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两亲性磷树枝状大分子——潜在药物纳米载体的血液相容性

Blood Compatibility of Amphiphilic Phosphorous Dendrons-Prospective Drug Nanocarriers.

作者信息

Suty Simon, Oravczova Veronika, Garaiova Zuzana, Subjakova Veronika, Ionov Maksim, Shcharbin Dzmitry, Simonikova Zuzana, Bartek Peter, Zvarik Milan, Shi Xiangyang, Mignani Serge, Majoral Jean-Pierre, Bryszewska Maria, Hianik Tibor, Waczulikova Iveta

机构信息

Department of Nuclear Physics and Biophysics, Faculty of Mathematics, Physics and Informatics, Comenius University, Mlynska Dolina F1, 84248 Bratislava, Slovakia.

Department of General Biophysics, Faculty of Biology and Environmental protection, University of Lodz, 141/143 Pomorska St., 90-236 Lodz, Poland.

出版信息

Biomedicines. 2021 Nov 12;9(11):1672. doi: 10.3390/biomedicines9111672.

Abstract

Dendrons are branched synthetic polymers suitable for preparation of nanosized drug delivery systems. Their interactions with biological systems are mainly predetermined by their chemical structure, terminal groups, surface charge, and the number of branched layers (generation). Any new compound intended to be used, alone or in combination, for medical purposes in humans must be compatible with blood. This study combined results from in vitro experiments on human blood and from laboratory experiments designed to assess the effect of amphiphilic phosphorous dendrons on blood components and model membranes, and to examine the presence and nature of interactions leading to a potential safety concern. The changes in hematological and coagulation parameters upon the addition of dendrons in the concentration range of 2-10 µM were monitored. We found that only the combination of higher concentration and higher generation of the dendron affected the selected clinically relevant parameters: it significantly decreased platelet count and plateletcrit, shortened thrombin time, and increased activated partial thromboplastin time. At the same time, occasional small-sized platelet clumps in blood films under the light microscope were observed. We further investigated aggregation propensity of the positively charged dendrons in model conditions using zwitterionic and negatively charged liposomes. The observed changes in size and zeta potential indicated the electrostatic nature of the interaction. Overall, we proved that the low-generation amphiphilic phosphorous dendrons were compatible with blood within the studied concentration range. However, interactions between high-generation dendrons at bulk concentrations above 10 µM and platelets and/or clotting factors cannot be excluded.

摘要

树枝状聚合物是适合制备纳米级药物递送系统的支化合成聚合物。它们与生物系统的相互作用主要由其化学结构、端基、表面电荷和支化层数(代数)预先决定。任何打算单独或联合用于人类医疗目的的新化合物都必须与血液相容。本研究结合了对人体血液的体外实验结果以及旨在评估两亲性磷树枝状聚合物对血液成分和模型膜的影响,并检查导致潜在安全问题的相互作用的存在和性质的实验室实验结果。监测了在2-10μM浓度范围内添加树枝状聚合物后血液学和凝血参数的变化。我们发现,只有更高浓度和更高代数的树枝状聚合物组合会影响所选的临床相关参数:它显著降低血小板计数和血小板压积,缩短凝血酶时间,并延长活化部分凝血活酶时间。同时,在光学显微镜下观察到血片中偶尔出现小尺寸的血小板团块。我们使用两性离子和带负电荷的脂质体在模型条件下进一步研究了带正电荷的树枝状聚合物的聚集倾向。观察到的尺寸和zeta电位变化表明了相互作用的静电性质。总体而言,我们证明了低代数的两亲性磷树枝状聚合物在所研究的浓度范围内与血液相容。然而,不能排除高于10μM的高代数树枝状聚合物与血小板和/或凝血因子之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b875/8615897/d08823679ab7/biomedicines-09-01672-g0A1.jpg

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