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首页> 外文期刊>Materials science & engineering >Chlorogenic acid/PEG-based organic-inorganic hybrids: A versatile sol-gel synthesis route for new bioactive materials
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Chlorogenic acid/PEG-based organic-inorganic hybrids: A versatile sol-gel synthesis route for new bioactive materials

机译:绿原酸/ PEG基有机-无机杂化物:新型生物活性材料的通用溶胶-凝胶合成路线

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New organic-inorganic hybrid materials were synthesized by an acid catalysed sol-gel approach, using silicon alkoxide and low molecular weight polyethylene glycol (PEG400) as inorganic and organic precursor, respectively. Chlorogenic acid (CGA), an antioxidant natural phenol compound, enriched further the organic component. Hybrids synthesized, all identical in terms of their starting materials, but differing in terms of their relative proportions, were characterized by means of Fourier Transform InfraRed (FTIR) measurements, UV-Vis spectroscopy, and UHPLC-HRMS analysis. The preservation of the intrinsic chlorogenic acid ability to scavenge, in a dose-dependent manner, radical species was investigated by directly exposing the hybrids to DPPH radical and ABTS radical cation. The relative ratio of both the natural compound and PEG heavily affected the antiradical response, suggesting that chemical interactions in the established network were able, based on components' ratio, to differently mask and/or display the CGA moieties, commonly deemed relevant for antioxidant power exerting. Cell culture MTT assay was used to assess the biocompatibility of hybrid materials towards fibroblast NIH-3 T3 cells and neuroblastoma SH-SY5Y cells. Cells tested appeared differently responsive. In particular, a marked cell viability increase was observed when hybrids with low PEG amount (6%) and high CGA (15%) were directly exposed to fibroblast cells, whose mitochondrial redox activity was negatively affected by hybrid synthesized using the highest organic component rate (both PEG and CGA). Cell viability and morphology of human neuroblastoma SH-SY5Y cells were broadly compromised regardless of organic/inorganic starting materials ratio, suggesting the ability of hybrids to exert pro-oxidant effect towards tumour cells and to selectively interfere with their growth. The hybrids, able to elicit cleverly anti- or proliferative effects, were also shown to be bioactive. In fact, a biologically active hydroxyapatite layer was observed to be formed on the surface of the smart synthesized materials. This feature, which makes them a valuable bonding interface with tissues, opens new scenario aiming at further investigating the employment of natural phenol compounds in versatile sol-gel synthesis routes.
机译:通过酸催化溶胶-凝胶法合成了新的有机-无机杂化材料,分别使用烷氧基硅和低分子量聚乙二醇(PEG400)作为无机和有机前体。绿原酸(CGA),一种抗氧化剂天然酚类化合物,进一步丰富了有机成分。合成的杂化物在起始原料方面都是相同的,但在其相对比例方面却有所不同,它们通过傅立叶变换红外(FTIR)测量,紫外-可见光谱和UHPLC-HRMS分析来表征。通过直接将杂种暴露于DPPH自由基和ABTS自由基阳离子,研究了保持固有绿原酸清除自由基能力的剂量依赖性方式。天然化合物和PEG的相对比例在很大程度上影响了抗自由基反应,表明建立的网络中的化学相互作用能够基于组分的比例不同地掩盖和/或展示CGA部分,通常认为与抗氧化能力相关努力。细胞培养MTT法用于评估杂交材料对成纤维细胞NIH-3 T3细胞和神经母细胞瘤SH-SY5Y细胞的生物相容性。测试的细胞似乎反应不同。尤其是,当将低PEG量(6%)和高CGA(15%)的杂种直接暴露于成纤维细胞时,其线粒体氧化还原活性受到使用最高有机成分比率合成的杂种的负面影响,从而观察到明显的细胞活力增加(PEG和CGA)。不管有机/无机原料的比例如何,人类神经母细胞瘤SH-SY5Y细胞的细胞活力和形态都受到了很大的损害,这表明杂种对肿瘤细胞发挥促氧化作用并选择性地干扰其生长的能力。能够引发巧妙的抗增殖作用的杂种也具有生物活性。实际上,观察到在智能合成材料的表面上形成了具有生物活性的羟基磷灰石层。这一特性使它们成为与组织的重要结合界面,从而打开了新的场景,旨在进一步研究在多种溶胶-凝胶合成途径中天然酚类化合物的使用。

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