Literature DB >> 30085676

Polymeric Nanoparticles Enhance the Ability of Deferoxamine To Deplete Hepatic and Systemic Iron.

Shanshan Guo1,2,3, Gang Liu1, David M Frazer2, Tianqing Liu2, Linhao You1, Jiaqi Xu1,3, Yongwei Wang1,3, Gregory J Anderson2, Guangjun Nie1,3.   

Abstract

Chelators are commonly used to remove excess iron in iron-loading disorders. Deferoxamine (DFO) is an effective and safe iron chelator but an onerous parenteral administration regimen limits its routine use. To develop more effective methods for delivering iron chelators, we examined whether amphiphilic copolymer nanoparticles (NPs) could deliver DFO more efficiently. Physical characterization showed a uniform and stable preparation of DFO nanoparticles (DFO-NPs) with an average diameter of 105.3 nm. In macrophage (RAW264.7) and hepatoma (HepG2) cell lines, DFO-NPs proved more effective at depleting iron than free DFO. In wild-type mice previously loaded with iron dextran, as well as Hbb th3 /+ and Hfe -/- mice, which are predisposed to iron loading, DFO-NPs (40 mg/kg DFO; alternate days; 4 weeks) reduced hepatic iron levels by 71, 46, and 37%, respectively, whereas the equivalent values for free DFO were 53, 7, and 15%. Staining for tissue iron and urinary iron excretion confirmed these findings. Pharmacokinetic analysis showed that NP-encapsulated DFO had a much longer elimination half-life than free DFO (48.63 ± 28.80 vs 1.46 ± 0.59 h), and that DFO-NPs could be readily taken up by tissues and in particular by hepatic Kupffer cells. In vitro, DFO-NPs were less toxic to several cell lines than free DFO, and in vivo they did not elicit any specific inflammatory responses or histological changes. Our results suggest that using a nanoformulation of DFO is a valuable strategy for improving its efficiency as an iron chelator and that this could broaden its clinical use for the treatment of human iron overload disorders.

Entities:  

Keywords:  Nanoformulation; deferoxamine; half-life; iron chelation; iron overload; macrophages

Year:  2018        PMID: 30085676     DOI: 10.1021/acs.nanolett.8b02428

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  3 in total

1.  Combating iron overload: a case for deferoxamine-based nanochelators.

Authors:  Gregory Jones; Sumanta Kumar Goswami; Homan Kang; Hak Soo Choi; Jonghan Kim
Journal:  Nanomedicine (Lond)       Date:  2020-05-20       Impact factor: 5.307

2.  Repurposing ICG enables MR/PA imaging signal amplification and iron depletion for iron-overload disorders.

Authors:  Huirong Lin; Yu Zhou; Jiaming Wang; Huimeng Wang; Tianhong Yao; Hu Chen; Huili Zheng; Yang Zhang; En Ren; Lai Jiang; Chengchao Chu; Xiaoyuan Chen; Jingsong Mao; Fudi Wang; Gang Liu
Journal:  Sci Adv       Date:  2021-12-17       Impact factor: 14.136

3.  Enhanced sciatic nerve regeneration by relieving iron-overloading and organelle stress with the nanofibrous P(MMD-co-LA)/DFO conduits.

Authors:  Lei Han; Xianzhen Dong; Tong Qiu; Zhaona Dou; Lin Wu; Honglian Dai
Journal:  Mater Today Bio       Date:  2022-08-06
  3 in total

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