Adenine-13C
(Synonyms: Adenine-8-C13; 9H-Purin-6-amine-8-13C) 目录号 : GC68624Adenine-13C 是 13C 标记的 Adenine。 Adenine (6-Aminopurine) 是一种嘌呤,它是 DNA 核酸的四种碱基之一。Adenine 是 DNA 和 RNA 的化学成分。Adenine 在细胞呼吸,ATP、辅酶因子 NAD 和 FAD 的形成,以及蛋白质合成的过程中发挥了重要作用。
Cas No.:86967-48-8
Sample solution is provided at 25 µL, 10mM.
Quality Control & SDS
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- Purity: >98.00%
- COA (Certificate Of Analysis)
- SDS (Safety Data Sheet)
- Datasheet
Adenine-13C is the 13C labeled Adenine[1]. Adenine (6-Aminopurine), a purine, is one of the four nucleobases in the nucleic acid of DNA. Adenine acts as a chemical component of DNA and RNA. Adenine also plays an important role in biochemistry involved in cellular respiration, the form of both ATP and the cofactors (NAD and FAD), and protein synthesis[2][3][4].
Stable heavy isotopes of drogen, carbon, and other elements have been incorporated into drug molecules, largely as tracers for quantitation during the drug development process. Deuteration has gained attention because of its potential to affect the pharmacokinetic and metabolic profiles of drugs[1].
[1]. Russak EM, et al. Impact of Deuterium Substitution on the Pharmacokinetics of Pharmaceuticals. Ann Pharmacother. 2019 Feb;53(2):211-216.
[2]. ORO J, et al. Synthesis of purines under possible primitive earth conditions. I. Adenine from drogen cyanide. Arch Biochem Biops. 1961 Aug;94:217-27.
[3]. Griffiths AJF, et al. An Introduction to Genetic Analysis. 7th edition. New York: W. H. Freeman 2000. Structure of DNA.
[4]. Reader V. The assay of vitamin B(4). Biochem J. 193024(6):1827-31.
制备储备液 | |||
1 mg | 5 mg | 10 mg | |
1 mM | 7.3465 mL | 36.7323 mL | 73.4646 mL |
5 mM | 1.4693 mL | 7.3465 mL | 14.6929 mL |
10 mM | 0.7346 mL | 3.6732 mL | 7.3465 mL |
第一步:请输入基本实验信息(考虑到实验过程中的损耗,建议多配一只动物的药量) | ||||||||||
给药剂量 | mg/kg | 动物平均体重 | g | 每只动物给药体积 | ul | 动物数量 | 只 | |||
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% DMSO % % Tween 80 % saline | ||||||||||
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工作液浓度: mg/ml;
DMSO母液配制方法: mg 药物溶于 μL DMSO溶液(母液浓度 mg/mL,
体内配方配制方法:取 μL DMSO母液,加入 μL PEG300,混匀澄清后加入μL Tween 80,混匀澄清后加入 μL saline,混匀澄清。
1. 首先保证母液是澄清的;
2.
一定要按照顺序依次将溶剂加入,进行下一步操作之前必须保证上一步操作得到的是澄清的溶液,可采用涡旋、超声或水浴加热等物理方法助溶。
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