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当前位置: 首页 > 产品中心 > Small_molecule > Medchemexpress/Canagliflozin(同义词:JNJ 24831754ZAE;JNJ 28431754;JNJ 28431754AAA;TA 7284)/HY-10451/50mg
商品详细Medchemexpress/Canagliflozin(同义词:JNJ 24831754ZAE;JNJ 28431754;JNJ 28431754AAA;TA 7284)/HY-10451/50mg
Medchemexpress/Canagliflozin(同义词:JNJ 24831754ZAE;JNJ 28431754;JNJ 28431754AAA;TA 7284)/HY-10451/50mg
Medchemexpress/Canagliflozin(同义词:JNJ 24831754ZAE;JNJ 28431754;JNJ 28431754AAA;TA 7284)/HY-10451/50mg
商品编号: HY-10451-10mM*1mLinDMSO
品牌: MedChemExp
市场价: ¥1100.00
美元价: 660.00
产地: 美国(厂家直采)
公司:
产品分类: 小分子
公司分类: Small_molecule
联系Q Q: 3392242852
电话号码: 4000-520-616
电子邮箱: info@ebiomall.com
商品介绍
Canagliflozin is a selective SGLT2 inhibitor with IC50 of 2 nM, 3.7 nM, and 4.4 nM for mSGLT2, rSGLT2, and hSGLT2 in CHOK cells, respectively.
Description

Canagliflozin is a selective SGLT2 inhibitor with IC50 of 2 nM, 3.7 nM, and 4.4 nM for mSGLT2, rSGLT2, and hSGLT2 in CHOK cells, respectively.

IC50 & Target

IC50: 2/3.7/4.4 nM (m/r/hSGLT2, in CHOK cells)[1]

In Vitro

Canagliflozin is a sodium glucose co-transporter (SGLT) 2 inhibitor. In a concentration-dependent fashion, Canagliflozin inhibits Na+-dependent 14C-AMG uptake in CHO-hSGLT2 cells, with an IC50 of 4.4±1.2 nM. Similar IC50 values are obtained in CHO-rSGLT2 and CHO-mSGLT2 cells (IC50=3.7 and 2.0 nM for rat and mouse SGLT2, respectively). Canagliflozin inhibits 14C-AMG uptake in CHO-hSGLT1 and mSGLT1 cells with IC50 of 684±159 nM and >1,000 nM, respectively. At 10 µM, Canagliflozin inhibits the facilitative (non-Na+-linked) GLUT-mediated 3H-2-DG uptake in L6 myoblasts by less than 50%[1].

In Vivo

Canagliflozin treatment (1 mg/kg) notably lowers renal threshold for glucose excretion (RTG) in Zucker diabetic fatty (ZDF) rats to 94±10 mg/dL. In the second study, an insulin infusion is given to lower blood glucose (BG) to approximately 25 mg/dL, and then the graded glucose infusion (GGI) is given to slowly raise BG to approximately 300 mg/dL. In ZDF rats treated with Canagliflozin (1 mg/kg), the relationship between BG and urinary glucose excretion (UGE) remains well-described by a threshold relationship with negligible UGE occurring when BG<90 mg/dl="" and="" uge="" increases="" in="" proportion="" to="" bg="" at="" higher="" bg="" levels.="" in="" db/db="" mice,="" single="" doses="" of="" canagliflozin="" dose-dependently="" reduces="" non-fasting="" bg="" concentrations.="" the="" onset="" of="" the="" bg-lowering="" effect="" after="" a="" single="" dose="" is="" rapid,="" and="" bg="" levels="" in="" canagliflozin-treated="" mice="" (at="" 1="" and="" 10="" mg/kg="" doses)="" are="" significantly="" different="" from="" those="" of="" vehicle-treated="" mice="" at="" 1="" hour="" after="" treatment="" (22%="" and="" 36%="" reduction="" of="" bg="" levels="" compared="" with="" that="" in="" vehicle-treated="" mice,="">[1].

Clinical Trial
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References
  • [1]. Liang Y, et al. Effect of canagliflozin on renal threshold for glucose, glycemia, and body weight in normal and diabetic animal models. PLoS One. 2012;7(2):e30555.

