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叶酸偶联壳聚糖纳米粒在调节激活的巨噬细胞改善炎症性关节炎中的作用:体内外活性。

Role of folate-conjugated glycol-chitosan nanoparticles in modulating the activated macrophages to ameliorate inflammatory arthritis: in vitro and in vivo activities.

机构信息

NanoBiotech Lab, Department of Zoology, Kirori Mal College, University of Delhi, Delhi, 110007, India.

Division of Cyclotron and Radiopharmaceutical Sciences, Institute of Nuclear Medicine and Allied Sciences, Delhi, 110054, India.

出版信息

Drug Deliv Transl Res. 2020 Aug;10(4):1057-1075. doi: 10.1007/s13346-020-00765-w.

Abstract

Activated macrophages are the primary targets in rheumatoid arthritis (RA) management. So, we report efficacious, dual-functional Methotrexate (MTX) loaded folate-conjugated pH-responsive glycol-chitosan nanoparticles (MFGCN) prepared by nano-precipitation and zero-order cross-linking reaction for targeting inflamed arthritic tissue. Physical characterization by DLS, SEM and TEM indicated a spherical, smooth morphology with a diameter ~ 300 nm. H NMR and FTIR indicated folic acid conjugation to GC by zero-order cross-linkers. In vitro release kinetics in PBS showed pH-responsive and sustained release behaviour of MFGCN. Enhanced cellular uptake and cytotoxicity of MFGCN in LPS(+)RAW and activated peritoneal macrophages (Mϕ) were observed when compared to LPS(-)RAW cells. MFGCN-induced mitochondrial membrane potential (MMP) perturbations indicated apoptosis. Oxidative stress was evident by significant increase in ROS and RNS, 4 h post incubation with MFGCN. Negligible hemolysis by FGCN and MFGCN on rat RBC's indicated biocompatibility. In vivo biodistribution of MFGCN in adjuvant-induced arthritis (AIA) rats indicated RA targetability. Prolonged blood circulation coupled with higher concentrations of Tc-MFGCN at the arthritic site was observed post 24 h of injection. The gamma scintigraphic image confirmed accumulation of radiolabelled MFGCN in arthritic paw when compared to the non-inflamed paw, confirming the selective uptake of Tc-MFGCN by folate-overexpressing macrophages in the arthritic synovium thereby proving its targeted efficacy and theranostic potential. In AIA rats, MFGCN lowers arthritic signs, improves antioxidant response and decreases pro-inflammatory cytokines, suggesting its potential in targeting activated macrophages of synovium. Graphical abstract.

摘要

活化的巨噬细胞是类风湿关节炎 (RA) 治疗的主要靶标。因此,我们报告了一种有效的、双重功能的甲氨蝶呤 (MTX) 负载叶酸偶联 pH 响应型乙二醇壳聚糖纳米粒子 (MFGCN),它是通过纳米沉淀和零阶交联反应制备的,用于靶向炎症性关节炎组织。通过 DLS、SEM 和 TEM 进行的物理特性分析表明,其具有球形、光滑的形态,直径约为 300nm。1H NMR 和 FTIR 表明,通过零阶交联剂将叶酸偶联到 GC 上。在 PBS 中的体外释放动力学研究表明,MFGCN 具有 pH 响应性和持续释放行为。与 LPS(-)RAW 细胞相比,MFGCN 在 LPS(+)RAW 和活化的腹腔巨噬细胞 (Mϕ) 中表现出增强的细胞摄取和细胞毒性。MFGCN 诱导的线粒体膜电位 (MMP) 波动表明细胞凋亡。孵育 4 小时后,ROS 和 RNS 的显著增加表明氧化应激。FGCN 和 MFGCN 对大鼠 RBC 的轻微溶血表明其生物相容性。MFGCN 在佐剂诱导关节炎 (AIA) 大鼠体内的生物分布表明其对 RA 的靶向性。注射后 24 小时,观察到 MFGCN 在血液循环中的延长时间和在关节炎部位的更高浓度 Tc-MFGCN。伽马闪烁成像确认了与非炎症性 paw 相比,放射性标记的 MFGCN 在关节炎 paw 中的积累,证实了叶酸过表达的巨噬细胞在关节炎滑膜中对 Tc-MFGCN 的选择性摄取,从而证明了其靶向疗效和治疗潜力。在 AIA 大鼠中,MFGCN 降低关节炎迹象,改善抗氧化反应并降低促炎细胞因子,表明其在靶向滑膜活化巨噬细胞方面具有潜力。

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