Anti-inflammatory effects of cyclodextrin nanoparticles enable macrophage repolarization and reduce inflammation

IF 5.5 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Felix E. B. Brettner, Stefanie Gier, Annika Haessler, Jonas Schreiner, Sarah Vogel-Kindgen, Maike Windbergs
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引用次数: 0

Abstract

Inflammation plays a critical role in the pathophysiology of many diseases, and dysregulation of the involved signaling cascades often culminates in uncontrollable disease progression and, ultimately, chronic manifestation. Addressing these disorders requires balancing inflammation control while preserving essential immune functions. Cyclodextrins (CDs), particularly β-CD, have gained attention as biocompatible biomaterials with intrinsic anti-inflammatory properties, and chemical modification of their backbone offers a promising strategy to enhance their physicochemical properties, adaptability, and therapeutic potential. This study evaluated and characterized the immunomodulatory effects of amphiphilic CD derivatives, which self-assemble into nanoparticles, compared to soluble parent β-CD. In a human macrophage model, CD nanoparticles demonstrated superior anti-inflammatory activity, with derivative-specific effects tied to their physicochemical properties, surpassing the soluble β-CD control. Alongside the downregulation of key pro-inflammatory markers, significant reductions in inflammasome activation and changes in lipid profiles were observed. The findings of this study underscore the potential of cyclodextrin-based nanoparticles as versatile biomaterials for treating the complex pathophysiology of various acute and chronic inflammation-associated disorders.

环糊精纳米颗粒的抗炎作用使巨噬细胞复极化,减轻炎症
炎症在许多疾病的病理生理中起着至关重要的作用,而相关信号级联反应的失调往往导致无法控制的疾病进展,并最终导致慢性表现。解决这些疾病需要在保持基本免疫功能的同时平衡炎症控制。环糊精(cd),特别是β-CD,作为一种具有抗炎特性的生物相容性生物材料而受到关注,对其骨架进行化学修饰是提高其物理化学特性、适应性和治疗潜力的一种很有前途的策略。与可溶性亲本β-CD相比,本研究评估并表征了自组装成纳米颗粒的两亲性CD衍生物的免疫调节作用。在人类巨噬细胞模型中,CD纳米颗粒表现出优越的抗炎活性,其衍生物特异性作用与其物理化学性质相关,超过可溶性β-CD对照。除了关键促炎标志物的下调外,还观察到炎性体激活的显著降低和脂质谱的变化。这项研究的发现强调了环糊精纳米颗粒作为治疗各种急慢性炎症相关疾病的复杂病理生理的多功能生物材料的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanoscale Research Letters
Nanoscale Research Letters 工程技术-材料科学:综合
CiteScore
11.30
自引率
0.00%
发文量
110
审稿时长
48 days
期刊介绍: Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.
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