    [2]. Kobuchi S, et al. A validated LC-MS/MS method for the determination of canagliflozin, a sodium-glucose co-transporter 2 (SGLT-2) inhibitor, in a lower volume of rat plasma: application to pharmacokinetic studies in rats. Biomed Chromatogr. 2016 Oct;30(10):1549-55.

Preparing Stock Solutions
Concentration Volume Mass 1 mg 5 mg 10 mg
1 mM 2.2496 mL 11.2481 mL 22.4962 mL
5 mM 0.4499 mL 2.2496 mL 4.4992 mL
10 mM 0.2250 mL 1.1248 mL 2.2496 mL
Please refer to the solubility information to select the appropriate solvent.
Cell Assay
[1]

Canagliflozin is dissolved in DMSO and stored, and then diluted with appropriate media (DMSO 0.1%) before use[1].

Sodium-dependent glucose uptake in Chinese Hamster Ovary (CHO) cells expressing SGLT1 and SGLT2 co-transporters parental CHO-K (CHOK) cells (commonly used mammalian cells for gene overexpression studies) expressing human or mouse SGLT1 and SGLT2 are utilized in this study. Cells are seeded into 96-well plates. Cells are then washed one time with 0.15 mL assay buffer (137 mM NaCl, 5 mM KCl, 1 mM CaCl2, 1 mM MgCl2, 50 mM HEPES, pH 7.4) at 37°C. After the assay buffer is removed, 50 µL of fresh assay buffer with 5 µL of Canagliflozin (0.3-300 nM) is added, followed by 10 minutes of incubation. Then, 5 µL of 6 mM alpha-methyl-D-glucopyranoside (AMG, a selective SGLT1/2 substrate)/14C-AMG (0.07 µCi) is added to the cells and incubated at 37°C for 2 hours. Next, the cells are washed 3 times with 0.15 mL ice-cold phosphate-buffered saline (PBS). After the final wash is aspirated, 50 µL of microscint 20 is added. The plate is counted by TopCount[1]. MCE has not independently confirmed the accuracy of these methods. They are for reference only.

Animal Administration
[1]

Canagliflozin is formulated in 0.5% hydroxypropyl methylcellulose[1].

Mice and Rat[1]
Four rodent models are used in these experiments: (1) male C57BL/6J mice fed with a high-fat diet (D-12492 with 60 kcal% fat) (diet-induced obese, insulin resistantmice [DIO]); (2) male C57BL/ksj-db/db hyperglycemic mice; (3) male Zucker fatty (ZF) obese, insulin resistant rats; and (4) male ZDF obese, hyperglycemic rats. To examine the effect of Canagliflozin on hyperglycemia, single doses of Canagliflozin (0.1, 1, and 10 mg/kg) are administered to overnight-fasted db/db mice. BG levels are monitored at 0, 0.5, 1, 3, 6, and 24 hours after dosing. Canagliflozin is also administered to ZDF rats at varying doses (3-30 mg/kg) for 4 weeks to evaluate its effect on BG control and pancreatic beta-cell function. BG levels are monitored weekly, and HbA1c, plasma glucose, and insulin levels are determined at the end of the 4-week treatment. An oral glucose tolerance test (OGTT) (2 mg/kg of body weight, given by gavage) is conducted in ZDF rats after 4 weeks of treatment. Blood is sampled at 0, 30, 60, and 120 minutes after glucose challenge from the tail vein for measurement of BG levels using a glucometer and plasma insulin using ELISA method. MCE has not independently confirmed the accuracy of these methods. They are for reference only.

References
  • [1]. Liang Y, et al. Effect of canagliflozin on renal threshold for glucose, glycemia, and body weight in normal and diabetic animal models. PLoS One. 2012;7(2):e30555.

    [2]. Kobuchi S, et al. A validated LC-MS/MS method for the determination of canagliflozin, a sodium-glucose co-transporter 2 (SGLT-2) inhibitor, in a lower volume of rat plasma: application to pharmacokinetic studies in rats. Biomed Chromatogr. 2016 Oct;30(10):1549-55.

Molecular Weight

444.52

Formula

C₂₄H₂₅FO₅S

CAS No.

842133-18-0

Storage
Powder -20°C 3 years
  4°C 2 years
In solvent -80°C 6 months
  -20°C 1 month
Shipping

Room temperature in continental US; may vary elsewhere

Solvent & Solubility

10 mM in DMSO

Canagliflozin is prepared in 1% carboxymethyl-cellulose sodium in distilled water[2].

