DSM Resolve, Urmonderbaan 22, 6160 MD Geleen, The Netherlands.
Institut Charles Sadron, CNRS, 23 rue du Loess, 67034 Strasbourg Cedex, France.
Int J Biol Macromol. 2016 Aug;89:592-8. doi: 10.1016/j.ijbiomac.2016.05.035. Epub 2016 May 11.
Keratin micro-tubes were obtained by heating medullated keratin fibres to temperatures above 230°C under nitrogen atmosphere, when, as documented by microscopy, the cortex (the core of the fibre) melts from the medulla outwards, followed by pyrolysis of the material through the remaining solid cuticle (shell) layer. The resulted hollow tubes from fibres void of cortical material keep the external cuticle structure, as shown by AFM investigation, and the moisture sorption properties of the initial keratin fibre. Despite similar amino-acid compositions of cuticle and cortex the two morphological components differ significantly in their thermal behaviour, which appears to be a "cortex-cuticle thermal stability paradox".
角蛋白微管是通过在氮气氛围下将有髓角蛋白纤维加热到 230°C 以上获得的,显微镜记录显示,当皮层(纤维的核心)从髓质向外熔化时,剩余的固体角质层(壳)层中的材料会发生热解。正如 AFM 研究所示,没有皮层材料的纤维产生的空心管保留了外部角质层结构,以及初始角蛋白纤维的吸湿性。尽管角质层和皮层的氨基酸组成相似,但这两个形态组成部分在热行为上有显著差异,这似乎是一个“皮层-角质层热稳定性悖论”。