Downstream synthetic route of 4494-18-2

4494-18-2, As the paragraph descriping shows that 4494-18-2 is playing an increasingly important role.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.4494-18-2,1-Isoquinolinecarboxaldehyde,as a common compound, the synthetic route is as follows.

The compound (80 mg) obtained in Example 47-3 was dissolved in methanol (5.0 ml) and added with the compound (59.9 mg) obtained in Example 63-1, followed by the addition of sodium cyanoborohydride (35.9 mg). Then, the reaction solution was adjusted to about pH 5 with acetic acid, followed by stirring at room temperature for 14 hours. The reaction solution was added with a saturated aqueous sodium bicarbonate solution and then extracted with chloroform. The organic layer was washed with saturated saline solution and then dried with anhydrous sodium sulfate. Subsequently, the solvent was distilled off. The resulting crude product was purified through silica gel column chromatography (chloroform/methanol) and treated with hydrochloric acid, thereby obtaining hydrochloride (97.1 mg) of the subject compound as a white solid. MS(FAB,Pos.):m/z=561[M+H]+1H-NMR(500MHz,DMSO-d6):delta=0.87(6H,t,J=7.4Hz),1.67-1.78(4H,m),2.86-2.93(4H,m),3.92(2H,s),4.25-4.26(2H,m),4.36(2H,s),4.78(2H,brs),7.57-7.65(6H,m),7.81-7.86(4H,m),7.95(1H,brs),8.11(1H,brs),8.23(1H,brs),8.48-8.52(1H,m),8.62(1H,d,J=6.2Hz),10.34(1H,s),10.48(1H,brs).

4494-18-2, As the paragraph descriping shows that 4494-18-2 is playing an increasingly important role.

Reference£º
Patent; Kureha Chemical Industry Co., Ltd.; EP1550657; (2005); A1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Simple exploration of 1198-30-7

1198-30-7 1-Isoquinolinecarbonitrile 306057, aisoquinoline compound, is more and more widely used in various fields.

1198-30-7, 1-Isoquinolinecarbonitrile is a isoquinoline compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

1198-30-7, A solution of isoquinoline-1-carbonitrile (Intemediate H1) (commercially available from Aldrich) (4.40 g, 28.5 mmol) in THF at 0 C. was treated with methylmagnesium bromide (20 mL, of a 3M soln in ether) for 3 h. (see procedure found in Vacher, B. et al J. Med. Chem. 1998 41, 5070; incorporated herein by reference). The mixture was quenched with a sat. solution of NH4Cl and stirred for 3 h at rt. The aqueous layer was basified with NaOH and extracted with ethyl acetate. The organic layers were dried over MgSO4, filtered and concentrated under reduced pressure. The material was purified by chromatography on silica gel with 10% ethyl acetate: hexane to give 1-isoquinolin-1-yl-ethanone (Intermediate H2) 3.65g (75%). A mixture of 4-iodo-1-tritylimidazole (commercially available) (15.5 g, 35.4 mmol) in dichloromethane (80 mL) at 20 C. was treated with ethyl magnesium bromide (12.0 mL, 36 mmol, 3M in ether) and allowed to react for 1 h. A solution of 1-isoquinolin-1-yl-ethanone (Intermediate H2) (3.65 g, 21.3 mmol) in dichloromethane (20 mL) was added via addition funnel at 20 C. and stirred for 16 h. The mixture was quenched with sat. ammonium chloride (100 mL) and diluted with dichloromethane. The residue was isolated in an aqueous workup. The product was extracted with CH2Cl2 and purified by chromatography on silica gel with 5% NH3-MeOH: CH2Cl2 to give 1-isoquinolin-1-yl-1-(1-trityl-1H-imidazol-4-yl)-ethanol (Intermediate H3) as a solid. 1-Isoquinolin-1-yl-1-(1-trityl-1H-imidazol-4-yl)-ethanol (Intermediate H3) was subjected to TFA: trifluoroacetic acid, Pd/C under hydrogen similar to the catalytic reduction procedure of Method D to remove the trityl group and produced 1-1H-imidazol-4-yl)-isoquinolin-1-yl ethanol (Intermediate H4). 1-1H-Imidazol-4-yl)-isoquinolin-1-yl ethanol (Intermediate H4). (21 mmol) in dichloromethane (100 mL) was treated with triethylamine (24.0 mL, 172 mmol) at 0 C. Methanesulfonyl chloride (6.1 mL, 75 mmol) was added via syringe and the mixture was stirred for 2 h. The mixture was subjected to an aqueous work-up. The crude material was purified by chromatography on silica gel with 20% EtOAc: hexane to 5% NH3-MeOH: dichloromethane to give 1-[1-(1-methanesulfonyl-1H-imidazol-4-yl)-vinyl]-isoquinoline (Intermediate H5) 3 g. 1-[1-(1-Methanesulfonyl-1H-imidazol-4-yl)-vinyl]-isoquinoline (Intermediate H5) was subjected to the catalytic reduction procedure found in Method D to produce 1-[1-(1-methanesulfonyl-1H-imidazol-4-yl)-ethyl]-isoquinoline (Intermediate H6). Methanesulfonyl-1H-imidazol-4-yl)-ethyl]-isoquinoline (Intermediate H6) in ethanol and 2M HCl was heated at reflux for 18 h. The mixture was cooled to rt and basified with NaOH solid. The aqueous layer was extracted with isopropanol:chloroform (3:1). The organic fractions were dried over MgSO4, filtered and concentrated onto silica gel. The product, 1-[1-(1H-imidazol-4-yl)-ethyl]-isoquinoline (Intermediate H7) was eluted from a column of silica gel with 3 to 5% NH3-MeOH: CH2Cl2. 1-[1-(1H-Imidazol-4-yl)-ethyl]-isoquinoline (Intermediate H7) was subjected to the appropriate process steps in Method A to produce 4-(1-isoquinolin-1-yl-ethyl)-1,3-dihydro-imidazole-2-thione (Compound 13) 1H NMR (300 MHz, DMSO-d6): delta11.9 (s, 1H), 11.6 (s, 1H), 8.42 (dd, J=5.4, 2.7 Hz, 1H), 8.31 (d, J=8.1 Hz, 1H), 7.96 (d, J=8.1 Hz, 1H), 7.78-7.64 (m, 3H), 6.40 (s, 1H), 5.0 (q, J=6.9 Hz, 1H), 1.59 (d, J=6.9 Hz, 3H).

