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Minocycline Loaded Hybrid Composites Nanoparticles for Mesenchymal Stem Cells Differentiation into Osteogenesis

机译:Minocycline负载的杂化复合纳米颗粒的间充质干细胞分化成骨。

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Bone transplants are used to treat fractures and increase new tissue development in bone tissue engineering. Grafting of massive implantations showing slow curing rate and results in cell death for poor vascularization. The potentials of biocomposite scaffolds to mimic extracellular matrix (ECM) and including new biomaterials could produce a better substitute for new bone tissue formation. A purpose of this study is to analyze polycaprolactone/silk fibroin/hyaluronic acid/minocycline hydrochloride (PCL/SF/HA/MH) nanoparticles initiate human mesenchymal stem cells (MSCs) proliferation and differentiation into osteogenesis. Electrospraying technique was used to develop PCL, PCL/SF, PCL/SF/HA and PCL/SF/HA/MH hybrid biocomposite nanoparticles and characterization was analyzed by field emission scanning electron microscope (FESEM), contact angle and Fourier transform infrared spectroscopy (FT-IR). The obtained results proved that the particle diameter and water contact angle obtained around 0.54 ± 0.12 to 3.2 ± 0.18 μm and 43.93 ± 10.8° to 133.1 ± 12.4° respectively. The cell proliferation and cell-nanoparticle interactions analyzed using (3-(4,5-dimethyl thiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2 H -tetrazolium inner salt) MTS assay (Promega, Madison, WI, USA), FESEM for cell morphology and 5-Chloromethylfluorescein diacetate (CMFDA) dye for imaging live cells. Osteogenic differentiation was proved by expression of osteocalcin, alkaline phosphatase activity (ALP) and mineralization was confirmed by using alizarin red (ARS). The quantity of cells was considerably increased in PCL/SF/HA/MH nanoparticles when compare to all other biocomposite nanoparticles and the cell interaction was observed more on PCL/SF/HA/MH nanoparticles. The electrosprayed PCL/SF/HA/MH biocomposite nanoparticle significantly initiated increased cell proliferation, osteogenic differentiation and mineralization, which provide huge potential for bone tissue engineering.
机译:骨移植物用于治疗骨折并增加骨组织工程学中的新组织发展。大规模植入物的嫁接显示出缓慢的治愈率,并导致血管死亡,导致血管死亡。生物复合材料支架模仿细胞外基质(ECM)并包括新的生物材料的潜力可以为新的骨组织形成提供更好的替代品。这项研究的目的是分析聚己内酯/丝素蛋白/透明质酸/盐酸米诺环素(PCL / SF / HA / MH)纳米粒子引发人间充质干细胞(MSC)增殖和分化成骨。电喷雾技术用于开发PCL,PCL / SF,PCL / SF / HA和PCL / SF / HA / MH杂化生物复合纳米颗粒,并通过场发射扫描电子显微镜(FESEM),接触角和傅里叶变换红外光谱( FT-IR)。所得结果证明,粒径和水接触角分别为约0.54±0.12至3.2±0.18μm和43.93±10.8°至133.1±12.4°。使用(3-(4,5-二甲基噻唑-2-基)-5-(3-羧基甲氧基苯基)-2-(4-磺基苯基)-2 H-四唑内盐)MTS分析细胞增殖和细胞纳米颗粒的相互作用检测(Promega,麦迪逊,威斯康星州,美国),用FESEM进行细胞形态分析,用5-氯甲基荧光素双乙酸盐(CMFDA)染料进行活细胞成像。骨钙素的表达,碱性磷酸酶活性(ALP)证明了成骨分化,而茜素红(ARS)证实了矿化作用。与所有其他生物复合纳米颗粒相比,PCL / SF / HA / MH纳米颗粒中的细胞数量大大增加,并且在PCL / SF / HA / MH纳米颗粒中观察到更多的细胞相互作用。电喷雾的PCL / SF / HA / MH生物复合纳米粒子显着引发了细胞增殖,成骨分化和矿化的增加,这为骨组织工程提供了巨大的潜力。

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