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首页> 外文期刊>ACS Omega >Enhancing Passive Transport of Micro/Nano Particles into Cells by Oxidized Carbon Black
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Enhancing Passive Transport of Micro/Nano Particles into Cells by Oxidized Carbon Black

机译:通过氧化炭黑增强微/纳米颗粒到细胞的被动转运

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Uses of micro-ano-sized particles to deliver biologically active entities into cells are common for medical therapeutics and prophylactics and also for cellular experiments. Enhancing cellular uptake and avoiding destruction by lysosomes are desirable for general particulate drug delivery systems. Here, we show that the relatively nontoxic, negatively charged oxidized carbon black particles (OCBs) can enhance cellular penetration of micro- and nano-particles. Experiments with retinal-grafted chitosan particles (PRPs) with hydrodynamic sizes of 1200 ± 51.5, 540 ± 29.0, and 430 ± 11.0 nm (three-sized model particles) indicate that only the sub-micron-sized particles can penetrate the first layer of multilayered liposomes. However, in the presence of OCBs, the micron-sized PRPs and the two submicron-sized PRPs can rapidly enter the interiors of all layers of the multilayered liposomes. Very low cellular uptakes of micro- and submicron-sized PRPs into keratinocytes cells are usually observed. However, in the presence of OCBs, faster and higher cellular uptakes of all of the three-sized PRPs are clearly noticed. Intracellular traffic monitoring of PRP uptake into HepG2 cells in the presence of OCBs revealed that the PRPs did not co-localize with endosomes, suggesting a nonendocytic uptake process. This demonstration of OCB’s ability to enhance cellular uptake of micro- and submicron-particles should open up an easy strategy to effectively send various carriers into cells.
机译:在医学治疗和预防以及细胞实验中,通常使用微米/纳米尺寸的颗粒将生物活性实体递送到细胞中。对于一般的颗粒药物递送系统,期望增加细胞摄取并避免被溶酶体破坏。在这里,我们表明相对无毒,带负电荷的氧化的炭黑颗粒(OCBs)可以增强微米和纳米粒子的细胞渗透。视网膜移植的壳聚糖颗粒(PRP)的流体动力学尺寸为1200±51.5、540±29.0和430±11.0 nm(三种尺寸的模型颗粒)的实验表明,只有亚微米尺寸的颗粒可以穿透第一层多层脂质体。然而,在存在OCB的情况下,微米级的PRP和两个亚微米级的PRP可以迅速进入多层脂质体的所有层的内部。通常观察到微米级和亚微米级PRP在角质形成细胞中的细胞吸收非常低。但是,在存在OCB的情况下,所有三种尺寸的PRP都可以更快,更高地吸收细胞。在OCB存在的情况下,对HepG2细胞中PRP摄取的细胞内流量监测显示,PRP与内体未共定位,表明存在非内吞性摄取过程。 OCB能够增强细胞对微米和亚微米颗粒吸收的能力的这一证明,应该开辟一种简单的策略,可以有效地将各种载体带入细胞。

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