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提高去铁酮-镓-原卟啉(IX)对脂质液晶纳米颗粒细胞内感染的疗效。

Promoting the Efficacy of Deferiprone-Gallium-Protoporphyrin (IX) against Intracellular Infection with Lipid Liquid Crystalline Nanoparticles.

作者信息

Feizi Sholeh, Awad Muhammed, Ramezanpour Mahnaz, Cooksley Clare, Murphy William, Prestidge Clive A, Psaltis Alkis J, Wormald Peter-John, Barry Simone, Vreugde Sarah

机构信息

Department of Surgery-Otolaryngology Head and Neck Surgery, Basil Hetzel Institute for Translational Health Research, Central Adelaide Local Health Network, Adelaide 5011, Australia.

The Department of Surgery, Faculty of Health and Medical Sciences, University of Adelaide, Adelaide 5000, Australia.

出版信息

ACS Appl Mater Interfaces. 2024 Dec 25;16(51):70274-70283. doi: 10.1021/acsami.4c15843. Epub 2024 Dec 11.

Abstract

Nontuberculous mycobacteria (NTM) are among the recalcitrant bacterial strains that cause difficult-to-treat infections for patients with chronic underlying pulmonary conditions. The bacteria's intrinsic resistance to various antibiotics and their ability to infect macrophages enable them to overcome both the host immune response and standard antibiotics. Unconventional approaches to treating NTM-mediated infections are required. Using the heme mimic agent gallium protoporphyrin (GaPP) and the iron chelator deferiprone (DEF) in combination has been proven as an effective strategy against different bacteria including NTM in vitro. To enable more effective delivery and promote the activity of DEF/GaPP against intracellular NTM infections, both compounds are loaded in lipid liquid crystalline nanoparticles (LCNP). GaPP and DEF are sufficiently entrapped in LCNP with entrapment efficiency of 98% ± 2.1 and 39.4% ± 4.2, respectively. DEF/GaPP LCNP has an average diameter of 171 nm ± 10.2 with a uniform size distribution. DEF/GaPP LCNP reduces the viability of intracellular infection by 3.34 log in comparison to the control group and is significantly more efficacious than nonformulated DEF/GaPP. Furthermore, DEF/GaPP LCNP is nontoxic to human bronchial epithelial cells in vitro. These findings are envisaged to pave the way for future progress in eradicating NTM-mediated infections.

摘要

非结核分枝杆菌(NTM)是导致慢性基础肺部疾病患者出现难以治疗的感染的顽固细菌菌株之一。这种细菌对多种抗生素具有内在抗性,并且能够感染巨噬细胞,这使得它们能够克服宿主免疫反应和标准抗生素的作用。因此需要采用非常规方法来治疗NTM介导的感染。已证明将血红素模拟剂原卟啉镓(GaPP)和铁螯合剂去铁酮(DEF)联合使用是一种针对包括NTM在内的不同细菌的有效策略。为了实现更有效的递送并促进DEF/GaPP对细胞内NTM感染的活性,将这两种化合物都负载在脂质液晶纳米颗粒(LCNP)中。GaPP和DEF被充分包封在LCNP中,包封效率分别为98%±2.1和39.4%±4.2。DEF/GaPP LCNP的平均直径为171 nm±10.2,粒径分布均匀。与对照组相比,DEF/GaPP LCNP可使细胞内感染的存活率降低3.34个对数,并且比未配制的DEF/GaPP更有效。此外,DEF/GaPP LCNP在体外对人支气管上皮细胞无毒。这些发现有望为根除NTM介导的感染的未来进展铺平道路。

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