* "<1 mg/ml"="" means="" slightly="" soluble="" or="" insoluble.="" "≥"="" means="" soluble,="" but="" saturation="">

References
  • [1]. Liang Y, et al. Effect of canagliflozin on renal threshold for glucose, glycemia, and body weight in normal and diabetic animal models. PLoS One. 2012;7(2):e30555.

    [2]. Kobuchi S, et al. A validated LC-MS/MS method for the determination of canagliflozin, a sodium-glucose co-transporter 2 (SGLT-2) inhibitor, in a lower volume of rat plasma: application to pharmacokinetic studies in rats. Biomed Chromatogr. 2016 Oct;30(10):1549-55.

Purity: 99.48%

Data Sheet (123 KB) SDS (120 KB)

COA (93 KB) HNMR (168 KB) LCMS (176 KB)

Handling Instructions (1252 KB)
  • [1]. Liang Y, et al. Effect of canagliflozin on renal threshold for glucose, glycemia, and body weight in normal and diabetic animal models. PLoS One. 2012;7(2):e30555.

    [2]. Kobuchi S, et al. A validated LC-MS/MS method for the determination of canagliflozin, a sodium-glucose co-transporter 2 (SGLT-2) inhibitor, in a lower volume of rat plasma: application to pharmacokinetic studies in rats. Biomed Chromatogr. 2016 Oct;30(10):1549-55.

品牌介绍
托烷司琼临床评价药物相关作用适应症托烷司琼CAS号:89565-68-4英文名称:Tropisetron英文同义词:icf205-930;TROPICACID;TROPISETRON;SS-TROPISETRON;BETA-TROPISETRON;Tropisetron(ICS205930);TROPISHTRONHYDROCHLORIDE;Indole-3-carbonylchloride;3-Tropanylindole-3-carboxylate;lαH,5Αh-Tropan-3α-ylindole-3-carboxylate中文名称:托烷司琼中文同义词:托普西隆;托普西龙;曲匹西龙;托烷司琼;Β-托烷司琼;CS-348;Β-内托烷司琼;吲哚-3-甲酰氯;Β-托烷司琼(光学异构体);Β-托烷司琼,托烷司琼异构体CBNumber:CB3236404分子式:C17H20N2O2分子量:284.35MOLFile:89565-68-4.mol化学性质安全信息用途供应商112化学性质安全信息用途供应商112托烷司琼化学性质熔点:201-202°C沸点:448.5±35.0°C(Predicted)密度:1.26储存条件:2-8°C溶解度:H2O:soluble形态:solid酸度系数(pKa):15.38±0.30(Predicted)颜色:whiteCAS数据库:Chemicalbook89565-68-4(CASDataBaseReference)安全信息WGKGermany:3托烷司琼化学药品说明书托烷司琼|药物应用信息托烷司琼性质、用途与生产工艺临床评价Sorbe等报道本品对含顺铂(剂量50~89mg/m2)化疗方案引起的急性呕吐完全控制率为63%。58例恶性肿瘤化疗所致恶心、呕吐者,应用托烷司琼或昂丹司琼8mg分别在同一病人前后2个化疗周期的第1d给药前30min静脉注射,并用地塞米松10mg静脉滴注。结果两药控制急性及迟发性恶心、呕吐的疗效基本相似,均可达81%~100%。本品对强致吐化疗药物顺铂的止吐疗效突出。药物相关作用饮食可略为延长本品的吸收。本品与利福平、苯巴比妥等肝酶诱导药同时使用,可加快代谢,故快代谢型者需增加剂量,慢者则不必。西咪替丁等肝酶抑制药对本品血药浓度无明显影响。适应症托烷司琼临床用于预防和治疗癌症化疗引起的恶心和呕吐。化学性质结晶,熔点201-202℃(二氯甲烷-乙酸乙酯)。单盐酸托烷司琼(TropisetronMonohydroehloride):C17H20N2O2?HCI。[105826-92-4]。熔点283-285℃(分解)。用途有高效性和选择性的5-HT3受体拮抗剂。用于化疗所致的呕吐。用途为5-羟色胺拮抗药生产方法托品醇(I)和酰氯(Ⅱ)反应,可得托烷司琼。托烷司琼上下游产品信息上游原料托品醇下游产品