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Nucleic Acid-Scavenging Electrospun Nanofibrous Meshes for Suppressing Inflammatory Responses

机译:核酸清除静电纺丝的纳米纤维网抑制炎症反应。

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摘要

Fragmented nucleic acids are potent stimulators for inflammatory responses provoking pathological outcomes by activating adaptive immunity. In this study, highly cationic surfaces were prepared on electrospun nanofibrous meshes to scavenge nucleic acids to the surfaces. Poly(ε-caprolactohe) [PCL]-poly(ethylenimine) [PEI] block copolymers were synthesized by coupling the carboxyl-terminated PCL to the primary amines of branched PEL Polymeric solutions composed of PCL-PEI and PCL were electrospun to nanofibrous mats, and the surfaces were further methylated to prepare highly cationic surfaces on the mats. Raman spectroscopy revealed that the presence of increased methylated amines on the surfaces of the mats compared to unmodified mats. The methylated surfaces showed significant increases of wettability after methylation, suggesting highly charged surfaces caused by methylation of the primary amines. When the blend ratio of PCL—PEI was increased, the scavenged DNA was also increased, and the methylation further strengthened the scavenging ability of the mats. Fluorescently labeled oligodeoxynucleic acids were significantly adsorbed on the surface of the mats depending on the amounts of PCL-PEI and the degree of methylation. In the presence of the methylated nanofibrous mats, inflammatory responses induced by CpG oligonucleotides in murine macrophages were significantly reduced, which was confirmed by measuring inflammatory cytokine levels including TNF-α and IFN-γ.
机译:片段化的核酸是炎症反应的有效刺激剂,可通过激活适应性免疫来激发病理结果。在这项研究中,在静电纺丝纳米纤维网上制备了高度阳离子的表面,以清除表面的核酸。通过将羧基封端的PCL偶联到支链PEL的伯胺上来合成聚(ε-己内酯)[PCL]-聚(乙烯亚胺)[PEI]嵌段共聚物将PCL-PEI和PCL组成的聚合物溶液静电纺丝到纳米纤维垫上,然后将表面进一步甲基化以在垫子上制备高度阳离子的表面。拉曼光谱法表明,与未改性垫相比,垫表面上存在增加的甲基化胺。甲基化后,甲基化的表面显示出润湿性的显着增加,表明由伯胺的甲基化引起的高电荷表面。当PCL-PEI的混合比增加时,被清除的DNA也增加,并且甲基化进一步增强了席子的清除能力。取决于PCL-PEI的量和甲基化程度,荧光标记的寡聚脱氧核酸被显着吸附在垫的表面上。在甲基化的纳米纤维垫的存在下,鼠巨噬细胞中CpG寡核苷酸诱导的炎症反应显着降低,这可以通过测量包括TNF-α和IFN-γ在内的炎症细胞因子水平来证实。

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