Lenton Samuel, Nylander Tommy, Holt Carl, Sawyer Lindsay, Härtlein Michael, Müller Harrald, Teixeira Susana C M
EPSAM, Keele University, Staffordshire, ST5 5BG, UK.
Institut Laue-Langevin, 71 Avenue des Martyrs, 38042, Grenoble Cedex 9, France.
Eur Biophys J. 2016 Jul;45(5):405-12. doi: 10.1007/s00249-015-1109-7. Epub 2016 Jan 16.
There are abundant examples of nanoclusters and inorganic microcrystals in biology. Their study under physiologically relevant conditions remains challenging due to their heterogeneity, instability, and the requirements of sample preparation. Advantages of using neutron diffraction and contrast matching to characterize biomaterials are highlighted in this article. We have applied these and complementary techniques to search for nanocrystals within clusters of calcium phosphate sequestered by bovine phosphopeptides, derived from osteopontin or casein. The neutron diffraction patterns show broad features that could be consistent with hexagonal hydroxyapatite crystallites smaller than 18.9 Å. Such nanocrystallites are, however, undetected by the complementary X-ray and FTIR data, collected on the same samples. The absence of a distinct diffraction pattern from the nanoclusters supports the generally accepted amorphous calcium phosphate structure of the mineral core.
生物学中存在大量纳米团簇和无机微晶的例子。由于它们的异质性、不稳定性以及样品制备的要求,在生理相关条件下对其进行研究仍然具有挑战性。本文强调了使用中子衍射和对比匹配来表征生物材料的优势。我们应用了这些技术以及互补技术,来寻找存在于由源自骨桥蛋白或酪蛋白的牛磷酸肽螯合的磷酸钙簇中的纳米晶体。中子衍射图谱显示出宽泛的特征,这可能与小于18.9 Å的六方羟基磷灰石微晶一致。然而,在相同样品上收集的互补X射线和傅里叶变换红外光谱(FTIR)数据未检测到此类纳米微晶。纳米团簇没有明显的衍射图谱,这支持了矿物核心普遍公认的无定形磷酸钙结构。