首页> 外文期刊>Journal of drug targeting >Interactions between a macrophage cell line (J774A1) and surface-modified poly (D,L-lactide) nanocapsules bearing poly(ethylene glycol).
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Interactions between a macrophage cell line (J774A1) and surface-modified poly (D,L-lactide) nanocapsules bearing poly(ethylene glycol).

机译:巨噬细胞系(J774A1)与表面修饰的带有聚乙二醇的聚(D,L-丙交酯)纳米胶囊之间的相互作用。

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The interactions of naked and surface-modified poly(D,L-lactic acid) (PLA) nanocapsules (NC), where polyethyleneglycol (PEG) was adsorbed or covalently attached, have been studied with a macrophage-like cell line. The fluorescent oil marker, DiD, was successfully encapsulated in NCs in order to follow their interactions with cells. The cell-associated fluorescence obtained with PEG-PLA NC was about 3- to 13-fold lower than that obtained with naked-PLA NC. The effects of PEG chain length, its content as a percentage of total polymer and NC concentration in the culture medium were evaluated. PEG-PLA NC showed dramatically reduced fluorescence association with cells during an 18 h incubation compared with naked-PLA NC, showing that covalent attachment of PEG is important for the persistence of low uptake. The best results in reducing cell-associated fluorescence were obtained with a surface-modified PEG-PLA NC bearing a chain with 20000 MW. Increasing the percentage of PEG produced a reduction in marker association for a given PEG chain length. Moreover, when the PEG-containing poloxamer was simply adsorbed, marker association was dependent on the extent of dilution and the type of serum in the culture medium. Serum proteins, especially immunoglobulins, increased cell-associated fluorescence for PEG-adsorbed NC, but had very little effect on PEG-PLA NC. Marker association was only partially inhibited in the presence of cytochalasin B. The mechanisms of cell-NC interaction depended on the characteristics of the NC surface in each formulation. When the NC was physically separated from cells no diffusion of fluorescent marker in aqueous medium occurred. Nevertheless, collision-mediated transfer of DiD from NC to J774 cells was a non-negligible route of marker transfer, mainly for naked NC. However, this collision-mediated transfer was reduced for the PEG-PLA NC probably due to the restricted contact between NC and cells afforded by PEG steric hindrance at the surface.
机译:已经用巨噬细胞样细胞系研究了裸露的和表面改性的聚(D,L-乳酸)(PLA)纳米胶囊(NC)的相互作用,其中聚乙二醇(PEG)被吸附或共价连接。荧光油标记物DiD已成功封装在NC中,以追踪其与细胞的相互作用。 PEG-PLA NC获得的细胞相关荧光比裸PLA NC获得的细胞相关荧光低约3到13倍。评估了PEG链长,其含量(占总聚合物的百分比)和培养基中NC浓度的影响。 PEG-PLA NC与裸PLA NC相比,在18 h孵育过程中显示出与细胞的荧光缔合显着降低,这表明PEG的共价连接对于持久的低摄取很重要。使用带有20000 MW链的表面改性PEG-PLA NC,可获得减少细胞相关荧光的最佳结果。对于给定的PEG链长,增加PEG百分比会导致标记缔合的减少。此外,当简单地吸附含PEG的泊洛沙姆时,标志物的缔合取决于稀释程度和培养基中血清的类型。血清蛋白,尤其是免疫球蛋白,增加了PEG吸附NC的细胞相关荧光,但对PEG-PLA NC的影响很小。在细胞松弛素B存在下,标记缔合仅被部分抑制。细胞-NC相互作用的机制取决于每种制剂中NC表面的特征。当NC从细胞中物理分离时,在水性介质中没有发生荧光标记物的扩散。尽管如此,碰撞介导的DiD从NC到J774细胞的转移是标记转移的不可忽略的途径,主要是裸NC。但是,PEG-PLA NC的这种碰撞介导的转移减少了,这可能是由于NC与表面上PEG空间位阻所提供的细胞之间的接触受限所致。

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