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Modulation of macrophage phenotype through controlled release of interleukin-4 from gelatine coatings on titanium surfaces

机译:通过控制白细胞表面明胶涂层中白细胞介素4的释放来调节巨噬细胞表型

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Pro-inflammatory phenotype (M1) macrophages initiate angiogenesis, while their prolonged activation can induce chronic inflammation. Anti-inflammatory phenotype (M2) macrophages promote vessel maturation and tissue regeneration. Biomaterials which can promote M2 polarisation after appropriate inflammation should enhance angiogenesis and wound healing. Herein, Interleukin-4 (IL-4), an anti-inflammatory cytokine, was adsorbed onto a titanium surface. Then, a genipin cross-linked gelatine hydrogel was coated onto the surface to delay IL-4 release. The cross-linking degree of the hydrogel was modulated by the different amount of genipin to control release of IL-4. When 0.7 wt% (weight %) genipin was used as a cross-linker, the sample (GG07-I) released less IL-4 within the first several days, followed by a sustained release time to 14 d. Meanwhile, the release rate of IL-4 in GG07-I reached a peak between 3 d and 7 d. In culture with macrophages in vitro, GG07-I and GG07 exhibited good cytocompatibility. The phenotypical switch of macrophages stimulated by the samples was determined by FACS, ELISA and PCR. Macrophages cultured with GG07-I, GG07 and PT were firstly activated to the M1 phenotype by interferon-gamma (IFN-γ). Then, due to the release of IL-4 in 5 to 7 d, GG07-I enhanced CD206, increased the secretion and gene expression of M2 marker, such as interleukin-10 (IL-10), arginase-1 (ARG-1) and platelet derived growth factor-BB (PDGF- BB). GG07-I prompted the switch from M1 to M2 phenotype. Those appropriate secretion of cytokines would benefit both vascularisation and osseointegration. Thus, the biomaterial directing inflammatory reaction has good prospects for clinical treatments.
机译:促炎表型(M1)巨噬细胞启动血管生成,而它们的长时间激活可诱发慢性炎症。抗炎表型(M2)巨噬细胞促进血管成熟和组织再生。在适当的炎症后可促进M2极化的生物材料应增强血管生成和伤口愈合。在此,抗炎细胞因子白细胞介素-4(IL-4)被吸附到钛表面上。然后,将Genipin交联的明胶水凝胶涂在表面上以延迟IL-4的释放。通过不同量的京尼平调节水凝胶的交联度以控制IL-4的释放。当使用0.7 wt%(重量%)的京尼平作为交联剂时,样品(GG07-I)在最初几天内释放的IL-4较少,然后持续释放至14 d。同时,GG07-I中IL-4的释放速率在3 d至7 d之间达到峰值。在具有巨噬细胞的体外培养中,GG07-1和GG07表现出良好的细胞相容性。通过FACS,ELISA和PCR确定样品刺激的巨噬细胞的表型转换。首先,通过干扰素-γ(IFN-γ)将用GG07-1,GG07和PT培养的巨噬细胞激活为M1表型。然后,由于IL-4在5到7 d内释放,GG07-I增强了CD206,增加了白细胞介素10(IL-10),精氨酸酶1(ARG-1)等M2标记的分泌和基因表达。 )和血小板衍生生长因子-BB(PDGF- BB)。 GG07-I提示从M1转换为M2表型。那些适当分泌的细胞因子将有益于血管化和骨整合。因此,指导炎症反应的生物材料具有良好的临床治疗前景。

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