首页> 外文期刊>Journal of pharmaceutical sciences. >Understanding size enlargement and hardening of granules on tabletability of unlubricated granules prepared by dry granulation.
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Understanding size enlargement and hardening of granules on tabletability of unlubricated granules prepared by dry granulation.

机译:了解通过干法制粒制备的未润滑颗粒的可压片性,颗粒的尺寸增大和硬化。

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摘要

The mechanism of loss of "reworkability" or tabletability of dry granulated microcrystalline cellulose (MCC) was investigated in relation to both granule size enlargement and granule hardness. Slugs of MCC were prepared under three pressures (12.5, 37.5, and 93.8 MPa) and tabletability (tensile strength vs. pressure) of respective granules (three different sizes) was determined. Nominal single granule fracture strength and granule friability were measured. The reduction in tabletability was profound for harder granules, which were obtained from higher slugging pressure. This is consistent with their ability to resist granule fragmentation during tableting. Variation in granule size exhibits negligible effect on tabletability for the lowest slugging pressure and only a small effect for the middle and highest slugging pressure. This observation is again related to different tendency to granule fragmentation during compaction. The results suggest that granule-hardening negatively affects tensile strength more than that of granule size enlargement for MCC.
机译:研究了干法制粒微晶纤维素(MCC)的“可返工性”或可压片性损失的机理,与颗粒尺寸增大和颗粒硬度有关。在三个压力(12.5、37.5和93.8 MPa)下制备MCC块,并确定了相应颗粒(三种不同大小)的压片性(抗张强度与压力)。测量标称单颗粒的断裂强度和颗粒的脆性。对于较硬的颗粒,可压片性的降低意义重大,这些颗粒是从较高的压片压力获得的。这与它们在压片过程中抵抗颗粒破碎的能力是一致的。对于最低的拍击压力,颗粒大小的变化对压片性的影响可忽略不计,而对于中等和最高的拍击压力,颗粒的变化影响很小。该观察结果又与压实过程中颗粒破碎的不同趋势有关。结果表明,对于MCC,颗粒硬化对拉伸强度的负面影响大于对颗粒尺寸扩大的负面影响。

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