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1.
目的:增加米非司酮的溶解度和体外溶出速率,为阴道环的成功制备奠定基础。方法:以PVPK30为载体,采用溶剂法制备米非司酮固体分散体。考察其体外溶出特性,并采用差示扫描量热法、红外光谱法和粉末X-射线衍射法鉴别药物在固体分散体中的存在状态。结果:固体分散体大大提高了米非司酮的溶出速率,最佳比例为1∶3。药物在分散体中以无定型状态存在。结论:溶剂法制备的固体分散体可显著提高药物的溶出速率,从而提高了阴道环中药物的释放量。  相似文献   

2.
伊曲康唑固体分散体制备及体外溶出实验   总被引:6,自引:0,他引:6  
目的:运用固体分散体技术提高难溶性药物伊曲康唑的溶解度及体外溶出速率.方法:选用聚乙烯吡咯烷酮(PVPK30)为载体,采用喷雾干燥法制备伊曲康唑固体分散体,通过差热分析及X射线衍射对固体分散体进行鉴定,比较考察伊曲康唑及其物理混合物和固体分散体的溶出特性.结果:差热分析、X射线衍射图谱表明药物以无定形状态分散于载体中;体外溶出结果表明固体分散体能显著增加药物在水及人工胃液中的溶出度(45 min时1:4固体分散体体外溶出度为伊曲康唑的11.5倍.1:4固体分散体在0.1 mo1·L-1盐酸中溶解度是伊曲康唑的67倍).结论:伊曲康唑固体分散体能明显提高伊曲康唑的溶解度及体外溶出速率.  相似文献   

3.
秦凌浩  胡巧红  郑小秋 《中国药房》2011,(27):2527-2529
目的:考察泊洛沙姆固体分散体对难溶性药物穿心莲内酯体外溶出特性的影响。方法:以泊洛沙姆为载体材料,采用熔融法制备不同比例的穿心莲内酯-泊洛沙姆固体分散体,并考察其体外溶出特性。通过红外光谱和X射线衍射图谱研究药物在固体分散体的存在状态。结果:与穿心莲内酯空白药物相比,穿心莲内酯固体分散体在蒸馏水、pH1.2盐酸溶液与pH6.8磷酸盐缓冲液中溶出速率明显提高,载药固体分散体15min时累积释药量是穿心莲内酯空白药物的3.6倍;穿心莲内酯以微晶态高度分散于载体材料中。结论:以泊洛沙姆188为载体制备穿心莲内酯固体分散体,能有效提高难溶性药物的溶出速率。  相似文献   

4.
目的:制备马来酸氟吡汀-PEG 6000固体分散体以加快药物的体外溶出速度。方法:以PEG 6000为药物载体,采用熔融法制备马来酸氟吡汀固体分散体,采用X-射线衍射法和差示扫描量热法(DSC)观察药物在载体中的存在状态。结果:马来酸氟吡汀以分子状态存在于固体分散体中;药物与载体的比例为1:4时,所制备的固体分散体具有最高的溶出度。结论:固体分散体能显著提高药物溶出度和溶出速率。  相似文献   

5.
董立  叶兴法 《医药导报》2009,28(10):1341-1342
目的 制备雌二醇固体分散体,增加其溶解度和溶出速率. 方法 以聚乙烯吡咯烷酮为载体,以溶剂法制备固体分散体,经差热分析和X 射线粉末衍射分析、红外光谱分析鉴别药物在载体中的存在状态,并进行溶出速率研究. 结果 雌二醇用聚乙烯吡咯烷酮制成固体分散体,与机械混合物比较,差异显著,且随载体量增加,溶出加快. 结论 可用聚乙烯吡咯烷酮制备雌二醇的固体分散体,用于口服制剂的研究,优选的比例为1:6.  相似文献   

6.
目的提高难溶性药物酮洛芬体外溶出速度。方法以聚乙烯吡咯烷酮(PVPK30)为载体,制备药物与载体不同比例的固体分散物及物理混合物,采用X射线衍射和红外吸收方法,比较二者及药物的结晶形态,并进行体外药物溶出度的测定。结果固体分散物体外溶出速率明显高于物理混合物及酮洛芬原料的体外溶出速度,且随载体比例增加而增大。固体分散物的X射线衍射及红外吸收图谱确定了酮洛芬以无定形态分散在载体中,放置6个月后,固体分散物X射线衍射图谱没有明显变化。结论药物与载体以合适比例制备的固体分散物可以明显提高药物体外溶出速度。  相似文献   

