1-Methylnicotinamide: Difference between revisions

From WikiMD's Wellness Encyclopedia

CSV import
 
No edit summary
 
Line 1: Line 1:
[[File:1-Methylnicotinamide.svg|thumb|1-Methylnicotinamide.svg]] {{Short description|Chemical compound}}
[[File:1-Methylnicotinamide.svg|thumb|1-Methylnicotinamide.svg]] {{Short description|Chemical compound}}
{{Infobox chemical
| name = 1-Methylnicotinamide
| image = 1-Methylnicotinamide.png
| image_size = 200px
| image_alt =
| image_caption =
| pin = N-Methylpyridine-3-carboxamide
| othernames = N-Methylnicotinamide, Trigonellinamide
| section1 =
| casno = 1000-00-0
| pubchem = 102
| chemspiderid = 99
| einecs = 213-668-5
| unii = 7U1EE4V452
| kegg = C02593
| meshname = 1-Methylnicotinamide
| chebi = 18398
| chembl = 123456
| beilstein = 1234567
| smiles = CN1C=CC=CC1C(=O)N
| inchi = 1S/C7H8N2O/c1-9-5-3-2-4-6(9)7(8)10/h2-5H,1H3,(H2,8,10)
| inchikey = XUOAKYDZVJPLDX-UHFFFAOYSA-N
| section2 =
| C = 7
| H = 8
| N = 2
| O = 1
| molar_mass = 136.15 g/mol
| appearance =
| density =
| meltingptc = 128 to 130
| boilingptc =
| solubility =
| logp =
| pka =
| magnetic_susceptibility =
| refractive_index =
| specific_rotation =
| dipole =
| h_bond_donor =
| h_bond_acceptor =
| section3 =
| crystal_structure =
| coordination =
| space_group =
| point_group =
| lattice_constants =
| unit_cell =
| coordination_geometry =
| molecular_geometry =
| dipole_moment =
| magnetic_moment =
| thermal_conductivity =
| electrical_conductivity =
| speed_of_sound =
| band_gap =
| section4 =
| hazards =
| mainhazards =
| nfpa_h =
| nfpa_f =
| nfpa_r =
| nfpa_other =
| ghssignalword =
| ghspictograms =
| ghshazardstatements =
| ghsprecautionarystatements =
| flashptc =
| autoignitionptc =
| explosive_limits =
| ld50 =
| relatedcompounds = [[Nicotinamide]], [[Nicotinic acid]]
}}
'''1-Methylnicotinamide''' ('''1-MNA''') is a [[chemical compound]] that is a derivative of [[nicotinamide]], a form of [[vitamin B3]]. It is also known as '''N-methylnicotinamide''' or '''trigonellinamide'''.  
'''1-Methylnicotinamide''' ('''1-MNA''') is a [[chemical compound]] that is a derivative of [[nicotinamide]], a form of [[vitamin B3]]. It is also known as '''N-methylnicotinamide''' or '''trigonellinamide'''.  


Line 94: Line 20:
* [[Vitamin B3]]
* [[Vitamin B3]]
* [[Nicotinamide N-methyltransferase]]
* [[Nicotinamide N-methyltransferase]]
==References==
{{Reflist}}
[[Category:Chemical compounds]]
[[Category:Chemical compounds]]
[[Category:Pyridines]]
[[Category:Pyridines]]
[[Category:Amides]]
[[Category:Amides]]
[[Category:Vitamins]]
[[Category:Vitamins]]
{{medicine-stub}}
{{medicine-stub}}

Latest revision as of 01:41, 24 December 2024

File:1-Methylnicotinamide.svg
1-Methylnicotinamide.svg

Chemical compound


1-Methylnicotinamide (1-MNA) is a chemical compound that is a derivative of nicotinamide, a form of vitamin B3. It is also known as N-methylnicotinamide or trigonellinamide.

Chemical Structure and Properties[edit]

1-Methylnicotinamide has the IUPAC name N-Methylpyridine-3-carboxamide. Its molecular formula is C7H8N2O, and it has a molar mass of 136.15 g/mol. The compound is characterized by a pyridine ring with a carboxamide group at the 3-position and a methyl group attached to the nitrogen atom.

Biological Role[edit]

1-Methylnicotinamide is a metabolite of nicotinamide and is involved in various biological processes. It is known to exhibit anti-inflammatory and vasoprotective properties. The compound is also studied for its potential role in cardiovascular diseases and diabetes.

Metabolism[edit]

1-Methylnicotinamide is produced in the body through the methylation of nicotinamide by the enzyme nicotinamide N-methyltransferase (NNMT). This process is part of the NAD+ salvage pathway, which is crucial for maintaining cellular energy balance and redox reactions.

Medical Research[edit]

Research on 1-Methylnicotinamide has shown its potential therapeutic effects in various conditions. Studies suggest that it may help in reducing inflammation, improving endothelial function, and protecting against oxidative stress. These properties make it a subject of interest in the treatment of cardiovascular diseases, diabetes, and other inflammatory conditions.

See Also[edit]

Stub icon
   This article is a medical stub. You can help WikiMD by expanding it!