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Cytokine Regulation from Human Peripheral Blood Leukocytes Cultured In Vitro with Silver Doped Bioactive Glasses Microparticles

机译:用银掺杂生物活性眼镜微粒体外培养人外周血白细胞的细胞因子调节

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摘要

Bioactive glasses (BG) applications include tissue engineering for bone regeneration, coating for implants, and scaffolds for wound healing. BG can be conjugated to ions like silver, which might add some antimicrobial properties to this biomaterial. The immunomodulatory activity of ion-doped bioactive glasses particles was not investigated before. The aim of this work was to evaluate the cytotoxic and immunomodulatory effect of BG and silver-doped bioactive glass (BGAg) in human peripheral blood cells. BG and BGAg samples belonging to the system 58SiO2•(36-x)CaO·6P2O5·xAg2O, where x = 0 and 1 mol%, respectively, were synthesized via sol–gel method and characterized. Cytotoxicity, modulation of cytokine production (TNF-α, IL-1β, IL-6, IL-4, and IL-10), and oxidative stress response were investigated in human polymorphonuclear cells (PMNs) and peripheral blood mononuclear cells (PBMCs) cultures. Cell viability in the presence of BG or BGAg was concentration-dependent. In addition, BGAg presented higher PBMCs toxicity (LC50 = 0.005%) when compared to BG (LC50 = 0.106%). Interestingly, interleukin4 was produced by PBMCs in response to BG and BGAg in absence of phytohemagglutinin (PHA) and did not modulate PHA-induced cytokine levels. Subtoxic concentrations (0.031% for BG and 0.0008% for BGAg) did not change other cytokines in PBMCs nor reactive oxygen species (ROS) production by PMN. However, BG and BGAg particles decreased zymosan-induced ROS levels in PMN. Although ion incorporation increased BG cytotoxicity, the bioactive glass particles demonstrated a in vitro anti-inflammatory potencial. Future studies are needed to clarify the scavenger potential of the BG/BGAg particles/scaffolds as well as elucidate the effect of the anti-inflammatory potential in modulating tissue growth in vivo.
机译:生物活性玻璃(BG)应用包括用于骨再生,植入物涂层的组织工程,以及用于伤口愈合的支架。 BG可以与银相与子子缀合,这可能会使这种生物材料添加一些抗微生物性质。未经研究未研究离子掺杂的生物活性玻璃颗粒的免疫调节活性。这项工作的目的是评估人外周血细胞中BG和掺杂银生物活性玻璃(BGAG)的细胞毒性和免疫调节作用。 BG和属于系统58SiO2的BGAG样品•(36-x)CaO·6P2O5·XAG2O,其中分别通过溶胶 - 凝胶法合成X = 0和1mol%,并表征。细胞毒性,细胞因子产生的调节(TNF-α,IL-1β,IL-6,IL-4和IL-10),以及在人多核细胞(PMNS)和外周血单核细胞(PBMC)中进行氧化应激响应文化。在BG或BGAg存在下的细胞活力浓缩依赖性。此外,与Bg(LC50 = 0.106%)相比,BGAG呈现较高的PBMCS毒性(LC50 = 0.005%)。有趣的是,白细胞介素4由PBMCS产生,响应于BG和BGAG在没有植物噬菌体(PHA)并且没有调节PHA诱导的细胞因子水平。体氧浓度(BG的0.031%和BGAG的0.0008%)未改变PBMC中的其他细胞因子,也不会通过PMN产生反应性氧物种(ROS)。然而,BG和BGAG颗粒在PMN中降低了酵母诱导的酵母诱导的ROS水平。虽然离子掺入增加了Bg细胞毒性,但是生物活性玻璃颗粒展示了体外抗炎株。需要进行未来的研究来阐明BG / BGAG颗粒/支架的清除剂潜力,以及阐明抗炎潜力在调节体内组织生长方面的效果。

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