries, respectively, and also demonstrate that 6-methyl-2-picolyl pendents control the rigidity of these complexes. Analyses of the (1)H NMR chemical shifts, integrated intensities, line widths, the distances obtained from X-ray diffraction measurements, and longitudinal relaxation time (T1) values allow for the partial assignment of proton resonances of the M(MPT) complexes. Nine and six equivalent methyl protons of M(MPT) and M(TMPC), respectively, produce 3-fold higher (1)H NMR intensities compared to other paramagnetically shifted proton resonances. Among all four complexes, the methyl proton resonances of Fe(TMPC) and Co(TMPC) at -49.3 ppm and -113.7 ppm (37 °C) demonstrate the greatest temperature dependent coefficients (CT) of 0.23 ppm/°C and 0.52 ppm/°C, respectively. The methyl groups of these two complexes both produce normalized values of |CT|/fwhm = 0.30 °C(-1), where fwhm is full width at half-maximum (Hz) of proton resonances. The T1 values of the highly shifted methyl protons are in the range of 0.37-2.4 ms, allowing rapid acquisition of spectroscopic data. These complexes are kinetically inert over a wide range of pH values (5.6-8.6), as well as in the presence of serum albumin and biologically relevant cations and anions. The combination of large hyperfine shifts, large temperature sensitivity, increased signal-to-noise ratio, and short T1 values suggests that these complexes, in particular the TMPC-based complexes, show promise as paraSHIFT agents for thermometry.
顺磁性铁(II)和钴(II)配合物被用作(1)H NMR位移试剂(paraSHIFT)的首批过渡金属实例,用于利用磁共振波谱(MRS)的温度测量应用。配位配体由附加有6-甲基-2-吡啶甲基基团的TACN(1,4,7-三氮杂环壬烷)和CYCLEN(1,4,7,10-四氮杂环十二烷)氮杂大环组成,分别表示为MPT和TMPC。基于MPT和TMPC的铁(II)和钴(II)配合物的(1)H NMR谱显示出窄且高度位移的共振,其分散范围高达440 ppm。六配位的配合物阳离子[M(MPT)]²⁺和[M(TMPC)]²⁺分别从扭曲的八面体几何结构到扭曲的三角棱柱几何结构变化,并且还表明6-甲基-2-吡啶甲基侧链控制这些配合物的刚性。对(1)H NMR化学位移、积分强度、线宽、从X射线衍射测量获得的距离以及纵向弛豫时间(T1)值的分析允许对[M(MPT)]²⁺配合物的质子共振进行部分归属。[M(MPT)]²⁺和[M(TMPC)]²⁺分别有九个和六个等效的甲基质子,与其他顺磁位移的质子共振相比,产生的(1)H NMR强度高3倍。在所有四种配合物中,[Fe(TMPC)]²⁺和[Co(TMPC)]²⁺在-49.3 ppm和-113.7 ppm(37°C)处的甲基质子共振分别显示出最大的温度依赖系数(CT),分别为0.23 ppm/°C和0.52 ppm/°C。这两种配合物的甲基基团都产生|CT|/fwhm = 0.30 °C⁻¹的归一化值,其中fwhm是质子共振半高宽(Hz)。高度位移的甲基质子的T1值在0.37 - 2.4 ms范围内,允许快速采集光谱数据。这些配合物在很宽的pH值范围(5.6 - 8.6)内以及在血清白蛋白和生物相关阳离子和阴离子存在下是动力学惰性的。大的超精细位移、大的温度敏感性、增加的信噪比和短的T1值的组合表明这些配合物,特别是基于TMPC的配合物,有望作为用于温度测量的paraSHIFT试剂。