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纯纳米粒子的形成与溶剂分级木质素聚合物及其生物相容性评价。

Formation of pure nanoparticles with solvent-fractionated lignin polymers and evaluation of their biocompatibility.

机构信息

Department of Agriculture, Forestry and Bioresources, Seoul National University, Seoul 08826, Republic of Korea.

Institute of Green-Bio Science and Technology, Seoul National University, Pyeongchang 25354, Republic of Korea.

出版信息

Int J Biol Macromol. 2021 Jul 31;183:660-667. doi: 10.1016/j.ijbiomac.2021.04.149. Epub 2021 May 3.

Abstract

This study aimed to determine the effects of lignin characteristics (mainly molecular weight, functional groups, and internal linkages) on nanoparticle formation. First, five different lignin fractions (M 1460-12,900) were obtained from commercial kraft lignin (KL) by sequential solvent extraction. Functional groups and internal linkages were determined in lignin fractions, each fraction consisting of different levels and ratios. Second, spherical lignin nanoparticles (i.d. 193-1039 nm) were synthesized by nanoprecipitation at different pre-dialysis concentrations (1, 2, 4, and 6 mg mL THF) with the different fractions (F1, F2, F3, F4, and F5). The study revealed that larger particles consisted of lignin fractions of lower molecular weight and higher phenolic group content (KL-F1 and F2), while smaller but non-uniform particles were produced from fractions of higher molecular weight and lower phenolic group content (KLF4 and F5). Every zeta potential value of the particle exceeded -35 mV. The nanoparticles from raw kraft lignin exhibited no significant cytotoxicity, hemotoxicity, and hypersensitivity. This study revealed that molecular weight and hydroxyl group content in the lignin highly correlated with nanoparticle properties. The present kraft lignin nanoparticles have potential for use in various polymer-based nanotechnology.

摘要

本研究旨在确定木质素特性(主要是分子量、官能团和内部键合)对纳米颗粒形成的影响。首先,通过顺序溶剂萃取,从商业 kraft 木质素 (KL) 中获得了五种不同的木质素级分 (M 1460-12900)。在木质素级分中测定了官能团和内部键合,每个级分包含不同水平和比例。其次,通过在不同的预透析浓度(1、2、4 和 6 mg/mL THF)下进行纳米沉淀,用不同的级分(F1、F2、F3、F4 和 F5)合成了球形木质素纳米颗粒(内径 193-1039nm)。研究表明,较大的颗粒由分子量较低且酚类含量较高的木质素级分(KL-F1 和 F2)组成,而较小但不均匀的颗粒则由分子量较高且酚类含量较低的级分(KLF4 和 F5)组成。每个颗粒的 zeta 电位值均超过-35 mV。原 kraft 木质素的纳米颗粒没有表现出明显的细胞毒性、血液毒性和过敏反应。本研究表明,木质素中的分子量和羟基含量与纳米颗粒特性高度相关。本研究表明,这种 kraft 木质素纳米颗粒具有在各种聚合物基纳米技术中应用的潜力。

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