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通往新型功能材料之路:从海藻中可持续分离高纵横比β-几丁质微棒

Ro(a)d to New Functional Materials: Sustainable Isolation of High-Aspect-Ratio β-Chitin Microrods from Marine Algae.

作者信息

Ludwig Jan, Kauffmann Florian, Laschat Sabine, Weiss Ingrid M

机构信息

Institut für Biomaterialien und Biomolekulare Systeme, Universität Stuttgart, Pfaffenwaldring 57, 70569 Stuttgart, Germany.

AMICA-Stuttgart Research Focus (SRF), Universität Stuttgart, Pfaffenwaldring 32, 70569 Stuttgart, Germany.

出版信息

Bioengineering (Basel). 2025 Sep 11;12(9):969. doi: 10.3390/bioengineering12090969.

Abstract

High-aspect-ratio rod-shaped chitins such as chitin whiskers or chitin nano- and microfibers are particularly promising for a wide range of applications, including electrorheological suspensions, lightweight reinforcement material for biocomposites, biomedical scaffolds, and food packaging. Here, we report the first mild water-based mechanical extraction protocol to isolate β-chitin microrods from the marine algal species while preserving their structural integrity throughout the process. The resulting microrods could be distributed into two populations based on the fultoportulae from which they are extruded. The rods exhibit typical dimensions of 12.6 ± 4.0 µm in length and 75 ± 21 nm in diameter (outer fultoportulae) or 17.5 ± 4.7 µm in length and 170 ± 39 nm in diameter (central fultoportulae), yielding high aspect ratios of ~168 and ~103 on average, respectively. Due to this environmentally friendly extraction, the high purity of the synthesized chitin, and the renewable algal source, this work introduces a sustainable route to produce pure biogenic β-chitin microrods.

摘要

高长径比的棒状几丁质,如几丁质晶须、几丁质纳米纤维和微纤维,在广泛的应用中特别有前景,包括电流变悬浮液、生物复合材料的轻质增强材料、生物医学支架和食品包装。在此,我们报告了首个温和的水基机械提取方案,用于从海洋藻类物种中分离β-几丁质微棒,同时在整个过程中保持其结构完整性。根据微棒挤出时的全端口,所得微棒可分为两个群体。这些微棒的典型尺寸为:长度12.6±4.0 µm,直径75±21 nm(外部全端口);或长度17.5±4.7 µm,直径170±39 nm(中央全端口),平均长径比分别约为168和103。由于这种环保的提取方法、合成几丁质的高纯度以及可再生的藻类来源,这项工作引入了一条可持续的路线来生产纯生物源β-几丁质微棒。

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