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靶向溶酶体的响应性溶致液晶纳米粒的研制:物理化学、形态学和药物释放研究。

Development of stimuli-responsive lyotropic liquid crystalline nanoparticles targeting lysosomes: Physicochemical, morphological and drug release studies.

机构信息

Section of Pharmaceutical Technology, Department of Pharmacy, School of Health Sciences, National and Kapodistrian University of Athens, Panepistimioupolis Zografou 15771, Athens, Greece.

School of Pharmacy, Chemistry Interdisciplinary Project (CHIP), University of Camerino, Via Madonna delle Carceri, 62032 Camerino, Italy.

出版信息

Int J Pharm. 2023 Jan 5;630:122440. doi: 10.1016/j.ijpharm.2022.122440. Epub 2022 Nov 25.

Abstract

The abilities of sub-cellular targeting and stimuli-responsiveness are critical challenges in pharmaceutical nanotechnology. In the present study, glyceryl monooleate (GMO)-based non-lamellar lyotropic liquid crystalline nanoparticles were stabilized by the poly(2-(dimethylamino)ethyl methacrylate)-b-poly(lauryl methacrylate) block copolymer carrying tri-phenyl-phosphine cations (TPP-QPDMAEMA-b-PLMA), either used alone or in combination with other polymers as co-stabilizers. The systems were designed to perform simultaneously sub-cellular targeting, stimuli-responsiveness and to exhibit stealthiness. The physicochemical characteristics and fractal dimensions of the resultant nanosystems were obtained from light scattering techniques, while their micropolarity and microfluidity from fluorescence spectroscopy. Their morphology was assessed by cryo-TEM, while their thermal behavior by microcalorimetry and high-resolution ultrasound spectroscopy. The analyzed properties, including the responsiveness to pH and temperature, were found to be dependent on the combination of the polymeric stabilizers. The subcellular localization was monitored by confocal microscopy, revealing targeting to lysosomes. Subsequently, resveratrol was loaded into the nanosystems, the entrapment efficiency was investigated and in vitro release studies were carried out at different conditions, in which a stimuli-triggered drug release profile was achieved. In conclusion, the proposed multi-functional nanosystems can be considered as potentially stealth, stimuli-responsive drug delivery nanocarriers, with targeting ability to lysosomes and presenting a stimuli-triggered drug release profile.

摘要

亚细胞靶向和刺激响应能力是药物纳米技术的关键挑战。在本研究中,通过聚(2-(二甲氨基)乙基甲基丙烯酸酯)-b-聚(月桂基甲基丙烯酸酯)嵌段共聚物携带三苯基膦阳离子(TPP-QPDMAEMA-b-PLMA)稳定了甘油单油酸酯(GMO)基非层状溶致液晶纳米颗粒,单独使用或与其他聚合物作为共稳定剂联合使用。这些系统旨在同时实现亚细胞靶向、刺激响应,并表现出隐身性。利用光散射技术获得了所得纳米系统的物理化学特性和分形维数,而利用荧光光谱法获得了其微极性和微流动性。通过低温透射电子显微镜评估了它们的形态,通过微量热法和高分辨率超声光谱法评估了它们的热行为。分析得到的性质,包括对 pH 值和温度的响应性,取决于聚合物稳定剂的组合。通过共聚焦显微镜监测亚细胞定位,发现其靶向溶酶体。随后,将白藜芦醇载入纳米系统,考察了包封效率,并在不同条件下进行了体外释放研究,实现了刺激触发的药物释放。总之,所提出的多功能纳米系统可以被认为是潜在的隐身、刺激响应的药物传递纳米载体,具有靶向溶酶体的能力,并呈现出刺激触发的药物释放。

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