7.
杨梅素固体分散体的制备以及体外溶出试验   总被引:1,自引:0,他引:1  
目的运用固体分散技术制备杨梅素固体分散体并提高其体外溶出速率。方法选用PEG6000和PVPK30为载体,采用溶剂法和溶剂-熔融法制备杨梅素固体分散体,采用紫外分光光度法进行含量测定,并进行溶解度、体外溶出试验。结果两种载体的固体分散体均能增加药物的溶解度和溶出速率,杨梅素在载体中以高度分散状态存在。结论以PVPK30为载体的杨梅素固体分散体体外溶解度和溶出速率明显提高。杨梅素固体分散体能显著提高杨梅素的溶出速率。  相似文献   

8.
目的: 提高难溶性药物环孢素(CsA)的溶出速率.方法: 选择聚乙二醇(PEG4000)和聚乙烯吡咯烷酮(PVPK30)两种载体,分别以溶剂熔融法和溶剂法制备CsA固体分散体;建立HPLC法检测固体分散体的体外溶出度,并考察不同载体、不同比例及溶出介质、桨法转速对CsA溶出速率的影响.对溶出度结果用Weibull分布模型进行拟合,计算体外溶出参数T50和Td,并进行方差分析.结果: 使用HPLC法测定CsA的体外溶出量准确、稳定、可靠、载体无干扰.制备成的固体分散体能显著提高CsA的体外溶出速率,PVPK30载体的固体分散体的溶出速率明显快于PEG4000载体的固体分散体.溶出介质对药物溶出没有明显影响.结论: CsA: PVPK30为1: 6的固体分散体具有良好的体外速释作用.  相似文献   

9.
非洛地平固体分散体的制备和体外溶出度考察   总被引:1,自引:0,他引:1  
目的应用固体分散技术,提高非洛地平的体外溶出度。方法以PVPK30、Lutrol F68、Tween80(与吸附剂,如PVPP)为载体,分别采用溶剂法、熔融法、溶剂蒸发-沉积等技术制备非洛地平固体分散体,考察不同载体对固体分散体溶出度的影响。并着重考察以Tween 80为增溶剂,不同种类吸附剂为载体对固体分散体外观、溶出度的影响。应用差示热分析和X射线衍射鉴别药物在载体中的存在状态。结果采用不同载体和方法制备的非洛地平固体分散体均能明显促进药物的溶出,溶出速度依次为Tween 80>Lutrol F68>PVPk30。其中m(药物)∶m(Tween 80)∶m(PVPP)=1∶4∶5时,溶出速度最快,1 h累积释放率达90%以上。差示热分析固体分散体中药物吸热峰前移或消失,X射线衍射固体分散体中药物的结晶衍射峰消失,推测药物在载体中以无定形或分子形式存在。结论制备非洛地平固体分散体可以提高其体外溶出度,尤其是含有表面活性剂的固体分散体可进一步提高药物的溶出。  相似文献   

10.
目的制备异烟肼缓释固体分散体,考察其分散状态和体外溶出速率。方法以水不溶性聚合物乙基纤维素为载体,用溶剂法制备异烟肼缓释固体分散体。采用X射线衍射法、差示扫描量热法和红外光谱法鉴别药物在固体分散体中的存在状态,并对其体外释放情况进行研究。结果 X射线衍射法表明异烟肼在固体分散体中有一部分是以分子状态分散,而另一部分可能以微晶体状态分散;差示扫描量热法表明所制备的缓释固体分散体中不存在药物结晶;红外光谱法结果表明异烟肼与乙基纤维素未发生化学反应;溶出度试验结果表明其具有良好的缓释效果。结论采用溶剂法制备的异烟肼缓释固体分散体可以使药物达到高度分散状态,制备的异烟肼缓释固体分散体具有较好的缓释效果。  相似文献   

11.
杨凌  钟延强 《药学实践杂志》2010,28(5):339-341,344
目的 制备尼莫地平固体分散体,增加其溶出速度.方法 应用聚乙烯吡咯烷酮(PVP)为载体,采用喷雾干燥制备尼莫地平固体分散体,通过差示扫描量热分析(DSC)和X-射线粉末衍射分析鉴别药物在载体中的存在状态,并进行了体外溶出度研究.结果 尼莫地平在载体中以分子状态存在,尼莫地平固体分散体的溶出度与尼莫地平原料药和原料药载体物理混合物相比有显著提高,载体比例越大,药物溶出越快,药物载体比例为1:3时t50仅0.972 6 min,结论聚乙烯吡咯烷酮(PVP)作为尼莫地平固体分散体的载体载药量大;喷雾干燥工艺重现性好,分散体颗粒无需粉碎可满足各类固体制剂的制备要求,是一种较理想的尼莫地平固体分散体的制备方法.  相似文献   

