Engineered plant-derived extracellular vesicles for targeted regulation and treatment of colitis-associated inflammation

IF 12.4 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Theranostics Pub Date : 2024-09-03 DOI:10.7150/thno.97139
Su Jin Kang, Jeong Hyun Lee, Won Jong Rhee
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引用次数: 0

Abstract

Rationale: Inflammatory bowel disease (IBD) is a chronic disorder characterized by persistent inflammation of the gastrointestinal tract. Due to the elusive causes and complex mechanisms of this disorder, the development of highly effective therapeutic drugs is crucial. Extracellular vesicles (EVs) are small membrane-bound structures released by cells into the surrounding environment. Recent research has witnessed a substantial surge in the utilization of plant-derived EVs that offer advantages such as high productivity, low production costs, diverse biological functions, and low cytotoxicity. Herein, Red cabbage-derived EVs (Rabex) were investigated and engineered as potential therapeutic agents for IBD./nMethods: Rabex was engineered by surface conjugation with hyaluronic acid (t-Rabex) to simultaneously enhance the targeting of intestinal epithelial and immune cells, thereby improving their therapeutic targeting and efficacy. The properties and therapeutic potential of t-Rabex were assessed through both in vitro studies and in vivo experiments, focusing on their capacity to reach the gastrointestinal tract and exert a therapeutic effect compared to unmodified Rabex./nResults: Rabex exhibited dual functions, including the suppression of inflammation in macrophages and promotion of colon epithelial cell regeneration, both of which are critical for effective IBD treatment. In vitro and in vivo studies of t-Rabex have demonstrated its superior targeting efficiency to the gastrointestinal tract and therapeutic efficacy compared to Rabex, making it a promising and more effective IBD treatment. Understanding the mechanism of action of t-Rabex in colonic tissues highlighted its anti-inflammatory, antioxidative, and tight-junction maintenance properties./nConclusions: These findings underscore the potential of t-Rabex as a precise therapeutic agent for IBD and shed light on the diverse applications of plant-derived EVs.
定向调节和治疗结肠炎相关炎症的植物源细胞外囊泡工程技术
理由:炎症性肠病(IBD)是一种以胃肠道持续炎症为特征的慢性疾病。由于这种疾病的病因难以捉摸,发病机制复杂,因此开发高效的治疗药物至关重要。细胞外囊泡(EVs)是细胞释放到周围环境中的小型膜结合结构。最近的研究表明,植物源 EVs 具有生产率高、生产成本低、生物功能多样和细胞毒性低等优点,因此其利用率大幅提高。本文研究了红甘蓝衍生的EVs(Rabex),并将其设计为治疗IBD的潜在药物:Rabex通过与透明质酸(t-Rabex)表面共轭进行工程化,以同时增强对肠上皮细胞和免疫细胞的靶向性,从而提高其治疗靶向性和疗效。通过体外研究和体内实验对 t-Rabex 的特性和治疗潜力进行了评估,重点是与未修饰的 Rabex 相比,t-Rabex 到达胃肠道并发挥治疗效果的能力:Rabex 具有双重功能,包括抑制巨噬细胞的炎症反应和促进结肠上皮细胞再生,这两种功能对于有效治疗 IBD 至关重要。对 t-Rabex 的体外和体内研究表明,与 Rabex 相比,t-Rabex 具有更高的胃肠道靶向效率和疗效,是一种前景广阔且更有效的 IBD 治疗药物。了解了 t-Rabex 在结肠组织中的作用机制后,我们发现它具有抗炎、抗氧化和维持紧密连接的特性:这些发现强调了 t-Rabex 作为 IBD 精确治疗剂的潜力,并揭示了植物源 EVs 的多种应用。
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来源期刊
Theranostics
Theranostics MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
25.40
自引率
1.60%
发文量
433
审稿时长
1 months
期刊介绍: Theranostics serves as a pivotal platform for the exchange of clinical and scientific insights within the diagnostic and therapeutic molecular and nanomedicine community, along with allied professions engaged in integrating molecular imaging and therapy. As a multidisciplinary journal, Theranostics showcases innovative research articles spanning fields such as in vitro diagnostics and prognostics, in vivo molecular imaging, molecular therapeutics, image-guided therapy, biosensor technology, nanobiosensors, bioelectronics, system biology, translational medicine, point-of-care applications, and personalized medicine. Encouraging a broad spectrum of biomedical research with potential theranostic applications, the journal rigorously peer-reviews primary research, alongside publishing reviews, news, and commentary that aim to bridge the gap between the laboratory, clinic, and biotechnology industries.
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