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DOI: 10.1055/s-0030-1259283
First Synthesis of Methyl 2-Amino-6-Methoxynicotinate Using a Combination of Microwave and Flow Reaction Technologies
Publication History
Publication Date:
23 December 2010 (online)
Abstract
The synthesis of methyl 2-amino-6-methoxynicotinate, a valuable building block for the preparation of fused 2-pyridones, is reported. The optimized synthesis includes sequential microwave-induced regioselective 6-methoxylation, esterification, followed by microwave-induced reaction with p-methoxybenzylamine, and final deprotection under flow reaction hydrogenation conditions. Two key steps in the reported synthesis are a microwave-induced methoxylation and a microfluidic hydrogenation that afford improved regioselectivity and purity profile of the reaction products.
Key words
2-pyridone - microwave - microfluidic reaction - cyclization - hydrogenation
- Supporting Information for this article is available online:
- Supporting Information
- 2
Medina-Franco JL.Martinez-Mayorga K.Juarez-Gordiano C.Castillo R. ChemMedChem 2007, 2: 1141 - 3
Shen LL.Tanaka SK.Chu DTW. Curr. Pharm. Design 1997, 3: 169 - 4
Kim OK.Barrett JF.Ohemeng K. Exp. Opin. Investig. Drugs 2001, 10: 199 - 5
Li Q.Mitscher LA.Shen LL. Med. Res. Rev. 2000, 20: 231 - 6
Spicer JA.Rewcastle GW.Kaufman MD.Black SL.Plummer MS.Denny WA.Quin J.Shahripour AB.Barrett SD.Whitehead CE.Milbank JBJ.Ohren JF.Gowan RC.Omer C.Camp HS.Esmaeil N.Moore K.Sebolt-Leopold JS.Pryzbranowski S.Merriman RL.Ortwine DF.Warmus JS.Flamme CM.Pavlovsky AG.Tecle H. J. Med. Chem. 2007, 50: 5090 - 7
Collins I.Moyes C.Davey WB.Rowley M.Bromidge FA.Quirk K.Atack JR.McKernan RM.Thompson S.-A.Wafford K.Dawson GR.Pike A.Sohal B.Tsou NN.Ball RG.Castro JL. J. Med Chem. 2002, 45: 1887 - 8
Mokrosz JL.Duszynska B.Paluchowska MH.Charakchieva-Minol S.Mokrosz MJ. Arch. Pharm. (Weinheim, Ger.) 1995, 328: 623 - 9
Torres M.Gil S.Parra M. Curr. Org. Chem. 2005, 9: 1757 - For recent examples of cyclization based on 2-amino-nicotinic acid, see:
-
10a 1,8-Naphthyridin-4(1H)-ones:
Bilokin MD.Yushchenko DA.Pivovarenko OV.Pivovarenko VG. Ukr. Bioorg. Acta 2008, 6: 13 -
10b 3,4-Dihydro-4-oxopyrido[2,3-d]pyrimidines:
Storelli S.Verzijl D.Al-Badie J.Elders N.Bosch L.Timmerman H.Smit MJ.De Esch IJP.Leurs R. Arch. Pharm. (Weinheim, Ger.) 2007, 340: 281 -
10c 4-Chloropyrido[2,3-d]pyrimidine:
Echeverria M.Mendivil B.Cordeu L.Cubedo E.Garcia-Foncillas J.Font M.Sanmartin C.Palop JA. Arch. Pharm. (Weinheim, Ger.) 2006, 339: 182 -
10d 3-Benzimidazolo-2-pyridinamine
and 1H-imidazo[4,5-c]pyridin-2-yl)-1,2,5-oxadiazol-3-ylamine:
Bamford MJ.Alberti MJ.Bailey N.Davies S.Dean DK.Gaiba A.Garland S.Harling JD.Jung DK.Panchal TA.Parr CA.Steadman JG.Takle AK.Townsend JT.Wilson DM.Witherington J. Bioorg. Med. Chem. Lett. 2005, 15: 3402 -
10e 1H-Pyrido[2,3-b]azepine-5,8-dione:
Kunick C.Lauenroth K.Wieking K.Xie X.Schultz C.Gussio R.Zaharevitz D.Leost M.Meijer L.Weber A.Jorgensen FS.Lemcke T. J. Med. Chem. 2004, 47: 22 -
10f Imidazo[1,2-a]pyridine-8-carboxamide:
Masurier N.Moreau E.Lartigue C.Gaumet V.Chezal J.-M.Heitz A.Teulade J.-C.Chavignon O. J. Org. Chem. 2008, 73: 5989 -
11a
Nakamoto K,Matsukura M, andTanaka K. inventors; EP 1782811. Direct copper-catalyzed amination of 2,6-dichloro-nicotinic acid results in 4.5% of 2-amino-6-chloroderivative. Its further alcoholysis gives corresponding 6-ethoxy- and 6-isopropoxy-2-aminonicotinic acids: -
11b
Chen Q,Feng Y,Wang Z,Yue B, andZhuang W. inventors; CN 1701031. Synthetic applications of the title compound were described recently without preparative details: - 12
Hirokawa Y.Horikawa T.Kato S. Chem. Pharm. Bull. 2000, 48: 1847 - 13
Lee J,Kirincich SJ,Smith MJ,Wilson DP,Follows BC,Wan Z.-K,Joseph-Mccarthy DM,Erbe DV,Zhang Y.-L,Xu W, andTam SY. inventors; WO 081960. - 14
Plourde R,Shaver SR,Douglass JG,Watson PS,Boyer JL,Tu C,Abreo MA,Alfaro-Lopez LJ,Feng Y,Harvey DF, andKhasanova TV. inventors; US 267134. - 15
Hirokawa Y.Fujiwara I.Suzuki K.Harada H.Yoshikawa T.Yoshida N.Kato S. J. Med. Chem. 2003, 46: 702 - 16
Guiadeen D,Hale JJ, andKothandaraman S. inventors; WO 130527. -
17a
Kovacs I.Jones R.Otvos Z.Urge L.Dorman G.Darvas F. In Heterogeneous Catalysis Research ProgressGunther MB. Nova Science Publisher, Inc.; New York: 2008. p.395 -
17b
Jones RV.Godorhazy L.Varga N.Szalay D.Urge L.Darvas F. J. Comb. Chem. 2006, 8: 110 -
17c
Spadoni C.Jones R.Urge L.Darvas F. Chem. Today 2006, 38 -
17d
Clapham B.Wilson NS.Michmerhuizen MJ.Blanchard DP.Dingle DM.Nemcek TA.Pan JY.Sauer DR. J. Comb. Chem. 2008, 10: 88 - Optimization experiments were performed using 0.05 M solutions of 13a,b in EtOH using a 30 mm 10% Pd/C CatCart® cartridge. Two modes have been tested at the given temperatures:
-
18a
controlled mode, 30 bar, liquid flow rate 1 mL/min, hydrogen flow rate 2 N mL/min
-
18b
full hydro-genation mode, atmospheric pressure, liquid flow rate 1 mL/min, hydrogen flow rate 30 N mL/min.
- Biological activities and medicinal applications have been reported for 2-mercaptopyrido[2,3-d]pyrimidin-4 (3H)-ones:
-
19a
El-Gazzar A.-RBA.Hafez HN. Bioorg. Med. Chem. Lett. 2009, 19: 3392 -
19b
El-Gazzar A.-RBA.Hafez HN. Acta Chim. Slov. 2008, 55: 359 - 20
Sbardella G.Bartolini S.Castellano S.Artico M.Paesano N.Rotili D.Spadafora C.Mai A. ChemMedChem 2006, 1: 1073
References and Notes
Current address: EGIS Gyógyszergyár Nyrt., Keresztúri út 30-38, 1106 Budapest, Hungary
21
Experimental Procedures
for the Preparation of Methyl 2-Amino-6-methoxynicotinate (4) and
Fused Pyrimidines 14 and 15
Procedures and analytical
data for 2-chloro-6-methoxynicotinic acid (6)
and methyl 2-chloro-6-methoxynicotinate (9),
as well as methyl 2-[3-(ethoxycarbonyl)thioureido]-6-methoxynicotinate
(14) and 7-methoxy-2-thioxo-2,3-dihydropyrido[2,3-d]pyrimidin-4 (1H)-one (15)
can be found in the Supporting Information.
Methyl
6-Methoxy-2-(benzylamino)nicotinates 13a,b
A 100 mL
Milestone microwave reaction vessel was charged with crude methyl
2-chloro-6-methoxynicotinate (9, 6.50 g, 32.2
mmol), 1,4-dioxane (128 mL), and benzylamine or 4-methoxybenzylamine
(0.32 mol, 10 equiv). The vessel was capped and the reaction mixture
was microwave irradiated at 170 ˚C for 2 h using
a Milestone MicroSYNTH T640 Microwave instrument. The vessel was
cooled to r.t. and the reaction mixture concentrated to dryness
under reduced pressure. The residue obtained was purified by column chromatography
on silica with hexanes-EtOAc eluent by gradient method
from 4:1 to 1:1. The fractions were concentrated under reduced pressure
and the residue was triturated with diethyl ether to afford compounds 13a,b.
Methyl 6-Methoxy-2-(benzylamino)nicotinate (13a)
Yield
45%. ¹H NMR (400 MHz, CDCl3): δ = 8.51
(br s, 1 H), 7.99 (d, J = 8.5
Hz, 1 H), 7.35 (d, J = 7.5
Hz, 2 H), 7.30 (t, J = 7.5
Hz, 2 H), 7.23 (t, J = 7.5
Hz, 1 H), 5.95 (d, J = 8.5 Hz,
1 H), 4.73 (d, J = 5.8
Hz, 2 H), 3.85 (s, 3 H), 3.81 (s, 3 H). ¹³C
NMR (100 MHz, CDCl3): δ = 168.0, 166.5,
158.8, 142.3, 139.9, 128.4, 127.4, 126.9, 98.0, 97.8, 53.4, 51.3, 44.8.
ESI-HRMS: m/z calcd for C15H16N2O3 [M + H]+: 273.1234;
found: 273.1234. Anal. Calcd for C15H16N2O3:
C, 66.16; H, 5.92; N, 10.29. Found: C, 66.40; H, 5.98; N, 10.14.
Methyl 6-Methoxy-2-(4-methoxybenzylamino)-nicotinates
(13b)
Yield 67%. ¹H NMR
(300 MHz, CDCl3): δ = 8.43 (br s, 1
H), 7.98 (d, J = 8.5
Hz, 1 H), 7.28 (d, J = 8.8
Hz, 2 H), 6.85 (d, J = 8.8
Hz, 2 H), 5.95 (d, J = 8.5
Hz, 1 H), 4.66 (d, J = 5.7 Hz,
2 H), 3.88 (s, 3 H), 3.80 (s, 3 H), 3.79 (s, 3 H). ¹³C
NMR (100 MHz, CDCl3): δ = 168.0, 166.5,
158.7, 158.6, 142.3, 131.9, 128.7, 113.9, 97.9, 97.7, 55.3, 53.4,
51.3, 44.3. ESI-HRMS: m/z calcd
for C16H18N2O4 [M + H]+:
303.1340; found: 303.1339. Anal. Calcd for C16H18N2O4:
C, 63.57; H, 6.00; N, 9.27. Found: C, 63.85; H, 6.02; N, 9.37.
Methyl 2-Amino-6-methoxynicotinate (4)
A
solution of methyl 6-methoxy-2-(4-methoxybenzylamino) nicotinate
(4.0 g, 13.23 mmol) in EtOH (25 mL) was hydrogenated in an H-Cube
instrument over a 70 mm 10% Pd/C CatCart column
under full hydrogenation mode (ref. 18) and column temperature 70 ˚C.
The solvent was removed under reduced pressure to afford 2.3 g (95%)
of the title compound. ¹H NMR (300 MHz, DMSO-d
6): δ = 7.93
(d, J = 8.5
Hz, 1 H), 7.27 (br s, 2 H), 6.01 (d, J = 8.5
Hz, 1 H), 3.82 (s, 3 H), 3.76 (s, 3 H). ¹³C
NMR (100 MHz, DMSO-d
6): δ = 167.6,
166.6, 159.7, 142.2, 99.7, 98.3, 53.5, 51.4. ESI-HRMS: m/z calcd for C8H10N2O3 [M + H]+:
183.0764; found: 183.0764.