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Multifunctional Fe5C2 nanoparticles: A platform for magnetic resonance imaging, photoacoustic tomography and photothermal therapy

机译:多功能Fe 5 C 2 纳米粒子:磁共振成像,光声断层扫描和光热疗法平台

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Summary form only given. Hagg iron carbide nanoparticles (FeC NPs) encapsulated by carbon, which preserving high magnetic properties, can be good candidates for magnetic resonance imaging (MRI). With carbon coating, high near-infrared (NIR) optical absorbance can be pursued for potential biological applications, including photoacoustic tomography (PAT) and photothermal therapy (PTT). Here, we present FeC-based NPs, FeC-PEG-Z as a novel probe for bimodal tumor imaging and therapy. The probe exhibits high saturation magnetization (102 emu/g), r relaxivity (142.13 mMs) and temperature increasing after exposure to NIR, and the conjugation of Z enabled the targeting to HER2-overexpressed cells (SK-OV-3 cells). After incubation with FeC-PEG-Z in vitro, SK-OV-3 cells showed much lower MRI T signal compared with cells incubated with FeC-PEG or without treatment, and no noticeable in vitro toxicity has been observed. Determined by using a uorescent viability stain, cells incubated with FeC-PEG-Z and exposed to NIR light (808 nm) were found to have undergone photothermally induced morbidity. The in vivo experiments were carried out on nude mice with ovarian cancer modal. After injection of FeC-PEG-Z through the tail vein, it showed long-lasting negative-contrast enhancement MRI as well as high PAT signal at the tumor site. We further use FeC-PEG-Z for PTT, and achieved effective tumor ablation after NIR irritation. From the loss of body weight, morphological and pathological examinations, almost no systematic toxicity has been observed. Our results highlight the great potential of FeC-PEG-Z as a multifunctional probe for cancer theranostic applications.
机译:摘要表格仅给出。通过碳包封的Hagg铁碳化物纳米颗粒(FEC NPS),其保留高磁性,可以是磁共振成像(MRI)的良好候选者。利用碳涂层,可以追随高近红外(NIR)光学吸收,用于潜在的生物应用,包括光声断层扫描(PAT)和光热疗(PTT)。在这里,我们将基于FEC的NPS,FEC-PEG-Z作为双峰肿瘤成像和治疗的新探针。探针具有高饱和磁化强度(102 emu / g),R松弛率(142.13毫米)和暴露于NIR后的温度增加,并且Z的缀合使靶向HER2-过表达细胞(SK-OV-3细胞)。与体外FEC-PEG-Z温育后,与与FEC-PEG或不治疗的细胞相比,SK-OV-3细胞显示得更低的MRI T信号,并且已经观察到体外毒性明显。通过使用荧光活力染色确定,发现与FEC-PEG-Z孵育并暴露于NIR光(808nm)的细胞经过光热诱导的发病率。体内实验在具有卵巢癌模态的裸鼠上进行。通过尾静脉注射FEC-PEG-Z后,它显示出持续的负对比增强MRI以及肿瘤部位的高PAT信号。我们进一步使用FEC-PEG-Z对于PTT,并在NIR刺激后实现了有效的肿瘤消融。从体重丧失,形态和病理检查中,几乎没有观察到系统的毒性。我们的结果突出了FEC-PEG-Z作为癌症治疗应用的多功能探针的巨大潜力。

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