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Development of high throughput, high precision synthesis platforms and characterization methodologies for toxicological studies of nanocellulose

机译:高吞吐量,高精度合成平台及纳米纤维毒理学研究表征方法的发展

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摘要

Cellulose is the most abundant natural polymer, is readily available, biodegradable, and inexpensive. Recently, interest is growing around nano-scale cellulose due to the sustainability of these materials, the novel properties, and the overall low environmental impact. The rapid expansion of nanocellulose uses in various applications makes the study of the toxicological properties of these materials of great importance to public health regulators. However, most of the current toxicological studies are highly conflicting, inconclusive, and contradictory. The major reason for these discrepancies is the lack of standardized methods to produce industry-relevant reference nanocellulose and relevant characterization that will expand beyond the traditional cellulose characterization for applications. In order to address these issues, industry-relevant synthesis platforms were developed to produce nanocellulose of controlled properties that can be used as reference materials in toxicological studies. Herein, two types of nanocellulose were synthesized, cellulose nanofibrils and cellulose nanocrystals using the friction grinding platform and an acid hydrolysis approach respectively. The nanocellulose structures were characterized extensively regarding their physicochemical properties, including testing for endotoxins and bacteria contamination.
机译:纤维素是最丰富的天然聚合物,易于获得,可生物降解,廉价。最近,由于这些材料的可持续性,新颖性质和整体低对环境影响,兴趣在纳米级纤维素周围增长。纳米纤维素在各种应用中的快速扩增使得这些材料对公共卫生监管机构非常重视的毒理学特性研究。然而,大多数目前的毒理学研究具有很强的冲突,不确定和矛盾。这些差异的主要原因是缺乏生产行业相关的参考纳米细胞的标准化方法和相关表征,这些表征将超越传统的纤维素表征应用。为了解决这些问题,开发了行业相关的合成平台,以生产可控性能的纳米细胞,可用作毒理学研究中的参考材料。这里,使用摩擦研磨平台和酸水解方法合成两种类型的纳米纤维素,纤维素纳米纤维和纤维素纳米晶体。纳米纤维素结构的表征广泛地关于它们的物理化学性质,包括用于内毒素和细菌污染的测试。

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