RSS-Feed abonnieren
DOI: 10.1055/s-2004-834892
One-Pot Synthesis of 3,4-Dihydro-2H-pyrido[1,2-a][1,3,5]triazin-2-one Derivatives from N-(2′-Pyridinyl)benzoylacetamide and Nitrosobenzenes
Publikationsverlauf
Publikationsdatum:
22. Oktober 2004 (online)

Abstract
A convenient method leading to fused pyrido[1,2-a] [1,3,5]triazine-2-ones is described. It consists in a one-pot, two-step reaction of N-(2′-pyridinyl)benzoylacetamide with nitrosobenzenes. On the other hand, N-(2′-pyridinyl)acetoacetamide provides a C-2 condensation/addition product with nitrosobenzene. N-(2′-Pyridinyl)benzoylthioacetamide and N-(2′-pyridinyl)acetothioacetamide with nitrosobenzene undergo oxidative heterocyclisation leading to [1,2,4]thiadiazolo[2,3-a]pyridine derivatives.
Key words
amides - heterocycles - pyridotriazines - thiadiazolopyridines - cycloadditions
-
1a
Tanaka T.Morishima Y.Watanabe K.Shibutani T.Yasuoka M.Shibano T. Cardiovasc. Res. 1993, 27: 1374 -
1b
Pawlak D.Adamkiewicz M.Ma J.yszko Takada A.My M.liwiec Buczko W. J. Cardiovasc. Pharmacol. 1998, 32: 266 -
1c
Pawlak D.Pawlak K.Chabielska E.Ma J.yszko Takada A.My M.liwiec Buczko W. Thromb. Res. 1998, 90: 259 -
1d
Shibano T.Tanaka T.Morishima Y.Yasuoka M.Watanabe K.Fujii F. Arch. Int. Pharmacodyn. Ther. 1992, 319: 114 -
2a
Skogvall S. inventors; PCT Int. Appl. WO 0236114. ; Chem. Abstr. 2002, 136, 363846 -
2b
Skogvall S. inventors; PCT Int. Appl. WO 0236113. ; Chem. Abstr. 2002, 136, 363862 -
2c
Skogvall S. inventors; PCT Int. Appl. WO 0064441. ; Chem. Abstr. 2000, 133, 329581 -
3a
Stanovnik B.Tiler M. Synthesis 1972, 308 -
3b
Fiksdahl A.Wentrup C. ARKIV0C 2000, i: 438 ; http://www.arkat.org -
3c
Fiksdahl A.Plüg C.Wentrup C. J. Chem. Soc., Perkin Trans. 2 2000, 1841 -
3d
Marchalín M.Světlík J.Martvoň A. Collect. Czech. Chem. Commun. 1981, 46: 2557 -
4a
Kamal A.Sattur PB. Synthesis 1985, 892 -
4b
Usui H.Watanabe Y.Kanao M. J. Heterocycl. Chem. 1993, 30: 551 -
4c
Troschuetz R.Grün L. Arch. Pharm. (Weinheim, Ger.) 1993, 326: 913 -
4d
Joshua CP.Thomas SK. Heterocycles 1982, 19: 531 -
5a
Matveev YuI.Sereda SV.Samarai LI. Ukr. Khim. Zh. 1995, 61: 37 ; Chem. Abstr. 1996, 124, 342625 -
5b
Paetzel M.Bohrisch J.Liebscher J. Liebigs Ann. Chem. 1991, 975 -
5c
Okawa T.Osakada N.Shoji E.Kakehi A. Tetrahedron 1997, 53: 16061 -
5d
Bödeker J.Courault K.Köckritz A.Köckritz P. J. Prakt. Chem. 1983, 325: 463 -
6a
Bal’on YaG.Paranyuk VE. J. Org. Chem. USSR 1980, 16: 1910 -
6b
Zimmer H. J. Prakt. Chem. 1978, 320: 625 - 7
Zaleska B.Socha R.Grochowski J.Serda P.Szneler E. J. Org. Chem. 2003, 68: 2334 - 8
Zaleska B.Bazanek T.Socha R.Karelus M.Grochowski J.Serda P. J. Org. Chem. 2002, 67: 4526 - 9
Zaleska B.Trzewik B.Grochowski J.Serda P. Synthesis 2003, 2559 - 10
Zaleska B.Socha R.Ciechanowicz-Rutkowska M.Pilati P. Monatsh. Chem. 2000, 131: 1151 -
12a
Iliopoulos P.Murray KS. J. Chem. Soc., Dalton Trans. 1998, 433 -
12b
Knott EB. J. Chem. Soc. 1956, 1644 -
12c
Fairfull AES.Peak DA. J. Chem. Soc. 1955, 796 -
12d
Akiba K. J. Am. Chem. Soc. 1996, 118: 6355 -
12e
Iliopoulos P.Fallon GD.Murray KS. J. Chem. Soc. Dalton Trans. 1986, 437 -
13a
Castro A.Martinez A. J. Heterocycl. Chem. 1999, 36: 991 -
13b
Martinez A.Castro A.Cargelús I.Llenas J.Palacios JM. Bioorg. Med. Chem. 1997, 5: 1275 -
13c
Ohkata K.Ohsugi M.Yamamoto K.Ohsawa M.Akiba K. J. Am. Chem. Soc. 1996, 118: 6355 -
13d
Sohda T,Terashita Z,Momose Y,Fujisawa Y, andMizoguchi J. inventors; Eur. Pat. Appl. EP 562599. ; Chem. Abstr. 1994, 120, 134490 -
13e
Bird CW. Heterocycles 1994, 37: 249 - 14
Fletcher DA.Gowenlock BG.Orrell KG. J. Chem. Soc., Perkin Trans. 2 1997, 2201 - 15
Katritzky AR.Huang T.-B.Voronkov MV. J. Org. Chem. 2001, 66: 1043
References
Compound 4a (C19H14N4O) crystallises in the monoclinic system, space group P21/c, with unit cell parameters a = 1558.71 (5), b = 1331.37 (3), c = 727.70 (2) Å, β = 83.728 (1)°, V = 1.50108 (7) × 109 pm3, Z = 4. The X-ray diffraction data were collected on a KappaCCD (Bruker-Nonius) single-crystal diffractometer using MoKα radiation (55 kV, 30 mA). A total of 11584 reflections were collected and merged to give 3004 independent reflections [R(int) = 0.051] on a single-crystal sample (size 0.3 × 0.2 × 0.15 mm). The structure was solved in space group P21/c by direct methods using the SHELXS86 program and refined by full-matrix least-squares method with SHELXL 97. The differential Fourier map of electron density was featureless with no chemically significant peaks. All hydrogen atoms were located on a difference Fourier map of electron density. Final R indices for I>2σ(I) were equal to R1 = 0.055, wR2 = 0.109, and R1 = 0.0856, wR2 = 0.1240 for all data. The final difference Fourier map of electron density was featureless with the largest peak and hole at 1.7 × 10-7 and -1.5 × 10-7 e·pm-3, respectively. The structural data have been deposited at the Cambridge Crystallographic Data Centre under the reference number CCDC 250196.