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软体动物红鲍贝壳中的间质结晶成核薄片:一种生物聚合复合材料。

The interstitial crystal-nucleating sheet in molluscan Haliotis rufescens shell: a bio-polymeric composite.

机构信息

Centro Interdipartimentale di Ricerca in Scienze Ambientali, Università di Bologna, via S. Alberto 163, I-48100, Ravenna, Italy.

出版信息

J Struct Biol. 2011 Jan;173(1):128-37. doi: 10.1016/j.jsb.2010.08.002. Epub 2010 Aug 9.

Abstract

The interstitial green sheets in abalone shell nacre are shown to be bifacially differentiated trilaminate polymeric complexes, with glycoprotein layers sandwiching a central core containing chitin. They share some common feature with the organic matrix layers between the aragonite tablets in the nacre and the periostracum, and show similarities to the myostracum. Thus, although the green sheet is reported to be unique to the abalone shell, it represents an interesting model for the study of molluscan shell biomineralization processes. Indeed, during shell formation, prismatic and spherulitic aragonite precedes and follows the deposition of the interstitial green polymeric composite sheets, and there is evidence to suggest that these sheets demark the interruption of nacre synthesis and serve to nucleate the resumption of calcium carbonate crystal growth. The green polymeric interstitial sheet purified from the abalone shell was investigated by spectroscopic and imaging techniques: FTIR, confocal microscopy, scanning and transmission electron microscopy, and by pyrolysis combined with GC-MS. Structural and compositional differences are observed between the surfaces of the two sides of the interstitial polymeric composite sheets. Moreover, comparative crystallization experiments on the green sheet sides also reveal asymmetry with respect to the nucleation of calcium carbonate. These findings suggest that these bifacially differentiated interstitial composites may play an active role in the mineral assembly processes, with one of the surfaces acting as a crystal nucleator.

摘要

鲍壳中的间质绿色薄片被证明是双面分化的三层聚合物复合物,其中糖蛋白层夹在含有几丁质的中心核心。它们与珍珠层中方解石片之间的有机基质层和外皮具有一些共同特征,并且与肌质层相似。因此,尽管绿色薄片被报道为鲍壳所特有,但它代表了研究软体动物壳生物矿化过程的一个有趣模型。事实上,在壳形成过程中,棱柱形和球晶形方解石先于和后于间质绿色聚合物复合薄片的沉积,并且有证据表明这些薄片标志着珍珠层合成的中断,并有助于启动碳酸钙晶体生长的成核。从鲍壳中纯化的绿色聚合物间质薄片通过光谱和成像技术进行了研究:傅里叶变换红外光谱、共聚焦显微镜、扫描和透射电子显微镜,以及与 GC-MS 相结合的热解。在间质聚合物复合材料薄片的两面之间观察到结构和组成上的差异。此外,对绿色薄片两面的比较结晶实验也揭示了碳酸钙成核的不对称性。这些发现表明,这些双面分化的间质复合材料可能在矿物组装过程中发挥积极作用,其中一个表面充当晶体成核剂。

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