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海洋贻贝丝形成过程中的巨型弯曲核液晶基元

Giant bent-core mesogens in the thread forming process of marine mussels.

作者信息

Hassenkam Tue, Gutsmann Thomas, Hansma Paul, Sagert Jason, Waite J Herbert

机构信息

Department of Physics, University of California at Santa Barbara, Santa Barbara, California 93106, USA.

出版信息

Biomacromolecules. 2004 Jul-Aug;5(4):1351-5. doi: 10.1021/bm049899t.

Abstract

In marine mussels (Mytilus), byssal threads are made in minutes from prefabricated smectic polymer liquid crystals by a process resembling reaction injection molding. The mesogens in these arrays are known to be natural block copolymers with rodlike collagen cores. Using atomic force microscopy, it was shown that these collagenous mesogens are bent-core or banana-shaped in a manner that is consistent with and predictable from their amino acid sequence. The overall bend angle in preCOL-NG in Mytilus galloprovincialis is about 130 degrees. The mesogens have a center-to-center separation of approximately 22 nm and a length of 200 nm. It is evident that the smectic structure of the prefabricated mesophases remains largely intact over 1-3 microm distances in the molded fibers and is presumably locked in place during molding by cross-linking. Like the smectic liquid crystals of many synthetic banana mesogens, the collagenous mesogens of the byssal threads exhibit SmC(2) symmetry with a characteristic tilt of 24.6 degrees. At about 100% extension, this tilt is considerably reduced and the globular end domains are no longer visible presumably because they have been unraveled.

摘要

在海洋贻贝(紫贻贝属)中,足丝在几分钟内由预制的近晶聚合物液晶通过类似反应注射成型的过程制成。已知这些排列中的液晶元是具有棒状胶原核心的天然嵌段共聚物。使用原子力显微镜表明,这些胶原液晶元呈弯核或香蕉状,其方式与其氨基酸序列一致且可预测。地中海贻贝中前COL-NG的总体弯曲角度约为130度。液晶元的中心间距约为22纳米,长度为200纳米。很明显,预制中间相的近晶结构在模制纤维中1-3微米的距离内基本保持完整,并且可能在成型过程中通过交联固定到位。与许多合成香蕉液晶元的近晶液晶一样,足丝的胶原液晶元表现出具有24.6度特征倾斜的SmC(2)对称性。在约100%伸长时,这种倾斜显著减小,球状末端结构域不再可见,大概是因为它们已经解开。

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