O’Brien, Darrell E’s team published research in Journal of Heterocyclic Chemistry in 1966 | 15837-41-9

Journal of Heterocyclic Chemistry published new progress about Mannich reaction. 15837-41-9 belongs to class pyrimidines, and the molecular formula is C4H4N2O2, Safety of 5-Hydroxypyrimidin-4(3H)-one.

O’Brien, Darrell E.; Springer, Robert H.; Cheng, C. C. published the artcile< New Mannich reaction of pyrimidines>, Safety of 5-Hydroxypyrimidin-4(3H)-one, the main research area is .

4,5-Dihydroxypyrimidines undergo the Mannich reaction with primary and secondary amines and CH2O at the 6-position. 5-Hydroxy-6-piperidinomethyluracil, 3,6-dimethyl-3,4-dihydro-2H-pyrimido[4,5-e]-1,3-oxazin-8-ol (I, R = Me), and the 6-OH analog of I were prepared in this manner. The new Mannich reaction appears to be a general method for the synthesis of compounds containing the new 3,4-dihydro-2H-pyrimido[4,5-e]-1,3-oxazine ring system.

Journal of Heterocyclic Chemistry published new progress about Mannich reaction. 15837-41-9 belongs to class pyrimidines, and the molecular formula is C4H4N2O2, Safety of 5-Hydroxypyrimidin-4(3H)-one.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Solberg, Jan’s team published research in Acta Chemica Scandinavica, Series B: Organic Chemistry and Biochemistry in 1986-05-31 | 99469-85-9

Acta Chemica Scandinavica, Series B: Organic Chemistry and Biochemistry published new progress about Coupling reaction. 99469-85-9 belongs to class pyrimidines, and the molecular formula is C5H4Cl2N2S, Related Products of 99469-85-9.

Solberg, Jan; Undheim, Kjell published the artcile< Palladium catalysis in the preparation of alkynylpyrimidines>, Related Products of 99469-85-9, the main research area is iodopyrimidine alkyne coupling; palladium complex catalyst coupling; alkynylpyrimidine; pyrimidine alkynyl.

Coupling reaction of iodopyrimidines I (R = SMe, OSiMe3; R1 = iodo) with R2CCH (e.g., R2 = Ph, Bu) using Pd catalysts gave alkynylpyrimidines I (R1 = CCR2). Hydrolysis of I (R = OSiMe3, R1 = CCR2) with H2O at room temperature gave pyrimidinones II. m-ClC6H4C(O)OOH oxidn of I (R = SMe, R1 = CCR2) gave I (R = SO2Me). I (R = SO2Me, R1 = CCPh) on alk. hydrolysis gave II (R2 = Ph).

Acta Chemica Scandinavica, Series B: Organic Chemistry and Biochemistry published new progress about Coupling reaction. 99469-85-9 belongs to class pyrimidines, and the molecular formula is C5H4Cl2N2S, Related Products of 99469-85-9.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Mitran, Raul-Augustin’s team published research in Revista de Chimie (Bucharest, Romania) in 2010-12-31 | 4956-05-2

Revista de Chimie (Bucharest, Romania) published new progress about Aromatic amines Role: RCT (Reactant), RACT (Reactant or Reagent). 4956-05-2 belongs to class pyrimidines, and the molecular formula is C3H2BrN3O2, Recommanded Product: 6-Bromo-1,2,4-triazine-3,5(2H,4H)-dione.

Mitran, Raul-Augustin; Draghici, Constantin; Tomas, Stefan published the artcile< New 6-azauracil derivatives>, Recommanded Product: 6-Bromo-1,2,4-triazine-3,5(2H,4H)-dione, the main research area is aromatic amine bromoazauracil nucleophilic substitution; phenol bromoazauracil nucleophilic substitution; aryl azauracil preparation.

Six new 6-azauracil derivatives were obtained through the nucleophilic substitution of 5-bromo-6-azauracil with various aromatic amines and phenols. These compounds were characterized by means of UV-VIS, IR and 1H-NMR spectroscopy.

