Medicinal Inorganic Chemistry Group, Department of Chemistry, University of British Columbia, 2036 Main Mall, Vancouver, British Columbia V6T 1Z1, Canada.
J Am Chem Soc. 2010 Nov 10;132(44):15726-33. doi: 10.1021/ja106399h.
We have investigated novel bifunctional chelate alternatives to the aminocarboxylate macrocycles NOTA (N(3)O(3)) or DOTA (N(4)O(4)) for application of radioisotopes of Ga to diagnostic nuclear medicine and have found that the linear N(4)O(2) chelate H(2)dedpa coordinates (67)Ga quantitatively to form (67)Ga(dedpa) after 10 min at RT. Concentration-dependent coordination to H(2)dedpa of either (68)Ga or (67)Ga showed quantitative conversion to the desired products with ligand concentrations as low as 10(-7) M. With (68)Ga, specific activities as high as 9.8 mCi nmol(-1) were obtained without purification. In a 2 h competition experiment against human apo-transferrin, (67)Ga(dedpa) showed no decomposition. Two bifunctional versions of H(2)dedpa are also described, and these both coordinate to (67)Ga at RT within 10 min. Complete syntheses, characterizations, labeling studies, and biodistribution profiles of the (67)Ga complexes are presented for the new platform chelates. The stability of these platform chelates is higher than that of DOTA.
我们研究了新型双功能螯合剂,以替代 NOTA(N(3)O(3))或 DOTA(N(4)O(4))用于放射性同位素 Ga 在诊断核医学中的应用,发现线性 N(4)O(2)螯合剂 H(2)dedpa 在室温下 10 分钟内定量与 Ga(67)配位形成[(67)Ga(dedpa)]+。无论是 Ga(68)还是 Ga(67),浓度依赖性配位到 H(2)dedpa 都能以低至 10(-7)M 的配体浓度定量转化为所需产物。使用 Ga(68),无需纯化即可获得高达 9.8 mCi nmol(-1)的比活度。在 2 小时与人载脂蛋白转铁蛋白的竞争实验中,[(67)Ga(dedpa)]+没有分解。还描述了两种双功能版本的 H(2)dedpa,它们都能在室温下在 10 分钟内与 Ga(67)配位。新型平台螯合剂的 Ga(67)配合物的完整合成、表征、标记研究和生物分布概况均已呈现。这些平台螯合剂的稳定性高于 DOTA。