Multifunctional endogenous small molecule-derived polymer composite nanoparticles for the treatment of acute sepsis therapy

IF 6.8 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jiahui Gao, Huixin Li, Penghan Yue, Dayang Xie, Hao Li, Kai Hao, Yanhui Li, Huayu Tian
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引用次数: 0

Abstract

The complex and rapidly progressing nature of sepsis calls for the development of multifunctional and rapid-acting therapeutic agents, instead of single-modal treatments. To address this challenge, a biodegradable, easily synthesized, and antibiotic-free multifunctional nanoparticle has been created for sepsis therapy. The nanoparticle was formed by the electrostatic interaction between two endogenous small molecule-derived polymers, poly(lipoic acid) and poly-lysine, and possessed various functions such as antibacterial activity, adsorption of cell-free DNA, scavenging of reactive oxygen and nitrogen species, providing a comprehensive approach to combating sepsis. Treatment using the cecal ligation and puncture (CLP) model confirmed the therapeutic benefits of the nanoparticles, demonstrating reduced levels of reactive oxygen across multiple organs, diminished levels of M1 proinflammatory macrophages, and elevated levels of M2 anti-inflammatory macrophages post-treatment. These findings emphasized the effectiveness of the nanoparticles in sepsis therapy, and properties of degradation, easy preparation, and swift therapeutic response made them promising for the future clinical applications.

Abstract Image

用于急性败血症治疗的多功能内源性小分子聚合物复合纳米粒子
脓毒症病情复杂,进展迅速,因此需要开发多功能速效治疗剂,而不是单一模式的治疗方法。为了应对这一挑战,一种可生物降解、易于合成、不含抗生素的多功能纳米粒子应运而生,用于败血症治疗。这种纳米粒子是由聚硫辛酸和聚赖氨酸这两种内源性小分子聚合物之间的静电相互作用形成的,具有抗菌活性、吸附无细胞DNA、清除活性氧和氮物种等多种功能,为抗击败血症提供了一种综合方法。利用盲肠结扎和穿刺(CLP)模型进行的治疗证实了纳米粒子的治疗效果,显示治疗后多个器官的活性氧水平降低,M1促炎巨噬细胞水平降低,M2抗炎巨噬细胞水平升高。这些发现强调了纳米粒子在败血症治疗中的有效性,其降解、易制备和快速治疗反应的特性使其在未来的临床应用中大有可为。
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来源期刊
Science China Materials
Science China Materials Materials Science-General Materials Science
CiteScore
11.40
自引率
7.40%
发文量
949
期刊介绍: Science China Materials (SCM) is a globally peer-reviewed journal that covers all facets of materials science. It is supervised by the Chinese Academy of Sciences and co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China. The journal is jointly published monthly in both printed and electronic forms by Science China Press and Springer. The aim of SCM is to encourage communication of high-quality, innovative research results at the cutting-edge interface of materials science with chemistry, physics, biology, and engineering. It focuses on breakthroughs from around the world and aims to become a world-leading academic journal for materials science.
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