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壳聚糖包被脂质体的颗粒结构及壳聚糖类型对降钙素口服给药的影响。

The effect of particle structure of chitosan-coated liposomes and type of chitosan on oral delivery of calcitonin.

作者信息

Thongborisute Jringjai, Tsuruta Ayumi, Kawabata Yohei, Takeuchi Hirofumi

机构信息

Gifu Pharmaceutical University, Department of Pharmaceutical Engineering, 5-6-1 Mitahora-Higashi, 5028585 Gifu, Japan.

出版信息

J Drug Target. 2006 Apr;14(3):147-54. doi: 10.1080/10611860600648346.

Abstract

To optimize the properties of chitosan-coated liposomes for oral administration of peptide drugs, we examined the effect of type of chitosan and the structure of liposomal systems on the mucoadhesiveness of liposomes and resultant pharmacological effects of the liposomal peptide drug. A low-molecular weight chitosan (LCS) and a high-molecular weight chitosan (CS) were used as coating polymers of liposomes containing elcatonin (eCT). The muco-penetrative behaviors across the mucous gel layer covering the intestinal epithelial cells and the pharmacological effect after intragastric administration were determined in rats. The results showed that both LCS-coated liposomes (LCS-Lips) and CS-coated liposomes (CS-Lips) could permeate the mucous layer in the small intestine. The most interesting result was that LCS-Lips containing eCT showed remarkably more prolonged effectiveness in decreasing the blood calcium concentration than did CS-Lips containing eCT, moreover, it was also found that LCS had more efficiency to protect eCT from the enzymatic degradation than CS. In comparing the area above the plasma calcium concentration time curves (AAC) values among eCT-containing liposomes with different structures, i.e. eCT adsorbed on coated liposomes (eCT-ad-CS-Lip, eCT-ad-LCS-Lips) and eCT encapsulated in coated liposomes (eCT-encap-CS-Lips, eCT-encap-LCS-Lips), eCT-encap-CS-Lip showed much higher effectiveness than eCT-ad-CS-Lip. However, the AAC value for eCT-ad-LCS-Lip was comparable to that for eCT-encap-CS-Lip, while the value for eCT-ad-CS-Lip was nearly zero. These results suggested that LCS is a good mucoadhesive polymer candidate for enhancing the bioavailability of orally administered peptide containing liposomes, while encapsulation of eCT within the liposomal particles is important to protect eCT against enzymatic degradation in the gastrointestinal (GI) tract.

摘要

为优化用于肽类药物口服给药的壳聚糖包衣脂质体的性能,我们研究了壳聚糖类型和脂质体系统结构对脂质体粘膜粘附性以及脂质体肽类药物最终药理作用的影响。使用低分子量壳聚糖(LCS)和高分子量壳聚糖(CS)作为含有降钙素(eCT)的脂质体的包衣聚合物。在大鼠中测定了穿过覆盖肠上皮细胞的粘液凝胶层的粘膜穿透行为以及胃内给药后的药理作用。结果表明,LCS包衣脂质体(LCS-Lips)和CS包衣脂质体(CS-Lips)均可渗透小肠中的粘液层。最有趣的结果是,含有eCT的LCS-Lips在降低血钙浓度方面显示出比含有eCT的CS-Lips显著更长的有效性,此外,还发现LCS比CS更有效地保护eCT免受酶降解。在比较不同结构的含eCT脂质体之间的血浆钙浓度-时间曲线(AAC)值,即吸附在包衣脂质体上的eCT(eCT-ad-CS-Lip,eCT-ad-LCS-Lips)和包封在包衣脂质体中的eCT(eCT-encap-CS-Lips,eCT-encap-LCS-Lips)时,eCT-encap-CS-Lip显示出比eCT-ad-CS-Lip更高的有效性。然而,eCT-ad-LCS-Lip的AAC值与eCT-encap-CS-Lip相当,而eCT-ad-CS-Lip的值几乎为零。这些结果表明,LCS是增强口服含肽脂质体生物利用度的良好粘膜粘附聚合物候选物,而将eCT包封在脂质体颗粒内对于保护eCT免受胃肠道(GI)中的酶降解很重要。

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