Maity Siddhartha, Sa Biswanath
Division of Pharmaceutics, Department of Pharmaceutical Technology, Jadavpur University, Kolkata, 700032, India.
AAPS PharmSciTech. 2016 Apr;17(2):504-15. doi: 10.1208/s12249-015-0359-0. Epub 2015 Aug 14.
This work was envisaged to develop compression-coated tablets using a blend of Ca(+2) ion cross-linked carboxymethyl xanthan gum (CMXG) and sodium alginate (SAL) for delayed release of immediate pulse release tablets of prednisolone (PDL) in the colon without the need of colonic bacterial intervention for degradation of the polysaccharide coat. The core tablets containing PDL and other compatible excipients were prepared by direct compression method and subsequently compression coated with different ratios of CMXG and SAL. Long T lag, the time required to restrict the drug release below 10%, and short T rap, the time required for immediate release following the T lag, were considered as suitable release parameters for evaluation of colon targeting of PDL tablets. Among the various compression coats, a blend of CMXG and SAL in a ratio of 1.5:3.5 provided T lag of 5.12 ± 0.09 h and T rap of 6.50 ± 0.05 h. The increase in microcrystalline cellulose (MCC) and crospovidone (CP) in the core tablets did not change T lag significantly although decreased the T rap marginally. Inclusion of an osmogen in the core tablets decreased the T lag to 4.05 ± 0.08 h and T rap to 3.56 ± 0.06 h. The increase in coat weight to 225 mg provided a reasonably long T lag (6.06 ± 0.09 h) and short T rap (4.36 ± 0.20 h). Drug release from most of the formulations followed the Hixson-Crowell equation and sigmoidal pattern as confirmed by the Weibull equation. In conclusion, tablets, compression coated with CMXG and SAL in a ratio of 1.5:3.5 and having 225-mg coat weight, were apparently found suitable for colon targeting.
本研究旨在开发一种用钙(+2)离子交联的羧甲基黄原胶(CMXG)和海藻酸钠(SAL)混合物制成的压制包衣片,用于结肠中泼尼松龙(PDL)速释脉冲释放片的延迟释放,无需结肠细菌干预多糖包衣的降解。含PDL和其他相容辅料的核心片通过直接压片法制备,随后用不同比例的CMXG和SAL进行压制包衣。长T lag(将药物释放限制在10%以下所需的时间)和短T rap(T lag后立即释放所需的时间)被视为评估PDL片结肠靶向性的合适释放参数。在各种压制包衣中,CMXG和SAL比例为1.5:3.5的混合物提供了5.12±0.09小时的T lag和6.50±0.05小时的T rap。核心片中微晶纤维素(MCC)和交联聚维酮(CP)的增加虽然使T rap略有降低,但并未显著改变T lag。在核心片中加入渗透剂可使T lag降至4.05±0.08小时,T rap降至3.56±0.06小时。包衣重量增加到225毫克可提供相当长的T lag(6.06±0.09小时)和短T rap(4.36±0.20小时)。如韦布尔方程所证实,大多数制剂的药物释放遵循希克森-克劳威尔方程和S形模式。总之,显然发现用比例为1.5:3.5的CMXG和SAL压制包衣且包衣重量为225毫克的片剂适合结肠靶向。