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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Enhancement of indocyanine green stability and cellular uptake by incorporating cationic lipid into indocyanine green-loaded nanoemulsions
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Enhancement of indocyanine green stability and cellular uptake by incorporating cationic lipid into indocyanine green-loaded nanoemulsions

机译:通过将阳离子脂质掺入负载吲哚菁绿的纳米乳液中来增强吲哚菁绿稳定性和细胞摄取

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摘要

Indocyanine green (ICG) is a near-infrared optical dye approved by the Food and Drug Administration. ICG has been investigated as a simultaneous color and fluorescence-imaging tracer for the intraoperative identification of sentinel lymph nodes, but its use has recently expanded to include application as a photosensitizer for the local photodynamic/thermal treatment of identified lymph node metastases. The current study was designed to develop an ICG-loaded nanoemulsion as an effective agent for both the diagnosis and treatment of lymph node metastases. Incorporating the cationic lipid stearylamine (SA) together with ICG in the shell of nanoemulsions did not affect the loaded ICG concentration, but changed the surface charge of nanoemulsions from a negative to a positive value and improved the physical stability of nanoemulsions. Loading ICG into SA-incorporated nanoemulsions more effectively blocked the aggregation and degradation of ICG compared to loading in SA-free nanoemulsions. SA incorporation also enhanced tumor cell uptake of ICG-loaded nanoemulsions, resulting in greater cell killing upon light irradiation. After subcutaneous injection into the footpad of mice, SA-incorporated nanoemulsions increased the concentration of ICG accumulated in popliteal lymph nodes to a greater extent than SA-free nanoemulsions without affecting the kinetics of lymph node uptake of nanoemulsions. These multiple beneficial effects of incorporating SA in nanoemulsions are likely attributable to the electrostatic interaction between anionic ICG and cationic SA, as well as the change in the nanoemulsion surface charge from negative to positive. Our findings indicate that SA-incorporated nanoemulsions are promising ICG carriers for combined diagnosis and treatment of lymph node metastases. (C)) 2015 Elsevier B.V. All rights reserved.
机译:吲哚菁绿(ICG)是由美国食品药物管理局(FDA)批准的近红外光学染料。已对ICG进行了彩色和荧光成像示踪剂的同步检测,用于术中识别前哨淋巴结,但最近它的用途已扩展为将光敏剂应用于已识别的淋巴结转移的局部光动力/热处理。当前的研究旨在开发载有ICG的纳米乳剂,作为诊断和治疗淋巴结转移的有效药物。将阳离子脂质硬脂胺(SA)与ICG一起掺入纳米乳液的外壳中不会影响负载的ICG浓度,但会将纳米乳液的表面电荷从负值更改为正值,并改善了纳米乳液的物理稳定性。与无SA纳米乳液中的负载相比,将ICG负载到掺有SA的纳米乳液中可以更有效地阻止ICG的聚集和降解。 SA掺入还增强了肿瘤细胞对ICG负载的纳米乳剂的摄取,从而在光照射下导致更大的细胞杀伤力。皮下注射到小鼠的脚垫后,掺有SA的纳米乳剂比不含SA的纳米乳剂在increased淋巴结中积累的ICG浓度增加的程度更大,而不会影响纳米乳剂的淋巴结吸收动力学。将SA掺入纳米乳剂中的这些多重有益作用可能归因于阴离子ICG和阳离子SA之间的静电相互作用,以及纳米乳剂表面电荷从负到正的变化。我们的发现表明,结合SA的纳米乳剂有望用于联合诊断和治疗淋巴结转移的ICG载体。 (C))2015 Elsevier B.V.保留所有权利。

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