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含琥珀酸羟丙基甲基纤维素醋酸酯和增塑剂的外层包衣压制片的药物释放及机械性能

Drug release from and mechanical properties of press-coated tablets with hydroxypropylmethylcellulose acetate succinate and plasticizers in the outer shell.

作者信息

Fukui E, Miyamura N, Yoneyama T, Kobayashi M

机构信息

Product & Technology Development Laboratory, Tanabe Seiyaku Co., Ltd., 16-89 Kashima-3-chome, Yodogawa-ku, 532-0085, Osaka, Japan.

出版信息

Int J Pharm. 2001 Apr 17;217(1-2):33-43. doi: 10.1016/s0378-5173(01)00578-6.

Abstract

Dissolution profiles of diltiazem hydrochloride (DIL) contained in core tablets from press-coated (PC) tablets with hydroxypropylmethylcellulose acetate succinate (HPMCAS) and plasticizers-adsorbent in the outer shell were investigated. Although, on the addition of triethyl citrate (TEC), triacetin (TA), and acetyltriethy citrate (ATEC) as plasticizers, DIL release was suppressed completely in first fluid (pH 1.2) for 10 h, it was not suppressed in HPMCAS on the addition of dibutyl sebacate (DBS) and acetylated monoglyceride. On the other hand, DIL in second fluid (pH 6.8) was released rapidly after a lag time in all the PC tablets. Water-soluble plasticizers such as TEC, TA, and ATEC showed greater compatibility to HPMCAS, and the results were consistent with suppression of DIL release in first fluid. Furthermore, as to PC tablets with HPMCAS and TEC-adsorbent, the DIL release in second fluid did not change after pretreatment in first fluid by the paddle-beads methods. To evaluate the resistance of the outer shell against such a mechanical impact, tablets with HPMCAS, HPMCAS and TEC- or DBS-adsorbent (H, HT, or HD tablets, respectively) were prepared. In compressive load-strain curves after immersion in first fluid, wet crushing strength was lower in the order of HT > H > HD tablets. Also, the curves of HT tablets at 3 and 21 h after immersion were quite different from those of other tablets, and it was hard to find crushing points. These results suggested that the resistance of the outer shell was due to plastic deformation properties involving some interaction between HPMCAS and TEC.

摘要

研究了含盐酸地尔硫䓬(DIL)的压片包衣(PC)片的片芯以及外壳中含羟丙基甲基纤维素琥珀酸酯(HPMCAS)和增塑剂-吸附剂的溶出曲线。尽管添加柠檬酸三乙酯(TEC)、三醋精(TA)和乙酰柠檬酸三乙酯(ATEC)作为增塑剂后,DIL在第一种溶出介质(pH 1.2)中10小时内的释放完全受到抑制,但添加癸二酸二丁酯(DBS)和乙酰化单甘油酯后,其在HPMCAS中并未受到抑制。另一方面,所有PC片中的DIL在第二种溶出介质(pH 6.8)中经过一段延迟时间后迅速释放。水溶性增塑剂如TEC、TA和ATEC与HPMCAS的相容性更好,这一结果与DIL在第一种溶出介质中的释放受到抑制一致。此外,对于含有HPMCAS和TEC-吸附剂的PC片,采用桨-珠法在第一种溶出介质中进行预处理后,其在第二种溶出介质中的DIL释放没有变化。为了评估外壳对这种机械冲击的抗性,制备了含有HPMCAS、HPMCAS和TEC-或DBS-吸附剂的片剂(分别为H、HT或HD片)。在第一种溶出介质中浸泡后的压缩载荷-应变曲线中,湿压碎强度按HT>H>HD片的顺序降低。此外,HT片在浸泡3小时和21小时后的曲线与其他片剂的曲线有很大不同,很难找到压碎点。这些结果表明,外壳的抗性归因于涉及HPMCAS和TEC之间某些相互作用的塑性变形特性。

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