Naseem A, Olliff C J, Martini L G, Lloyd A W
Biomedical Materials Research Group, School of Pharmacy & Biomolecular Sciences, University of Brighton, Moulsecoomb, Brighton, BN2 4GJ, UK.
J Pharm Pharmacol. 2003 Nov;55(11):1473-8. doi: 10.1211/0022357022070.
The plasma irradiation of furosemide (frusemide) was investigated as a possible technique for increasing the dissolution rate of this drug. Oxygen plasma was used to generate oxygen-containing functional groups on the surface of the compact to increase the wettability of the surface and the dissolution rate of the drug. Compacts of furosemide (300 mg) were produced using a stainless steel die and punch assembly, which was placed into a KBr press. The time of the plasma treatment was varied to assess the effect if any upon the dissolution rate and the wettability of the drug. Dissolution experiments of the plasma-treated and untreated compacts were carried out using the paddle apparatus method. Dissolution was carried out at 37 degrees C using 1 L of 0.1 M HCl and phosphate buffer (pH 6). The wettability was assessed by contact angle measurements using the sessile drop technique. Untreated and plasma-treated samples were analysed by scanning electron microscopy at x 5000 magnification. Plasma treatment was found to lower the equilibrium contact angle from approximately 50 to 35 degrees but the dissolution rate was not significantly affected. This was attributed to fusion of the surface by the plasma treatment.
研究了呋塞米(速尿)的等离子体辐照,将其作为提高该药物溶解速率的一种可能技术。氧等离子体用于在片剂表面产生含氧官能团,以提高表面润湿性和药物溶解速率。使用不锈钢模具和冲头组件压制出呋塞米(300毫克)片剂,该组件放置在溴化钾压片机中。改变等离子体处理时间,以评估其对药物溶解速率和润湿性的影响(如有)。使用桨法对经等离子体处理和未处理的片剂进行溶出实验。在37℃下,使用1升0.1M盐酸和磷酸盐缓冲液(pH 6)进行溶出。通过使用静滴技术测量接触角来评估润湿性。对未处理和经等离子体处理的样品进行放大5000倍的扫描电子显微镜分析。发现等离子体处理可使平衡接触角从约50度降至35度,但溶解速率未受到显著影响。这归因于等离子体处理导致的表面融合。