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首页> 外文期刊>Revista Brasileira de Farmacognosia >Preparation of pellets containing Pothomorphe umbellata extracts by extrusion-spheronization: improvement of 4-nerolidylcatechol photostability
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Preparation of pellets containing Pothomorphe umbellata extracts by extrusion-spheronization: improvement of 4-nerolidylcatechol photostability

机译:挤出滚圆制备含伞形提取物的小丸:提高4-神经烯基儿茶酚的光稳定性

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摘要

Pothomorphe umbellata (L.) Miq., Piperaceae, has been extensively used in Brazilian folk medicine and it is well known for its strong antioxidant properties. However, its main active constituent, 4-nerolydilcatechol (4-NC), is sensitive to ultraviolet and visible light, which can limit the use of intermediate and final herbal preparations of this species. In the present work, coated multiparticulate solid dosage forms of P. umbellata were obtained with the purpose of increasing the stability of 4-NC. P. umbellata extract was used as a wetting liquid for the preparation of pellets by extrusion-spheronization. Pellets were coated in a fluidized bed by three different polymers (hydroxypropylmethylcellulose (HPMC), polyvynilpirrolidone K-30 (PVP-K30), and polyvinyl alcohol-polyethylene glycol graft-copolymer (PVAPEG)). 4-NC photostability was evaluated by an accelerated photostability protocol. Pellets showed a narrow size distribution and low friability. 4-NC photodegradation followed a second order degradation kinetics with similar k values for the percolate, uncoated pellets and HPMC coated pellets. Photoprotection was higher in pellets coated with PVP-K30 and PVA-PEG. PVA-PEG coated pellets with 6 and 9% weight gain resulted in a final concentration of 4-NC approximately cinco times higher than uncoated pellets or liquid extracts, suggesting the potential of this formulation as a multiparticulate solid dosage form for P. umbellata extracts.
机译:伞形科植物Pothomorphe umbellata(L.)Miq。已被广泛用于巴西民间医学中,并以其强大的抗氧化性能而闻名。但是,它的主要活性成分4-神经二儿茶酚(4-NC)​​对紫外线和可见光敏感,这可能限制了该物种的中草药和最终草药的使用。在当前工作中,获得了伞形假单胞菌的包衣的多颗粒固体剂型,目的是提高4-NC的稳定性。伞形果提取物用作润湿液体,用于通过挤出滚圆法制备小丸。药丸在流化床中用三种不同的聚合物(羟丙基甲基纤维素(HPMC),聚炔吡咯烷酮K-30(PVP-K30)和聚乙烯醇-聚乙二醇接枝共聚物(PVAPEG))涂覆。通过加速的光稳定性方案评价4-NC的光稳定性。粒料显示出狭窄的尺寸分布和低脆性。 4-NC光降解遵循二级降解动力学,对于渗滤液,未包被的沉淀和HPMC包被的沉淀,k值相似。在涂有PVP-K30和PVA-PEG的颗粒中,光保护作用更高。具有6%和9%的增重的PVA-PEG包衣的小丸,最终浓度为4-NC,比未包衣的小丸或液体提取物高约cinco倍,表明该制剂作为伞形假单胞菌提取物的多颗粒固体剂型的潜力。

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