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基于疏水性改性壳聚糖的炎症性关节炎体内定量测量关节炎活动:比被动聚集更活跃。

In vivo quantitative measurement of arthritis activity based on hydrophobically modified glycol chitosan in inflammatory arthritis: more active than passive accumulation.

机构信息

Biomedical Research Center, Korea Institute of Science and Technology, Hawolgok-dong, Seongbuk-gu, Seoul.

出版信息

Mol Imaging. 2012 Sep-Oct;11(5):389-400.

Abstract

We demonstrated that arthritis could be visualized noninvasively using hydrophobically modified glycol chitosan nanoparticles labeled with Cy5.5 (HGC-Cy5.5) and an optical imaging system. Activated macrophages expressing Mac-1 molecules effectively phagocytosed HGC-Cy5.5, which formed spherical nanoparticles under physiologic conditions. We estimated the applicability of HGC-Cy5.5 to quantitative analysis of arthritis development and progression. Near-infrared fluorescence images, captured after HGC-Cy5.5 injection in mice with collagen-induced arthritis, showed stronger fluorescence intensity in the active arthritis group than in the nonarthritis group. According to the progression of arthritis in both collagen-induced arthritis and collagen antibody-induced arthritis models, total photon counts (TPCs) increased in parallel with the clinical arthritis index. Quantitative analysis of fluorescence after treatment with methotrexate showed a significant decrease in TPC in a dose-dependent manner. Histologic evaluation confirmed that the mechanism underlying selective accumulation of HGC-Cy5.5 within synovitis tissues included enhanced phagocytosis of the probe by Mac-1-expressing macrophages as well as enhanced permeability through leaky vessels. These results suggest that optical imaging of arthritis using HGC-Cy5.5 can provide an objective measurement of disease activity and, at the same time, therapeutic responses in rheumatoid arthritis.

摘要

我们证明,使用 Cy5.5 标记的疏水性修饰的乙二醇壳聚糖纳米颗粒(HGC-Cy5.5)和光学成像系统可以非侵入性地可视化关节炎。表达 Mac-1 分子的活化巨噬细胞有效地吞噬 HGC-Cy5.5,在生理条件下形成球形纳米颗粒。我们估计 HGC-Cy5.5 在关节炎发展和进展的定量分析中的适用性。在胶原诱导性关节炎小鼠中注射 HGC-Cy5.5 后,近红外荧光图像显示活跃性关节炎组的荧光强度强于非关节炎组。根据胶原诱导性关节炎和胶原抗体诱导性关节炎模型中关节炎的进展,总光子计数(TPC)与临床关节炎指数平行增加。甲氨蝶呤治疗后的荧光定量分析显示 TPC 呈剂量依赖性显著下降。组织学评估证实,HGC-Cy5.5 在滑膜炎组织中的选择性积累的机制包括表达 Mac-1 的巨噬细胞对探针的增强吞噬作用以及通过渗漏血管的增强通透性。这些结果表明,使用 HGC-Cy5.5 对关节炎进行光学成像可以提供疾病活动的客观测量,同时还可以测量类风湿关节炎的治疗反应。

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