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用于治疗银屑病的聚合物支架中的可喷涂炎性体抑制脂质纳米棒。

Sprayable inflammasome-inhibiting lipid nanorods in a polymeric scaffold for psoriasis therapy.

机构信息

Department of Chemical Engineering, University of Massachusetts, Amherst, MA, 01003, USA.

Pathology Department, University of Massachusetts-Chan Medical School, Baystate Medical Center, Springfield, MA, 01199, USA.

出版信息

Nat Commun. 2024 Oct 19;15(1):9035. doi: 10.1038/s41467-024-53396-x.

Abstract

Localized delivery of inflammasome inhibitors in phagocytic macrophages could be promising for psoriasis treatment. The present work demonstrates the development of non-spherical lipid nanoparticles, mimicking pathogen-like shapes, consisting of an anti-inflammatory inflammasome inhibiting lipid (pyridoxine dipalmitate) as a trojan horse. The nanorods inhibit inflammasome by 3.8- and 4.5-fold compared with nanoellipses and nanospheres, respectively. Nanorods reduce apoptosis-associated speck-like protein and lysosomal rupture, restrain calcium influx, and mitochondrial reactive oxygen species. Dual inflammasome inhibitor (NLRP3/AIM-2-IN-3) loaded nanorods cause synergistic inhibition by 21.5- and 59-folds compared with nanorods and free drug, respectively alongside caspase-1 inhibition. The NLRP3/AIM-2-IN-3 nanorod when transformed into a polymeric scaffold, simultaneously and effectively inhibits RNA levels of NLRP3, AIM2, caspase-1, chemokine ligand-2, gasdermin-D, interleukin-1β, toll-like receptor 7/ 8, and IL-17A by 6.4-, 1.6-, 2.0-, 13.0-, 4.2-, 24.4-, 4.3-, and 1.82-fold, respectively in psoriatic skin in comparison to Imiquimod positive control group in an in-vivo psoriasis-like mice model.

摘要

局部递送达颗粒细胞炎症小体抑制剂可能是治疗银屑病的有前途的方法。本研究制备了非球形脂质纳米粒,模拟病原体样形状,由抗炎炎症小体抑制脂质(吡哆醇二棕榈酸酯)作为载体。与纳米盘和纳米球相比,纳米棒分别将炎症小体抑制 3.8 倍和 4.5 倍。纳米棒减少与细胞凋亡相关的斑点样蛋白和溶酶体破裂,抑制钙内流和线粒体活性氧。双重炎症小体抑制剂(NLRP3/AIM-2-IN-3)负载的纳米棒与纳米棒和游离药物相比,协同抑制分别增加 21.5 倍和 59 倍,同时抑制半胱天冬酶-1 的活性。NLRP3/AIM-2-IN-3 纳米棒转化为聚合物支架后,在体内银屑病样小鼠模型中,与咪喹莫特阳性对照组相比,分别使 NLRP3、AIM2、半胱天冬酶-1、趋化因子配体-2、Gasdermin-D、白细胞介素-1β、Toll 样受体 7/8 和 IL-17A 的 RNA 水平降低 6.4 倍、1.6 倍、2.0 倍、13.0 倍、4.2 倍、24.4 倍、4.3 倍和 1.82 倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/200e/11490495/36c7f337d3fd/41467_2024_53396_Fig1_HTML.jpg

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