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Evaluation of non-ferrous metals as potential in vivo tracers of transferrin-based therapeutics

机译:评价有色金属作为基于转铁蛋白的治疗剂的体内示踪剂

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摘要

Transferrin (Tf) is a promising candidate for targeted drug delivery. While development of such products is impossible without the ability to monitor biodistribution of Tf-drug conjugates in tissues and reliable measurements of their levels in blood and other biological fluids, the presence of very abundant endogenous Tf presents a significant impediment to such efforts. Several non-cognate metals have been evaluated in this work as possible tracers of exogenous transferrin in complex biological matrices using inductively coupled plasma mass spectrometry (ICP MS) as a detection tool. Placing Ni(II) on a His-tag of recombinant Tf resulted in formation of a marginally stable protein-metal complex, which readily transfers the metal to ubiquitous physiological scavengers, such as serum albumin. An alternative strategy targeted iron-binding pockets of Tf, where cognate Fe(III) was replaced metal ions known to bind this protein. Both Ga(III) and In(III) were evaluated, with the latter being vastly superior as a tracer (stronger binding to Tf unaffected by the presence of metal scavengers and the retained ability to associate with Tf receptor). Spiking serum with indium-loaded Tf followed by ICP MS detection demonstrated that protein quantities as low as 0.04 nM can be readily detected in animal blood. Combining laser ablation with ICP MS detection allows distribution of exogenous Tf to be mapped within animal tissue cross-sections with spatial resolution exceeding 100 μm. The method can be readily extended to a range of other therapeutics where metalloproteins are used as either carriers or payloads.
机译:转铁蛋白(Tf)是靶向药物递送的有希望的候选者。尽管无法监控组织中Tf-药物偶联物的生物分布以及在血液和其他生物流体中可靠测量其含量的能力是无法开发此类产品的,但是内源性Tf含量非常高的存在严重阻碍了此类努力。在这项工作中,已经使用感应耦合等离子体质谱(ICP MS)作为检测工具,对几种非同源金属进行了评估,以作为复杂生物基质中外源转铁蛋白的可能示踪剂。将Ni(II)放置在重组Tf的His-tag上导致形成边缘稳定的蛋白质-金属复合物,该复合物易于将金属转移至普遍存在的生理清除剂,例如血清白蛋白。一种替代策略是针对Tf的铁结合口袋,其中同源的Fe(III)被替换为已知与该蛋白质结合的金属离子。对Ga(III)和In(III)均进行了评估,后者作为示踪剂具有优越性(与Tf的结合力更强,不受金属清除剂的存在和与Tf受体缔合的保留能力)。掺有铟的Tf加标的血清,然后进行ICP MS检测,表明在动物血液中可以轻松检测到低至0.04 nM的蛋白质。激光烧蚀与ICP MS检测相结合,可以将外源Tf的分布图定位在动物组织横截面内,其空间分辨率超过100μm。该方法可以容易地扩展到金属蛋白用作载体或有效载荷的其他治疗方法的范围。

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