通过调节MAPK/NF-kB和COX-2/PGE-2通路加强对热病、疼痛和炎症的治疗:来自生化、组织学和代谢组学分析的证据。

IF 5.3 2区 医学 Q1 PHARMACOLOGY & PHARMACY
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引用次数: 0

摘要

杨梅素(MYR)是一种天然类黄酮,具有多种生物功能。然而,由于水溶性、稳定性和生物利用度较低,它的一些有益作用被削弱了。在本文中,包括 MCM-41 和 SBA-15 在内的几种二氧化硅纳米粒子负载了 MYR,以提高其作为镇痛、解热和抗炎成分的生物活性,从而克服其缺点。纳米颗粒(MYR@SBA-15)经过优化配制,将 MYR 转变为无定形状态。这种转变通过多种方法得到了证实,包括差示扫描量热法、傅立叶变换红外光谱法和粉末 X 射线衍射法。因此,这种物质在水中的溶解度和溶解速率都有显著提高。根据生化、组织学、免疫组织化学和代谢组学实验,研究了 MYR 及其 SBA-15 硅纳米颗粒(MYR@SBA-15)的抗发炎作用及其解热镇痛特性。与使用未加工的 MYR 相比,剂量为 25、50 和 100 mg/kg 的 MYR@SBA-15 可抑制醋酸引起的身体蠕动,从而显著降低疼痛感。此外,它还有助于调节因发酵酵母引起的体温升高,并有效稳定体温。在炎症模型中,它通过下调 iNOS 和 COX-2 的表达,以浓度依赖的方式减少 NO 和 PGE2 的释放。MYR 和 MYR@SBA-15 还能抑制 NF-κB 的核转位,下调有丝分裂原激活蛋白激酶(MAPK)(如 p38、ERK1/2 和 JNK 蛋白)的表达,并减少促炎细胞因子(如 TNF-α)的生成。此外,与对照组相比,MYR 和 MYR@SBA-15 能大大抑制卡拉胶引起的大鼠爪水肿等炎症症状。更值得注意的是 MYR@SBA-15 的效果,尤其是在剂量为 100 毫克/千克时。这些生化和免疫组织化学结果表明,MYR@SBA-15 可能是一种有效的镇痛解热剂,还可能通过改变 MAPKs/NF-κB 和 COX-2/PGE2 信号级联来帮助减轻炎症。血清代谢组学研究表明,随着关节炎的发展,各种低分子量代谢物也会发生变化。通过调节几种代谢途径,即嘧啶、能量代谢和蛋白质,给药 MYR@SBA-15 后,这些代谢物水平恢复正常。总之,MYR负载的SBA-15硅纳米粒子在提高代谢组学方面表现出了巨大的潜力,并提供了调节多种氧化应激和炎症介质的巨大能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Myricetin-loaded SBA-15 silica nanoparticles for enhanced management of pyrexia, pain, and inflammation through modulation of MAPK/NF-κB and COX-2/PGE-2 pathways: Evidence from the biochemical, histological, and metabolomic analysis
Myricetin (MYR) is a natural flavonoid that has several biological functions. However, some of its beneficial effects are diminished due to low water solubility, stability, and bioavailability. Herein, several kinds of silica nanoparticles (MCM-41 and SBA-15) were loaded with MYR to improve its biological activity as an analgesic, antipyretic, and anti-inflammatory component, thereby overcoming its drawbacks. The nanoparticles (MYR@SBA-15) were formulated optimally, transforming MYR into an amorphous state. This transformation was confirmed via several strategies, including differential scanning calorimetry, Fourier transform infrared spectroscopy, and powder x-ray diffraction. As a result, there was a significant enhancement in the solubility and rate of dissolution in water. The anti-inflammatory benefits as an innovative strategy and the underlying mechanism of action of MYR and its SBA-15 silica nanoparticles (MYR@SBA-15) were investigated based on the biochemical, histological, immunohistochemical, and metabolomic assays alongside their antipyretic and analgesic characteristics. Compared to the usage of raw MYR, the administration of MYR@SBA-15 at doses of 25, 50, and 100 mg/kg significantly decreases pain perception by inhibiting the body’s writhing motions induced by acetic acid. Furthermore, it helps regulate increased body temperature caused by baking yeast and effectively stabilizes it. It reduces the release of NO and PGE-2 in a concentration-dependent manner by down-regulating iNOS and COX-2 expression in the inflammatory model. MYR and MYR@SBA-15 also inhibit the nuclear translocation of NF-κB, downregulate the expression of mitogen-activated protein kinases (MAPKs), such as p38, ERK1/2, and JNK protein, and reduce the generation of proinflammatory cytokines, such as TNF-α. In addition, inflammatory cardinal signs like paw edema caused by carrageenan in rats are greatly suppressed by MYR and MYR@SBA-15 treatment when compared to the untreated group. More noteworthy outcomes are shown in the MYR@SBA-15, particularly at a dose of 100 mg/kg. These results of biochemical and immuno-histochemistry suggest that MYR@SBA-15 may be a useful analgesic antipyretic and may also help reduce inflammation by altering MAPKs/NF-κB and COX-2/PGE-2 signaling cascades. Serum metabolomics study demonstrated modifications in various low molecular weight metabolites with arthritis development. These metabolite levels were restored to normal when MYR@SBA-15 was administered via modulating several metabolic pathways, i.e., pyrimidine, energy metabolism, and proteins. Overall, MYR-loaded SBA-15 silica nanoparticles have demonstrated significant promise in enhancing the disturbed metaboloic pathways and providing a substantial capacity to regulate several oxidative stress and inflammatory mediators.
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来源期刊
CiteScore
10.70
自引率
8.60%
发文量
951
审稿时长
72 days
期刊介绍: The International Journal of Pharmaceutics is the third most cited journal in the "Pharmacy & Pharmacology" category out of 366 journals, being the true home for pharmaceutical scientists concerned with the physical, chemical and biological properties of devices and delivery systems for drugs, vaccines and biologicals, including their design, manufacture and evaluation. This includes evaluation of the properties of drugs, excipients such as surfactants and polymers and novel materials. The journal has special sections on pharmaceutical nanotechnology and personalized medicines, and publishes research papers, reviews, commentaries and letters to the editor as well as special issues.
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