Pabari Ritesh M, Jamil Asha, Kelly John G, Ramtoola Zebunnissa
School of Pharmacy, Pharmaceutics Research Laboratory, Royal College of Surgeons in Ireland, Dublin 2, Ireland.
Int J Pharm Investig. 2014 Apr;4(2):51-9. doi: 10.4103/2230-973X.133029.
Spray dried solid dispersion (SDP) of crystalline simvastatin (SIM) in a fast disintegrating matrix of superdisintegrants was studied as a method to enhance SIM dispersibility, rheology, compactibility and compressibility for incorporation into orodispersible tablets (ODTs).
The superdisintegrants investigated were crospovidone (CP), sodium starch glycollate (SSG) and calcium silicate (CS) were spray dried with simvastatin to form SDPs.
The SDPs were characterized and the median particle size of SDPs was similar or greater than the SIM, contributing to good rheology of SDPs, while the low bulk density of SDPs indicated a high compactibility. Interestingly electron micrographs for SDPs showed a CP or CS carrier coating of the SIM crystals, contributing to its rheology. Thermal analysis and X-ray diffraction confirmed that SIM was crystalline in the SDPs and no interaction between SIM and any of the carrier(s) was shown by Fourier transform-infra red. Drug content analysis showed a SIM content of 90-95% in SDPs containing CP or CS, while a higher SIM content of 143% was found in SDP containing SSG. When formulated as ODTs, blend containing SIM SDPs in CP showed ease of tableting, regardless of the turret speed. In comparison, tablet blend consisting of a physical mix (PM) of SIM and CP could only be tableted at the lower turret speed of 7 rpm. ODTs formulated using SIM SDPs in CP showed a higher extent of dissolution, compared to the ODTs containing corresponding PM or the commercially available SIM Zocor(®) tablets (ANOVA, P < 0.05).
SDP using disintegrants as carriers may offer an alternative formulation approach for ODTs of poorly soluble drugs.
研究结晶辛伐他汀(SIM)在超级崩解剂快速崩解基质中的喷雾干燥固体分散体(SDP),作为增强SIM分散性、流变学、可压性和压缩性以用于口腔崩解片(ODT)的一种方法。
所研究的超级崩解剂有交联聚维酮(CP)、羟丙甲纤维素(SSG)和硅酸钙(CS),它们与辛伐他汀一起喷雾干燥以形成SDP。
对SDP进行了表征,SDP的中位粒径与SIM相似或更大,有助于SDP具有良好的流变学性能,而SDP的低堆密度表明其具有高可压性。有趣的是,SDP的电子显微镜照片显示SIM晶体有CP或CS载体包衣,这有助于其流变学性能。热分析和X射线衍射证实SIM在SDP中呈结晶状态,傅里叶变换红外光谱显示SIM与任何载体之间均无相互作用。药物含量分析表明,含CP或CS的SDP中SIM含量为90 - 95%,而含SSG的SDP中SIM含量更高,为143%。当制成ODT时,含CP中SIM SDP的混合物易于压片,与转塔速度无关。相比之下,由SIM和CP的物理混合物(PM)组成的片剂混合物只能在7 rpm的较低转塔速度下压片。与含相应PM的ODT或市售辛伐他汀片(Zocor®)相比,使用CP中SIM SDP制成的ODT显示出更高的溶出度(方差分析,P < 0.05)。
以崩解剂为载体的SDP可能为难溶性药物的ODT提供一种替代的制剂方法。