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用于从血浆中吸附低密度脂蛋白的花粉衍生磁性多孔颗粒。

Pollens derived magnetic porous particles for adsorption of low-density lipoprotein from plasma.

作者信息

Wang Yuetong, Sun Lingyu, Guo Jiahui, Shi Keqing, Shang Luoran, Xiao Jian, Zhao Yuanjin

机构信息

Precision Medicine Center Laboratory, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, 325035, China.

Department of Clinical Laboratory, Institute of Translational Medicine, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, 210008, China.

出版信息

Bioact Mater. 2020 Nov 20;6(6):1555-1562. doi: 10.1016/j.bioactmat.2020.11.015. eCollection 2021 Jun.

Abstract

Adsorption of low-density lipoprotein from plasma is vital for the treatment of dyslipidemia. Appropriate adsorbent material for efficient and selective adsorption of low-density lipoprotein is highly desired. In this work, we developed pollens-derived magnetic porous particles as adsorbents for this purpose. The natural pollen grains were modified to obtain high surface porosity, a large inner cavity, magnet responsiveness, and specific wettability. The resultant particles exhibited satisfying performance in the adsorption of a series of oils and organic solvents out of water. Besides, the particles were directly utilized to the adsorption of low-density lipoprotein in plasma, which showed high selectivity, and achieved an outstanding adsorption capacity as high as 34.9% within 2 h. Moreover, their salient biocompatibility was demonstrated through simulative hemoperfusion experiments. These features, together with its abundant source and facile fabrication, makes the pollens-derived magnetic porous particles excellent candidate for low-density lipoprotein -apheresis and water treatment applications.

摘要

从血浆中吸附低密度脂蛋白对于治疗血脂异常至关重要。因此,非常需要一种合适的吸附材料来高效、选择性地吸附低密度脂蛋白。在这项工作中,我们开发了源自花粉的磁性多孔颗粒作为用于此目的的吸附剂。对天然花粉粒进行改性以获得高表面孔隙率、大内腔、磁响应性和特定润湿性。所得颗粒在从水中吸附一系列油和有机溶剂方面表现出令人满意的性能。此外,这些颗粒直接用于血浆中低密度脂蛋白的吸附,表现出高选择性,并在2小时内实现了高达34.9%的出色吸附容量。此外,通过模拟血液灌注实验证明了它们突出的生物相容性。这些特性,连同其丰富的来源和简便的制备方法,使源自花粉的磁性多孔颗粒成为低密度脂蛋白单采和水处理应用的极佳候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dd1/7691160/aaa47ebedc1a/fx1.jpg

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