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首页> 外文期刊>International Journal of Pharmaceutics >Process and formulation characterizations of the thermal adhesion granulation (TAG) process for improving granular properties.
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Process and formulation characterizations of the thermal adhesion granulation (TAG) process for improving granular properties.

机译:用于改善颗粒性质的热粘合造粒(TAG)工艺的工艺和配方表征。

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In this study, we demonstrate the feasibility of using the thermal adhesion granulation (TAG) method to improve granular properties for preparing highly compressible excipients as direct tabletting aids. The TAG method subjects a mixture containing excipients, such as microcrystalline cellulose (MCC), lactose, starch, or dibasic calcium phosphate (DCP), under closed conditions with a low moisture content and low content of polyvinyl pyrrolidone (PVP) as a binder, to heating during mixing by tumble rotation to produce highly compressible granules. Results demonstrated that a closed system is more efficient than an open system at such a low moisture content, and both water and ethanol were able to fulfill the role of a granulation liquid, but water was more appropriate than ethanol for successfully producing granules suitable for use as direct tabletting aids by the TAG method. It was also found that a 5% moisture content in the powder mixture containing MCC and PVP is optimal in the TAG process to produce granules with the desired characteristics for pharmaceutical applications. On the contrary, increasing the moisture content led to further decreases in the mean size and deterioration of the flowability. It was further demonstrated that the TAG process is able to imbue these commonly used diluents with more-desirable physical characteristics of granules for direct tabletting, enabling the processing of these commonly used diluents with 50% PVP into directly compressible matrix materials.
机译:在这项研究中,我们证明了使用热粘合造粒(TAG)方法改善制备高可压缩赋形剂作为直接压片助剂的颗粒性质的可行性。 TAG方法在低水分含量和低聚乙烯基吡咯烷酮(PVP)含量的封闭条件下,将包含赋形剂的混合物(如微晶纤维素(MCC),乳糖,淀粉或磷酸氢钙(DCP))混合在一起,在旋转过程中通过旋转旋转加热以产生高度可压缩的颗粒。结果表明,在如此低的水分含量下,封闭系统比开放系统更有效,并且水和乙醇都能够满足制粒液体的作用,但是水比乙醇更适合成功生产适合使用的颗粒通过TAG方法作为直接压片助剂。还发现在TAG法中,含有MCC和PVP的粉末混合物中5%的水分含量是最佳的,以生产具有药物应用所需特性的颗粒。相反,增加水分含量导致平均尺寸的进一步减小和流动性的降低。进一步证明,TAG工艺能够使这些常用的稀释剂具有更理想的颗粒物理特性,以便直接压片,从而能够将这些常用的具有50%PVP的稀释剂加工成直接可压缩的基质材料。

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