Revista de Chimie (Bucharest, Romania) published new progress about Aromatic amines Role: RCT (Reactant), RACT (Reactant or Reagent). 4956-05-2 belongs to class pyrimidines, and the molecular formula is C3H2BrN3O2, Recommanded Product: 6-Bromo-1,2,4-triazine-3,5(2H,4H)-dione.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Ouyang, Yao’s team published research in Angewandte Chemie, International Edition in 2018 | 18740-39-1

Angewandte Chemie, International Edition published new progress about Alkynes, internal Role: RCT (Reactant), SPN (Synthetic Preparation), RACT (Reactant or Reagent), PREP (Preparation). 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine.

Ouyang, Yao; Xu, Xiu-Hua; Qing, Feng-Ling published the artcile< Trifluoromethanesulfonic Anhydride as a Low-Cost and Versatile Trifluoromethylation Reagent>, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine, the main research area is fluoromethanesulfonic anhydride fluoromethylation reagent photoredox catalysis pyridine activation; photoredox catalysis; pyridine; radical; trifluoromethanesulfonic anhydride; trifluoromethylation.

A large number of reagents have been developed for the synthesis of trifluoromethylated compounds However, an ongoing challenge in trifluoromethylation reaction is the use of less expensive and practical trifluoromethyl sources. We report herein the unprecedented direct trifluoromethylation of (hetero)arenes using trifluoromethanesulfonic anhydride as a radical trifluoromethylation reagent by merging photoredox catalysis and pyridine activation. Furthermore, introduction of both the CF3 and OTf groups of the trifluoromethanesulfonic anhydride into internal alkynes to access tetrasubstituted trifluoromethylated alkenes was achieved. Since trifluoromethanesulfonic anhydride is a low-cost and abundant chem., this method provides a cost-efficient and practical route to trifluoromethylated compounds

Angewandte Chemie, International Edition published new progress about Alkynes, internal Role: RCT (Reactant), SPN (Synthetic Preparation), RACT (Reactant or Reagent), PREP (Preparation). 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Ishikawa, Fumiyoshi’s team published research in Journal of Medicinal Chemistry in 1981-04-30 | 18740-39-1

Journal of Medicinal Chemistry published new progress about Blood platelet. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine.

Ishikawa, Fumiyoshi; Kosasayama, Akira; Yamaguchi, Hitoshi; Watanabe, Yoshifumi; Saegusa, Junji; Shibamura, Seiichi; Sakuma, Kyoko; Ashida, Shinichiro; Abiko, Yasushi published the artcile< Cyclic guanidines. 14. Imidazo[1,2-a]thienopyrimidin-2-one derivatives as blood platelet aggregation inhibitors>, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine, the main research area is cyclic guanidine; imidazothienopyrimidinone preparation blood platelet; thienopyrimidinone imidazo; pyrimidinone imidazothieno; structure blood platelet imidazothienopyrimidinone; reduction ethoxycarbonylmethylation amination dichlorothienopyrimidine.

A series of novel 1,2,3,5-tetrahydroimidazo[1,2-a]thieno[2,3-d]-, and -[3,4-dpyrimidin-2-one derivatives were prepared and tested for the activity of inhibiting platelet aggregation in rats in vitro and ex vivo. They were prepared by the following reactions: NaBH4 reduction of 2,4-dichlorothienopyrimidines, followed by ethoxycarbonylmethylation and successive amination. Most of the compounds were found to be potent inhibitors of blood platelet aggregation. Structure-activity relationships indicated the essential contribution of the lactam structure and lipophilic substituents on the thiophene ring to the effective interaction of the compounds with a receptor site on the platelet. Among the compounds studied, 1,2,3,5,6,7,8,9-octahydro[1]benzothieno[1,2-d]imidazo[1,2-a]pyrimidin-2-one exhibited the most favorable activity.

Journal of Medicinal Chemistry published new progress about Blood platelet. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Recommanded Product: 2,4-Dichlorothieno[2,3-d]pyrimidine.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Ta-Shma, Rachel’s team published research in Tetrahedron in 2006-06-05 | 15837-41-9

Tetrahedron published new progress about Autoxidation. 15837-41-9 belongs to class pyrimidines, and the molecular formula is C4H4N2O2, Safety of 5-Hydroxypyrimidin-4(3H)-one.

Ta-Shma, Rachel; Torres, Avital; Chevion, Mordechai; Breuer, Eli; Quntar, Abed Al Aziz; Enk, Claes D.; Srebnik, Morris published the artcile< An autoxidation study of C2 substituted pyrimidine amino reductones>, Safety of 5-Hydroxypyrimidin-4(3H)-one, the main research area is autoxidation pyrimidine amino reductone.

