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Non-wood Fibre Production of Microcrystalline Cellulose from Sorghum caudatum: Characterisation and Tableting Properties

机译:高粱的非木纤维微晶纤维素的生产:表征和压片性能

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摘要

The microcrystalline cellulose is an important ingredient in pharmaceutical, food, cosmetic and other industries. In this study, the microcrystalline cellulose, obtained from the stalk of Sorghum caudatum was evaluated for its physical and tableting characteristics with a view to assessing its usefulness in pharmaceutical tableting. The microcrystalline cellulose, obtained from the stalk of Sorghum caudatum, obtained by sodium hydroxide delignification followed by sodium hypochlorite bleaching and acid hydrolysis was examined for its physicochemical and tableting properties in comparison with those of the well-known commercial microcrystalline cellulose grade, Avicel PH 101. The extraction yield of this microcrystalline cellulose, obtained from the stalk of Sorghum caudatum was approximately 19%. The cellulose material was composed of irregularly shaped fibrous cellulose particles and had a moisture content of 6.2% and total ash of 0.28%. The true density was 1.46. The flow indices showed that the microcrystalline cellulose, obtained from the stalk of Sorghum caudatum flowed poorly. The hydration, swelling and moisture sorption capacities were 3.9, 85 and 24%, respectively. Tablets resulting from these cellulose materials were found to be without surface defects, sufficiently hard and having disintegration time within 15 min. The study revealed that the microcrystalline cellulose, obtained from the stalk of Sorghum caudatum compares favourably with Avicel PH 101 and conformed to official requirement specified in the British Pharmacopoeia 1993 for microcrystalline cellulose.
机译:微晶纤维素是制药,食品,化妆品和其他工业中的重要成分。在这项研究中,评估了从高粱茎秆获得的微晶纤维素的物理和压片特性,以评估其在药物压片中的用途。与著名的商业化微晶纤维素等级Avicel PH 101相比,检测了由高粱茎秆经氢氧化钠脱木素,次氯酸钠漂白和酸水解得到的微晶纤维素的理化和压片性能。从高粱茎秆获得的这种微晶纤维素的提取率约为19%。纤维素材料由不规则形状的纤维状纤维素颗粒组成,并且具有6.2%的水分含量和0.28%的总灰分。真实密度为1.46。流动指数表明,从高粱茎秆获得的微晶纤维素流动性差。水合,溶胀和吸湿能力分别为3.9%,85%和24%。发现由这些纤维素材料得到的片剂没有表面缺陷,足够坚硬并且在15分钟内具有崩解时间。研究表明,从高粱茎秆中获得的微晶纤维素可与Avicel PH 101相媲美,并且符合英国药典1993年对微晶纤维素的官方要求。

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