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111In- and IRDye800CW-Labeled PLA–PEG Nanoparticle for Imaging Prostate-Specific Membrane Antigen-Expressing Tissues

机译:111In和IRDye800CW标签的PLA-PEG纳米颗粒可用于对前列腺特异性膜抗原表达组织进行成像。

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摘要

Targeted delivery of drug-encapsulated nanoparticles is a promising new approach to safe and effective therapeutics for cancer. Here we investigate the pharmacokinetics and biodistribution of a prostate-specific membrane antigen (PSMA)-targeted nanoparticle based on a poly(lactic acid)–polyethylene glycol copolymer by utilizing single photon emission computed tomography (SPECT) and fluorescence imaging of a low-molecular-weight, PSMA-targeting moiety attached to the surface and oriented toward the outside environment. Tissue biodistribution of the radioactive, PSMA-targeted nanoparticles in mice containing PSMA(+) PC3 PIP and PSMA(−) PC3 flu (control) tumors demonstrated similar accumulation compared to the untargeted particles within all tissues except for the tumor and liver by 96 h postinjection. For PSMA(+) PC3 PIP tumor, the targeted nanoparticle demonstrated retention of 6.58% injected dose (ID)/g at 48 h and remained nearly at that level out to 96 h, whereas the untargeted nanoparticle showed a 48 h retention of 8.17% ID/g followed by a significant clearance to 2.37% ID/g at 96 h (P < 0.02). On the other hand, for control tumor, both targeted and untargeted particles displayed similar 48 h retentions and rates of clearance over 96 h. Ex vivo microscopic analysis with near-infrared versions of the nanoparticles indicated retention within PSMA(+) tumor epithelial cells as well as tumor-associated macrophages for targeted particles and primarily macrophage-associated uptake for the untargeted particles. Retention in control tumor was primarily associated with tumor vasculature and macrophages. The data demonstrate the utility of radioimaging to assess nanoparticle biodistribution and suggest that active targeting has a modest positive effect on tumor localization of PSMA-targeted PLA–PEG nanoparticles that have been derivatized for imaging.
机译:药物包裹的纳米颗粒的靶向递送是用于癌症的安全有效疗法的有前途的新方法。在这里,我们利用单光子发射计算机断层扫描(SPECT)和低分子荧光成像技术,研究基于聚乳酸-聚乙二醇共聚物的前列腺特异性膜抗原(PSMA)靶向纳米粒子的药代动力学和生物分布。重量的PSMA靶向部分附着在表面并朝向外部环境。在包含PSMA(+)PC3 PIP和PSMA(-)PC3流感(对照)肿瘤的小鼠中,放射性PSMA靶向纳米粒子的组织生物分布与除肿瘤和肝脏外的所有组织中的非靶向粒子相比,在96 h内表现出相似的积累注射后。对于PSMA(+)PC3 PIP肿瘤,靶向纳米颗粒在48 h时可保留6.58%的注射剂量(ID)/ g,并在96 h时几乎保持该水平,而未靶向的纳米颗粒在48 h时可保留8.17% ID / g,随后在96 h时明显清除至2.37%ID / g(P <0.02)。另一方面,对于对照肿瘤,靶向和未靶向的颗粒在96小时内均表现出相似的48 h保留时间和清除率。具有近红外版本的纳米粒子的离体显微镜分析表明,在PSMA(+)肿瘤上皮细胞内以及在与肿瘤相关的巨噬细胞中保留了目标颗粒,并在主要与巨噬细胞相关的摄取中保留了目标颗粒。保留在对照肿瘤中主要与肿瘤脉管系统和巨噬细胞有关。数据证明了放射成像技术在评估纳米颗粒生物分布方面的实用性,并表明主动靶向对已衍生化成像的PSMA靶向PLA-PEG纳米颗粒的肿瘤定位具有适度的积极作用。

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