首页> 外文期刊>Pharmaceutical research >Compression shear strength and tableting behavior of microcrystalline cellulose agglomerates modulated by a solution binder (polyethylene glycol).
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Compression shear strength and tableting behavior of microcrystalline cellulose agglomerates modulated by a solution binder (polyethylene glycol).

机译:由溶液粘合剂(聚乙二醇)调节的微晶纤维素附聚物的压缩剪切强度和压片行为。

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PURPOSE: To investigate the possibility of modulating the compression shear strength of agglomerates by the incorporation of a solution binder and to study the subsequent effect on the deformation behavior and tablet forming ability of the agglomerates. METHOD: Various concentrations (0.5 to 10%) of polyethylene glycol were incorporated as a solution binder into microcrystalline cellulose agglomerates of different porosity (10 and 20%) and the shear strength of the agglomerates, as evaluated by the 1/b value of the Kawakita equation, and the permeability to air and tensile strength of tablets formed from them were determined. RESULTS: Increased agglomerate porosity and concentration of polyethylene glycol reduced the 1/b values, which led to the formation of tablets with a lower permeability. A decreased tablet permeability corresponded to an increased tablet tensile strength except that the highest binder content was associated with a drop in the tablet tensile strength. CONCLUSIONS: The solution binder reduced the agglomerate shear strength, which was expressed as an increased degree of agglomerate deformation during compression. The latter seemed to be controlled by both agglomerate porosity and shear strength. The main role of the solution binder in improving the agglomerate compactability was to increase the degree of deformation of agglomerates during compression.
机译:目的:研究通过掺入溶液粘合剂来调节附聚物的压缩剪切强度的可能性,并研究随后对附聚物的变形行为和片剂形成能力的影响。方法:将各种浓度(0.5%至10%)的聚乙二醇作为溶液粘合剂掺入不同孔隙率(10%和20%)和团聚体的剪切强度的微晶纤维素团聚体中,通过1 / b值评估确定Kawakita方程,以及由它们形成的片剂的透气性和抗张强度。结果:附聚物孔隙率的增加和聚乙二醇的浓度降低了1 / b值,这导致形成了渗透率较低的片剂。片剂渗透性的降低对应于片剂抗张强度的增加,除了最高的粘合剂含量与片剂抗张强度的降低有关。结论:溶液粘合剂降低了附聚物的剪切强度,这表示为压缩过程中附聚物变形程度的增加。后者似乎受附聚物孔隙率和剪切强度的控制。溶液粘合剂在改善附聚物的可压实性方面的主要作用是增加压坯期间附聚物的变形程度。

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