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首页> 外文期刊>Nanoscale >Folate receptor targeted, carboxymethyl chitosan functionalized iron oxide nanoparticles: a novel ultradispersed nanoconjugates for bimodal imaging
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Folate receptor targeted, carboxymethyl chitosan functionalized iron oxide nanoparticles: a novel ultradispersed nanoconjugates for bimodal imaging

机译:叶酸受体靶向,羧甲基壳聚糖功能化氧化铁纳米粒子:一本小说ultradispersed nanoconjugates双峰成像

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This article delineates the design and synthesis of a novel, bio-functionalized, magneto-fluorescent multifunctional nanoparticles suitable for cancer-specific targeting, detection and imaging. Biocompatible, hydrophilic, magneto-fluorescent nanoparticles with surface-pendant amine, carboxyl and aldehyde groups were designed using o-carboxymethyl chitosan (OCMC). The free amine groups of OCMC stabilized magnetite nanoparticles on the surface allow for the covalent attachment of a fluorescent dye such as rhodamine isothiocyanate (RITC) with the aim to develop a magneto-fluorescent nanoprobe for optical imaging. In order to impart specific cancer cell targeting properties, folic acid and its aminated derivative was conjugated onto these magneto-fluorescent nanoparticles using different pendant groups (-NH2, -COOH, -CHO). These newly synthesized iron-oxide folate nanoconjugates (FA-RITC-OCMC-SPIONs) showed excellent dispersibility, biocompatibility and good hydrodynamic sizes under physiological conditions which were extensively studied by a variety of complementary techniques. The cellular internalization efficacy of these folate-targeted and its non-targeted counterparts were studied using a folate-overexpressed (HeLa) and a normal (L929 fibroblast) cells by fluorescence microscopy and magnetically activated cell sorting (MACS). Cell-uptake behaviors of nanoparticles clearly demonstrate that cancer cells over-expressing the human folate receptor internalized a higher level of these nanoparticle-folate conjugates than normal cells. These folate targeted nanoparticles possess specific magnetic properties in the presence of an external magnetic field and the potential of these nanoconjugates as T2-weighted negative contrast MR imaging agent were evaluated in folate-overexpressed HeLa and normal L929 fibroblast cells.
机译:本文对设计和合成一本小说,bio-functionalizedmagneto-fluorescent多功能纳米粒子适用于癌症特异性定位、检测和成像。magneto-fluorescent纳米粒子与水面系胺、羧基和醛使用o-carboxymethyl组设计壳聚糖(OCMC)。稳定的磁铁矿纳米颗粒表面上允许的共价连接若丹明异硫氰酸酯等荧光染料(RITC)发展目标magneto-fluorescent nanoprobe光学成像。针对属性,叶酸及其胺化了的导数是共轭到这些magneto-fluorescent纳米粒子使用不同的吊坠组(- nh2,羧基,cho)。合成氧化铁叶酸nanoconjugates(FA-RITC-OCMC-SPIONs)太好了可分散性,生物相容性好在生理条件下流体动力的大小被广泛地研究了各种各样的吗互补的技术。这些folate-targeted内化的效果并给出了一道同行使用folate-overexpressed(海拉)和正常(L929成纤维细胞)细胞的荧光显微镜和磁激活细胞排序(mac)。纳米颗粒明显证明癌症细胞过度表达人类的叶酸受体内化这些更高层次的nanoparticle-folate轭合物比正常细胞。这些叶酸靶向纳米颗粒特定的磁性的外部磁场和潜在的这些nanoconjugates t2加权负面的对比显像剂先生进行了评估folate-overexpressed海拉和正常L929成纤维细胞。

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