999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

Solubility of Emodin in Alcohols*

2009-05-12 03:32:52Yangcheng呂陽成LINQuan林泉LUOGuangsheng駱廣生andDAIYouyuan戴猷元

Lü Yangcheng (呂陽成), LIN Quan (林泉), LUO Guangsheng (駱廣生) and DAI Youyuan (戴猷元)

?

Solubility of Emodin in Alcohols*

Lü Yangcheng (呂陽成)**, LIN Quan (林泉), LUO Guangsheng (駱廣生) and DAI Youyuan (戴猷元)

State Key Laboratory of Chemical Engineering, Department of Chemical Engineering, Tsinghua University, Beijing 100084, China

Emodin is a kind of anthraquiones with pharmaceutical activities. The solubilities of emodin in ethanol, 1-octanol, and ethanol+1-octanol at different temperatures were measured using an analytical method. The solubility of emodin in these solvents increased with an increase in temperature. With the temperature deviating from room temperature, the dependence of the solubility of emodin on temperature became a lot more remarkable. The solubility of emodin in ethanol was more sensitive to temperature than that in 1-octanol. The solubility data of emodin in the same species of solvent at different temperatures was correlated with an empirical equation. The calculated results agreed with the experimental data well.

solubility, emodin, ethanol, 1-octanol

1 INTRODUCTION

Emodin, as one kind of anthraquinone, is abundant with active components in Rhubarb,,and other herbs that are used widely around the world [1, 2]. The reported pharmacological and biological actions of emodin include purgation, anti-cancer, antibacterial, and enhancing the nucleotide excision repair of UV/cisplatin-induced DNA damage in human cells [3, 4].

Emodin is mainly obtained from herb extraction with different organic solvents or their mixtures. For pharmaceutical use, these constituents, with no pharmacological activity, need to be removed selectivelysolvent extraction and must follow purification steps. In herbs, emodin always coexists with other anthraquinone derivatives, for example, aloe-emodin, rhein, physcion, and chrysophanol [5]. Further biochemical, pharmaceutical, and clinical research on each component needs precise isolation methods such as, high performance liquid chromatography (HPLC), thin-layer chromatography (TLC), high-speed counter- current chromatography (HSCCC) [6]. All these separation processes involve the use of organic solvents. Therefore, it is important to have thermodynamic data for the solubility of emodin in various solvents in order to select a proper solvent or to simulate and design these separation processes.

Alcohols are solvents frequently used in the pharmaceutical industry. In the present study, the solubility of emodin in ethanol, 1-octanol, and ethanol+1-octanol has been measured using an analytical method. The effect of solvent composition and temperature on solubility is discussed. The solubility data is correlated with an empirical equation.

2 EXPERIMENTAL

2.1 Reagents and apparatus

Emodin (C15H10O5) was purchased from Sigma (St. Louis, MO, USA), as a standard for HPLC, and was used without further purification. Other reagents were of analytical grade. Ethanol, 2-propanol, and 1-octanol were from the Beijing Chemical Reagent Co. Water was redistilled and ion-exchanged with a Millipore system (Bedford, MA, USA).

The emodin concentration in the solution was determined by an HP1050 high performance liquid chromatograph (HPLC). An HZS-H thermostat oscillator (Donglian, China) was used to control the dissolution temperature within ±0.1 K. An STA409 C/3/F thermoanalyzer (NETZSCH, Germany) was used to determine the melting point. The measured melting point of emodin was (531.28±0.5) K. Fig. 1 shows the differential scanning calorimetry (DSC) curve of emodin.

Figure 1 The DSC curve of emodin

2.2 Measurement procedure and sample analysis

An excess amount of solute (emodin) was added to the solvent in a sealed vial. The vial was fixed on a bracket located within the thermostat oscillator, in which the solid?+?liquid mixture was constantly oscillated at the desired temperature, for 12 h, to attain equilibrium. Subsequently the solution was allowed to settle for 2 h, and the upper portion was taken for analysis.

HPLC analysis was performed using an ODS C18column (4.6 mm×150 mm, 5 μm) by an external standard method. The mobile phase was methanol?+?water?+?phosphoric acid, with volume fraction 85︰15︰1. The HPLC conditions were set as follows: the wavelength of determination 278 nm; the column temperature 30oC; the flow rate of the mobile phase was 1.0 ml·min-1. The uncertainty of measurement of the concentration of emodin was less than 2%.

