PVP as an Oxygen Vacancy-Inducing Agent in the Development of Black 45S5 Bioactive Glass Fibrous Scaffolds Doped with Zn and Mg Using A-HSBS.

IF 3.1 3区 材料科学 Q3 CHEMISTRY, PHYSICAL
Materials Pub Date : 2025-03-18 DOI:10.3390/ma18061340
Keila C Costa, Maria Geórgia da S Andrade, Rondinele N de Araujo, Adegildo R de Abreu Junior, Marianna V Sobral, Juan Carlos R Gonçalves, Bianca V Sousa, Gelmires A Neves, Romualdo R Menezes
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Abstract

Currently, there is an increasing demand for advanced materials that can address the needs of tissue engineering and have the potential for use in treatments targeting tumor cells, such as black bioactive materials in photothermal therapy. Thus, 3D fibrous scaffolds of black 45S5 bioactive glass were produced using the air-heated solution blow spinning (A-HSBS) technique, with polyvinylpyrrolidone (PVP) serving as a spinning aid and an oxygen vacancy-inducing agent. Glass powder with the same composition was synthesized via the sol-gel route for comparison. The samples were characterized using thermogravimetric analysis, X-ray diffraction, FTIR spectroscopy, and scanning electron microscopy, along with in vitro tests using simulated body fluid (SBF), phosphate-buffered saline (PBS), and TRIS solution. The results showed that PVP enhanced oxygen vacancy formation and stabilized the scaffolds at 600 °C. Doping with Zn and Mg ions reduced crystallization while significantly increasing the fiber diameters. Scaffolds doped with Zn exhibited lower degradation rates, delayed apatite formation, and hindered ionic release. Conversely, Mg ions facilitated greater interaction with the medium and rapid apatite formation, completely covering the fibers. The scaffolds showed no cytotoxicity in the MTT assay at concentrations of up to 200 µg/mL for HaCat cells and 0.8 mg/mL for L929 cells. This study demonstrated the effectiveness of using PVP in the production of black bioactive glass scaffolds, highlighting their potential for bone regeneration.

PVP作为氧空位诱导剂在A-HSBS掺杂Zn和Mg黑色45S5生物活性玻璃纤维支架中的应用
目前,对先进材料的需求不断增加,这些材料既可以满足组织工程的需要,又有可能用于靶向肿瘤细胞的治疗,例如光热治疗中的黑色生物活性材料。因此,采用空气加热溶液吹丝(a - hsbs)技术,以聚乙烯吡罗烷酮(PVP)作为纺丝助剂和氧诱导剂,制备了黑色45S5生物活性玻璃的三维纤维支架。采用溶胶-凝胶法合成了相同成分的玻璃粉进行比较。使用热重分析、x射线衍射、红外光谱和扫描电镜对样品进行了表征,并使用模拟体液(SBF)、磷酸盐缓冲盐水(PBS)和TRIS溶液进行了体外测试。结果表明,PVP促进了氧空位的形成,并在600℃下稳定了支架。锌和镁离子的掺入减少了结晶,同时显著增加了纤维直径。掺杂锌的支架表现出较低的降解率,延迟磷灰石的形成,阻碍离子释放。相反,镁离子促进了与介质和快速磷灰石形成的更大相互作用,完全覆盖了纤维。MTT试验表明,HaCat细胞和L929细胞在浓度分别为200µg/mL和0.8 mg/mL时均无细胞毒性。本研究证明了PVP在黑色生物活性玻璃支架生产中的有效性,突出了其骨再生的潜力。
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来源期刊
Materials
Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
5.80
自引率
14.70%
发文量
7753
审稿时长
1.2 months
期刊介绍: Materials (ISSN 1996-1944) is an open access journal of related scientific research and technology development. It publishes reviews, regular research papers (articles) and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Materials provides a forum for publishing papers which advance the in-depth understanding of the relationship between the structure, the properties or the functions of all kinds of materials. Chemical syntheses, chemical structures and mechanical, chemical, electronic, magnetic and optical properties and various applications will be considered.
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