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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Super-paramagnetic loaded nanoparticles based on biological macromolecules for in vivo targeted MR imaging
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Super-paramagnetic loaded nanoparticles based on biological macromolecules for in vivo targeted MR imaging

机译:基于生物大分子的超顺磁性负载纳米粒子用于体内靶向MR成像

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摘要

Target-specific MRI contrast agent based on super-paramagnetic iron oxide-chitosan-folic acid (SPIONP-CS-FA) nanoparticles was fabricated by using an ionotropic gelation method, which involved the loading of SPIONPs at various concentrations into CS-FA nanoparticles by electrostatic interaction. The SPIONP-CS-FA nanoparticles were characterized by ATR-FTIR, XRD, TEM, and VSM techniques. This study revealed that the advantages of this system would be green fabrication, low cytotoxicity at iron concentrations ranging from 0.52 mg/L, to 4.16 mg/L, and high water stability (pH 6) at 4 degrees C over long periods. Average particle size and positive zeta-potential of the SPIONP-CS-FA nanoparticles was found to be 130 nm with narrow size distribution and 42 mV, respectively. In comparison to SPIONP-0.5-CS nanoparticles, SPIONP-0.5-CS-FA nanoparticles showed higher and specific cellular uptake levels into human cervical adenocarcinoma cells due to the presence of folate receptors, while in vivo results (Wistar rat) indicated that only liver tissue showed significant decreases in MR image intensity on T-2 weighted images and T-2* weighted images after post-injection, in comparison with other organs. Our results demonstrated that SPIONP-CS-FA nanoparticles can be applied as an either tumor or organ specific MRI contrast agents. (C) 2016 Elsevier B.V. All rights reserved.
机译:采用离子胶凝法制备了基于超顺磁性氧化铁-壳聚糖-叶酸(SPIONP-CS-FA)纳米粒子的靶标MRI造影剂,该方法包括将各种浓度的SPIONPs负载到CS-FA纳米粒子中。静电相互作用。 SPIONP-CS-FA纳米颗粒通过ATR-FTIR,XRD,TEM和VSM技术进行了表征。这项研究表明,该系统的优点是绿色制造,铁浓度范围从0.52 mg / L到4.16 mg / L的低细胞毒性以及长期在4摄氏度的高水稳定性(pH 6)。发现SPIONP-CS-FA纳米颗粒的平均粒径和正ζ电位为130nm,具有窄的粒径分布和42mV。与SPIONP-0.5-CS纳米颗粒相比,SPIONP-0.5-CS-FA纳米颗粒由于存在叶酸受体而显示出更高的和特定的细胞摄入人类宫颈腺癌细胞的水平,而体内结果(Wistar大鼠)表明只有肝脏与其他器官相比,注射后T-2加权图像和T-2 *加权图像上的组织显示MR图像强度显着降低。我们的结果表明,SPIONP-CS-FA纳米颗粒可以用作肿瘤或器官特异性MRI造影剂。 (C)2016 Elsevier B.V.保留所有权利。

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