矢车菊天然微乳剂的形成机理、预防恶性腹水渗出和减少对肠粘膜的刺激

Huinan Wang, Mingrui Jiang, Siyuan Ma, Yufeng Hu, Xinning Zhang, Haiting Zhu, Junli Zhang, Yingzi Wang
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引用次数: 0

摘要

恶性腹水(MAE)是晚期恶性肿瘤的常见并发症,但治疗方法有限。大戟提取物(EL)在水肿和腹水患者中的应用历史悠久。在此,我们首次报道了EL和EL Pulveratum(PEL)在不添加任何载体和赋形剂的情况下自发形成天然微乳剂(ELM和PELM)的模式,并发现其中所含的蛋白质和磷脂通过非共价相互作用包裹了脂肪油和二萜类酯。PELM 中蛋白质的变性和降解使二萜类酯与蛋白质的疏水区域结合更强,从而促进了二萜类酯的持续和缓慢释放,提高了其在体内的生物利用度,从而在减轻对肠粘膜刺激的同时保留了预防 MAE 的功效。PELM保持疗效的机制可能与MAE小鼠粪便水分和尿量增加,以及AVPR2、cAMP、PKA和AQP3表达减少有关。而其减轻肠粘膜刺激的机制则与减少细胞凋亡、改善氧化应激、提高线粒体膜电位以及上调 IEC-6 细胞中 Occludin 和 Claudin-1 的表达有关。这种不含纳米佐剂的天然微乳剂可能是植物化学领域推广应用药用植物自发形成的天然高效纳米团聚体MAE的一种有前景的治疗策略,为推进中药与纳米医学的融合发展及其临床转化提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation mechanism, prevention of malignant ascites effusion and reduction of intestinal mucosal irritation of natural microemulsion from Euphorbia lathyris Pulveratum.

Malignant ascites effusion (MAE) is a common complication of advanced malignant tumors with limited treatments. Euphorbia lathyris (EL) has a long history of application in patients with edema and ascites. Herein, we reported for the first time a mode in which EL and EL Pulveratum (PEL) spontaneously formed natural microemulsions (ELM and PELM) without the addition of any carriers and excipients, and found that the protein and phospholipid contained in them encapsulated fatty oil and diterpenoid esters through non-covalent interactions. The denaturation and degradation of protein in PELM resulted in stronger binding of diterpenoid esters to the hydrophobic region of protein, which facilitated the sustained and slow release of diterpenoid esters and improved their bioavailability in vivo, thereby retaining the efficacy of preventing MAE while alleviating the irritation of intestinal mucosa. The mechanism by which PELM retained efficacy might be related to increased feces moisture and urine volume, and decreased expression of AVPR2, cAMP, PKA and AQP3 in MAE mice. And its mechanism of reducing intestinal mucosal irritation was related to decreased cell apoptosis, amelioration of oxidative stress, elevation of mitochondrial membrane potential, and up-regulation of Occludin and Claudin-1 expression in IEC-6 cells. This nano-adjuvant-free natural microemulsions may be a promising therapeutic strategy in the field of phytochemistry for promoting the application of natural and efficient nano-aggregates spontaneously formed by medicinal plants in MAE, and provide a new perspective for advancing the development of the fusion of Chinese herbal medicine and nanomedicine and its clinical translation.

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