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本文引用的文献

1
Hydrogel drug delivery system with predictable and tunable drug release and degradation rates.具有可预测和可调药物释放和降解速率的水凝胶药物输送系统。
Proc Natl Acad Sci U S A. 2013 Feb 5;110(6):2318-23. doi: 10.1073/pnas.1215498110. Epub 2013 Jan 23.
2
Ferrous iron-dependent delivery of therapeutic agents to the malaria parasite.亚铁依赖性将治疗药物递送至疟原虫。
Future Med Chem. 2012 Dec;4(18):2241-9. doi: 10.4155/fmc.12.174.
3
Interactions between artemisinins and other antimalarial drugs in relation to the cofactor model--a unifying proposal for drug action.青蒿素类药物与其他抗疟药物相互作用与共因子模型的关系——药物作用的统一假说。
ChemMedChem. 2012 Dec;7(12):2204-26. doi: 10.1002/cmdc.201200383. Epub 2012 Oct 30.
4
First-in-man safety and pharmacokinetics of synthetic ozonide OZ439 demonstrates an improved exposure profile relative to other peroxide antimalarials.首例人体安全性和药代动力学研究表明,合成臭氧化物 OZ439 的暴露概况优于其他过氧化物抗疟药。
Br J Clin Pharmacol. 2013 Feb;75(2):524-37. doi: 10.1111/j.1365-2125.2012.04368.x.
5
A nonpeptidic cathepsin S activity-based probe for noninvasive optical imaging of tumor-associated macrophages.一种基于组织蛋白酶S活性的非肽类探针,用于肿瘤相关巨噬细胞的无创光学成像。
Chem Biol. 2012 May 25;19(5):619-28. doi: 10.1016/j.chembiol.2012.03.012.
6
Predictable and tunable half-life extension of therapeutic agents by controlled chemical release from macromolecular conjugates.通过从大分子缀合物中控制化学释放来延长治疗剂的半寿期,使其具有可预测性和可调性。
Proc Natl Acad Sci U S A. 2012 Apr 17;109(16):6211-6. doi: 10.1073/pnas.1117147109. Epub 2012 Apr 2.
7
Iron chelation: deciphering novel molecular targets for cancer therapy. The tip of the iceberg of a web of iron-regulated molecules.铁螯合作用:破解癌症治疗的新分子靶点。铁调节分子网络的冰山一角。
Future Med Chem. 2011 Dec;3(16):1983-6. doi: 10.4155/fmc.11.154.
8
Investigating the antimalarial action of 1,2,4-trioxolanes with fluorescent chemical probes.用荧光化学探针研究 1,2,4-三恶烷的抗疟作用。
J Med Chem. 2011 Dec 8;54(23):8207-13. doi: 10.1021/jm2012003. Epub 2011 Nov 9.
9
Proteases as regulators of pathogenesis: examples from the Apicomplexa.作为致病机制调节因子的蛋白酶:来自顶复门原虫的实例
Biochim Biophys Acta. 2012 Jan;1824(1):177-85. doi: 10.1016/j.bbapap.2011.06.002. Epub 2011 Jun 13.
10
A fragmenting hybrid approach for targeted delivery of multiple therapeutic agents to the malaria parasite.一种用于将多种治疗剂靶向递送至疟原虫的碎片化混合方法。
ChemMedChem. 2011 Mar 7;6(3):415-9. doi: 10.1002/cmdc.201100002. Epub 2011 Jan 24.

亚铁依赖型药物递送使治疗剂在体内的控制和选择性释放成为可能。

Ferrous iron-dependent drug delivery enables controlled and selective release of therapeutic agents in vivo.

机构信息

Departments of Pathology and Microbiology and Immunology, Stanford School of Medicine, Stanford, CA 94305.

出版信息

Proc Natl Acad Sci U S A. 2013 Nov 5;110(45):18244-9. doi: 10.1073/pnas.1312782110. Epub 2013 Oct 21.

DOI:10.1073/pnas.1312782110
PMID:24145449
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3831501/
Abstract

The precise targeting of cytotoxic agents to specific cell types or cellular compartments is of significant interest in medicine, with particular relevance for infectious diseases and cancer. Here, we describe a method to exploit aberrant levels of mobile ferrous iron (Fe(II)) for selective drug delivery in vivo. This approach makes use of a 1,2,4-trioxolane moiety, which serves as an Fe(II)-sensitive "trigger," making drug release contingent on Fe(II)-promoted trioxolane fragmentation. We demonstrate in vivo validation of this approach with the Plasmodium berghei model of murine malaria. Malaria parasites produce high concentrations of mobile ferrous iron as a consequence of their catabolism of host hemoglobin in the infected erythrocyte. Using activity-based probes, we successfully demonstrate the Fe(II)-dependent and parasite-selective delivery of a potent dipeptidyl aminopeptidase inhibitor. We find that delivery of the compound in its Fe(II)-targeted form leads to more sustained target inhibition with greatly reduced off-target inhibition of mammalian cathepsins. This selective drug delivery translates into improved efficacy and tolerability. These findings demonstrate the utility of a purely chemical means to achieve selective drug targeting in vivo. This approach may find useful application in parasitic infections and more broadly in any disease state characterized by aberrant production of reactive ferrous iron.

摘要

将细胞毒性药物精确靶向特定的细胞类型或细胞区室在医学上具有重要意义,特别是在传染病和癌症方面。在这里,我们描述了一种利用移动亚铁(Fe(II))的异常水平进行体内选择性药物输送的方法。这种方法利用 1,2,4-三恶烷部分作为 Fe(II)敏感的“触发”,使药物释放取决于 Fe(II)促进的三恶烷断裂。我们使用疟原虫感染的鼠模型验证了这种方法在体内的有效性。疟原虫由于在感染的红细胞中代谢宿主血红蛋白而产生高浓度的移动亚铁。我们使用基于活性的探针成功地证明了一种有效的二肽基氨基肽酶抑制剂的 Fe(II)依赖性和寄生虫选择性递送。我们发现,以其 Fe(II)靶向形式递送该化合物可导致更持续的靶抑制,同时大大减少了对哺乳动物组织蛋白酶的脱靶抑制。这种选择性药物输送转化为提高疗效和耐受性。这些发现证明了仅通过化学手段在体内实现选择性药物靶向的实用性。这种方法可能在寄生虫感染中具有实用价值,更广泛地说,在任何以异常产生反应性亚铁为特征的疾病状态中都具有实用价值。