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用芽提取物化合物对基于二氧化硅的生物活性玻璃进行表面功能化。

Surface Functionalization of a Silica-Based Bioactive Glass with Compounds from Bud Extracts.

机构信息

Politecnico di Torino, Department of Applied Science and Technology, Institute of Materials Physics and Engineering, Corso Duca degli Abruzzi, 24, 10129, Torino, Italy.

Department of Health Sciences, Center for Translational Research on Autoimmune and Allergic Diseases - CAAD, University of Piemonte Orientale UPO, c.so Trieste 15/A, 28100, Novara, Italy.

出版信息

ACS Biomater Sci Eng. 2021 Jan 11;7(1):96-104. doi: 10.1021/acsbiomaterials.0c01170. Epub 2020 Dec 11.

Abstract

Bud extracts are a new category of vegetal products, which are used in gemmotherapy. These products are liquid preparation sources of bioactive molecules (phytochemicals) and are used in medicine as health-promoting agents. is a medicinal plant belonging to the family . The bud extracts, in particular, possess anti-inflammatory and antioxidant activities due to the presence of flavonoids and other phenolic compounds. The combination of bud extracts with biomaterials can be promising for obtaining multifunctional materials carrying both inorganic and biological properties. In this work, a protocol of functionalization has been properly designed, for the first time in the literature, in order to graft various bud extracts of to a silica-based bioactive glass (CEL2). The Folin-Ciocalteu method was used to determine the redox capacity of total polyphenols in the extracts and on functionalized solid samples. X-ray photoelectron spectroscopy analysis and fluorescence microscopy were employed to investigate the presence of phenol substances on the material surface. Bioactivity (in terms of ability of inducing hydroxyapatite precipitation) has been investigated by soaking the samples, with or without functionalization, in simulated body fluid. The presence of the polyphenols from bud extracts not only preserved glass bioactivity but even enhanced it. In particular, the solution obtained from the byproducts of primary extraction in glycerol macerate showed the best performances. Moreover, the presence and antioxidant activity of bud extract compounds on the material surface after grafting demonstrate the possibility of combining the glass inorganic bioactivity with the biomolecule-specific properties, making possible a local action at the implant site. The promising results reported in this work pave the way for the realization of new multifunctional materials with a green approach.

摘要

芽提取物是一种新型植物产品,用于芽疗法。这些产品是生物活性分子(植物化学物质)的液体制剂来源,被用作促进健康的药物。是属于家庭的药用植物。特别是芽提取物由于存在类黄酮和其他酚类化合物而具有抗炎和抗氧化活性。芽提取物与生物材料的结合可能是获得同时具有无机和生物特性的多功能材料的有前途的方法。在这项工作中,首次设计了一种功能化方案,用于将各种的芽提取物接枝到基于二氧化硅的生物活性玻璃(CEL2)上。Folin-Ciocalteu 法用于测定提取物和功能化固体样品中总多酚的氧化还原能力。X 射线光电子能谱分析和荧光显微镜用于研究材料表面上酚类物质的存在。通过将未经功能化和经功能化的样品浸泡在模拟体液中,研究了生物活性(以诱导羟基磷灰石沉淀的能力为指标)。芽提取物中的多酚的存在不仅保留了玻璃的生物活性,甚至增强了其生物活性。特别是,从甘油浸膏的初级提取副产物中获得的溶液表现出最佳性能。此外,接枝后材料表面上芽提取物化合物的存在和抗氧化活性证明了将玻璃无机生物活性与生物分子特定性质相结合的可能性,从而可以在植入部位进行局部作用。本工作中报道的有希望的结果为使用绿色方法实现具有多功能的新材料铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1465/8016168/697469a3202b/ab0c01170_0002.jpg

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