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羟基磷灰石硅酸钠玻璃复合材料包封提取物的表征及抗菌活性

Characterization and Antimicrobial Activity of Extracts Encapsulated in Hydroxyapatite Sodium Silicate Glass Composite.

作者信息

Tiji Salima, Lakrat Mohammed, Rokni Yahya, Mejdoubi El Miloud, Hano Christophe, Addi Mohamed, Asehraou Abdeslam, Mimouni Mostafa

机构信息

Applied Chemistry and Environment Laboratory, Faculty of Sciences, Mohammed First University, Oujda 60000, Morocco.

Solid Mineral Chemistry Laboratory, Faculty of Sciences, Mohammed First University, Oujda 60000, Morocco.

出版信息

Antibiotics (Basel). 2022 Jan 28;11(2):170. doi: 10.3390/antibiotics11020170.

Abstract

is an interesting source of bioactive compounds commonly used for various therapeutic purposes. Associate its seeds extracts with biomaterials to improve their antimicrobial properties are highly demanded. This study aims to investigate the encapsulation of extracts in hydroxyapatite nanoparticle sodium silicate glass (nHap/SSG) scaffold. essential oil (HS) was extracted by hydrodistillation, while hexane (FH) and acetone extracts (FA) were obtained using Soxhlet extraction. (FH) was the most abundant (34%) followed by (FA) (2.02%) and (HS) (1.2%). GC-MS chromatography showed that the (HS) contained beta cymene, alpha thujene, β-pinene and thymoquinone, while (FH) had mostly fatty acids and (FA) decane, 2.9-dimethyl, benzene 1,3,3-trimethylnonyl and beta cymene. Loaded nHap/SGG scaffolds with various amount of (FH), (HS) and (FA) at 1.5, 3, and 6 wt%; were elaborated then characterized by ATR-FTIR, X-ray and SEM techniques and their antimicrobial activity was studied. Samples loaded with 1.5 wt% HE was highly active against (19 mm), and at 3 wt% on (20 mm) and (20 mm). Additionally, loaded scaffolds with 1.5 wt% AE had an important activity against (18.9 mm) and (19 mm), while the EO had low activities on all bacterial strains. The outcome of this finding indicated that loaded scaffolds demonstrated an important antimicrobial effect that make them promising materials for a wide range of medical applications.

摘要

是生物活性化合物的一个有趣来源,常用于各种治疗目的。将其种子提取物与生物材料结合以改善其抗菌性能的需求很高。本研究旨在研究提取物在羟基磷灰石纳米颗粒硅酸钠玻璃(nHap/SSG)支架中的包封情况。通过水蒸馏提取香精油(HS),而使用索氏提取法获得己烷提取物(FH)和丙酮提取物(FA)。(FH)含量最高(34%),其次是(FA)(2.02%)和(HS)(1.2%)。气相色谱 - 质谱联用(GC - MS)分析表明,(HS)含有β - 伞花烃、α - 侧柏烯、β - 蒎烯和百里醌,而(FH)主要含有脂肪酸,(FA)含有癸烷、2,9 - 二甲基、1,3,3 - 三甲基壬基苯和β - 伞花烃。制备了负载不同量(1.5、3和6 wt%)的(FH)、(HS)和(FA)的nHap/SGG支架,然后通过衰减全反射傅里叶变换红外光谱(ATR - FTIR)、X射线和扫描电子显微镜(SEM)技术对其进行表征,并研究了它们的抗菌活性。负载1.5 wt% HE的样品对[具体细菌1]具有高活性(抑菌圈直径为19 mm),3 wt%时对[具体细菌2](抑菌圈直径为20 mm)和[具体细菌3](抑菌圈直径为20 mm)具有高活性。此外,负载1.5 wt% AE的支架对[具体细菌4](抑菌圈直径为18.9 mm)和[具体细菌5](抑菌圈直径为19 mm)具有重要活性,而香精油(EO)对所有细菌菌株的活性较低。这一发现的结果表明,负载的支架表现出重要的抗菌作用,使其成为广泛医学应用中有前景的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d250/8868394/f8890971d874/antibiotics-11-00170-g001a.jpg

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