Department of Mechanical Engineering, Shiv Nadar University, Dadri, UP, India.
Department of Life Sciences, Shiv Nadar University, Dadri, UP, India.
J Colloid Interface Sci. 2018 Mar 15;514:534-543. doi: 10.1016/j.jcis.2017.12.064. Epub 2017 Dec 24.
We have systematically studied heating efficiencies (via specific absorption rate-SAR/intrinsic loss power-ILP) of carboxyl (terephthalic acid-TA) functionalized hydrophilic SPIONs based ferrofluids (with good biocompatibility/high magnetization) and influence of following key factors in magnetic fluid hyperthermia (MFH): (i) alternating magnetic fields (AMFs - H)/frequencies (f) - chosen below/above Hergt's biological safety limit, (ii) concentrations (0.5-8 mg/ml) and (iii) dispersion media (water, a cell-culture medium and triethylene glycol (TEG)) for in vitro cancer therapy. In calorimetric MFH, aqueous ferrofluids have displayed excellent time-dependent temperature rise for the applied AMFs, which resulted in high SAR ranging from 23.4 to 160.7 W/g, attributed to the enhanced magnetic responses via π-conjugations of short-chained TA molecules on the surface of SPIONs Moreover, ILP values up-to 2.5 nHm/kg (higher than the best commercial ferrofluids) are attained for the aqueous ferrofluids when excited below the recommended safety limit. Besides, the SPIONs dispersed in high viscous TEG have exhibited the highest SAR value (178.8 W/g) and reached therapeutic temperatures at faster rates for the lowest concentration due to prominent Neel relaxations. Moreover, these SPIONs have higher killing efficiency towards MCF-7 cancer cells in in vitro studies. Thus, the TA-based ferrofluids have great potential for in vivo/clinical MFH cancer therapies.
我们系统地研究了基于羧基(对苯二甲酸-TA)功能化亲水 SPIONs 的铁磁流体的加热效率(通过比吸收率-SAR/固有损耗功率-ILP),以及磁流体热疗(MFH)中以下关键因素的影响:(i)选择低于/高于赫格特生物安全限值的交变磁场(AMFs-H)/频率(f),(ii)浓度(0.5-8mg/ml)和(iii)分散介质(水、细胞培养基和三甘醇(TEG))用于体外癌症治疗。在量热 MFH 中,水基铁磁流体在施加的 AMFs 下表现出出色的随时间变化的温升,导致 SAR 高达 23.4 至 160.7 W/g,这归因于表面短链 TA 分子的π共轭增强了磁响应 SPIONs。此外,当在推荐的安全限值以下激发时,水基铁磁流体可达到高达 2.5 nHm/kg(高于最佳商业铁磁流体)的 ILP 值。此外,由于突出的尼尔弛豫,分散在高粘性 TEG 中的 SPIONs 表现出最高的 SAR 值(178.8 W/g),并以最低浓度更快地达到治疗温度。此外,这些 SPIONs 在体外研究中对 MCF-7 癌细胞具有更高的杀伤效率。因此,基于 TA 的铁磁流体在体内/临床 MFH 癌症治疗中具有很大的潜力。