静电纺丝技术释聚酯芝麻素在骨组织工程中的应用。

IF 2.3 4区 化学 Q3 POLYMER SCIENCE
Designed Monomers and Polymers Pub Date : 2022-08-12 eCollection Date: 2022-01-01 DOI:10.1080/15685551.2022.2111857
Vachira Choommongkol, Jetsada Ruangsuriya, Panawan Suttiarporn, Winita Punyodom, Boontharika Thapsukhon
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引用次数: 4

摘要

芝麻素是从芝麻(Sesamum indicum Linn)中分离出来的一种重要的木质素化合物,以其抗氧化、抗炎和促进组织生长的特性而闻名。生物可吸收聚(ε-己内酯)(PCL)也是一种众所周知的聚合物,作为生物材料应用于医学的各个领域。本研究的主要目的是利用静电纺丝技术制备PCL和芝麻素的骨组织工程原型材料。以二氯甲烷和二甲基甲酰胺(7:3)的混合物为溶剂体系,制备了不同芝麻素浓度(1 ~ 6 wt%)负载的PCL纳米纤维。随着芝麻素浓度的增加,结晶度降低,包封效率提高(86.87% ~ 93.97%)。电纺垫子的红外光谱证实了芝麻素组成了纤维网络。负载芝麻素的PCL纳米纤维膜在10周内释放芝麻素在1.28 ~ 8.16 μg/mL范围内。采用零阶、一阶、Higuchi和Korsmeyer-Peppas模型拟合释放数据,评价芝麻素释放机制和动力学。芝麻素的释放动力学符合Korsmeyer-Peppas的Fickian扩散机制(R2 = 0.99)。在骨肉瘤细胞系MG-63的体外实验中,我们研究了碱性磷酸酶(ALP)活性、细胞附着、生物相容性和骨标志物表达的促进作用。负载芝麻素的电纺PCL纳米纤维具有作为芝麻素骨细胞递送支架的潜力和在生物医学上的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polyester-releasing sesamin by electrospinning technique for the application of bone tissue engineering.

Sesamin, a significant lignin compound isolated from sesame (Sesamum indicum Linn), is well known for its antioxidant, anti-inflammatory, and tissue growth promotion properties. Bioabsorbable poly(ε-caprolactone) (PCL) is also a well-known polymer applied to various fields of medicine as biomaterials. The main objective of this research was to produce a prototype material from PCL and sesamin by electrospinning technique for bone tissue engineering applications. Dichloromethane and dimethylformamide (7:3) mixture was used as the solvent system for fabrication of PCL nanofiber with different loads of sesamin concentrations (1-6 wt%). The crystallinity levels decreasing and the entrapment efficiency increasing (86.87%-93.97%) were observed while sesamin concentrations were increased. The infrared spectra of electrospun mats confirmed that sesamin corporated into fibrous networks. The sesamin-loaded PCL nanofibrous membranes showed a significant release of sesamin in the range of 1.28-8.16 μg/mL within 10 weeks. The release data were fitted to zero order, first order, Higuchi and Korsmeyer-Peppas models to evaluate sesamin-releasing mechanisms and kinetics. The releasing kinetics of sesamin followed the Fickian diffusion mechanism of Korsmeyer-Peppas (R2 = 0.99). In vitro experiments with an osteosarcoma cell line (MG-63) revealed cell attachment, biocompatibility, and promotion of bone marker expression, the alkaline phosphatase (ALP) activity were studied. The electrospun PCL nanofiber loaded with sesamin had the potential as a scaffold for sesamin delivery to bone cells and applications in biomedicine.

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来源期刊
Designed Monomers and Polymers
Designed Monomers and Polymers 化学-高分子科学
CiteScore
3.30
自引率
0.00%
发文量
28
审稿时长
2.1 months
期刊介绍: Designed Monomers and Polymers ( DMP) publishes prompt peer-reviewed papers and short topical reviews on all areas of macromolecular design and applications. Emphasis is placed on the preparations of new monomers, including characterization and applications. Experiments should be presented in sufficient detail (including specific observations, precautionary notes, use of new materials, techniques, and their possible problems) that they could be reproduced by any researcher wishing to repeat the work. The journal also includes macromolecular design of polymeric materials (such as polymeric biomaterials, biomedical polymers, etc.) with medical applications. DMP provides an interface between organic and polymer chemistries and aims to bridge the gap between monomer synthesis and the design of new polymers. Submssions are invited in the areas including, but not limited to: -macromolecular science, initiators, macroinitiators for macromolecular design -kinetics, mechanism and modelling aspects of polymerization -new methods of synthesis of known monomers -new monomers (must show evidence for polymerization, e.g. polycondensation, sequential combination, oxidative coupling, radiation, plasma polymerization) -functional prepolymers of various architectures such as hyperbranched polymers, telechelic polymers, macromonomers, or dendrimers -new polymeric materials with biomedical applications
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