Charge reduction assisted production of diminutive fluid bed granules for high drug load minitablets

被引:4
作者
Loo, Shang Jun [1 ]
Heng, Paul Wan Sia [1 ]
Chan, Lai Wah [1 ]
机构
[1] Natl Univ Singapore, Dept Pharm, GEA NUS Pharmaceut Proc Res Lab, 18 Sci Dr 4, Singapore 117543, Singapore
关键词
Diminutive granules; High drug load; Charge; Flowability; Minitablets; Fluid bed granulation; MINI-TABLETS; FLOW; DRY; GRANULATION; DELIVERY; BEHAVIOR; TRIBOELECTRIFICATION; ELECTROSTATICS; FLUIDIZATION; PARACETAMOL;
D O I
10.1016/j.ijpharm.2022.121965
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Micronized drug powders are generally unsuitable as tableting feed to produce minitablets due to their cohesivity and poor flow. The silicification of fine paracetamol powder (PCMF) with an optimal concentration range of fumed silica (fSi) [0.7-0.9%, w/w] reduced the net negative charge of PCMF and improved powder flow. The optimal fSi concentration range suitable was established through the measurement of charge and flowability of the silicified powders. Silicification of PCMF by physical mix did not satisfactorily overcome the cohesive forces between the PCMF crystals and improve powder flow sufficiently such that it will feed consistently into the smaller die orifices during tableting. Using a specialized fluid bed system with swirling air and side spray, controlled granulation of silicified PCMF packed and agglomerated the interlocking-prone needle shaped PCMF crystals into diminutive granules that are more spherical and free flowing. With optimized fSi concentration (asymptotic to 0.8%, w/w) and granulation process parameters, high drug load diminutive granules (D-50 expressionpproximexpressiontely equexpressionl to 90 mu m) were successfully prepared from PCMF as starter seeds (D-50 expressionpproximexpressiontely equexpressionl to 30 mu m). Minitablets prepared from the diminutive granules had low weight variation, and were mechanically strong with disintegration time of < 30 s. This study demonstrated the feasibility of producing high drug load minitablets from a cohesive, electrostatic-prone fine drug powder.
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页数:9
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