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溶胶-凝胶法合成的二氧化硅/海藻酸钠杂化物:全面的物理化学和生物学表征

Sol-Gel Synthesized Silica/Sodium Alginate Hybrids: Comprehensive Physico-Chemical and Biological Characterization.

作者信息

D'Angelo Antonio, Mortalò Cecilia, Comune Lara, Raffaini Giuseppina, Fiorentino Marika, Catauro Michelina

机构信息

Department of Engineering, University of Campania "Luigi Vanvitelli", Via Roma 29, 81031 Aversa, Italy.

Institute of Condensed Matter Chemistry and Technologies for Energy (ICMATE-CNR) National Research Council (CNR), C.so Stati Uniti 4, 35127 Padova, Italy.

出版信息

Molecules. 2025 Aug 25;30(17):3481. doi: 10.3390/molecules30173481.

Abstract

The development of biomaterials with tailored properties is indispensable for biomedical applications. In this study, amorphous silica/sodium alginate (SiO/SA) hybrids were synthesized via the sol-gel method by incorporating 2, 5, and 8% sodium alginate into the silica matrix. The hybrids were characterized to evaluate their structural, surface, thermal, moisture-responsive, and biological properties. FTIR and XRD analyses confirmed the formation of organic-inorganic networks and amorphous structures. BET measurements revealed a specific surface area of 325 m/g for SiO/SA2%, decreasing with higher SA content to 104.3 m/g for SiO/SA8%; the moisture sorption capacity followed a similar trend. Thermal analysis indicated improved stabilization of the polymer within the silica matrix. Cytotoxicity tests on HaCaT (human keratinocyte) cells line revealed moderate toxicity for the SiO/SA2% hybrid (~40% cell viability inhibition (CVI)), while increasing the SA content reduced cytotoxicity, with a CVI of 33% for SiO/SA5% and ~15% for SiO/SA8%, all within non-toxic ranges according to ISO standards. The SiO/SA5% hybrid demonstrated the best balance between functional properties and biocompatibility. These preliminary results suggest that further optimization with intermediate SA concentrations (e.g., 6-7%) could further reduce cytotoxicity while maintaining desirable properties, supporting the potential of silica/sodium alginate hybrids in future biomedical applications.

摘要

开发具有定制特性的生物材料对于生物医学应用来说必不可少。在本研究中,通过溶胶 - 凝胶法,将2%、5%和8%的海藻酸钠掺入二氧化硅基质中,合成了非晶态二氧化硅/海藻酸钠(SiO/SA)杂化材料。对这些杂化材料进行了表征,以评估其结构、表面、热、湿度响应和生物学特性。傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)分析证实了有机 - 无机网络和非晶态结构的形成。比表面积测定(BET)显示,SiO/SA2%的比表面积为325 m²/g,随着海藻酸钠含量的增加而降低,SiO/SA8%的比表面积降至104.3 m²/g;吸湿能力也呈现类似趋势。热分析表明聚合物在二氧化硅基质中的稳定性有所提高。对HaCaT(人角质形成细胞)细胞系的细胞毒性测试显示,SiO/SA2%杂化材料具有中等毒性(~40%细胞活力抑制(CVI)),而增加海藻酸钠含量可降低细胞毒性,SiO/SA5%的CVI为33%,SiO/SA8%的CVI约为15%,根据ISO标准,所有这些均在无毒范围内。SiO/SA5%杂化材料在功能特性和生物相容性之间表现出最佳平衡。这些初步结果表明,用中间浓度的海藻酸钠(例如6 - 7%)进一步优化可以在保持所需特性的同时进一步降低细胞毒性,这支持了二氧化硅/海藻酸钠杂化材料在未来生物医学应用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a02/12430397/601c8a559fc3/molecules-30-03481-g001.jpg

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