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载多柔比星的超小尺寸金纳米粒子(1.5nm)用于脑肿瘤治疗及其生物分布评估。

Doxorubicin-Loaded Ultrasmall Gold Nanoparticles (1.5 nm) for Brain Tumor Therapy and Assessment of Their Biodistribution.

机构信息

Inorganic Chemistry and Centre of Nanointegration Duisburg-Essen (CENIDE), University of Duisburg-Essen, Universitaetsstr. 5-7, Essen 45117, Germany.

Department of Chemical and Materials Engineering, Chang Gung University, Kwei-San, Taoyuan 33302, Taiwan.

出版信息

ACS Appl Bio Mater. 2024 Oct 21;7(10):6890-6907. doi: 10.1021/acsabm.4c00999. Epub 2024 Sep 6.

DOI:10.1021/acsabm.4c00999
PMID:39240877
Abstract

Ultrasmall gold nanoparticles (1.5 nm) were covalently conjugated with doxorubicin (AuDox) and AlexaFluor647 (AuAF647) to assess their biodistribution and their efficiency toward brain tumors (glioblastoma). A thorough characterization by transmission electron microscopy, small-angle X-ray scattering, and differential centrifugal sedimentation confirmed their uniform ultrasmall nature which makes them very mobile in the body. Each nanoparticle carried either 13 doxorubicin molecules (AuDox) or 2.7 AlexaFluor-647 molecules (AuAF647). The firm attachment of the ligands to the nanoparticles was demonstrated by their resilience to extensive washing, followed by centrifugation. The particles easily entered mammalian cells (HeLa, T98-G, brain endothelial cells, and human astrocytes) due to their small size. The intravenously delivered fluorescing AuAF647 nanoparticles crossed the blood-brain barrier with ∼23% accumulation in the brain tumor in an orthotopic U87 brain tumor model in nude mice. This was confirmed by elemental analysis (gold; inductively coupled plasma optical emission spectroscopy) in various organs. The doxorubicin-loaded AuDox nanoparticles inhibited brain tumor growth and prolonged animal survival without adverse side effects. Most of the nanoparticles (84%) had been excreted from the animal after 24 h, indicating a high mobility in the body.

摘要

超小的金纳米粒子(1.5nm)与阿霉素(AuDox)和 AlexaFluor647(AuAF647)共价连接,以评估它们在脑肿瘤(神经胶质瘤)中的分布和效率。透射电子显微镜、小角 X 射线散射和差速离心沉淀的全面特征分析证实了它们均匀的超小性质,这使得它们在体内非常活跃。每个纳米粒子携带 13 个阿霉素分子(AuDox)或 2.7 个 AlexaFluor-647 分子(AuAF647)。配体与纳米粒子的牢固结合通过其对广泛洗涤和随后的离心的抵抗力得到证明。由于其体积小,这些颗粒很容易进入哺乳动物细胞(HeLa、T98-G、脑内皮细胞和人星形胶质细胞)。静脉注射的荧光 AuAF647 纳米颗粒通过血脑屏障,在裸鼠的原位 U87 脑肿瘤模型中约 23%的脑肿瘤中积累。这在各种器官中的元素分析(金;电感耦合等离子体光发射光谱)中得到了证实。载有阿霉素的 AuDox 纳米颗粒抑制了脑肿瘤的生长,延长了动物的存活时间,没有不良反应。24 小时后,大部分纳米颗粒(84%)已从动物体内排出,表明其在体内的迁移率较高。

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