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首页> 外文期刊>International Journal of Pharmaceutics >Evaluation of melt granulation and ultrasonic spray congealing as techniques to enhance the dissolution of praziquantel.
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Evaluation of melt granulation and ultrasonic spray congealing as techniques to enhance the dissolution of praziquantel.

机译:评价熔融造粒和超声喷雾凝结作为增强吡喹酮溶解的技术。

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Praziquantel (PZQ), an anthelminthic drug widely used in developing countries, is classified in Class II in the Biopharmaceutics Classification Systems; this means that PZQ has very low water solubility and high permeability, thus the dissolution is the absorption rate-limiting factor. The aim of this work was to evaluate the suitability of melt granulation and ultrasonic spray congealing as techniques for enhancing the dissolution rate of PZQ. Granules in high shear mixer were prepared by melt granulation, using polyethylene glycol 4000 or poloxamer 188 as meltable binders and alpha-lactose monohydrate as a filler. Quite regularly shaped granules having main size fraction in the range 200-500 microm were obtained using both formulations; however, only poloxamer 188 granules demonstrated a significant (P=0.05) increase of the PZQ dissolution rate compared to pure drug. To evaluate the potential of ultrasonic spray congealing, Gelucire 50/13 microparticles having different drug to carrier ratios (5, 10,20 and 30%, w/w) were then prepared. The results showed that all the microparticles had a significant higher dissolution rate (P=0.05) respect to pure PZQ. The increase of the PZQ content considerably decreased the dissolution rate of the drug: 5 and 10% PZQ loaded systems evidenced dissolution significantly enhanced compared to 20 and 30% PZQ microparticles. The microparticle's characterisation, performed by Differential Scanning Calorimetry, Hot Stage Microscopy, X-ray powder diffraction and FT-Infrared analysis, evidenced the absence of both modifications of the solid state of PZQ and of significant interactions between the drug and the carrier. In conclusion, melt granulation and ultrasonic spray congealing could be proposed as solvent free, rapid and low expensive manufacturing methods to increase the in vitro dissolution rate of PZQ.
机译:吡喹酮(PZQ)是一种在发展中国家广泛使用的驱虫药,在生物制药分类系统中被分类为II类;这意味着PZQ具有极低的水溶性和高渗透性,因此溶解度是吸收速率的限制因素。这项工作的目的是评估熔体造粒和超声喷雾凝结作为提高PZQ溶解速率的技术的适用性。高剪切混合器中的颗粒是通过熔融制粒制备的,使用聚乙二醇4000或泊洛沙姆188作为可熔粘合剂,α-乳糖一水合物作为填充剂。使用两种配方均获得了主要尺寸分数在200-500微米范围内的相当规则形状的颗粒。但是,只有泊洛沙姆188颗粒与纯药物相比,PZQ溶出速率显着提高(P = 0.05)。为了评估超声喷雾凝结的潜力,然后制备了具有不同药物与载体比率(5、10、20和30%,w​​ / w)的Gelucire 50/13微粒。结果表明,相对于纯PZQ,所有微粒均具有显着较高的溶出率(P = 0.05)。 PZQ含量的增加大大降低了药物的溶出度:与20%和30%的PZQ微粒相比,载有5%和10%的PZQ的系统证明溶出度显着提高。通过差示扫描量热法,热台显微镜,X射线粉末衍射和FT红外分析进行的微粒表征证明,PZQ固态既没有修饰,也没有药物与载体之间的显着相互作用。综上所述,熔体造粒和超声喷雾凝结可以作为无溶剂,快速,廉价的制备方法,以提高PZQ的体外溶出率。

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