Betaine (Synonyms:Trimethylglycine)
目录号 : KM17170 CAS No. : 107-43-7 纯度 : ≥98%

Betaine (Trimethylglycine) 是许多食物中发现的天然化合物,也是一种可维持正常 DNA 甲基化模式的活性甲基供体。Betaine 广泛存在于植物,动物,微生物和丰富的膳食来源中,包括海鲜,菠菜和麦麸。Betaine 也可作为渗透物,通过防止脱水和渗透失活来维持禽类的细胞水和离子平衡,从而提高禽类对热应激的能力。 它有助于维持保护性渗透活性,特别是在热应激的鸟类中。Betaine 可以促进各种肠道微生物抵抗渗透变化,从而改善微生物发酵活性。

规格 价格 是否有货 数量
1g
In-stock
5g
In-stock
10g
In-stock
50g 询价 In-stock
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生物活性

Betaine (Trimethylglycine) is a natural compound found in many foods and also an active methyl-donor which can maintain normal DNA methylation patterns. Betaine is found ubiquitously in plants, animals, microorganisms, and rich dietary sources including seafood, spinach, and wheat bran. Betaine also acts as an osmolyte, to maintain the avian’s cellular water and ion balance to improve the avian’s capacity against heat stress via preventing dehydration and osmotic inactivation. It helps in maintaining the protective osmolytic activity, especially in heat-stressed birds. Betaine may promote various intestinal microbes against osmotic variations and thus improve microbial fermentation activity.

体外研究

Betaine (Trimethylglycine) inhibites proliferation of HeLa cells significantly.

体内研究

Betaine (Trimethylglycine) attenuates liver-to-body weight ratio.

分子式
C5H11NO2
分子量
117.15
CAS号
107-43-7
中文名称
甜菜碱
运输条件

Room temperature in continental US; may vary elsewhere.

储存方式

4°C, sealed storage, away from moisture

*In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture)

溶解性数据
In Vitro: 

H2O : 100 mg/mL (853.61 mM; Need ultrasonic)

配制储备液
浓度 溶剂体积 质量 1 mg 5 mg 10 mg
1 mM 8.5361 mL 42.6803 mL 85.3606 mL
5 mM 1.7072 mL 8.5361 mL 17.0721 mL
10 mM 0.8536 mL 4.2680 mL 8.5361 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 (sealed storage, away from moisture)。-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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