Hallaway P E, Eaton J W, Panter S S, Hedlund B E
Biomedical Frontiers, Inc., Minneapolis, MN 55414.
Proc Natl Acad Sci U S A. 1989 Dec;86(24):10108-12. doi: 10.1073/pnas.86.24.10108.
A class of high molecular weight iron chelators has been prepared by covalently attaching deferoxamine (DFO), by its amino group, to a variety of biocompatible polymers such as dextran and hydroxyethyl-starch. The iron-binding properties of DFO are virtually unchanged after the attachment procedure, but the toxicity and circulatory half-life are profoundly altered. Competitive iron-binding experiments indicate that the conjugates retain a high affinity for ferric iron. In addition, the derivatives inhibit iron-driven lipid peroxidation as effectively as the parent drug. However, the LD50 in mice (based on DFO equivalents) is approximately 4000 mg/kg for dextran-DFO as compared to 250 mg/kg for free DFO. Consistent with the greatly decreased LD50, intravenous administration of the conjugates in dogs at a dose of 100 mg/kg (body weight) does not cause the severe hypotension associated with intravenous administration of DFO. The plasma half-lives of these adducts are increased greater than 10-fold for dextran-DFO and hydroxyethyl-starch-DFO compared to the free drug. Finally, and most importantly, the conjugates are effective in mediating in vivo iron mobilization and excretion. Because recent evidence implicates iron as an important component of tissue injury in many disease states, these high molecular weight iron chelators may have potential for improved therapy, allowing higher sustained plasma concentrations of the active drug.
通过将去铁胺(DFO)的氨基共价连接到多种生物相容性聚合物(如葡聚糖和羟乙基淀粉)上,制备了一类高分子量铁螯合剂。连接过程后,DFO的铁结合特性基本未变,但毒性和循环半衰期发生了深刻改变。竞争性铁结合实验表明,缀合物对三价铁仍具有高亲和力。此外,衍生物抑制铁驱动的脂质过氧化作用与母体药物一样有效。然而,与游离DFO的250mg/kg相比,葡聚糖-DFO在小鼠中的半数致死量(基于DFO当量)约为4000mg/kg。与大幅降低的半数致死量一致,以100mg/kg(体重)的剂量给犬静脉注射缀合物不会引起与静脉注射DFO相关的严重低血压。与游离药物相比,这些加合物的血浆半衰期对于葡聚糖-DFO和羟乙基淀粉-DFO延长了10倍以上。最后,也是最重要的,缀合物在介导体内铁动员和排泄方面是有效的。由于最近的证据表明铁是许多疾病状态下组织损伤的重要组成部分,这些高分子量铁螯合剂可能具有改善治疗的潜力,使活性药物在血浆中持续保持更高的浓度。