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分子量 | 943.48 |
分子式 | C43H44ClFN4O11S3 |
CAS号 | 388082-78-8 |
中文名称 | 二甲苯磺酸拉帕替尼一水合物 |
溶解性 | DMSO 60 mg/mL |
储存条件 | -20°C, dry, sealed |
运输方式 | 冰袋运输,根据产品的不同,可能会有相应调整。 |
下述溶液配置方法仅为基于分子量计算出的理论值。不同产品在配置溶液前,需考虑其在不同溶剂中的溶解度限制。
浓度/溶剂体积/质量 | 1 mg | 5 mg | 10 mg |
---|---|---|---|
1 mM | 1.0599 mL | 5.2995 mL | 10.5991 mL |
5 mM | 0.212 mL | 1.0599 mL | 2.1198 mL |
10 mM | 0.106 mL | 0.53 mL | 1.0599 mL |
*吸湿的DMSO对产品的溶解度有显著影响,请使用新开封的DMSO;
请根据产品在不同溶剂中的溶解度选择合适的溶剂配制储备液;一旦配成溶液,请分装保存,避免反复冻融造成的产品失效。
细胞系 | HFF; BT474, MCF-7, N87, and CaLu-3; HN5, A-431, T47D, HB4a, and HB4a c5.2 cell lines |
方法 | In Vitro Growth Inhibition Assays For assessment of cell-based potency, cells were plated in 96-well Falcon plates (Becton Dickinson) in the growth media described above. Plating densities that resulted in logarithmic growth of vehicle-treated cells for the duration of the assay were used: HFF, 15,000 cells/cm2; BT474, MCF-7, N87, and CaLu-3, 30,000 cells/cm2; and HN5, A-431, T47D, HB4a, and HB4a c5.2, 10,000 cells/cm2. After 24 h, cells were exposed to compounds at the concentrations indicated in Fig. 2. HFF, BT474, HN5, and N87 cells were treated in low-glucose DMEM containing 5% FBS, 50 μg/ml gentamicin, and 0.3% v/v DMSO. MCF-7 cells were treated in 50% high-glucose DMEM, 50% low-glucose DMEM containing 5% FBS, 50 μg/ml gentamicin, and 0.3% v/v DMSO. T47D, A-431, and CaLu-3 cells were treated in 50% RPMI, 50% low-glucose DMEM containing 5% FBS, 50 μg/ml gentamicin, and 0.3% v/v DMSO. HB4a and HB4a c5.2 cells were treated in 50% DMEM, 50% RPMI 1640 supplemented with 5% FBS, 2.5 μg/ml hydrocortisone, 2.5 μg/ml insulin, 25 μg/ml hygromycin B, 50 μg/ml gentamicin, and 0.3% v/v DMSO. After 3 days, relative cell number was estimated using methylene blue staining. The media were removed, and 100 μl of 0.5% w/v methylene blue dissolved in 50% ethanol and 50% water were added to each well. Plates were washed by immersion in deionized water and allowed to air dry. 1% w/v n-lauroylsarcosine (100 μl) dissolved in PBS was added to each well, and plates were incubated for 30 min at room temperature. The absorbance at 620 nm was read in a Spectra (Tecan) microplate reader. Data were analyzed using curve-fitting macros written for Microsoft Excel. Concentrations with IC50 were interpolated using the method of Levenberg and Marquardt and this equation: y = Vmax × [1 − (xn/(Kn + xn))], where “K” is equal to IC50. |
浓度 | 0~100 μM |
处理时间 | 3 days |
* 上述方法来自公开文献,仅供相同目的实验参考。如实验目的、材料、方法不同,请参考其他文献。
建议您制定动物给药及实验方案时,尽量参考已发表的相关实验文献(溶剂种类及配比众多,简单地溶解目的化合物,并不能解决动物给药依从性、体内生物利用度、组织分布等相关问题,未必能保证目的化合物在动物体内充分发挥生物学效用)。
体内实验的工作液,建议您现用现配,当天使用;如在配制过程中出现沉淀、析出现象,可以通过超声和(或)加热的方式助溶。
切勿一次性将产品全部溶解。
请在下面的计算器中,输入您的动物实验相关数据并点击计算,即可得到该实验的总需药量和工作液终浓度。
例如您给药剂量是10 mg/kg,平均每只动物的体重为20 g,每只动物的给药体积是100 μL,动物数量为20只,则该动物实验的总需药量为4 mg,工作液终浓度为2 mg/mL。
1:鉴于实验过程的损耗,建议您至少多配1-2只动物的量;
2:为该产品最终给药时的浓度。
动物模型 | CD-1 nude female mice were used for HN5 human tumor xenografts, C.B-17 SCID female mice were used for BT474 human tumor xenografts |
配制 | sulfo-butyl-ether-β-cyclodextrin 10% aqueous solution (CD10) |
剂量 | 30 or 100 mg/kg twice daily for 21 days |
给药处理 | p.o. |
* 上述方法来自公开文献,仅供相同目的实验参考。如实验目的、材料、方法不同,请参考其他文献。