碳纳米纤维改性微/纳米羟基磷灰石聚合物复合材料的光谱研究。

IF 2.2 3区 化学 Q2 INSTRUMENTS & INSTRUMENTATION
Applied Spectroscopy Pub Date : 2025-05-01 Epub Date: 2025-02-16 DOI:10.1177/00037028251316290
Anna Kołodziej, Małgorzata Rachwał, Elżbieta Długoń, Magdalena Ziąbka, Aleksandra Wesełucha-Birczyńska
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引用次数: 0

摘要

目前,新型生物材料正处于激烈的研究之中,因为它们是治疗骨质疏松症和骨缺陷等与年龄有关的疾病的有希望的疗法的一部分。本研究制备了聚ε-己内酯(PCL)、微纳米羟基磷灰石(µ-HAp和n-HAp)和纳米碳纤维(CNFs)的复合材料。采用扫描电镜(SEM)、拉曼微光谱(Raman micro-spectroscopy)、拉曼映射(Raman mapping)和二维相关光谱(2D-COS)分析了添加剂对聚合物基体的影响。体外生物活性通过制备的膜在模拟体液(SBF)中培养21天来评估。结果表明,添加剂可以作为PCL的结晶核,但它们不仅位于PCL球晶的中心,而且遍布整个表面。随着羟基磷灰石添加量的增加,聚合物球晶变小。2D-COS证实,HAp的类型(µ-HAp或n-HAp)对PCL基质的影响不同。其添加导致聚合物中最显著变化的组分是CNFs;聚合物球粒小到难以分辨的程度,聚合物的整体非晶性是所有测试材料中最高的,它的疏水性也是如此。生物活性测试表明,在骨组织工程中作为生物材料使用的最大潜力的膜是由n-HAp (15wt %)和CNFs组成的膜,因为在SBF中孵育后,观察到该膜表面非常均匀地覆盖了产生的磷灰石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectroscopic Study of Micro-/Nano-Hydroxyapatite Polymer Composites Modified with Carbon Nanofibers.

Nowadays, novel biomaterials are under intense research because they are part of promising therapies for the treatment of age-related diseases such as osteoporosis and bone defects. In the presented study, composites of poly(ε-caprolactone) (PCL), micro and nano hydroxyapatite (µ-HAp and n-HAp) and carbon nanofibers (CNFs) were prepared. The influence of additives on polymeric matrix was analyzed using scanning electron microscopy (SEM), Raman micro-spectroscopy, Raman mapping, and two-dimensional correlation spectroscopy (2D-COS). The bioactivity in vitro was evaluated by a 21-day incubation of prepared membranes in simulated body fluid (SBF). It was concluded that additives can behave as crystallization nuclei of PCL, but they are also located across the entire surface of PCL spherulites, not only in the center. With an increasing content of HAp additives, polymeric spherulites become smaller. The type of HAp (µ-HAp or n-HAp) influences the PCL matrix differently, as confirmed by 2D-COS. The component whose addition leads to most significant changes in the polymer is CNFs; polymeric spherulites are small to the extent that they are not distinguishable, and the overall amorphousness of the polymer is the highest among all tested materials, as is its hydrophobicity. The bioactivity test indicated that the membrane with the greatest potential for use as a biomaterial in bone tissue engineering is one consisting of n-HAp (15 wt%) and CNFs, as very uniform coverage of the produced apatite was observed on the surface of this membrane after incubation in SBF.

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来源期刊
Applied Spectroscopy
Applied Spectroscopy 工程技术-光谱学
CiteScore
6.60
自引率
5.70%
发文量
139
审稿时长
3.5 months
期刊介绍: Applied Spectroscopy is one of the world''s leading spectroscopy journals, publishing high-quality peer-reviewed articles, both fundamental and applied, covering all aspects of spectroscopy. Established in 1951, the journal is owned by the Society for Applied Spectroscopy and is published monthly. The journal is dedicated to fulfilling the mission of the Society to “…advance and disseminate knowledge and information concerning the art and science of spectroscopy and other allied sciences.”
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