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用弱聚电解质稳定的磁性纳米乳液在酸性pH值下提高磁热效率。

Enhanced magnetic heating efficiency at acidic pH for magnetic nanoemulsions stabilized with a weak polyelectrolyte.

作者信息

Ranoo Surojit, Lahiri B B, Nandy Manali, Philip John

机构信息

Smart Materials Section, Corrosion Science and Technology Division, Materials Characterization Group, Metallurgy and Materials Group, Indira Gandhi Centre for Atomic Research, HBNI, Kalpakkam, Tamil Nadu 603102, India.

Smart Materials Section, Corrosion Science and Technology Division, Materials Characterization Group, Metallurgy and Materials Group, Indira Gandhi Centre for Atomic Research, HBNI, Kalpakkam, Tamil Nadu 603102, India.

出版信息

J Colloid Interface Sci. 2020 Nov 1;579:582-597. doi: 10.1016/j.jcis.2020.06.093. Epub 2020 Jun 27.

Abstract

HYPOTHESIS

Magnetic fluid hyperthermia has attracted considerable attention for cancer therapeutics. Magnetic nanoemulsions are potential candidates for multi-modal hyperthermia due to the possibility of volumetric loading with suitable chemo/photo-therapy agents. Often, the nanocarriers are stabilized using organic molecules that behave differently under varying pH and hence, an understanding of their interfacial behaviour is important for practical applications.

EXPERIMENTS

We probe the magnetic heating efficiency of poly acrylic acid (PAA) stabilized oil-in-water magnetic nanoemulsions, as a function of pH, where the conformational changes of the PAA molecules are studied using dynamic light scattering and inter-droplet force measurements.

FINDINGS

A ~50% enhanced heating efficiency is observed when solution pH is reduced from ~9 to 3, which is attributed to the coil-to-globule conformational changes of the PAA molecules. The increased ionization of the carboxylic acid groups, at higher pH, leads to reduced hydrophobicity that results in an increase in the interfacial thermal resistance causing a lower magneto-thermal heating efficiency at higher pH. The proposed interfacial heat transfer hypothesis is experimentally verified using thermal imaging, where a lower rate of heat transfer is obtained at higher pH. The observed enhanced hyperthermia efficiency at low pH is beneficial for designing efficient pH-responsive nano-carriers for multi-modal hyperthermia.

摘要

假设

磁流体热疗在癌症治疗方面已引起广泛关注。磁性纳米乳液因有可能负载合适的化学/光疗药物而成为多模态热疗的潜在候选材料。通常,纳米载体使用有机分子进行稳定,这些有机分子在不同pH值下表现不同,因此,了解它们的界面行为对实际应用很重要。

实验

我们探究了聚丙烯酸(PAA)稳定的水包油磁性纳米乳液的磁热效率与pH值的关系,其中使用动态光散射和液滴间力测量研究了PAA分子的构象变化。

发现

当溶液pH值从约9降至3时,观察到加热效率提高了约50%,这归因于PAA分子从线圈状到球状的构象变化。在较高pH值下,羧酸基团的电离增加,导致疏水性降低,从而导致界面热阻增加,在较高pH值下磁热加热效率降低。所提出的界面传热假设通过热成像进行了实验验证,结果表明在较高pH值下获得的传热速率较低。在低pH值下观察到的增强的热疗效率有利于设计用于多模态热疗的高效pH响应纳米载体。

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