Synergizing Immune Balance: Curcumin Gold Nanoparticles and Ultrasound Irradiation for Macrophage Down-Regulation

B. Teixeira, K. D. O. Gonçalves, D. P. Vieira, Lilia Coronato Courrol
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Abstract

The multifaceted health benefits of curcumin (Curcuma longa), attributed to its antioxidant, antitumor, and anti-inflammatory activities, have drawn significant scientific attention. Curcumin shows promise as a potential modulator of macrophage polarization, offering a natural strategy for managing inflammation and promoting tissue repair. However, a limiting factor for this beneficial molecule is its limited bioavailability due to its low solubility in water. This study aimed to quantify the effect of curcumin gold nanoparticle (CurAuNP)-mediated ultrasound irradiation on THP-1-derived macrophages as potential therapeutic targets. The photoreduction method was applied to synthesize the gold nanoparticles with curcumin as a ligand (CurAu). The effect of adding polyethylene glycol in the synthesis process was studied (CurAuPEG). CurAuNP characterization included UV/Vis, Zeta potential, transmission electron microscopy, and FTIR. The amount of singlet oxygen released by curcumin and CurAuNPs was quantified by observing 1.3-diphenylisobenzofuran quenching upon ultrasound irradiation (1 MHz and 1 W/cm2). The results indicated that ultrasound therapy for 4 min with CurAuNPs significantly enhanced singlet oxygen generation and reduced macrophage viability compared to curcumin alone. The increased sonoluminescence and curcumin delivery facilitated by CurAuNPs led to greater curcumin activation. Consequently, CurAuNPs could offer promising therapeutic options for modulating macrophage polarization in pro-inflammatory and anti-inflammatory stages.
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协同免疫平衡:姜黄素金纳米粒子和超声波照射对巨噬细胞的降调作用
姜黄素(Curcuma longa)具有抗氧化、抗肿瘤和抗炎等多方面的健康益处,引起了科学界的极大关注。姜黄素有望成为巨噬细胞极化的潜在调节剂,为控制炎症和促进组织修复提供一种天然策略。然而,由于姜黄素在水中的溶解度较低,其生物利用度有限,这是限制这种有益分子的一个因素。本研究旨在量化姜黄素金纳米粒子(CurAuNP)介导的超声辐照对作为潜在治疗靶点的 THP-1 衍生巨噬细胞的影响。研究人员采用光还原法合成了以姜黄素为配体的金纳米粒子(CurAu)。研究了在合成过程中添加聚乙二醇(CurAuPEG)的效果。CurAuNP 的表征包括紫外/可见光、Zeta 电位、透射电子显微镜和傅立叶变换红外光谱。通过观察 1.3-二苯基异苯并呋喃在超声波(1 MHz 和 1 W/cm2)照射下的淬灭情况,量化了姜黄素和 CurAuNPs 释放的单线态氧的数量。结果表明,与单独使用姜黄素相比,使用 CurAuNPs 进行 4 分钟的超声波治疗可显著增强单线态氧的生成并降低巨噬细胞的活力。CurAuNPs 增加了声发光和姜黄素的输送,从而提高了姜黄素的活化程度。因此,CurAuNPs 可为调节巨噬细胞在促炎和抗炎阶段的极化提供有前景的治疗方案。
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