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首页> 外文期刊>Scientia pharmaceutica >Study of the Uniformity of the Coating Thickness of Pellets Coated by Wurster and Swirl Flow Generator Equipped Coater
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Study of the Uniformity of the Coating Thickness of Pellets Coated by Wurster and Swirl Flow Generator Equipped Coater

机译:装有Wurster和旋流发生器的包衣机包覆药丸涂层厚度均匀性的研究。

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摘要

The problem emerging from particle coating is how to manufacture particles with just enough material deposited to achive the desired result [1]. Especially in case of functional coatings, the uniformity of coating thickness over the entire particle surface plays an important role. In our study the performance of two bottom spray coaters and the effect of the particle motion on the coating uniformity were evaluated for the pellets with wide size distribution. In the first case the traditional Wurster coater was employed, while in the second one the coater with a swirl flow generator was used. Pellets (Cellets~?, Syntapharm, Germany) of four different sieved fractions (300-400, 500-600, 700-800 and 900-1000 urn) were used in each coating experiment. Fractions of pellets comprising the bed were separated after dye dispersion coating, using the same sieves as used in the preparation of starting cores. Spectrofotometric evaluation of the dye concentration on the population of pellets from each fraction of every experiment was done. Results confirmed the fact that pellets having smaller diameter receive significantly less coating material compared to the larger ones when using conventional bottom spray coater with Wurster insert [2]. The ratio of mass of coating deposited on the pellet to the pellet surface indicates the coating thickness to be much more evenly distributed over the pellets coated with the use of swirl flow generator equipped coating chamber. For example the values of dye per particle surface varied from 0.88 for smallest fraction to 2.12 μg/mm~2 for largest fraction in case of conventional Wurster coating chamber and only from 1.21 to 1.79 μg/mm~2 in case of application of swirling airflow generator. These results also indicate that the amount of dye deposited per particle is in a strong correlation with the particle diameter to the power of 2.36 in case of coater with swirl airfow, compared to the value of 2.85 obtained by a conventional bottom spray coater. The amount of dye per pellet would ideally be in correlation with pellet surface (d~(2,00)), which makes swirl flow coater more suitable for coating particles with wide size distribution. The improvement in the yield of the process was also observed in the case of swirling airflow coater.
机译:颗粒涂层产生的问题是如何制造出仅沉积了足够材料即可获得所需结果的颗粒[1]。特别是在功能性涂层的情况下,整个颗粒表面的涂层厚度均匀性起着重要作用。在我们的研究中,对于粒径分布较宽的颗粒,评估了两个底部喷涂机的性能以及颗粒运动对涂层均匀性的影响。在第一种情况下,使用传统的Wurster涂布机,而在第二种情况下,则使用具有涡流发生器的涂布机。在每个包衣实验中使用四个不同筛分部分(300-400、500-600、700-800和900-1000)的小丸(Cellets?,Syntapharm,德国)。染料分散涂布后,使用与制备起始核相同的筛子,将包含床的粒料的各部分分离。用分光光度法对每个实验各部分的沉淀物上的染料浓度进行评估。结果证实了以下事实:使用带有Wurster嵌件的常规底部喷涂机时,直径较小的颗粒与较大的颗粒相比,所用的涂层材料要少得多[2]。沉积在颗粒上的涂层质量与颗粒表面的质量比表明,使用配备有旋流发生器的涂覆室,涂层厚度将更均匀地分布在涂覆的颗粒上。例如,在传统的Wurster涂层室中,每颗粒表面的染料值从最小分数的0.88到最大分数的2.12μg/ mm〜2,而在应用旋流的情况下仅从1.21到1.79μg/ mm〜2发电机。这些结果还表明,与具有常规气流喷涂机的2.85的值相比,在具有涡旋气流的涂布机的情况下,每个颗粒沉积的染料量与粒径与2.36的幂具有很强的相关性。每个粒料的染料量理想地应与粒料表面(d〜(2,00))相关,这使得旋流涂布机更适合于涂布具有宽尺寸分布的颗粒。在涡旋气流涂布机的情况下,也观察到了该方法的产率的提高。

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  • 来源
    《Scientia pharmaceutica 》 |2010年第3期| p.641| 共1页
  • 作者

    M. LUSTRIK; R. DREU; S. SRCIC;

  • 作者单位

    Faculty of Pharmacy, University of Ljubjlana, Ljubljana, Slovenia Brinox d.o.o., Sora 21,1215 Mevode, Slovenia;

    rnFaculty of Pharmacy, University of Ljubjlana, Ljubljana, Slovenia;

    rnFaculty of Pharmacy, University of Ljubjlana, Ljubljana, Slovenia;

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