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Fabrication and Characteristics of Anti-Inflammatory Magnesium Hydroxide Incorporated PLGA Scaffolds Formed with Various Porogen Materials

机译:多种致孔剂材料形成的抗炎性氢氧化镁掺入PLGA支架的制备与特性

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Poly(D,L-lactic-co-glycolic acid) (PLGA) has been widely used as a biodegradable polymer in the fabrication of porous polymer scaffolds, but it is hydrolyzed into acidic by-products such as glycolic acid and lactic acid in the human body. Magnesium hydroxide nanoparticles (Mg-NPs) were incorporated into a PLGA scaffold in order to neutralize the acidic environment caused by the hydrolysis of PLGA, thereby reducing the cytotoxicity and inflammatory response. In this study, three-dimensional porous scaffolds blended with 30% Mg-NP were fabricated using gas foaming (PLGA/Mg/NaHCO3), salt leaching (PLGA/Mg/NaCl), and freeze drying (PLGA/Mg/Ice), and their structures, morphologies, pH change, thermal properties, and mechanical properties were analyzed by Fourier transform infrared spectroscopy, scanning electron microscopy, pH meter, thermogravimetric analysis, and a universal testing machine. The porosity of the PLGA/Mg/Ice scaffold was higher at about 10-13 wt% than those of the PLGA/Mg/NaCl or PLGA/Mg/NaHCO3 scaffolds. The Mg-NP content of the PLGA/Mg/NaHCO3 scaffold remained lower than those of the other scaffolds at about 63%. As a result of this loss of Mg-NP, the PLGA/Mg/NaHCO3 scaffold was confirmed to have lower cell viability (about 70%) than the PLGA/Mg/Ice scaffold (about 100%), owing to the reduced neutralizing effect. Although the PLGA/Mg/Ice and PLGA/Mg/NaCl scaffolds showed similar cell viability, the NaCl of the PLGA/Mg/NaCl scaffold exhibited slight toxicity in the body. The expression level of inter-leukin-6 (IL-6) was significantly decreased in the PLGA/Mg/Ice scaffold than in the PLGA/Ice scaffold, but the PLGA/Mg/Ice scaffold exhibited an IL-6 expression level that was about 10% lower than that of the PLGA/Mg/ NaCl scaffold. Consequently, the addition of Mg-NP/Ice could conceivably reduce the expression level of IL-6 in PLGA scaffolds. This anti-inflammatory PLGA/Mg/Ice scaffold is therefore expected to show great promise when used as a template in tissue engineering.
机译:聚(D,L-乳酸-乙醇酸共聚物)(PLGA)在多孔聚合物支架的制造中已广泛用作可生物降解的聚合物,但在生产过程中会水解成酸性副产物,如乙醇酸和乳酸。人体。将氢氧化镁纳米颗粒(Mg-NPs)掺入PLGA支架中,以中和PLGA水解引起的酸性环境,从而降低细胞毒性和炎症反应。在这项研究中,使用气体发泡(PLGA / Mg / NaHCO3),盐浸(PLGA / Mg / NaCl)和冷冻干燥(PLGA / Mg / Ice)制作了掺有30%Mg-NP的三维多孔支架,并通过傅立叶变换红外光谱,扫描电子显微镜,pH计,热重分析和通用试验机分析了它们的结构,形态,pH变化,热性能和机械性能。 PLGA / Mg / Ice支架的孔隙率比PLGA / Mg / NaCl或PLGA / Mg / NaHCO3支架的孔隙率高,约为10-13 wt%。 PLGA / Mg / NaHCO3支架的Mg-NP含量仍低于其他支架,约为63%。由于Mg-NP的这种损失,由于中和作用降低,证实PLGA / Mg / NaHCO3支架的细胞活力(约70%)比PLGA / Mg / Ice支架(约100%)低。 。尽管PLGA / Mg / Ice和PLGA / Mg / NaCl支架显示出相似的细胞活力,但PLGA / Mg / NaCl支架的NaCl对人体的毒性很小。在PLGA / Mg / Ice支架中,白介素6(IL-6)的表达水平显着低于PLGA / Ice支架,但PLGA / Mg / Ice支架中IL-6的表达水平为比PLGA / Mg / NaCl支架低约10%。因此,Mg-NP / Ice的添加可能会降低PLGA支架中IL-6的表达水平。因此,这种抗炎PLGA / Mg / Ice支架在组织工程中用作模板时,有望显示出广阔的前景。

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