3 RESULTS AND DISCUSSION

whereis the mole fraction solubility of emodin,is the absolute temperature, and,,andare the parameters. Calculated solubility values of emodin are also given in Tables 1 and 2. The values of parameters,,,and the root-mean-square deviations (rmsd) are listed in Table 3. The rmsd is defined as [7]

Table 1 Mole fraction solubility xw of emodin in pure solvents

Table 2 Mole fraction solubility of emodin in ethanol (1)+1-octanol (2)

Table 3 Parameters of Eq. (1) for emodin in different solvents

4 CONCLUSIONS

The solubilities of emodin in ethanol, 1-octanol, and ethanol+1-octanol at different temperatures were measured using the analytical method. The solubility of emodin in these solvents increased with an increase in temperature. With the temperature deviating from room temperature, the dependence of the solubility of emodin on temperature became a lot more remarkable. The solubility of emodin in ethanol was more sensitive to temperature than that in 1-octanol. The solubility data of emodin in all these solvents at different temperatures was correlated with an empirical equation. The calculated results agreed well with the experimental data.

1 Tian, K., Zhang, H.G., Chen, X.G., Hu, Z.D., “Determination of five anthraquinones in medicinal plants by capillary zone electrophoresis with β-cyclodextrin addition”,.., 1123, 134-137 (2006).

2 Koyama, J., Morita, I., Kobayashi, N., “Simultaneous determination of anthraquinones in rhubarb by high-performance liquid chromatography and capillary electrophoresis”,.., 1145, 183-189(2007).

3 Wang, L.P., Zhang, Z.P., Ye, B.X., “Study on the electrochemical behaviour of the anticancer herbal drug emodin”,., 51, 5961-5965 (2006).

4 Lu, H.M., Ni, W.D, Liang, Y.Z., Man, R.L., “Supercritical CO2extraction of emodin and physcion from polygonum cuspidatum and subsequent isolation by semipreparative chromatography”,..., 29, 2136-2143 (2006).

5 Singh, N.P., Gupta, A.P., Sinha, A.K., Ahuja, P.S., “High-performance thin layer chromatography method for quantitativedetermination of four major anthraquinone derivatives in”,.., 1077, 202-206 (2005).

6 Zhang, H.X., Liu, M.C., “Separation procedures for the pharmacologically active components of rhubarb”,.., 812, 175-181 (2004).

7 Hao, H.X., Hou, B.H., Wang, J.K., Zhang, M.J., “Solubility of erythritol in different solvents”,..., 50, 1454-1456 (2005).

2008-04-23,

2008-12-01.

the National Natural Science Foundation of China (20406008).

** To whom correspondence should be addressed. E-mail: luyc@tsinghua.edu.cn

主站蜘蛛池模板: 国产精品蜜芽在线观看| 国产成人精品男人的天堂| 国产噜噜噜| 欧美人在线一区二区三区| 欧美国产日韩另类| 中文无码毛片又爽又刺激| 免费国产小视频在线观看| 久久亚洲欧美综合| 日本成人不卡视频| 日韩亚洲综合在线| 日本色综合网| 国产毛片片精品天天看视频| 一本色道久久88亚洲综合| 91麻豆国产视频| 又爽又大又黄a级毛片在线视频| 国产成年无码AⅤ片在线| 欧美亚洲日韩不卡在线在线观看| 久久香蕉国产线看观看式| 欧美亚洲欧美区| 在线播放国产99re| 欧美国产精品不卡在线观看| 色婷婷成人| 日韩欧美一区在线观看| 99成人在线观看| 高清视频一区| 青青草原国产免费av观看| 免费一级α片在线观看| 国产精品亚洲va在线观看| 国产亚洲男人的天堂在线观看| 国产成人精品2021欧美日韩| 激情无码字幕综合| 蜜芽国产尤物av尤物在线看| 亚洲 成人国产| 国产欧美又粗又猛又爽老| 欧美日韩va| 色老二精品视频在线观看| 在线精品亚洲国产| 国产精品人人做人人爽人人添| 免费观看亚洲人成网站| 免费无码又爽又刺激高| 青青青国产视频手机| 国产日本欧美在线观看| 婷婷中文在线| 国产a网站| 国产激爽大片在线播放| 国产成人精品一区二区不卡| 国产精品无码在线看| 国产午夜无码片在线观看网站| 高清免费毛片| 一区二区三区国产| 97在线免费| 精品一区二区三区水蜜桃| 色哟哟精品无码网站在线播放视频| 美女被操91视频| 91福利免费| 亚洲国产亚洲综合在线尤物| 欧美一级在线| 午夜成人在线视频| 又黄又爽视频好爽视频| www亚洲天堂| 国产亚洲精品yxsp| 亚洲无码91视频| 91久久国产热精品免费| 国产人人乐人人爱| 久久久久国产精品熟女影院| 呦视频在线一区二区三区| 亚洲电影天堂在线国语对白| 久夜色精品国产噜噜| 久久亚洲国产一区二区| 亚洲天堂久久| AV熟女乱| 综1合AV在线播放| 精品视频一区在线观看| 激情影院内射美女| 无码久看视频| 亚洲国产日韩在线成人蜜芽| 视频在线观看一区二区| 国产成人精品日本亚洲| 中文字幕有乳无码| www.91在线播放| 精品国产福利在线| 性色一区|