Ji Xiaotian, Yang Xiguang, Shi Changying, Guo Dandan, Wang Xiaojing, Messina Jennifer M, Meng Qinghe, Urao Norifumi, Cooney Robert, Luo Juntao
Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, NY 13210, United States.
Department of Surgery, State University of New York Upstate Medical University, Syracuse, NY 13210, United States.
Adv Ther (Weinh). 2022 Oct;5(10). doi: 10.1002/adtp.202200127. Epub 2022 Jul 28.
Sepsis is a complex, life-threatening hyperinflammatory syndrome associated with organ failure and high mortality due to lack of effective treatment options. Here we report a core-shell hydrogel nanoparticle with the core functionalized with telodendrimer (TD) nanotrap (NT) to control hyperinflammation in sepsis. The combination of multi-valent charged and hydrophobic moieties in TD enables effective binding with biomolecules in NT. The higher crosslinking in the shell structure of nanogel excludes the abundant large serum proteins and allows for size-selectivity in scavenging the medium-sized septic molecules (10-30 kDa), e.g., lipopolysaccharides (LPS, a potent endotoxin in sepsis), thus reducing cytokine production. At the same time, the core-shell TD NT nanogel captures the over-flowing proinflammatory cytokines effectively both and from biological fluids to further control hyperinflammation. Intraperitoneal injection of core-shell TD NT nanogel effectively attenuates NF-κB activation and cytokine production in LPS-induced septic mouse models. These results indicate the potential applications of the injectable TD NT core-shell nanogel to attenuate local or systemic inflammation.
脓毒症是一种复杂的、危及生命的高炎症综合征,由于缺乏有效的治疗方案,常伴有器官衰竭和高死亡率。在此,我们报道了一种核壳水凝胶纳米颗粒,其核心用端接树枝状聚合物(TD)纳米陷阱(NT)功能化,以控制脓毒症中的高炎症反应。TD中多价带电和疏水部分的结合能够与NT中的生物分子有效结合。纳米凝胶壳结构中较高的交联度排除了大量的大血清蛋白,并允许在清除中等大小的脓毒症分子(10 - 30 kDa)(例如脂多糖,脓毒症中一种有效的内毒素)时具有尺寸选择性,从而减少细胞因子的产生。同时,核壳TD NT纳米凝胶能有效捕获生物流体中过量的促炎细胞因子,进一步控制高炎症反应。在脂多糖诱导的脓毒症小鼠模型中,腹腔注射核壳TD NT纳米凝胶可有效减弱NF-κB激活和细胞因子产生。这些结果表明可注射的TD NT核壳纳米凝胶在减轻局部或全身炎症方面的潜在应用。