1198-30-7 1-Isoquinolinecarbonitrile 306057, aisoquinoline compound, is more and more widely used in various fields.

Reference£º
Patent; Allergan, Inc.; US2006/69143; (2006); A1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Some tips on 374554-54-8

As the paragraph descriping shows that 374554-54-8 is playing an increasingly important role.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.374554-54-8,5-Amino-1-chloroisoquinoline,as a common compound, the synthetic route is as follows.

EXAMPLE 64B N-[(4-bromophenyl)methyl]-N’-(1-chloroisoquinolin-5-yl)urea The product from Example 64A (520 mg, 2.91 mmol) in toluene (8 mL) was treated with 1-bromo-4-(isocyanatomethyl)benzene (0.41 mL, 2.93 mmol) with stirring and then the mixture was heated at 90 C. for 2 hours. The mixture was allowed to cool to room temperature, filtered, the filter cake washed with toluene, and air-dried to provide the title compound as an off-white solid (717 mg, 63%). 1H NMR (300 MHz, DMSO-d6) delta 8.89 (s, 1H), 8.34-8.37 (m, 2H), 8.00 (dd, J=6.1 Hz, 0.7 Hz, 1H), 7.92-7.95 (m, 1H), 7.73 (t, J=8.1, 1H), 7.53-7.56 (m, 2H), 7.30-7.33 (m, 2H), 7.12 (t, J=5.8 Hz, 1H), 4.35 (d, J=5.8 Hz, 2H); MS (ESI+) m/z 390/392 (M+H+, 35Cl/37Cl)., 374554-54-8

As the paragraph descriping shows that 374554-54-8 is playing an increasingly important role.

Reference£º
Patent; Abbott Laboratories; US6933311; (2005); B2;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Brief introduction of 18881-17-9

The synthetic route of 18881-17-9 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.18881-17-9,(S)-(1,2,3,4-Tetrahydroisoquinolin-3-yl)methanol,as a common compound, the synthetic route is as follows.,18881-17-9

Step A: Benzyl (3S)-3-(hydroxymethyl)-3,4-dihydro-1H-isoquinoline-2-carboxylate This compound is obtained using a protocol from the literature (R. B. Kawthekar et al South Africa Journal of Chemistry 63, 195, 2009) starting from 15 g of (3S)-1,2,3,4-tetrahydroisoquinolin-3-ylmethanol (91.9 mmol) in the presence of benzyl chloroformate and triethylamine in solution in dichloromethane. After purification by chromatography over silica gel using petroleum ether and ethyl acetate as eluants, the title product is obtained in the form of an oil. 1H NMR: delta (300 MHz; DMSO-d6; 300K): 7.33 (m, 5H, aromatic Hs, O-benzyl); 7.15 (s, 4H, aromatic Hs, H tetrahydroisoquinoline); 5.13 (s, 2H, CH2-Ph); 4.73 (d, 1H, H tetrahydroisoquinoline); 4.47 (m, H, CH2OH); 4.36 (m, 1H, H tetrahydroisoquinoline); 4.28 (d, 1H, H tetrahydroisoquinoline); 3.39 (dd, 1H, CH2OH); 3.23 (dd, 1H, CH2OH); 2.93 (dd, 1H, H tetrahydroisoquinoline); 2.86 (dd, 1H, H tetrahydroisoquinoline) IR: nu: OH: 3416 cm-1; nu: C-H: 754 cm-1

