结构:O=C([O-])c1cccnc1
HCID937

Nicotinate

pyridine-3-carboxylate

C6H4NO2-122.1 g/mol

IDENTITY

结构与身份

标准 SMILES
O=C([O-])c1cccnc1
InChIKey
PVNIIMVLHYAWGP-UHFFFAOYSA-M
分子式
C6H4NO2-
平均分子量
122.1 g/mol
单同位素质量
122.02420337

COMPUTED

结构计算性质

已同步
XLogP
0.9
极性表面积
53 Ų
氢键供体
0
氢键受体
3
可旋转键
0
重原子
9
形式电荷
-1
复杂度
108

PROPERTIES

实验与物化性质

来源:PubChem
Collision Cross Section

121 Ų [M-H]- [CCS Type: DT; Method: single field calibrated with ESI Low Concentration Tuning Mix (Agilent)];124 Ų [M+H]+ [CCS Type: DT; Method: single field calibrated with ESI Low Concentration Tuning Mix (Agilent)]

124 Ų [M+H]+ [CCS Type: DT; Method: single field calibrated with Agilent tune mix (Agilent)]

TOXICITY

毒理信息

来源:PubChem
Treatment

Supportive measures should be undertaken in the event of an overdose. (L1712)

Health Effects

Niacin at extremely high doses can have life-threatening acute toxic reactions. Extremely high doses of niacin can also cause niacin maculopathy, a thickening of the macula and retina which leads to blurred vision and blindness. This maculopathy is reversible after stopping niacin intake. Side effects of hyperglycemia, cardiac arrhythmias and birth defects have also been reported. (A729)

Exposure Routes

Oral (L1436) ; Intramuscular (L1436). Both nicotinic acid and nicotinamide are efficiently absorbed from the stomach and small intestine.

Toxicity Summary

Niacin binds to Nicotinate D-ribonucleotide phyrophsopate phosphoribosyltransferase, Nicotinic acid phosphoribosyltransferase, Nicotinate N-methyltransferase and the Niacin receptor. Niacin is the precursor to nicotinamide adenine dinucleotide (NAD) and nicotinamide adenine dinucleotide phosphate (NADP), which are vital cofactors for dozens of enzymes. The mechanism by which niacin exerts its lipid lowering effects is not entirely understood, but may involve several actions, including a decrease in esterification of hepatic triglycerides. Niacin treatment also decreases the serum levels of apolipoprotein B-100 (apo B), the major protein component of the VLDL (very low-density lipoprotein) and LDL fractions.

Signs and Symptoms

Nicotinic acid can cause vasodilation of cutaneous blood vessels resulting in increased blood flow, principally in the face, neck and chest. This produces the niacin- or nicotinic acid-flush. The niacin-flush is thought to be mediated via the prostaglandin prostacyclin. Histamine may also play a role in the niacin-flush. Flushing is the adverse reaction first observed after intake of a large dose of nicotinic acid, and the most bothersome one.

Carcinogen Classification

No indication of carcinogenicity to humans (not listed by IARC).

Toxicity Data

LD50: 7000 mg/kg (Oral, Rat) (T14) LD50: 730 mg/kg (Intraperitoneal, Rat) (T14) LD50: 3500 mg/kg (Subcutaneous, Mouse) (T14)

PHARMACOLOGY

药理信息

来源:PubChem
Metabolism/Metabolites

Niacin is rapidly metabolized and undergoes extensive first-pass metabolism in the liver. The drug is converted to several metabolites, including nicotinuric acid (NUA), nicotinamide, and nicotinamide adenine dinucleotide (NAD). At doses used to treat hyperlipoproteinemia, the principal metabolic pathways appear to be saturable, and niacin is thought to exhibit nonlinear, dose-dependent pharmacokinetics. (L1323) Half Life: 20-45 minutes.

MeSH Pharmacological Classification

Substances that lower the levels of certain LIPIDS in the BLOOD. They are used to treat HYPERLIPIDEMIAS.

Drugs used to cause dilation of the blood vessels.

A group of water-soluble vitamins, some of which are COENZYMES.

USES

用途与制造

来源:PubChem
Uses

For the treatment of type IV and V hyperlipidemia. It is indicated as ajunctive therapy. It can be found in various foods, such as liver, chicken, beef, fish, cereal, peanuts and legumes. Niacin is also used as a pharmaceutical to reverse atherosclerosis. (A729)

ALIASES

名称与别名

10
nicotinate3-pyridinecarboxylateCHEBI:32544RefChem:927733pyridine-3-carboxylatenico-400-PVNIIMVLHYAWGP-UHFFFAOYSA-MAC-907/25004509AE-848/01496050Q27104221

REACTIONS

参与反应

8
HRID1556745

Training data from https://doi.org/10.1039/C8SC04228D (1/10)

作为反应物
HRID 1556745 方程式

Training data from https://doi.org/10.1039/C8SC04228D (1/10) · 10.1039/C8SC04228D

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