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Modulation of Macrophage Phenotype by Biodegradable Polyurethane Nanoparticles: Possible Relation between Macrophage Polarization and Immune Response of Nanoparticles

机译:可生物降解聚氨酯纳米粒子的巨噬细胞表型调节:纳米粒子巨噬细胞极化与免疫应答之间的可能关系

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摘要

Nanomaterials with surface functionalized by different chemical groups can either provoke or attenuate the immune responses of the nanomaterials, which is critical to their biomedical efficacies. In this study, we demonstrate that synthetic waterborne polyurethane nanoparticles (PU NPs) can inhibit the macrophage polarization toward the M1 phenotype but not M2 phenotype. The surface-functionalized PU NPs decrease the secretion levels of proinflammatory cytokines (TNF-alpha and IL-1 beta) for MI macrophages. Specifically, PU NPs with carboxyl groups on the surface exhibit a greater extent of inhibition on Ml polarization than those with amine groups. These water-suspended PU NPs reduce the nuclear factor-kappa B (NF-kappa B) activation and suppress the subsequent NLR family pyrin domain containing 3 (NLRP3) inflammasome signals. Furthermore, the dried PU films assembled from PU NPs have a similar effect on macrophage polarization and present a smaller shifting foreign body reaction (FBR) in vivo than the conventional poly(L-lactic acid). Taken together, the biodegradable waterborne PU NPs demonstrate surface-dependent immunosuppressive properties and macrophage polarization effects. The findings suggest potential therapeutic applications of PU NPs in anti-inflammation and macrophage-related disorders and propose a mechanism for the low FBR observed for biodegradable PU materials.
机译:具有不同化学基团官能化的表面化的纳米材料可以引发或衰减纳米材料的免疫应答,这对其生物医学效率至关重要。在这项研究中,我们证明了合成水性聚氨酯纳米颗粒(PU NPS)可以抑制巨噬细胞偏振朝向M1表型而不是M2表型。表面官能化PU NPS降低MI巨噬细胞的促炎细胞因子(TNF-α和IL-1β)的分泌水平。具体地,表面上具有羧基的PU NPS表现出比用胺基的氧化锰的抑制程度更大。这些水悬浮的PU NPS减少核因子-Kappa B(NF-Kappa B)活化并抑制含有3(NLRP3)炎炎症信号的后续NLR家族吡林结构域。此外,从PU NPS组装的干燥PU膜对巨噬细胞极化具有类似的效果,并在体内呈现比常规聚(L-乳酸)在体内变化的异物反应(FBR)。携带可生物降解的水性PU NPS表明表面依赖性免疫抑制性能和巨噬细胞极化效应。研究结果表明PU NPS在抗炎和巨噬细胞相关疾病中的潜在治疗应用,并提出了用于可生物降解的PU材料的低FBR的机制。

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