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一种理性设计的复合物可直接且高特异性地补充转铁蛋白铁池。

A Rationally Designed Complex Replenishes the Transferrin Iron Pool Directly and with High Specificity.

机构信息

Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital/Harvard Medical School, Boston, Massachusetts 02114-2696, United States.

Department of Nephrology and Endocrine Unit, Massachusetts General Hospital/Harvard Medical School, Boston, Massachusetts 02114-2696, United States.

出版信息

J Am Chem Soc. 2023 Mar 29;145(12):6871-6879. doi: 10.1021/jacs.3c00123. Epub 2023 Mar 15.

Abstract

Many forms of anemia are caused or complicated by pathologic restriction of iron (Fe). Chronic inflammation and certain genetic mutations decrease the activity of ferroportin, the only Fe-exporter protein, so that endogenously recycled or nutritionally absorbed Fe cannot be exported to the extracellular Fe carrier protein transferrin for delivery to the bone marrow. Diminished ferroportin activity renders anemia correction challenging as Fe administered intravenously or through nutritional supplementation is trafficked through the ferroportin-transferrin axis. Utilizing judicious application of coordination chemistry principles, we designed an Fe complex (Fe-BBG) with solution thermodynamics and Fe dissociation kinetics optimized to replenish the transferrin-Fe pool rapidly, directly, and with precision. Fe-BBG is unreactive under conditions designed to force redox cycling and production of reactive oxygen species. The BBG ligand has a low affinity for divalent metal ions and does not compete for binding of other endogenously present ions including Cu and Zn. Treatment with Fe-BBG confers anemia correction in a mouse model of iron-refractory iron-deficiency anemia. Repeated exposure to Fe-BBG did not cause adverse clinical chemistry changes or trigger the expression of genes related to oxidative stress or inflammation. Fe-BBG represents the first entry in a promising new class of transferrin-targeted Fe replacement drugs.

摘要

许多形式的贫血是由病理性铁(Fe)限制引起或复杂化的。慢性炎症和某些基因突变会降低铁输出蛋白 Ferroportin 的活性,使内源性回收或营养吸收的 Fe 无法被输出到细胞外 Fe 载体转铁蛋白,从而无法输送到骨髓。Ferroportin 活性降低使得贫血纠正变得具有挑战性,因为静脉内或通过营养补充给予的 Fe 通过 Ferroportin-转铁蛋白轴进行运输。我们利用配位化学原理的巧妙应用,设计了一种具有优化溶液热力学和 Fe 解离动力学的 Fe 配合物(Fe-BBG),可快速、直接、精确地补充转铁蛋白-Fe 池。在设计用于强制氧化还原循环和产生活性氧的条件下,Fe-BBG 是无反应性的。BBG 配体对二价金属离子的亲和力低,不会与其他内源性存在的离子(包括 Cu 和 Zn)竞争结合。Fe-BBG 治疗可纠正铁难治性缺铁性贫血小鼠模型中的贫血。重复暴露于 Fe-BBG 不会引起临床化学变化或触发与氧化应激或炎症相关的基因表达。Fe-BBG 代表了一类有前途的新型转铁蛋白靶向铁替代药物的首个进入者。

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