Understanding the growth kinetics of polydopamine nanoparticles as a function of the temperature and the type of alcohol used as solvent media in their polymerization

IF 5.5 Q1 ENGINEERING, CHEMICAL Chemical Engineering Journal Advances Pub Date : 2024-08-22 DOI:10.1016/j.ceja.2024.100638
C. Alonso , C. Nieto , J.C. Vargas , M.A. Vega , E.M. Martín del Valle
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Abstract

Currently, one of the bottlenecks in the large-scale production of particles used for biomedical purposes is reproducibility achieving sizes less than 100 nm. For this reason, the main purpose of this work was to elucidate how the size of polydopamine nanoparticles (PDA NPs), which are widely used in cancer nanomedicine, was affected by several synthesis parameters to facilitate their production scaling-up. Specifically, PDA NPs growth kinetics were investigated as a function of the polymerization temperature (15–50 °C) and the type of alcohol (ethanol, 2-propanol, or a mixture of both) used to produce them, finding that an increase in temperature and the amount of 2-propanol in the solvent media allowed smaller NPs to be obtained. Based on the results achieved, a mathematical model capable of predicting PDA NP diameter as a function of the temperature and reaction time, the NH4OH concentration, and the type of alcohol used to synthesize them was proposed. Also, PDA solubility in the different media was studied to explain NP size behavior depending on the type of alcohol employed, which conditioned the formation of PDA oligomers. Finally, additional assays were conducted to confirm that an increase in the synthesis temperature did not affect some of the most important properties of PDA NPs from a biomedical point of view: their Fe3+-loading capacity and their inherent antitumor activity. Therefore, the results obtained in this research could be useful to scale-up the obtaining of 100 nm PDA NPs in a reproducible manner hereafter without significantly altering their outstanding physical-chemical properties.

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了解聚多巴胺纳米粒子的生长动力学与聚合过程中用作溶剂介质的温度和酒精类型的关系
目前,大规模生产用于生物医学目的的粒子的瓶颈之一是实现小于 100 纳米尺寸的可重复性。因此,这项工作的主要目的是阐明广泛应用于癌症纳米医学的聚多巴胺纳米粒子(PDA NPs)的尺寸如何受几个合成参数的影响,以促进其生产规模的扩大。具体而言,研究了聚合温度(15-50 °C)和用于生产 PDA NPs 的酒精类型(乙醇、2-丙醇或二者的混合物)对 PDA NPs 生长动力学的影响,发现温度的升高和溶剂介质中 2-丙醇量的增加可获得更小的 NPs。根据所取得的结果,提出了一个数学模型,该模型能够预测 PDA NP 直径与温度和反应时间、NH4OH 浓度以及合成 PDA NP 所用的酒精类型之间的函数关系。此外,还研究了 PDA 在不同介质中的溶解度,以解释 NP 尺寸行为取决于所使用的酒精类型,而酒精类型是 PDA 低聚物形成的条件。最后,研究人员还进行了其他试验,以证实从生物医学角度来看,合成温度的升高不会影响 PDA NPs 的一些最重要特性:Fe3+负载能力及其固有的抗肿瘤活性。因此,本研究获得的结果有助于今后以可重复的方式扩大 100 nm PDA NPs 的制备规模,而不会显著改变其出色的物理化学特性。
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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