Three pyrimidine derivatives I (R = Me, H, SMe) , differing from isouramil(I; R = OH) and divicine (I; R = NH2) at C2, were synthesized and their autoxidation rates measured spectrophotometrically. The autoxidation rates of all five pyrimidines were correlated with σ p + values (rho = -1.28, r2 = 0.949).

Tetrahedron published new progress about Autoxidation. 15837-41-9 belongs to class pyrimidines, and the molecular formula is C4H4N2O2, Safety of 5-Hydroxypyrimidin-4(3H)-one.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Liu, Kevin G’s team published research in Journal of Medicinal Chemistry in 2020-05-28 | 18740-39-1

Journal of Medicinal Chemistry published new progress about Autoimmune disease. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Electric Literature of 18740-39-1.

Liu, Kevin G.; Kim, Ji-In; Olszewski, Kellen; Barsotti, Anthony M.; Morris, Koi; Lamarque, Christophe; Yu, Xuemei; Gaffney, Jack; Feng, Xiao-Jiang; Patel, Jeegar P.; Poyurovsky, Masha V. published the artcile< Discovery and Optimization of Glucose Uptake Inhibitors>, Electric Literature of 18740-39-1, the main research area is glucose transporters inhibitors GLUT1 GLUT3 bioavailable ADME SAR.

Aerobic glycolysis, originally identified by Warburg as a hallmark of cancer, has recently been implicated in immune cell activation and growth. Glucose, the starting material for glycolysis, is transported through the cellular membrane by a family of glucose transporters (GLUTs). Therefore, targeting glucose transporters to regulate aerobic glycolysis is an attractive approach to identify potential therapeutic agents for cancers and autoimmune diseases. Herein, we describe the discovery and optimization of a class of potent, orally bioavailable inhibitors of glucose transporters, targeting both GLUT1 and GLUT3.

Journal of Medicinal Chemistry published new progress about Autoimmune disease. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Electric Literature of 18740-39-1.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Spiteller, G’s team published research in Monatshefte fuer Chemie in 1961 | 3286-55-3

Monatshefte fuer Chemie published new progress about 3286-55-3. 3286-55-3 belongs to class pyrimidines, and the molecular formula is C5H6ClN3O, Related Products of 3286-55-3.

Spiteller, G.; Bretschneider, H. published the artcile< Preparation of 2,6-disubstituted 4-sulfanilamidopyrimidines>, Related Products of 3286-55-3, the main research area is .

