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首页> 外文期刊>Investigative radiology >Small particulate gadolinium oxide and gadolinium oxide albumin microspheres as multimodal contrast and therapeutic agents.
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Small particulate gadolinium oxide and gadolinium oxide albumin microspheres as multimodal contrast and therapeutic agents.

机译:小颗粒氧化g和氧化album白蛋白微球作为多峰造影剂和治疗剂。

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RATIONALE AND OBJECTIVE: To prepare and characterize new particulate contrast media, small particulate gadolinium oxide (SPGO) and gadolinium oxide albumin microspheres (GOAM), as prototype multimodal imaging and therapeutic agents. METHODS: SPGO was purchased from Alfa Aesar Inc. (Ward Hill, MA). GOAM were synthesized via ultrasonic irradiation using SPGO and 5% bovine serum albumin in aqueous solution. SPGO and GOAM were characterized by size, concentration, structure, and gadolinium content. Their relaxivity at high magnetic field strength and x-ray attenuating abilities were evaluated in 0.4% agar gel at room temperature. RESULTS: SPGO were confirmed to be 20-40 nm in diameter. GOAM have an average size of 2 to 5 microm and show a relatively homogeneous distribution of SPGO within the albumin microspheres. T1 and T2 relaxivity of GOAM was 6.7 seconds(-1) mmol/L(-1) and 38.5 seconds(-1) mmol/L(-1), respectively, while that of SPGO was 0.2 seconds(-1) mmol/L(-1) and 6.8 seconds(-1) mmol/L(-1), respectively. At 0, 0.004, 0.16, 4.0, and 16.0 mmol/L SPGO, x-ray attenuation values were measured at 2.11, 3.48, 7.06, 39.83, and 187.33 Hounsfield units, respectively. CONCLUSIONS: Use of SPGO and SPGO encapsulated in non-heat-hardened albumin microspheres (GOAM) represents a new approach. SPGO and GOAM have suitable physicochemical properties to warrant further biophysical and animal studies and reevaluation of toxicity limitations.
机译:理由和目的:制备和表征新型颗粒对比剂,小颗粒氧化oxide(SPGO)和氧化oxide白蛋白微球(GOAM),作为多峰成像和治疗剂的原型。方法:SPGO购自Alfa Aesar Inc.(马萨诸塞州,沃德希尔)。使用SPGO和5%牛血清白蛋白在水溶液中通过超声辐照合成GOAM。 SPGO和GOAM由大小,浓度,结构和g含量表征。在室温下于0.4%琼脂凝胶中评估了它们在高磁场强度下的弛豫性和X射线衰减能力。结果:证实SPGO的直径为20-40 nm。 GOAM的平均大小为2到5微米,并且在白蛋白微球内显示SPGO相对均匀的分布。 GOAM的T1和T2弛豫度分别为6.7秒(-1)mmol / L(-1)和38.5秒(-1)mmol / L(-1),而SPGO的弛豫度为0.2秒(-1)mmol / L L(-1)和6.8秒(-1)mmol / L(-1)。在0、0.004、0.16、4.0和16.0 mmol / L SPGO时,分别以2.11、3.48、7.06、39.83和187.33 Hounsfield单位测量x射线衰减值。结论:使用封装在非热硬化白蛋白微球(GOAM)中的SPGO和SPGO代表了一种新方法。 SPGO和GOAM具有合适的理化特性,可以进行进一步的生物物理和动物研究,并重新评估毒性极限。

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