XRD, EDX and FTIR study of the bioactivity of 60S GLASS doped with La and Y under in vitro conditions

A. Kusyak, O. Oranska, D. Marcin Behunová, A. I. Petranovska, V. Chornyi, O. A. Bur'yanov, V. A. Dubok, P. Gorbyk
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引用次数: 1

Abstract

The aim of the work is the synthesis and study of the bioactivity of sol-gel glass (BG 60S) with molar composition 60 % SiO2, 36 % CaO, 4 % P2O5 and samples doped with La and Y in vitro; studying their structural properties and changes upon contact with a model physiological environment (Kokubo’s SBF), as well as justifying the possibility of their use for tissue regeneration and tissue engineering. According to the results of research, the interaction of synthesized samples with SBF leads to a change in the phase composition and the ratio of amorphous and crystalline components. It is necessary to note long and intensive processes involving CO32– ions for unalloyed and alloyed samples. The appearance of calcium carbonate in the form of vaterite with a simultaneous increase in the calcite content is one of the signs of high bioactivity of the synthesized samples. According to the results of XRD, EDX and FTIR studies after 28 days of soaking in SBF, the predominant surface elements are Ca and P in the composition of hydroxyapatite, and the elemental composition indicates active ion exchange processes according to the theory of bioactive glass dissolution in physiological fluids. The change in the ratio of crystalline phases with the inclusion of mainly one crystalline phase of hydroxopatite within 28 days leads to a better structuredness of the surface of the synthesized samples and indicates that they have osteoconductive properties, can connect with bone tissue and have the appropriate biodegradation ability. The results of the study indicate the promising nature of synthesized materials for tissue regeneration and tissue engineering.
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用XRD、EDX和FTIR研究了La和Y掺杂60S GLASS在体外条件下的生物活性
本研究的目的是合成一种摩尔成分为60% SiO2、36% CaO、4% P2O5并在体外掺杂La和Y的溶胶-凝胶玻璃(BG 60S),并研究其生物活性;研究它们的结构特性和与模型生理环境(Kokubo’s SBF)接触后的变化,以及证明它们用于组织再生和组织工程的可能性。根据研究结果,合成样品与SBF的相互作用导致了相组成和非晶与晶组分比例的变化。对于非合金和合金样品,有必要注意涉及CO32离子的长时间和密集的过程。碳酸钙以水晶石的形式出现,同时方解石含量增加,这是合成样品具有高生物活性的标志之一。在SBF中浸泡28 d后,XRD、EDX和FTIR分析结果表明,羟基磷灰石的表面元素组成以Ca和P为主,元素组成根据生理液体中生物活性玻璃溶解理论表明了活跃的离子交换过程。在28天内,羟基磷灰石的晶相比例发生了变化,主要包含一种晶相,这表明合成的样品表面的结构更好,表明它们具有骨导电性,可以与骨组织连接,具有适当的生物降解能力。研究结果表明,合成材料在组织再生和组织工程方面具有广阔的应用前景。
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