Etilevodopa hydrochloride (Synonyms:L-DOPA ethyl ester hydrochloride; Levodopa ethyl ester hydrochloride)
目录号 : KM10402 CAS No. : 39740-30-2 纯度 : 98%

Etilevodopa hydrochloride (L-Dopa ethyl ester hydrochloride) 是 Levodopa 的前药,在胃肠道中被非特异性酯酶快速水解为 Levodopa 和乙醇。Etilevodopa 用于帕金森病 (PD)的相关研究。Levodopa 是多巴胺的直接前体,有助于中枢神经系统的渗透和传递多巴胺。

规格 价格 是否有货 数量
5mg
In-stock
10mg
In-stock
50mg 询价 In-stock
100mg 询价 In-stock

Other Forms of Rapamycin:

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生物活性

Etilevodopa (L-Dopa ethyl ester) hydrochloride, an ethyl-ester prodrug of Levodopa, is rapidly hydrolyzed to Levodopa and ethanol by nonspecific esterases in the gastrointestinal tract. Etilevodopa hydrochloride is used for the treatment of Parkinson disease (PD). Levodopa is the direct precursor of dopamine and is a suitable prodrug as it facilitates CNS penetration and delivers dopamine.

体外研究

Etilevodopa (L-Dopa ethyl ester) hydrochloride passes unchanged through the stomach to the duodenum, where it is rapidly hydrolyzed by local esterases to Levodopa and ethanol, and is subsequently absorbed into the blood stream as Levodopa.
Compared with standard Levodopa, Etilevodopa hydrochloride has greater solubility in the stomach, faster passage to the small intestine, and a shortened time to maximum Levodopa concentration.

分子式
C11H16ClNO4
分子量
261.70
CAS号
39740-30-2
运输条件

Room temperature in continental US; may vary elsewhere.

储存方式

4°C, protect from light, stored under nitrogen

*In solvent : -80°C, 6 months; -20°C, 1 month (protect from light, stored under nitrogen)

溶解性数据
In Vitro: 

H2O : 125 mg/mL (477.65 mM; Need ultrasonic)

配制储备液
浓度 溶剂体积 质量 1 mg 5 mg 10 mg
1 mM 3.8212 mL 19.1058 mL 38.2117 mL
5 mM 0.7642 mL 3.8212 mL 7.6423 mL
10 mM 0.3821 mL 1.9106 mL 3.8212 mL
*

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。
储备液的保存方式和期限:-80°C, 6 months; -20°C, 1 month (protect from light, stored under nitrogen)。-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。

The molarity calculator equation
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
The dilution calculator equation
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2
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