12.
目的研究PEG 6 000固体分散体系对难溶性药物增溶的相关晶格变化规律。方法用熔融法制备水飞蓟素的PEG 6 000固体分散体,通过体外释药试验考察固体分散技术对水飞蓟素的增溶作用,以X-射线粉末多晶衍射结合相应的衍射峰处理软件系统分析PEG 6 000及药物的晶格参数的变化,经傅立叶变换红外光谱(FT-IR)验证PEG 6 000与药物之间的相互作用。结果与原药比较,固体分散体中药物的释放速率明显增大,PEG 6 000固体分散体系对难溶性药物水飞蓟素具有显著的增溶作用。X-射线多晶衍射分析表明,PEG 6 000及药物在固体分散体中的晶格点阵面间距离、衍射峰位移及其相对强度等发生了规律性变化,药物与载体间无相互作用。结论PEG 6 000固体分散体系的增溶作用与载体材料和药物的晶格参数的改变密切相关。  相似文献   

13.
In this study, solid dispersion systems of the sparingly water soluble drug, albendazole (ABZ), were mixed with varying concentrations of polyvinylpyrrolidone (PVP K 12) in an attempt to improve the solubility and dissolution rate of ABZ. Physical characteristics were investigated by Powder X-ray diffraction. As expected, the albendazole dissolution rate, expressed as the dissolution efficiency, and also the solubility coefficient were increased when albendazole was mixed with PVP. An increase in the concentration of the polymer in the solid dispersion produced an increase in both parameters. The powder X-ray diffraction patterns showed that the solid dispersion presented an amorphous form of albendazole in this coprecipitate system.  相似文献   

14.
The oral bioavailability of nalidixic acid (NA) is low due to its poor solubility and slow dissolution. Solid dispersions of NA containing varying concentrations of polyvinylpyrrolidone (PVP), beta-cyclodextrin (BCD) and sodium starch glycolate (SSG) were prepared by solvent evaporation technique in an attempt to improve dissolution rate of NA. Physical characterization of NA, physical mixtures (PM) and solid dispersions were investigated by a variety of analytical methods including scanning electron microscopy (SEM), infrared (IR) spectroscopy and powder X-ray diffraction (XRD). SEM was useful in the verification of possible nalidixic acid inclusion in the dispersion system by studying its surface and shape characteristics of different samples. IR analysis demonstrated no strong interaction between the drug and the carrier exists in the solid dispersions. The degree of crystallinity of nalidixic acid decreased and also differed with the dispersion systems of different carriers. Disolution studies indicated that the dissolution rate and percent dissolution efficiency (DE) were significantly increased in the solid dispersions compared with drug alone. The relative potency of the carriers to enhance the dissolution rate of nalidixic acid was in the order: BCD > PVP > SSG. The dissolution rate of the drug in the solid dispersions was faster when the ration of the drug to carrier was smaller. F-test suggests that first order model may be used for explaining the kinetics of drug release from all the solid dispersion systems.  相似文献   

15.
To study the influence of temperature and pH on solubility and dissolution behavior of indomethacin solid dispersions were prepared using several classes of hydrophilic carriers. Investigations on dissolution of indomethacin in binary system are reported earlier. However the phase solubility and dissolution behavior at different pH and temperature left void. The present investigation includes: phase solubility study at various pH; preparation of solid dispersion by solvent evaporation, melting and kneading method; characterization of various blends by dissolution study, and solid state studies to ensure interaction of drug with carrier. The binding between drug and carriers (PVP K30, βCD and PEG) was explained by thermodynamic parameters as calculated from phase solubility study. Indomethacin in association with PVP K30 showed very high apparent binding constant (Ka) and Gibb’s free energy change (?G) in comparison to other blends. The ternary system (drug:βCD:PVP K30, 1:5:1) showed better dissolution of about 80.97 and 99 % at pH 7.2 after 5 and 30 min respectively. At higher proportion of carrier (1:9) in binary solid dispersion of drug and PVP K30, drug dissolution was 96.23 and 97.85 % after 5 and 30 min respectively. This raised solubility of indomethacin would be helpful in designing a dosage form.  相似文献   

