首页> 美国卫生研究院文献>Frontiers in Chemistry >Effect of the Nature of Donor Atoms on the Thermodynamic Kinetic and Relaxation Properties of Mn(II) Complexes Formed With Some Trisubstituted 12-Membered Macrocyclic Ligands
【2h】

Effect of the Nature of Donor Atoms on the Thermodynamic Kinetic and Relaxation Properties of Mn(II) Complexes Formed With Some Trisubstituted 12-Membered Macrocyclic Ligands

机译:供体原子的性质对一些三取代的12元大环配体形成的Mn(II)配合物的热力学动力学和弛豫性能的影响

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

During the past few years increasing attention has been devoted to Mn(II) complexes as possible substitutes for Gd(III) complexes as contrast agents in MRI. Equilibrium (log KMnL or pMn value), kinetic parameters (rates and half-lives of dissociation) and relaxivity of the Mn(II) complexes formed with 12-membered macrocyclic ligands were studied. The ligands were selected in a way to gain information on how the ligand rigidity, the nature of the donor atoms in the macrocycle (pyridine N, amine N, and etheric O atom), the nature of the pendant arms (carboxylates, phosphonates, primary, secondary and tertiary amides) affect the physicochemical parameters of the Mn(II) complexes. As expected, decreasing the denticity of DOTA (to afford DO3A) resulted in a drop in the stability and inertness of [Mn(DO3A)] compared to [Mn(DOTA)]2−. This decrease can be compensated partially by incorporating the fourth nitrogen atom into a pyridine ring (e.g., PCTA) or by replacement with an etheric oxygen atom (ODO3A). Moreover, the substitution of primary amides for acetates resulted in a noticeable drop in the stability constant (PC3AMH), but it increased as the primary amides (PC3AMH) were replaced by secondary (PC3AMGly) or tertiary amide (PC3AMPip) pendants. The inertness of the Mn(II) complexes behaved alike as the rates of acid catalyzed dissociation increased going from DOTA (k1 = 0.040 M−1s−1) to DO3A (k1 = 0.45 M−1s−1). However, the rates of acid catalyzed dissociation decreased from 0.112 M−1s−1 observed for the anionic Mn(II) complex of PCTA to 0.0107 M−1s−1 and 0.00458 M−1s−1 for the cationic Mn(II) complexes of PC3AMH and PC3AMPip ligands, respectively. In spite of its lower denticity (as compared to DOTA) the sterically more hindered amide complex ([Mn(PC3AMPip)]2+) displays surprisingly high conditional stability (pMn = 8.86 vs. pMn = 9.74 for [Mn(PCTA)]) and excellent kinetic inertness. The substitution of phosphonates for the acetate pendant arms (DOTP and DO3P), however, resulted in a noticeable drop in the conditional stability as well as dissociation kinetic parameters of the corresponding Mn(II) complexes ([Mn(DOTP)]6− and [Mn(DO3P)]4−) underlining that the phosphonate pedant should not be considered as a suitable building block for further ligand design while the tertiary amide moiety will likely have some implications in this respect in the future.
机译:在过去的几年中,人们越来越关注Mn(II)配合物,以作为MRI中造影剂Gd(III)配合物的替代品。研究了由12元大环配体形成的Mn(II)配合物的平衡(log KMnL或pMn值),动力学参数(解离速率和半衰期)和弛豫性。选择配体的方式应获得有关配体刚性,大环中供体原子(吡啶N,胺N和醚O原子)的性质,侧链(羧酸盐,膦酸酯,伯原子)的性质的信息。 ,仲和叔酰胺)会影响Mn(II)配合物的理化参数。如预期的那样,与[Mn(DOTA)] 2-相比,降低DOTA的密度(提供DO3A)会导致[Mn(DO3A)] -的稳定性和惰性下降。 。这种降低可以通过将第四个氮原子掺入吡啶环(例如,PCTA)或用醚性氧原子(ODO3A)代替而部分补偿。此外,用伯酰胺代替乙酸盐会导致稳定性常数(PC3AM H )明显下降,但随着伯酰胺(PC3AM H )的取代而增加。通过二级(PC3AM Gly )或叔酰胺(PC3AM Pip )吊坠。从DOTA(k1 = 0.040 M -1 s −1 )到DO3A(Mn(II)配合物的惰性表现相似,因为酸催化的解离速率增加k1 = 0.45 M -1 s -1 )。但是,对于PCTA的阴离子Mn(II)配合物,酸催化的解离速率从0.112 M -1 s -1 降低到0.0107 M -1 s −1 和0.00458 M −1 s −1 用于PC3AM H的阳离子Mn(II)配合物和PC3AM Pip 配体。尽管其低密度(与DOTA相比),但位阻受阻的酰胺络合物([Mn(PC3AM Pip )] 2 + )显示出令人惊讶的高条件稳定性(pMn对于[Mn(PCTA)] -),pMn = 8.86 vs.pMn = 9.74,并且具有优异的动力学惰性。但是,用膦酸酯代替乙酸酯侧链(DOTP和DO3P)会导致条件稳定性以及相应Mn(II)配合物的解离动力学参数显着下降([Mn(DOTP)] 6 − 和[Mn(DO3P)] 4-)强调,膦酸酯助剂不应被视为进一步配体设计的合适组成部分,而叔酰胺部分可能会具有一些未来在这方面的意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号