首页> 美国卫生研究院文献>Scientific Reports >Chlorin e6-Coated Superparamagnetic Iron Oxide Nanoparticle (SPION) Nanoclusters as a Theranostic Agent for Dual-Mode Imaging and Photodynamic Therapy
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Chlorin e6-Coated Superparamagnetic Iron Oxide Nanoparticle (SPION) Nanoclusters as a Theranostic Agent for Dual-Mode Imaging and Photodynamic Therapy

机译:含氯的e6涂层超顺磁性氧化铁纳米粒子(SPION)纳米簇作为用于双模成像和光动力疗法的治疗剂

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摘要

Photodynamic therapy (PDT) is an approved modality for the treatment of various types of maligancies and diseased states. However, most of the available photosensitizers (PS) are highly hydrophobic, which limits their solubility and dispersion in biological fluids and can lead to self-quenching and sub-optimal therapeutic efficacy. In this study, chlorin e6 (Ce6)-coated superparamagnetic iron oxide nanoparticle (SPION) nanoclusters (Ce6-SCs) were prepared via an oil-in-water emulsion. The physical-chemical properties of the Ce6-SCs were systematically evaluated. Dual-mode imaging and PDT was subsequently performed in tumor-bearing mice. Chlorin e6 is capable of solubilizing hydrophobic SPION into stable, water-soluble nanoclusters without the use of any additional amphiphiles or carriers. The method is reproducible and the Ce6-SCs are highly stable under physiological conditions. The Ce6-SCs have an average diameter of 92 nm and low polydispersity (average PDI < 0.2). Encapsulation efficiency of both Ce6 and SPION is ≈100%, and the total Ce6 payload can be as high as 56% of the total weight (Ce6 + Fe). The Ce6-SCs localize within tumors via enhanced permeability and retention and are detectable by magnetic resonance (MR) and optical imaging. With PDT, Ce6-SCs demonstrate high singlet oxygen generation and produce a significant delay in tumor growth in mice.
机译:光动力疗法(PDT)是一种已批准的用于治疗各种类型的疾病和疾病状态的方法。但是,大多数可用的光敏剂(PS)具有高度疏水性,这限制了它们在生物流体中的溶解度和分散性,并且可能导致自猝灭和次佳的治疗效果。在这项研究中,通过水包油乳液制备了含二氢卟酚e6(Ce6)的超顺磁性氧化铁纳米粒子(SPION)纳米团簇(Ce6-SCs)。对Ce6-SCs的物理化学性质进行了系统评估。随后在荷瘤小鼠中进行双模式成像和PDT。 Chlorin e6能够将疏水性SPION溶解成稳定的水溶性纳米簇,而无需使用任何其他两亲物或载体。该方法可重现,并且在生理条件下Ce6-SCs高度稳定。 Ce6-SCs的平均直径为92 nm,低多分散性(平均PDI <0.2)。 Ce6和SPION的封装效率均为≈100%,Ce6的总有效载荷可高达总重量(Ce6 + Fe)的56%。 Ce6-SCs通过增强的通透性和保留力定位在肿瘤内,并且可以通过磁共振(MR)和光学成像检测到。使用PDT,Ce6-SCs可以产生高的单线态氧并在小鼠中显着延迟肿瘤的生长。

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