Al-Garawi Zahraa S, Kostakis George E, Serpell Louise C
School of Life Sciences, University of Sussex, East Sussex, Falmer, BN1 9QG, UK.
Chemistry Department, College of Sciences, Al-Mustansyria University, Baghdad, Iraq.
J Nanobiotechnology. 2016 Dec 1;14(1):79. doi: 10.1186/s12951-016-0231-8.
A series of amyloidogenic peptides based on the sequence KFFEAAAKKFFE template the silica precursor, tetraethyl orthosilicate to form silica-nanowires containing a cross-β peptide core.
Investigation of the stability of these fibres reveals that the silica layers protect the silica-nanowires allowing them to maintain their shape and physical and chemical properties after incubation with organic solvents such as 2-propanol, ethanol, and acetonitrile, as well as in a strong acidic solution at pH 1.5. Furthermore, these nanowires were thermally stable in an aqueous solution when heated up to 70 °C, and upon autoclaving. They also preserved their conformation following incubation up to 4 weeks under these harsh conditions, and showed exceptionally high physical stability up to 1000 °C after ageing for 12 months. We show that they maintain their β-sheet peptide core even after harsh treatment by confirming the β-sheet content using Fourier transform infrared spectra. The silica nanowires show significantly higher chemical and thermal stability compared to the unsiliconised fibrils.
The notable chemical and thermal stability of these silica nanowires points to their potential for use in microelectromechanics processes or fabrication for nanotechnological devices.
一系列基于KFFEAAAKKFFE序列的淀粉样生成肽作为二氧化硅前体正硅酸四乙酯的模板,形成含有交叉β肽核心的二氧化硅纳米线。
对这些纤维稳定性的研究表明,二氧化硅层保护二氧化硅纳米线,使其在与2-丙醇、乙醇和乙腈等有机溶剂孵育后,以及在pH值为1.5的强酸性溶液中仍能保持其形状以及物理和化学性质。此外,这些纳米线在加热至70°C的水溶液中以及高压灭菌后具有热稳定性。在这些苛刻条件下孵育长达4周后,它们也能保持其构象,并且在老化12个月后,在高达1000°C的温度下仍表现出极高的物理稳定性。通过使用傅里叶变换红外光谱确认β-折叠含量,我们表明即使经过苛刻处理,它们仍能保持其β-折叠肽核心。与未硅化的原纤维相比,二氧化硅纳米线表现出显著更高的化学和热稳定性。
这些二氧化硅纳米线显著的化学和热稳定性表明它们在微机电工艺或纳米技术设备制造中的应用潜力。