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双螺杆干法造粒对缓释制剂的影响。

Effects of Processing on a Sustained Release Formulation Prepared by Twin-Screw Dry Granulation.

机构信息

Department of Pharmaceutics and Drug Delivery, School of Pharmacy, The University of Mississippi, University, Mississippi 38677.

Catalent Pharma Solutions, 14 Schoolhouse Road, Somerset, New Jersey 08873.

出版信息

J Pharm Sci. 2019 Sep;108(9):2895-2904. doi: 10.1016/j.xphs.2019.04.004. Epub 2019 Apr 6.

Abstract

Dry granulation is an indispensable process used to improve the flow property of moisture-sensitive materials. Considering the limitations of currently available dry granulation techniques, it is necessary to develop a novel technique. In this study, a twin-screw dry granulation (TSDG) technology was successfully applied to produce a sustained-release dry granule formulation, which was subsequently compressed into sustained-release tablets. Based on a preliminary study, theophylline was selected as model drug, Klucel EF, Ethocel, and magnesium stearate were selected as excipients. A Resolution V Irregular Fraction Design was applied to determine the effect of different processing parameters (screw speed, feeding rate, barrel temperature, and screw configuration) on product properties (flow properties, particle size distribution, and dissolution time). A reliable model was achieved by combining the data obtained, and processing parameters were automatically optimized to attain the setting goal. In general, TSDG was demonstrated to be an alternative method for the preparation of dry granules. The continuous processing nature, simplicity of operation, and ease of optimization made TSDG competitive compared with other conventional dry granulation techniques.

摘要

干法造粒是一种必不可少的工艺,用于改善吸湿性物料的流动性。鉴于目前可用的干法造粒技术的局限性,有必要开发一种新技术。在本研究中,成功应用双螺杆干法造粒(TSDG)技术制备了一种缓释干法造粒制剂,随后将其压制成缓释片。基于初步研究,选择茶碱作为模型药物,选择 Klucel EF、Ethocel 和硬脂酸镁作为赋形剂。采用分辨率 V 不规则分数设计来确定不同加工参数(螺杆速度、进料速度、机筒温度和螺杆构型)对产品性能(流动性、粒度分布和溶解时间)的影响。通过组合获得的数据,建立了可靠的模型,并自动优化加工参数以达到设定目标。一般来说,TSDG 被证明是制备干颗粒的替代方法。连续处理的性质、操作的简单性和优化的容易性使 TSDG 与其他传统的干法造粒技术相比具有竞争力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc86/6708445/993d3c202699/nihms-1528106-f0001.jpg

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Granulation techniques and technologies: recent progresses.颗粒技术和技术:最新进展。
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Twin screw granulation: steps in granule growth.双螺杆造粒:颗粒生长的步骤。
Int J Pharm. 2012 Nov 15;438(1-2):20-32. doi: 10.1016/j.ijpharm.2012.08.049. Epub 2012 Sep 5.

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