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Bovine Serum Albumin-Conjugated Ferrimagnetic Iron Oxide Nanoparticles to Enhance the Biocompatibility and Magnetic Hyperthermia Performance

机译:牛血清白蛋白缀合的亚铁磁性氧化铁纳米颗粒增强生物相容性和磁热疗性能

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摘要

Magnetic hyperthermia is a fast emerging, non-invasive cancer treatment method which is used synergistically with the existing cancer therapeutics. We have attempted to address the current challenges in clinical magnetic hyperthermia-improved biocompatibility and enhanced heating characteristics, through a single combinatorial approach. Both superparamagnetic iron oxide nanoparticles(SPIONs) of size 10 nm and ferrimagnetic iron oxide nanoparticles(FIONs) of size 30 nm were synthesized by thermal decomposition method for comparison studies. Two different surface modifying agents, viz, Cetyl Trimethyl Ammonium Bromide and 3-Aminopropyltrimethoxysilane, were used to conjugate Bovine Serum Albumin(BSA) over the iron oxide nanoparticles via two different methods—surface charge adsorption and covalent amide bonding, respectively. The preliminary haemolysis and cell viability experiments show that BSA conjugation mitigates the haemolytic effect of the iron oxide nanoparticles on erythrocytes and is non-cytotoxic to the healthy Baby Hamster Kidney cells. It was observed from the results that due to better colloidal stability, the SAR value of the BSA-iron oxide nanoparticles is higher than the iron oxide nanoparticles without BSA, irrespective of the size of the iron oxide nanoparticles and method of conjugation. The BSA-FIONs seem to show improved biocompatibility, as the haemolytic index is less than 2 % and cell viability is up to 120 %, when normalized with the control. The SAR value of BSAFIONs is 2300 Wg-1 when compared to 1700 Wg-1 of FIONs without BSA conjugation. Thus, we report here that BSA conjugation over FIONs(with a high saturation magnetization of 87 emug-1) provide a single combinatorial approach to improve the biocompatibility and enhance the SAR value for magnetic hyperthermia, thus addressing both the current challenges of the same.
机译:磁热疗是一种快速出现的,非侵入性的癌症治疗方法,可与现有的癌症治疗剂协同使用。我们已尝试通过单一组合方法来解决当前临床磁热疗改善的生物相容性和增强的加热特性方面的挑战。通过热分解法合成了尺寸为10 nm的超顺磁性氧化铁纳米粒子(SPIONs)和尺寸为30 nm的亚铁磁性氧化铁纳米粒子(FIONs)进行比较研究。两种不同的表面改性剂,即十六烷基三甲基溴化铵和3-氨基丙基三甲氧基硅烷,分别通过两种不同的方法-表面电荷吸附和共价酰胺键合,将牛血清白蛋白(BSA)偶联在氧化铁纳米颗粒上。初步的溶血和细胞活力实验表明,BSA偶联可减轻氧化铁纳米颗粒对红细胞的溶血作用,并且对健康的仓鼠肾脏细胞无细胞毒性。从结果观察到,由于更好的胶体稳定性,无论氧化铁纳米粒子的尺寸和结合方法如何,BSA-氧化铁纳米粒子的SAR值都高于没有BSA的氧化铁纳米粒子。 BSA-FIONs似乎显示出更高的生物相容性,因为当与对照进行标准化时,溶血指数小于2%,细胞活力高达120%。与没有BSA共轭的FION的1700 Wg-1相比,BSAFION的SAR值为2300 Wg-1。因此,我们在此报告FSA上的BSA共轭(具有87 emug-1的高饱和磁化强度)提供了一种单一的组合方法来改善生物相容性并提高磁热疗的SAR值,从而解决了目前的两个挑战。

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