Hu Po-Sheng, Tomasovicova Natalia, Chou Hsiu-Jen, Li Meng-Chang, Vojtko Marek, Zakutanska Katarina, Majorosova Jozefina, Chen Shean-Jen, Kopcansky Peter
Institute of Photonic System, National Chiao Tung University, Tainan City 71150, Taiwan.
Institute of Experimental Physics, Slovak Academy of Sciences, Watsonova 47, 04001 Kosice, Slovakia.
Nanomaterials (Basel). 2020 Feb 29;10(3):442. doi: 10.3390/nano10030442.
This research study attempts to prove the concept of the applicability of hyperthermia to treating the lysozyme amyloid fibrils (LAF)'s self-assembled fibrillary aggregates by a feedback-modulated temperature controller ranging from 26 °C to 80 °C, and separately, by near-infrared (NIR) laser-irradiated cesium tungstate (CsWO) nanoparticle (NPs). The dependence of the final morphology of the amyloidal assembly on external heating and the photothermal effect of the NPs on treating the fibrillary assembly were investigated and analyzed. Experimentally, atomic force microscopy (AFM), optical stereoscopy, and scanning electron microscopy (SEM) were used primarily to ensure mutual interaction between LAF and NPs, optically elucidate the surface contour and final fibrillary assembly upon the influence of thermal treatment, and further reveal fine-details of the optical samples. Finally, conclusive remarks are drawn that the fibrillary structures doped with the NPs exhibit an increasing degree of unique orthogonality. As the temperature rises, utter deformation of the dendritic structures of fibrillary assemblies at 70 °C was found, and NIR laser-irradiated CsWO NPs have been demonstrated to be useful in topically destructing pre-assembled LAFs, which may be conducive to the future development of neurodegenerative therapeutic techniques.
本研究试图通过一个温度范围在26℃至80℃的反馈调制温度控制器,以及单独使用近红外(NIR)激光照射的钨酸铯(CsWO)纳米颗粒(NPs),来证明热疗对治疗溶菌酶淀粉样纤维(LAF)自组装纤维状聚集体的适用性概念。研究并分析了淀粉样聚集体的最终形态对外部加热的依赖性以及纳米颗粒对纤维状聚集体治疗的光热效应。在实验中,主要使用原子力显微镜(AFM)、光学立体显微镜和扫描电子显微镜(SEM)来确保LAF与纳米颗粒之间的相互作用,从光学角度阐明热处理影响下的表面轮廓和最终纤维状聚集体,并进一步揭示光学样品的细节。最后得出结论,掺杂纳米颗粒的纤维状结构呈现出越来越独特的正交性程度。随着温度升高,发现在70℃时纤维状聚集体的树枝状结构完全变形,并且已证明近红外激光照射的CsWO纳米颗粒可用于局部破坏预组装的LAF,这可能有利于神经退行性治疗技术的未来发展。