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纳米结构脂质载体在酸吸入性急性肺损伤中的小窝摄取和内皮保护作用。

Caveolar uptake and endothelial-protective effects of nanostructured lipid carriers in acid aspiration murine acute lung injury.

机构信息

First Department of Critical Care Medicine & Pulmonary Services GP Livanos and M Simou Laboratories, Evangelismos Hospital, Medical School of Athens University, Athens, Greece.

出版信息

Pharm Res. 2013 Jul;30(7):1836-47. doi: 10.1007/s11095-013-1027-2. Epub 2013 Apr 3.

Abstract

PURPOSE

Nanostructured lipid carriers (NLC), nanosized phospholipids/triglyceride particles developed for drug delivery, are considered biologically inactive. We assessed the efficacy of unloaded NLC as experimental treatment for acute lung injury (ALI).

METHODS

To induce ALI, C57Black/6 male mice received intratracheal injections of HCl or saline; A single dose of 16 mg/Kg NLC or saline was injected intravenously concomitantly with HCl challenge. NLC uptake mechanisms and effects on endothelial permeability and signaling were studied in cultured endothelial cells and neutrophils.

RESULTS

NLC pre-treatment attenuated pulmonary microvascular protein leak, airspace inflammatory cells, thrombin proteolytic activity and histologic lung injury score 24 h post insult. Using fluorescence measurements and flow cytometry in mouse lung microvascular endothelial cell culture homogenates, we determined that NLC rendered fluorescent by curcumin labeling are taken up by endothelial cells from mice expressing caveolin-1, the coat protein of caveolar endocytic vesicles, but not from caveolin-1 gene-disrupted mice, which lack caveolae. In contrast, conventional emulsions (CE), consisting of larger particles, were not incorporated. In addition, NLC pre-treatment of cultured human lung microvascular endothelial cells abrogated thrombin-induced activation of p44/42, albumin permeability response, actin cytoskeletal remodeling and interleukin-6 production. Finally, NLC but not CE abrogated lipopolysaccharide-triggered interleukin-8 release.

CONCLUSIONS

NLC are engulfed by endothelial caveolae and possess endothelial-protective effects. These novel properties may be of potential utility in ALI.

摘要

目的

纳米结构脂质载体(NLC)是为药物输送开发的纳米级磷脂/甘油三酯颗粒,被认为是生物惰性的。我们评估了未载药的 NLC 作为急性肺损伤(ALI)实验性治疗的功效。

方法

为了诱导 ALI,C57Black/6 雄性小鼠接受气管内注射盐酸或生理盐水;同时给予 HCl 挑战,静脉内给予 16mg/Kg NLC 或生理盐水单次剂量。在培养的内皮细胞和中性粒细胞中研究了 NLC 的摄取机制及其对内皮通透性和信号转导的影响。

结果

NLC 预处理可减轻盐酸诱导的肺微血管蛋白渗漏、肺泡炎性细胞、凝血酶蛋白水解活性和组织学肺损伤评分 24 小时后。通过在小鼠肺微血管内皮细胞培养物匀浆中进行荧光测量和流式细胞术,我们确定了用姜黄素标记荧光的 NLC 被表达窖蛋白-1( caveolin-1)的内皮细胞摄取,而 caveolin-1 基因缺失的小鼠(缺乏小窝)则没有摄取。相比之下,较大颗粒组成的常规乳液(CE)则不被吸收。此外,NLC 预处理培养的人肺微血管内皮细胞可阻断凝血酶诱导的 p44/42 激活、白蛋白通透性反应、肌动蛋白细胞骨架重塑和白细胞介素-6 产生。最后,NLC 但不是 CE 可阻断脂多糖触发的白细胞介素-8 释放。

结论

NLC 被内皮细胞小窝吞噬,并具有内皮保护作用。这些新特性可能在 ALI 中具有潜在的应用价值。

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