感染性休克
炎症
免疫系统
先天免疫系统
全身炎症反应综合征
多器官功能障碍综合征
促炎细胞因子
器官功能障碍
细胞激素风暴
菌血症
内科学
肿瘤坏死因子α
全身炎症
脂多糖
重症监护医学
作者
Changying Shi,Xiaojing Wang,Lili Wang,Qinghe Meng,Dandan Guo,Li Chen,Matthew Dai,Guirong Wang,Robert N. Cooney,Juntao Luo
标识
DOI:10.1038/s41467-020-17153-0
摘要
Targeting single mediators has failed to reduce the mortality of sepsis. We developed a telodendrimer (TD) nanotrap (NT) to capture various biomolecules via multivalent, hybrid and synergistic interactions. Here, we report that the immobilization of TD-NTs in size-exclusive hydrogel resins simultaneously adsorbs septic molecules, e.g. lipopolysaccharides (LPS), cytokines and damage- or pathogen-associated molecular patterns (DAMPs/PAMPs) from blood with high efficiency (92-99%). Distinct surface charges displayed on the majority of pro-inflammatory cytokines (negative) and anti-inflammatory cytokines (positive) allow for the selective capture via TD NTs with different charge moieties. The efficacy of NT therapies in murine sepsis is both time-dependent and charge-dependent. The combination of the optimized NT therapy with a moderate antibiotic treatment results in a 100% survival in severe septic mice by controlling both infection and hyperinflammation, whereas survival are only 50-60% with the individual therapies. Cytokine analysis, inflammatory gene activation and tissue histopathology strongly support the survival benefits of treatments.
科研通智能强力驱动
Strongly Powered by AbleSci AI