16.
尼莫地平固体分散物的研究   总被引:8,自引:3,他引:8  
尼莫地平临床上主要用于防治缺血性脑血管疾病.该药为难溶性药物,生物利用度低,本文采用了固体分散技术制备了尼莫地平两种固体分散物,其体外溶出速率10分钟以内达80%以上,较市售片有显著提高.两种固体分散物中,固体分散物Ⅰ为本实验室研制,固体分散物Ⅱ参照国内、外文献用PVP为载体制备.两种固体分散物均能明显提高尼莫地平的体外溶出速率,但固体分散物Ⅱ易于老化,经相对湿度RH75%40℃贮藏3个月溶出速率明显下降,同样条件下,固体分散物Ⅰ则无明显变化.二种固体分散物X-射线衍射图谱表明尼莫地平以非晶体状态存在,而在RH75%40℃条件下放置3个月后,固体分散物ⅡX-射线衍射图谱出现了尼莫地平结晶峰.  相似文献   

17.
马来酸罗格列酮脉冲型小片胶囊的研制   总被引:3,自引:0,他引:3  
目的以胰岛素增敏剂马来酸罗格列酮为模型药物 ,根据糖尿病的病症特点 ,以控制餐后高血糖为指导原则进行剂型设计。方法制备了含有速释片和以EC为包衣膜材的脉冲型小片胶囊 ;并根据人体的生理状态在不同时间选择不同的释放介质 ;考察了崩解剂用量和包衣增重对释药时滞的影响 ;同时考察了小片胶囊的释药曲线 ,并对脉冲小片的释药机理进行了探讨。结果崩解剂用量和包衣增重对释药时滞均有显著影响 ;小片胶囊呈 3次脉冲释药 ;释药机理为包衣片内大量崩解剂的强力膨胀作用而致包衣膜胀裂而释药。结论由速释片和不同释药时滞的小片组成的脉冲型小片胶囊可以满足剂型设计要求  相似文献   

18.
The present study was undertaken to improve the oral absorption of KCA-098, an antiosteoporosis drug. In this study, the form 2 of KCA-098 was used as a desirable crystal form for pharmaceutical formation among three kinds of crystal forms, 1, 2, and 3. Solid dispersions of KCA-098 with hydroxypropylcellulose (HPC) or poly(vinylpyrrolidone) (PVP) were prepared by the solvent method. The physicopharmaceutical properties of the solid dispersions were characterized by powder x-ray diffraction, FTIR spectroscopy, and differential scanning calorimetry (DSC). The powder x-ray diffractograms suggest that KCA-098 in the HPC-SL solid dispersion existed in a partial crystalline state as a new crystal form that could be produced by recrystallization from the solvent. Dissolution from the solid dispersions was markedly enhanced in comparison with that of the drug alone. The dissolution enhancement was observed to be greater for the solid dispersion with HPC-SL than for that with PVP. The KCA-098/HPC-SL (1:2) solid dispersion capsule showed a 3.5-fold increase in the initial concentration and 2.5-fold increase in initial concentration of dissolved drug after 60 min, compared with the values for a physical mixture of KCA-098 (form 2)/lactose (1:2). The in vivo absorption of the drug was investigated after oral administration of KCA-098 or its solid dispersion. The area under the plasma concentration curve of KCA-098 after oral administration of the KCA-098/HPC-SL (1:2) solid dispersion capsule was three-fold greater than that for the drug itself.  相似文献   

19.
The purpose of this study was to develop a raloxifene-loaded solid dispersion with enhanced dissolution rate and bioavailability via spray-drying technique. Solid dispersions of raloxifene (RXF) were prepared with PVP K30 at weight ratios of 1:4, 1:6 and 1:8 using a spray-drying method, and characterized by differential scanning calorimetry, X-ray powder diffraction, scanning electron microscopy, and solubility and dissolution tests. The bioavailability of the solid dispersion in rats was also evaluated compared to those of RXF powder and commercial product. Results showed that the RXF-loaded solid dispersion was in amorphous form with increased solubility and dissolution rate. The absorption of RXF from solid dispersion resulted in approximately 2.6-fold enhanced bioavailability compared to pure drug. Moreover, RXF-loaded solid dispersion gave similar AUC, Cmax and Tmax values to the commercial product, suggesting that it was bioequivalent to the commercial product in rats. These findings suggest that an amorphous solid dispersion of RXF could be a viable option for enhancing the oral bioavailability of RXF.  相似文献   

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