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A biocompatible cellulose-nanofiber-based multifunctional material for Fe(3+)detection and drug delivery

机译:用于Fe(3+)检测和药物递送的基于生物相容性纤维素 - 纳米纤维的多功能材料

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Although biomass-based materials offer several advantages as matrices for the development of multifunctional sensors, they have rarely been applied for dual-function solid colorimetric and spectrophotometric sensing. Herein, a nanoscale cellulose-nanofiber-based multifunctional material (CNF-DA) with excellent biocompatibility was prepared by grafting dopamine (DA) onto cellulose nanofibers with carboxyl groups (CNF-COOH) using an amidation reaction. Owing to the morphological diversity of as-prepared CNF-DA (e.g., a nanoscale homogeneous suspension, solid nanofibers, and an aerogel), multifunctional properties, including drug delivery, antibacterial properties, and spectrophotometric and solid colorimetric Fe(3+)sensing, were realized. Solid CNF-DA exhibited excellent selectivity and sensitivity toward Fe(3+)with a remarkable color change from off-white to dark green and a limit of detection (LOD) of 5 x 10(-7)mol L-1. Furthermore, CNF-DA was applied as a UV spectrophotometric sensor for Fe(3+)in aqueous solution with an LOD of 6.6 x 10(-11)mol L-1. CNF-DA also exhibited drug delivery and antibacterial properties owing to an abundance of hydroxyl groups and the high porosity of the nanofiber. The maximum drug loading capacity of CNF-DA and the release rate of doxorubicin were 879.09 mg g(-1)and 80% at pH 1.2, respectively. Thus, multifunctional CNF-DA has broad application prospects in the areas of food science and biological medicine.
机译:尽管基于生物质的材料作为用于开发多功能传感器的矩阵,但它们很少应用于双功能纯色度和分光光度感测。这里,通过使用酰胺化反应将多巴胺(DA)嫁接到纤维素纳米纤维上,制备具有优异生物相容性的基于纳米级纤维素 - 纳米纤维的多官能材料(CNF-DA),用羧基(CNF-COOH)用氨基磺酸盐反应制备。由于根据制备的CNF-DA(例如,纳米级均匀悬浮液,固体纳米纤维和气凝胶),多功能性质,包括药物递送,抗菌性和分光光度法和纯色度Fe(3+)感测,被意识到了。固体CNF -DA表现出优异的选择性和对Fe(3+)的敏感性,从灰白色到深绿色的显着颜色变化和5×10( - 7)摩尔L-1的检测极限(LOD)。此外,CNF-DA在水溶液中作为Fe(3+)的UV分光光度法传感器施用,其含量为6.6×10(-11)摩尔L-1。由于纳米纤维的丰度和高孔隙率,CNF-DA也表现出药物递送和抗菌性能。 CNF-DA的最大药物负载能力和多柔比星的释放速率分别为879.09mg(-1)和pH 1.2的80%。因此,多功能CNF-DA在食品科学和生物医学领域具有广泛的应用前景。

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