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优化的湿磨技术对微粉化和纳米粉化美洛昔康的结晶度、形态及溶解性能的影响

The Effect of an Optimized Wet Milling Technology on the Crystallinity, Morphology and Dissolution Properties of Micro- and Nanonized Meloxicam.

作者信息

Bartos Csilla, Szabó-Révész Piroska, Bartos Csaba, Katona Gábor, Jójárt-Laczkovich Orsolya, Ambrus Rita

机构信息

Department of Pharmaceutical Technology, University of Szeged, Eötvös u. 6, H-6720 Szeged, Hungary.

Gedeon Richter Plc., Gyömrői út 19-21, H-1103 Budapest, Hungary.

出版信息

Molecules. 2016 Apr 21;21(4):507. doi: 10.3390/molecules21040507.

Abstract

This article reports on the effects of a new combined wet milling technique on the physicochemical properties of meloxicam (MEL). The influence of milling time on the particle size, the crystallinity, the morphology and the dissolution rate of MEL has been studied in the presence and absence of polyvinyl alcohol (PVA) as a stabilizer agent. Micronized MEL particles were produced in aqueous medium which did not contain additive after milling for 10 min. For nanonization an additive and longer milling time were required. After particle size determination the structural and morphological characterization of the wet milled, dried products containing MEL were studied. X-ray powder diffractometry (XRPD) and differential scanning calorimetry (DSC) examinations revealed the change in the crystallinity of MEL. Scanning electron microscopy (SEM) images showed that aggregates of nanosized MEL particles were formed, regardless of the presence of PVA. The nanonized MEL crystals (D50 = 126 nm) exhibited a regular shape and a smooth surface. The increased specific surface area resulted in a high dissolution rate and concentration of free MEL. According to the results, the produced samples could be applied as a basic material (micronized MEL) and intermediate product (micronized and nanonized MEL with PVA) for the design of dosage forms.

摘要

本文报道了一种新型联合湿磨技术对美洛昔康(MEL)理化性质的影响。在有和没有作为稳定剂的聚乙烯醇(PVA)存在的情况下,研究了研磨时间对MEL粒径、结晶度、形态和溶解速率的影响。研磨10分钟后,在不含添加剂的水性介质中制备了微粉化的MEL颗粒。要制备纳米化颗粒,则需要添加剂和更长的研磨时间。在测定粒径后,对含有MEL的湿磨干燥产物进行了结构和形态表征。X射线粉末衍射(XRPD)和差示扫描量热法(DSC)检查揭示了MEL结晶度的变化。扫描电子显微镜(SEM)图像显示,无论是否存在PVA,均形成了纳米级MEL颗粒的聚集体。纳米化的MEL晶体(D50 = 126 nm)呈现规则形状和光滑表面。比表面积的增加导致游离MEL的高溶解速率和浓度。根据结果,所制备的样品可作为剂型设计的基础材料(微粉化MEL)和中间产物(含PVA的微粉化和纳米化MEL)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5ee/6273362/8c9105e32579/molecules-21-00507-g001.jpg

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