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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >In vitro evaluation of actively targetable superparamagnetic nanoparticles to the folate receptor positive cancer cells
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In vitro evaluation of actively targetable superparamagnetic nanoparticles to the folate receptor positive cancer cells

机译:主动靶向超顺磁性纳米粒子对叶酸受体阳性癌细胞的体外评估

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摘要

Engineering of a physiologically compatible, stable and targetable SPIONs-CA-FA formulation was reported. Initially fabricated superparamagnetic iron oxide nanoparticles (SPIONs) were coated with citric acid (CA) to hamper agglomeration as well as to ameliorate biocompatibility. Folic acid (FA) as a targeting agent was then conjugated to the citric acid coated SPIONs (SPIONs-CA) for targeting the specific receptors expressed on the FAR+ cancer cells. Physiochemical characterizations were then performed to assure required properties like stability, size, phase purity, surface morphology, chemical integrity and magnetic properties. In vitro evaluations (MTT assay) were performed on HeLa, HSF 1184, MDA-MB-468 and MDA-MB-231ce11 lines to ensure the biocompatibility of SPIONs-CA-FA. There were no morphological changes and lysis in contact with erythrocytes recorded for SPIONs-CA-FA and SPIONs-G4. High level of SPIONs-CA-FA binding to FAR+ cell lines was assured via qualitative and quantitative in vitro binding studies. Hence, SPIONs-CA-FA was introduced as a promising tool for biomedical applications like magnetic hyperthermia and drug delivery. The in vitro findings presented in this study need to be compared with those of in vivo studies. (C) 2016 Elsevier B.V. All rights reserved.
机译:报道了生理相容,稳定和可靶向的SPIONs-CA-FA制剂的工程设计。最初制造的超顺磁性氧化铁纳米粒子(SPIONs)涂有柠檬酸(CA),以防止团聚并改善生物相容性。然后将叶酸(FA)作为靶向剂与柠檬酸包被的SPION(SPIONs-CA)偶联,以靶向在FAR +癌细胞上表达的特定受体。然后进行物理化学表征以确保所需的性质,例如稳定性,尺寸,相纯度,表面形态,化学完整性和磁性。在HeLa,HSF 1184,MDA-MB-468和MDA-MB-231ce11品系上进行了体外评估(MTT分析),以确保SPIONs-CA-FA的生物相容性。 SPIONs-CA-FA和SPIONs-G4的红细胞接触没有形态学变化和裂解。通过定性和定量的体外结合研究确保了SPIONs-CA-FA与FAR +细胞系的高结合水平。因此,SPIONs-CA-FA被引入作为一种有前途的工具,用于磁热疗和药物输送等生物医学应用。这项研究中提出的体外发现需要与体内研究进行比较。 (C)2016 Elsevier B.V.保留所有权利。

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