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丙酮酸钠

丙酮酸钠(113-24-6,Sodium pyruvate)是糖代谢和酶促碳水化合物降解(酒精发酵)的中间体,在羧化酶作用下它可转化为乙醛和二氧化碳。 在肌肉中,丙酮酸(源自糖原)在运动过程中被还原为乳酸。 丙酮酸钠是一种自由基清除剂,已被证明可以防止过氧化氢介导的细胞凋亡。
货品编码 规格 纯度 价格 (¥) 现价(¥) 特价(¥) 库存描述 数量 总计 (¥)
JT21230-500g 500g 99% ¥ 336.00 ¥ 336.00 3-5days
- +
¥ 0.00
JT21230-100g 100g 99% ¥ 85.00 ¥ 85.00 3-5days
- +
¥ 0.00
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中文别名 丙酮酸钠,丙酮酸钠(113-24-6,Sodium pyruvate);焦葡萄酸钠;2-氧代丙酸 钠盐;Α-酮基丙酸 钠盐;乙酰甲酸 钠盐
英文别名 Sodium pyruvate(CAS:113-24-6);Sodium 2-oxopropanoate;Pyruvic acid sodium salt;Pyruvate Sodium
CAS号 113-24-6
Inchi InChI=1S/C3H4O3.Na/c1-2(4)3(5)6;/h1H3,(H,5,6);/q;+1/p-1
InchiKey DAEPDZWVDSPTHF-UHFFFAOYSA-M
分子式 Molecular Weight C3H3NaO3
分子量 Formula 110.04
溶解度Solubility Soluble in water (100 mg/ml).
性状 白色结晶粉末
储藏条件 Storage conditions Store at 4° C

丙酮酸钠(113-24-6,Sodium pyruvate)实验注意事项:
1.使用113-24-6实验前需戴好防护眼镜,穿戴防护服和口罩,佩戴手套,避免与皮肤接触。
2.实验过程中如遇到有毒或者刺激性物质及有害物质产生,必要时实验操作需要手套箱内完成以免对实验人员造成伤害。
3.取样品113-24-6的移液枪头需及时更换,必要时为避免交叉污染尽可能选择滤芯吸头。
4.称量药品时选用称量纸,并无风处取药和称量以免扬撒,试剂的容器使用前务必确保干净,并消毒。
5.取药品113-24-6时尽量采用多个药勺分别使用,使用后清洗干净。
6.实验后产生的废弃物需分类存储,并交于专业生物废气物处理公司处理,以免造成环境污染。
大规格定制:定制产品请将信息发送至sales@bio-fount.com。

Sodium pyruvate(CAS:113-24-6) Experimental considerations:
1. Wear protective glasses, protective clothing and masks, gloves, and avoid contact with the skin during the experiment.
2. The waste generated after the experiment needs to be stored separately, and handed over to a professional biological waste gas treatment company to avoid environmental pollution.

Tag:丙酮酸钠(113-24-6,Sodium pyruvate),丙酮酸钠试剂,丙酮酸钠的作用,丙酮酸钠的纯度,丙酮酸钠的溶解性,丙酮酸钠的合成工艺,丙酮酸钠的厂家,丙酮酸钠的价格,丙酮酸钠的储存条件,丙酮酸钠的MSDS,丙酮酸钠的使用注意事项
产品说明 丙酮酸钠(113-24-6)是一种自由基清除剂,丙酮酸钠的溶解性,丙酮酸钠的储存条件等参数见主页。
IntroductionSodium pyruvate (113-24-6, 丙酮酸钠) is a free radical scavenger. The solubility of 113-24-6 and the storage conditions of 113-24-6 can be found on the homepage.
Application1丙酮酸钠是糖代谢,抗氧化剂和凋亡抑制剂的中间体
Application2丙酮酸钠可以用于测定乳酸脱氢酶的底物,肝功能试验中谷-丙转氨酶活力测定
Application3
警示图
危险性 warning
危险性警示 Not Available
安全声明 H303吞入可能有害+H313皮肤接触可能有害+H333吸入可能对身体有害
安全防护 P264处理后彻底清洗+P280戴防护手套/穿防护服/戴防护眼罩/戴防护面具+P305如果进入眼睛+P351用水小心冲洗几分钟+P338取出隐形眼镜(如果有)并且易于操作,继续冲洗+P337如果眼睛刺激持续+P313获得医疗建议/护理
备注 避免吸入,误食以及与皮肤接触
象形图 Irritant
信号 Warning
GHS危险说明

Aggregated GHS information provided by 191 companies from 4 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

Reported as not meeting GHS hazard criteria by 159 of 191 companies. For more detailed information, please visit ECHA C&L website

Of the 2 notification(s) provided by 32 of 191 companies with hazard statement code(s):

H317 (96.88%): May cause an allergic skin reaction [Warning Sensitization, Skin]

H319 (100%): Causes serious eye irritation [Warning Serious eye damage/eye irritation]

Information may vary between notifications depending on impurities, additives, and other factors. The percentage value in parenthesis indicates the notified classification ratio from companies that provide hazard codes. Only hazard codes with percentage values above 10% are shown.

防范说明代码

P261, P264, P272, P280, P302+P352, P305+P351+P338, P321, P333+P313, P337+P313, P363, and P501

(The corresponding statement to each P-code can be found at the GHS Classification page.)

Protective Effects of Sodium Pyruvate during Systemic Inflammation Limited to the Correction of Metabolic Acidosis(Inflammation,2018)
Kinetics and mechanism of oxidation of sodium pyruvate by dihydroxydiperiodatonickelate(IV) in alkaline medium(Transition Metal Chemistry,2006)
Treatment of a citrin-deficient patient at the early stage of adult-onset type II citrullinaemia with arginine and sodium pyruvate(Journal of Inherited Metabolic Disease,2008)
Pyruvate-amended modified SMSA medium: improved sensitivity for detection of Ralstonia solanacearum(Journal of General Plant Pathology,2009)
A comparison of solid and liquid media for resuscitation of starvation- and low-temperature-induced nonculturable cells of Aeromonas hydrophila(Archives of Microbiology,2000)

Pyruvate-utilizing bacteria as potential contributors to the food web in the Arabian Gulf
Abstract:
Water samples from the Kuwaiti coasts of the Arabian Gulf were used for counting and isolating bacteria capable of growth on low molecular weight organic compounds known to be released by picocyanobacteria. The compounds tested were potassium acetate, sodium pyruvate, fumaric acid, succinic acid, sodium citrate and glycerol. For comparison, the bacterial numbers on glucose (a conventional carbon source) and Tween 80 and crude oil (unconventional carbon sources), as sole sources of carbon and energy were also determined. Sodium pyruvate was, in most cases, the carbon and energy source most commonly utilized by the cultivable surface water bacteria. The most common cultivable bacterial genera on the test carbon sources were Pseudoalteromonas, Vibrio, Cobetia and Roseobacter. Less common genera were Rhodococcus, Pseudomonas and Bacillus. Quantification of heterotrophic bacteria associated with cultures of local picocyanobacterial strains, originally isolated from the Gulf surface water, also revealed that the carbon source most commonly utilized by cultivable bacteria was sodium pyruvate. However, a different bacterial composition was identified, with Alcanivorax, Stappia and Marinobacter as the major heterotrophic genera. All heterotrophic bacteria that grew on sodium pyruvate could also grow on β-alanine, as sole sources of carbon and energy. From this study we suggest that the Arabian Gulf bacteria utilizing picocyanobacterial low molecular weight compounds, particularly pyruvate may potentially contribute to the food web in this aquatic system.

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