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椰壳衍生纳米纤维素作为热响应水凝胶中的增强添加剂。

Coconut husk-derived nanocellulose as reinforcing additives in thermal-responsive hydrogels.

作者信息

Leow Yihao, Boo Yi Jian, Lin Ming, Tan Ying Chuan, Goh Rubayn Zhi Rong, Zhu Qiang, Loh Xian Jun, Xue Kun, Kai Dan

机构信息

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, 138634, Singapore; School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798, Singapore.

Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, 138634, Singapore.

出版信息

Carbohydr Polym. 2024 Jan 1;323:121453. doi: 10.1016/j.carbpol.2023.121453. Epub 2023 Oct 4.

Abstract

Nanocellulose has been widely used as a reinforcing agent for hydrogel systems, but its functions on thermal responsive hydrogels are rarely investigated. In this study, we extracted cellulose nanofibers (CNFs) from coconut biomass (coir fibers and piths, respectively) and aimed to study their effects on the material properties on a new class of thermogel (poly(PCL/PEG/PPG urethane). The CNFs extracted from fiber (FF) and piths (FP) showed different morphology and fiber lengths. FF are uniformed individual fibrous networks with a fiber length of 664 ± 416 nm, while FP display a hybrid structure consisting of individual fiber and large bundles with a relative shorter fiber length of 443 ± 184 nm. Integrating both CNFs into thermogels remained the thermal-responsive characteristics with an enhanced rheological property. The results showed that gels with FF resulted in a higher storage modulus and lower Tan δ value compared to those with FP, indicating that the CNFs with a longer length could form a more intertwined network interacting with the thermogel matrix. Furthermore, we demonstrated the improved capabilities of the nanocomposite thermogels for sustained drug delivery in vitro. This study not only value-adds lignocellulose valorization but also elevates the versatility of thermogels.

摘要

纳米纤维素已被广泛用作水凝胶体系的增强剂,但其对热响应水凝胶的作用鲜有研究。在本研究中,我们从椰子生物质(分别为椰壳纤维和髓心)中提取了纤维素纳米纤维(CNFs),旨在研究它们对一类新型热凝胶(聚(PCL/PEG/PPG聚氨酯))材料性能的影响。从纤维(FF)和髓心中提取的CNFs(FP)呈现出不同的形态和纤维长度。FF是均匀的单个纤维网络,纤维长度为664±416nm,而FP呈现出由单个纤维和大束纤维组成的混合结构,纤维长度相对较短,为443±184nm。将两种CNFs整合到热凝胶中仍保持热响应特性,且流变性能增强。结果表明,与含有FP的凝胶相比,含有FF的凝胶具有更高的储能模量和更低的损耗角正切值,这表明长度更长的CNFs可以与热凝胶基质形成更紧密交织的网络。此外,我们还证明了纳米复合热凝胶在体外持续药物递送方面的能力得到了提高。本研究不仅提升了木质纤维素的价值,还提高了热凝胶的多功能性。

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