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具有聚乙二醇化甘油酯的头孢呋辛酯固体分散体,用于提高稳定性和生物利用度。

Cefuroxime axetil solid dispersion with polyglycolized glycerides for improved stability and bioavailability.

作者信息

Dhumal Ravindra S, Biradar Shailesh V, Aher Suyog, Paradkar Anant R

机构信息

Department of Pharmaceutical, Bharati Vidyapeeth University, Poona College of Pharmacy and Research Centre, Erandawane, Pune, India

出版信息

J Pharm Pharmacol. 2009 Jun;61(6):743-51. doi: 10.1211/jpp.61.06.0006.

Abstract

OBJECTIVES

Cefuroxime axetil (CA), a poorly soluble, broad spectrum cephalosporin ester prodrug, is hydrolysed by intestinal esterase prior to absorption, leading to poor and variable bioavailability. The objective was therefore to formulate a stable amorphous solid dispersion of the drug with enhanced solubility and stability against enzymatic degradation.

METHODS

Spray drying was used to obtain a solid dispersion of CA with Gelucire 50/13 and Aerosil 200 (SDCAGA), and a solid dispersion of CA with polyvinyl pyrrolidone (SDCAP); amorphous CA (ACA) was obtained by spray drying CA alone. The formulations were characterized by differential scanning calorimetry, X-ray powder diffraction, scanning electron microscopy and Fourier transform infrared spectroscopy studies, and compared for solubility, dissolution and bioavailability in rats.

KEY FINDINGS

SDCAP and SDCAGA showed improved solubility and dissolution profiles owing to amorphization and formation of solid dispersions with hydrophilic carriers. The improved stability of amorphous CA in solid dispersions compared to ACA alone was attributed to hydrogen bonding interactions involving the amide of CA with the carbonyl of polyvinyl pyrrolidone in SDCAP, whereas in SDCAGA the interactions were at multiple sites involving the amide and carbonyl of CA with the carbonyl and hydroxyl of Gelucire 50/13. However, SDCAGA showed superior bioavailability compared to SDCAP, ACA and CA.

CONCLUSIONS

Improvement in physical stability of solid dispersions was attributed to hydrogen bonding, while improvement in bioavailability of SDCAGA compared to SDCAP, in spite of comparable solubility and dissolution profile, may be attributed to Gelucire, which utilizes intestinal esterase for lipolysis, protecting the prodrug from enzymatic degradation to its non-absorbable base form.

摘要

目的

头孢呋辛酯(CA)是一种难溶性的广谱头孢菌素酯前体药物,在吸收前会被肠道酯酶水解,导致生物利用度差且不稳定。因此,目的是制备一种具有增强溶解度和抗酶降解稳定性的稳定无定形固体分散体。

方法

采用喷雾干燥法制备CA与Gelucire 50/13和Aerosil 200的固体分散体(SDCAGA),以及CA与聚乙烯吡咯烷酮的固体分散体(SDCAP);通过单独喷雾干燥CA获得无定形CA(ACA)。通过差示扫描量热法、X射线粉末衍射、扫描电子显微镜和傅里叶变换红外光谱研究对制剂进行表征,并比较其在大鼠体内的溶解度、溶出度和生物利用度。

主要发现

SDCAP和SDCAGA由于形成无定形并与亲水性载体形成固体分散体,显示出改善的溶解度和溶出曲线。与单独的ACA相比,无定形CA在固体分散体中的稳定性提高归因于SDCAP中CA的酰胺与聚乙烯吡咯烷酮的羰基之间的氢键相互作用,而在SDCAGA中,相互作用发生在多个位点,涉及CA的酰胺和羰基与Gelucire 50/13的羰基和羟基。然而,SDCAGA显示出比SDCAP、ACA和CA更高的生物利用度。

结论

固体分散体物理稳定性的提高归因于氢键,尽管溶解度和溶出曲线相当,但与SDCAP相比,SDCAGA生物利用度的提高可能归因于Gelucire,它利用肠道酯酶进行脂解,保护前体药物不被酶降解为不可吸收的碱形式。

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