Crude 2,6-dichloro-4-aminopyrimidine (I) (21.2 g.) was treated portionwise with 50 ml. NaOMe (3.14 g. Na) at 35°, the mixture heated 1 hr. at 50° with stirring, MeOH distilled in vacuo at 40°, and the residue treated with 30 ml. H2O yielded after filtration 14.2 g. 2-methoxy-4-amino-6-chloropyrimidine (II), m. 130° (H2O), sublimable at 120° (0.5 mm.). CaCO3Pd catalyst (1.3 g.) hydrogenated in 10 ml. absolute MeOH was added to 798 mg. II in 35 ml. absolute methanolic NaOH and the mixture hydrogenated to yield 510 mg. 2-methoxy-4-aminopyrimidine, m. 160-7°; mixed m.p. with authentic material gave no depression. II (13.4 g.) was treated with 20 ml. NaOMe (113 mg. Na/ml.) and 10 ml. 90% EtSH, the mixture heated 2 hrs. at 100° in an autoclave, cooled, MeOH and excess EtSH distilled in vacuo, the residue treated with 20 ml. H2O, the oil obtained dissolved in 150 ml. Et2O, washed with H2O, dried, evaporated, and petr. ether added to give 13.1 g. 2-methoxy-4-amino-6-ethylthiopyrimidine (III), m. 83-4°, b0.5 140°. I (24.6 g.) was treated with 20 ml. EtSH, 48 ml. absolute MeOH, and 3.75 g. Na, the mixture heated 1 hr. in an autoclave at 50°, MeOH and excess EtSH distilled in vacuo at 50°, the residue taken up in 20 ml. H2O and 200 ml. Et2O, washed with H2O, the Et2O solution dried, and 2-ethylthio-4-amino-6-chloropyrimidine (IV) precipitated with petr. ether, m. 78-79°, b0.5 130°. Crude IV (17.5 g.) was treated with 30 ml. NaOMe solution (containing 2.1 g. Na) in an autoclave 2 hrs. at 100°, the mixture evaporated, and the residue treated with H2O to give 2-ethylthio-4-amino-6-methoxy pyrimidine (V), m. 117-18° (Et2O), b0.5 135-40°. I (8.4 g.) treated in an autoclave with 20 ml. EtSH and 38 ml. NaOMe (2.8 g. Na) and heated 6 hrs. at 110° gave 2,6-bis(ethylthio)-4-aminopyrimidine (VI), m. 72-3° (petr. ether), b0.5 155-60°. I (8.2 g.) treated with 60 ml. absolute CH2:CHCH2OH and 4 g. Na 2 hrs. at 100° yielded after evaporation in vacuo 2,6-diallyl-4-aminopyrimidine (VII), m. 48-53° (Et2O-petr. ether), b0.5 120-30°. Na (5.5 g.) in 60 ml. HOCH2CH2OMe was heated 3 hrs. at 100° with 16 g. crude I in an autoclave, the mixture evaporated in vacuo, the residue extracted with 500 ml. C6H6, the extract washed neutral with H2O, boiled with active C, filtered, and freed of solvent to give 2,6-bis(β-methoxyethoxy)-4-aminopyrimidine (VIII), m. 84-5° (MeOH-Et2O), and a compound, m. 63-4°. Freshly distilled PhNH2 (92 g.), 150 ml. Et2O, and 100 ml. H2O was treated dropwise with 108 g. ClCO2Et in 50 ml. Et2O at 5°, 54 g. ClCO2Et, then 40 g. NaOH in 60 ml. H2O added by a dropping funnel, the mixture stirred 15 min., the precipitate separated and extracted with Et2O, freed of solvent, and the residue distilled in vacuo to give 90% phenylurethan (IX), b11 145-6°, m. 53° (H2O). To 250 ml. HSO3Cl cooled with an ice-salt mixture was added in 5 g. portions 80 g. IX, the temperature was held at 5° maximum, the mixture stirred 15 min. at 5°, left overnight, heated 1 hr. at 75-80° on a water bath, cooled, poured on ice, the precipitated crystals filtered off, washed with NaHCO3 solution and H2O, extracted in 600 ml. C6H6, and the extract filtered hot gave 46 g. N4-carbethoxysulfanilic chloride (X), m. 103° (C6H6). The aminopyrimidines were converted to compounds of the general formula R3NHC6H4SO2NHC:-N.CR2:N.CR1:CH (Xa) by treatment with 5-10% excess X in 2.5 times absolute C5H5N. The mixture was kept briefly at room temperature, heated 1 hr. at 70-80°, C5H5N evaporated in vacuo, the residue treated with 10% NaHCO3, and the precipitated Na salt dissolved in excess H2O to give, after filtration and acidification of the filtrate, the acylated sulfonamide. V yielded 94% Xa (R1 = EtS, R2 = MeO, R3 = EtOCO) (XI), m. 172-3° (EtOH); III gave 82% Xa (R1 = MeO, R2 = EtS, R3 = EtOCO) (XII), m. 188-9° (EtOH); VI yielded 88% Xa (R1 = R2 = EtS, R3 = EtOCO) (XIII), m. 167-8° (EtOH); VII gave 94% Xa (R1 = R2 = CH2:CHCH2OH, R3 = EtOCO) (XIV), m. 164-5° (EtOH); and VIII yielded 60% Xa (R1 = R2 = MeOCH2CH2O, R3 = MeCO) (XV), m. 164-5° (MeOH). The acylsulfonamides were hydrolyzed by heating 1 hr. in 5 moles N NaOH on a water bath and the cooled solution neutralized by dropwise addition of 50% AcOH to give sulfonamides of the general formula H2NC6H4SO2NHC:N.CR2:N.CR’:CH (XVa). XI yielded 97% XVa (R1 = EtS, R2 = MeO), m. 178-9°; XII gave 75% XVa (R1 = MeO, R2 = EtS), m. 181-2°; XIII gave 94% XVa (R1 = R2 = EtS), m. 176-7°; XIV yielded 90% XVa (R1 = R2 = CH2:CHCH2O), m. 163-4°; and XV gave XVa (R1 = R2 = MeOCH2CH2O) (XVI). XVI was converted to the appropriate Ag salt, m. 262-4° (decomposition). The Ag salt of XVI was treated with H2S and the precipitated Ag2S filtered off, and the solution evaporated in vacuo. The residue was treated with Ac2O in C5H5N 2 days at room temperature and 20 min. on a water bath, freed of solvent, and poured into Na2CO3 solution, filtered, and the filtrate neutralized with AcOH to give XV. The Na salt of XV was not obtained in a pure form.

