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包裹雷公藤红素的活性氧响应性纳米胶束通过调节核因子κB信号通路改善压力超负荷诱导的心肌肥大。

ROS-responsive nanomicelles encapsulating celastrol ameliorate pressure overload-induced cardiac hypertrophy by regulating the NF-κB signaling pathway.

作者信息

Chen Shanjiang, Yang Jianjian, Liu Fuli

机构信息

Department of Cardiology, Wenzhou Central Hospital, Wenzhou, Zhejiang, China.

Department of Anesthesiology, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, Zhejiang, China.

出版信息

J Biomater Sci Polym Ed. 2025 Apr;36(5):545-563. doi: 10.1080/09205063.2024.2411095. Epub 2024 Oct 14.

DOI:10.1080/09205063.2024.2411095
PMID:39400040
Abstract

Celastrol (CEL) belongs to the group of non-steroidal immunosuppressants with the potential to improve cardiac hypertrophy (CH). However, the poor biocompatibility and low bioavailability of CEL limit its application. This study was aimed to develop a targeted drug delivery system that can efficiently and safely deliver CEL to target tissues, providing a research basis for the application of CEL in CH therapy. A novel ROS-sensitive drug-loaded nanomicelle, dodecanoic acid (DA)-phenylboronic acid pinacol ester-dextran polymer encapsulating CEL (DBD@CEL), was synthesized using chemical synthesis. Then, the morphology, particle size, drug-loaded content, and ROS-responsive release behavior of DBD@CEL were studied. Pharmacokinetics and biocompatibility were evaluated using healthy mice. Finally, the ability and mechanism of DBD@CEL in improving CH were investigated using a mouse CH model. DBD@CEL was successfully prepared with a drug loading of 18.9%. It exhibited excellent stability with an average particle size of 110.0 ± 1.7 nm. Within 48 h, DBD@CEL released only 19.4% in the absence of HO, while in the presence of 1 mM HO, the release rate increased to 71.5%. Biocompatibility studies indicated that DBD@CEL did not cause blood cell hemolysis, had no impact on normal organs, and did not result in abnormal blood biochemical indicators, demonstrating excellent biocompatibility. studies revealed that DBD@CEL regulated the activation of NF-κB signaling, inhibits pyroptosis and oxidative stress, and thereby ameliorates CH. The ROS-responsive DBD@CEL nanodrug delivery system enhances the therapeutic activity of CEL for CH, providing a promising drug delivery system for the clinical treatment of CH.

摘要

雷公藤红素(CEL)属于非甾体类免疫抑制剂,具有改善心肌肥厚(CH)的潜力。然而,CEL较差的生物相容性和低生物利用度限制了其应用。本研究旨在开发一种靶向给药系统,能够高效、安全地将CEL递送至靶组织,为CEL在CH治疗中的应用提供研究依据。采用化学合成法合成了一种新型的对活性氧(ROS)敏感的载药纳米胶束,即十二烷酸(DA)-苯硼酸频哪醇酯-葡聚糖聚合物包裹CEL(DBD@CEL)。然后,研究了DBD@CEL的形态、粒径、载药量和ROS响应释放行为。使用健康小鼠评估其药代动力学和生物相容性。最后,利用小鼠CH模型研究了DBD@CEL改善CH的能力和机制。成功制备了载药量为18.9%的DBD@CEL。其平均粒径为110.0±1.7nm,表现出优异的稳定性。在无HO的情况下,DBD@CEL在48小时内仅释放19.4%,而在1mM HO存在的情况下,释放率提高到71.5%。生物相容性研究表明,DBD@CEL不会引起血细胞溶血,对正常器官无影响,也不会导致血液生化指标异常,显示出优异的生物相容性。研究表明,DBD@CEL调节NF-κB信号通路的激活,抑制细胞焦亡和氧化应激,从而改善CH。ROS响应性DBD@CEL纳米药物递送系统增强了CEL对CH的治疗活性,为CH的临床治疗提供了一种有前景的药物递送系统。

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