Ezea Vincent Ndika, Umerie, Sunday Chidozie, Ubaoji Kingsley Ikechukwu
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The prepared microcrystalline cellulose was characterized by determining some physicochemical properties such as pH, bulk density, tap density, moisture content, ash content, Carrs compressibility index, Hausners ratio, powder porosity, angle of repose and compared with commercial-grade microcrystalline cellulose that is used in pharmaceutical industry as excipient. FT-IR was employed to expose the functional groups and the wavelength inherent by both the produced and commercial microcrystalline cellulose. The swelling property of MCC product was determined based on hydration capacity, swelling capacity and moisture sorption capacity. The results of the physicochemical parameters were given as pH(7.75 ± 0.40%), bulk density (0.49 ± 0.67g cm-3), tapped density (0.54 ± 0.03 g cm-3), moisture content (1.00 ± 0.5%), ash content (4.30 ± 0.35 %), Carrs compressibility index (12.96 ± 0.27), Hausners ratio (1.15 ± 0.01), powder porosity (18.8 ± 0.55), angle of repose (27.4 ± 0.26) respectively. The swelling properties were also determined and compared favorably with the commercial grade of microcrystalline cellulose (p>0.05). 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引用次数: 3
摘要
微晶纤维素(MCC)是医药、食品、化妆品等行业的重要原料。本研究以经预处理的棕榈仁去油饼α纤维素为原料,合成微晶纤维素。以棕榈仁饼为原料,经酸化亚氯酸钠、氢氧化钠脱木质素、过氧化氢漂白、酸水解得到微晶纤维素。通过测定制备的微晶纤维素的pH值、容重、密度、含水量、灰分含量、卡尔斯压缩指数、豪斯纳斯比、粉末孔隙率、休止角等理化性能,对制备的微晶纤维素进行了表征,并与制药工业辅料级微晶纤维素进行了比较。利用傅里叶变换红外光谱(FT-IR)揭示了所制微晶纤维素和商业微晶纤维素的官能团和固有波长。通过水化能力、溶胀能力和吸湿能力来确定MCC产品的溶胀性能。理化参数分别为pH(7.75±0.40%)、容重(0.49±0.67g cm-3)、攻丝密度(0.54±0.03 g cm-3)、含水量(1.00±0.5%)、灰分含量(4.30±0.35%)、Carrs压缩指数(12.96±0.27)、Hausners比(1.15±0.01)、粉体孔隙率(18.8±0.55)、休止角(27.4±0.26)。膨胀性能也与市售级微晶纤维素进行了比较(p>0.05)。研究结果表明,棕榈仁饼不仅可以用作动物饲料,而且由于其可获得性和成本管理,它也是生产微晶纤维素的较好纤维素来源。关键词:微晶纤维素,棕榈仁去油饼,商品级,卡尔压缩指数,药用辅料。
Chemical modification of cellulose from palm kernel de-oiled cake to microcrystalline cellulose and its evaluation as a pharmaceutical excipient
Microcrystalline cellulose (MCC) is an important ingredient in pharmaceutical, food, cosmetic and other industries. In this research work, microcrystalline cellulose was synthesized from the alpha cellulose content of pretreated palm kernel de-oiled cake. The microcrystalline cellulose from palm kernel cake was obtained through acidified sodium chlorite, sodium hydroxide delignification followed by hydrogen peroxides bleaching and finally acid hydrolysis. The prepared microcrystalline cellulose was characterized by determining some physicochemical properties such as pH, bulk density, tap density, moisture content, ash content, Carrs compressibility index, Hausners ratio, powder porosity, angle of repose and compared with commercial-grade microcrystalline cellulose that is used in pharmaceutical industry as excipient. FT-IR was employed to expose the functional groups and the wavelength inherent by both the produced and commercial microcrystalline cellulose. The swelling property of MCC product was determined based on hydration capacity, swelling capacity and moisture sorption capacity. The results of the physicochemical parameters were given as pH(7.75 ± 0.40%), bulk density (0.49 ± 0.67g cm-3), tapped density (0.54 ± 0.03 g cm-3), moisture content (1.00 ± 0.5%), ash content (4.30 ± 0.35 %), Carrs compressibility index (12.96 ± 0.27), Hausners ratio (1.15 ± 0.01), powder porosity (18.8 ± 0.55), angle of repose (27.4 ± 0.26) respectively. The swelling properties were also determined and compared favorably with the commercial grade of microcrystalline cellulose (p>0.05). The findings suggest that palm kernel cake can not only be used as feeds for animals but also a better source of cellulose for the production of microcrystalline cellulose for the industry owing to its availability and cost managements.
Key words: Microcrystalline cellulose, palm kernel de-oiled cake, commercial grade, carr’s compressibility index, pharmaceutical excipient.