Monatshefte fuer Chemie published new progress about 3286-55-3. 3286-55-3 belongs to class pyrimidines, and the molecular formula is C5H6ClN3O, Related Products of 3286-55-3.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Matyugina, Elena’s team published research in Chemical Biology & Drug Design in 2016 | 4956-05-2

Chemical Biology & Drug Design published new progress about Mycobacterium tuberculosis. 4956-05-2 belongs to class pyrimidines, and the molecular formula is C3H2BrN3O2, Product Details of C3H2BrN3O2.

Matyugina, Elena; Novikov, Mikhail; Babkov, Denis; Ozerov, Alexander; Chernousova, Larisa; Andreevskaya, Sofia; Smirnova, Tatiana; Karpenko, Inna; Chizhov, Alexander; Muthu, Pravin; Lutz, Stefan; Kochetkov, Sergei; Seley-Radtke, Katherine L.; Khandazhinskaya, Anastasia L. published the artcile< 5-Arylaminouracil Derivatives: New Inhibitors of Mycobacterium tuberculosis [Erratum to document cited in CA163:608335]>, Product Details of C3H2BrN3O2, the main research area is erratum arylaminouracil preparation Mycobacterium tuberculosis tuberculostatic.

On page 1387, the tenth author’s name was misspelled; the corrected name is Pravin Muthu.

Chemical Biology & Drug Design published new progress about Mycobacterium tuberculosis. 4956-05-2 belongs to class pyrimidines, and the molecular formula is C3H2BrN3O2, Product Details of C3H2BrN3O2.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Babu,SanguJagadish’s team published research in Organic Chemistry: Current Research in 2016 | 18740-39-1

Organic Chemistry: Current Research published new progress about Antibacterial agents. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Safety of 2,4-Dichlorothieno[2,3-d]pyrimidine.

Prabhakar, Virupakshi; Babu, Sangu Jagadish; Jyothi, Sangu V. N. Lalitha Siva; Lahari, Sangu V. N.; Bandi, Venkateswarlu published the artcile< Synthesis, structural elucidation and anti-bacterial evaluation of some novel heterocyclic molecules derived from thieno[2,3-d]pyrimidine as a core unit>, Safety of 2,4-Dichlorothieno[2,3-d]pyrimidine, the main research area is thienopyrimidinepyrazole preparation antibacterial antifungal.

A series of novel 4-(3,5-dimethyl-1H-pyrazol-1-yl)-2-substituted phenyl/heterocyclic thieno[2,3-d]pyrimidine derivatives I (R = Ph, 4-MeC6H4, 4-MeOC6H4, etc.) were synthesized by a facile five-step procedure that afforded advantages of mild reaction conditions, simple protocol and good yields. The final compounds were screened for their anti-bacterial activity against Bacillus subtilis and Staphylococcus aureus from Gram pos. group of bacteria and Escherichia coli and Klebsiella pneumonia from Gram neg. group of bacteria and antifungal activity against Candida albicans and Aspergillus flavus. Anti-bacterial and anti-fungal activities were evaluated and compared with the standard drugs such as amoxicillin and ketoconazole. From anti-bacterial and antifungal activity screening results, it has been observed that compounds I (R = thiophen-2-yl, indol-5-yl, 4-F3CC6H4, pyridin-3-yl) possess good activity.

Organic Chemistry: Current Research published new progress about Antibacterial agents. 18740-39-1 belongs to class pyrimidines, and the molecular formula is C6H2Cl2N2S, Safety of 2,4-Dichlorothieno[2,3-d]pyrimidine.

Referemce:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia