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16611-84-0

中文名称 漆树酸
英文名称 6-pentadecylsalicylic acid
CAS 16611-84-0
分子式 C22H36O3
分子量 348.52
MOL 文件 16611-84-0.mol
更新日期 2024/03/10 10:00:03
16611-84-0 结构式 16611-84-0 结构式

基本信息

中文别名
漆树酸
氢化腰果酸
氢化漆树酸
漆树酸/氢化白果酸
银杏酸C15:0&NBSP
2-羟基-6-十五基苯甲酸
英文别名
NSC 623096
NSC 333857
NSC 229596
Anachardic acid
22:0-Anacardic acid
Anacardic Acid 15:0
(15:0)-Anacardic acid
Cyclogallipharic acid
PENTADECYLSALICYLICACID
Hodrogenated anacardic acid
所属类别
生物化工:Histone Acetyltransferase 抑制剂

物理化学性质

外观性状粉末,可溶于甲醇、乙醇、DMSO等有机溶剂,来源于银杏。
熔点90-91℃
沸点474.8±33.0 °C(Predicted)
密度1.002
储存条件-20°C
溶解度二甲基亚砜:≥20mg/mL
酸度系数(pKa)3.08±0.30(Predicted)
形态白色固体
颜色白色至米色
稳定性Stable for 1 year from date of purchase as supplied. Solutions in DMSO or ethanol may be stored at -20°C for up to 3 months.
InChIKeyADFWQBGTDJIESE-UHFFFAOYSA-N
LogP9.960 (est)

安全数据

危险性符号(GHS)
GHS07
警示词警告
危险性描述H315-H319
危险品标志Xi
危险类别码36
安全说明26
WGK Germany3

应用领域

用途1
用于含量测定/鉴定/药理实验等。
用途2
抗菌。
漆树酸价格(试剂级)
报价日期产品编号产品名称CAS号包装价格
2024/04/30S7582Anacardic Acid16611-84-010mM (1mL in DMSO)810.81元
2024/04/30S7582漆树酸
Anacardic Acid
16611-84-050mg2765.05元
2024/01/16S7582漆树酸
Anacardic Acid
16611-84-010mg804.57元

常见问题列表

生物活性
Anacardic Acid (6-pentadecylsalicylic Acid)是一个有效的p300及p300/CBP相关因子 histone acetyltranferases的抑制剂,也具有抗细菌和抗微生物活性,抑制前列腺素合成,并抑制酪氨酸酶和脂肪氧合酶。
靶点
TargetValue
Tip60
(Cell-free assay)
PCAF
(Cell-free assay)
5 μM
p300/CBP
(Cell-free assay)
8.5 μM
体外研究

Anacardic Acid is a histone acetyltransferase, inhibits HAT activity of p300 and PCAF, with IC 50 s of ∼8.5 μM and ∼5 μM, respectively. Anacardic Acid (300 μM) inhibits mycelial growth. Anacardic Acid (50 μM) induces apoptosis-like characteristics in M. oryzae , and the effect is caspase independent. Anacardic Acid (1-80 μM) leads to loss of mitochondrial potential. Anacardic Acid (1-60 μM) also exhibits antioxidant activity in M. oryzae .

体内研究

Anacardic acid (5 mg/kg, i.p.) attenuates the binding of HATs to the promoter of MEF2A and reverse hyperacetylation of H3K9ac caused by phenylephrine in C57BL/6 mice. Anacardic acid inhibits the level of transcription on MEF2A and cardiac development-related downstream genes, attenuates the protein overexpression of cardiac downstream genes caused by phenylephrine, reverses and attenuates cardiac hypertrophy in the hearts of mice exposed to phenylephrine, and attenuates the left ventricular pressure and improves cardiac function in the cardiac hypertrophy mice.

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