The synthetic route of 18881-17-9 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; LE TIRAN, Arnaud; LE DIGUARHER, Thierry; STARCK, Jerome-Benoit; HENLIN, Jean-Michel; GUILLOUZIC, Anne-Francoise; DE NANTEUIL, Guillaume; GENESTE, Olivier; FEJES, Imre; TATAI, Janos; NYERGES, Miklos; DAVIDSON, James Edward Paul; MURRAY, James Brooke; CHEN, I-Jen; DURAND, Didier; US2015/31673; (2015); A1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Brief introduction of 34784-04-8

The synthetic route of 34784-04-8 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.34784-04-8,5-Bromoisoquinoline,as a common compound, the synthetic route is as follows.

To a solution of n-butyllithium (19.3 mL of 2.5 M in hexanes, 48 mmol) in a mixture of ether (80 mL) and THF (80 mL) at -78¡ã C. was added dropwise a solution of bromoisoquinoline (5.0 g, 24 mmol) in THF (10 mL). The reaction mixture was stirred at -78¡ã C. under argon for 30 minutes. Following the general procedures described by Pearson, et al., in J. Heterocycl. Chem., Vol. 6 (2), pp. 243-245 (1969), a solution of DMF (3.30 g, 45 mmol) in THF (10 mL) was cooled to -78¡ã C. and quickly added to the isoquinolyllithium solution. The mixture was stirred at -78¡ã C. for 15 minutes. Ethanol (20 mL) was added followed by saturated NH4Cl solution. The resulting suspension was warmed to room temperature. The organic layer, combined with the ether extraction layer, was dried over Na2SO4. A pale yellow solid (2.4 g, 15 mmol, 64percent yield) was obtained from chromatography (SiO2 Type-H, 50percent EtOAc in hexanes) and recrystallization (ethanol): mp 114-116¡ã C.; 1H NMR (DMSO-d6) delta 10.40 (s, 1H), 9.44 (s, 1H), 8.85 (d, 1H, J=6.0 Hz), 8.69(d, 1H, J=6.0 Hz), 8.45 (m, 2H), 7.90 (t, 1H, J=7.2 Hz); 13C NMR (DMSO-d6) delta 194.23, 153.5, 146.2, 140.2, 135.2, 132.6, 130.2, 128.6, 127.5, and 117.2. Anal. Calcd. for C10H7NO.0.05H2O: C, 75.99; H, 4.53; N, 8.86. Found: C, 75.98, H, 4.66; N, 8.68., 34784-04-8

The synthetic route of 34784-04-8 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; DarPharma, Inc.; US2007/155720; (2007); A1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Brief introduction of 51206-40-7

The synthetic route of 51206-40-7 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.51206-40-7,1,4-Dibromoisoquinoline,as a common compound, the synthetic route is as follows.,51206-40-7

A solution of 1 ,4- dibromoisoquinoline (230 mg, 0.8 mmol), 4-methoxybenzene sulfonamide (300 mg, 1.6 mmol), Cul (60 mg, 0.3 mmol), K2C03 (1.18 g, 8.5 mmol), and N1 ,N2 -dimethylethane-1 ,2-diamine (142 mg, 1.6 mmol) in MeCN (6 ml.) was heated at 70 C for 7 days. On completion, the reaction mixture was quenched with H20 (20 ml_), and the yellow-colored solid was collected by filtration. The collected solid was washed with Et20 (10 ml.) and dried to yield the title compound.

The synthetic route of 51206-40-7 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS; MOORE, Terry; LAZZARA, Phillip; DAVID, Brian; RICHARDSON, Benjamin; JAIN, Atul, D.; (87 pag.)WO2019/195348; (2019); A1;,
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Analyzing the synthesis route of 105627-79-0

The synthetic route of 105627-79-0 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.105627-79-0,Isoquinoline-5-sulfonyl chloride hydrochloride,as a common compound, the synthetic route is as follows.

A suspension of isoquinoline-5-sulfonyl chloride hydrochloride (0.83 g in 50 ml of pyridine, 3.1 mmol) was added dropwise to a stirring solution of 1-(4-aminobutyl)-2-butyl-1H-imidazo[4,5-c]quinoline-4-amine (1.0 g, 3.2 mmol) and dichloromethane (175 ml). The solution turned a bright yellow color and was maintained at room temperature for 4 hours. An additional 0.18 g of isoquinoline-5-sulfonyl chloride hydrochloride was added and the reaction was maintained an additional 60 hours. The yellow solution was concentrated in vacuo, dissolved in dichloromethane, and washed sequentially with saturated aqueous sodium bicarbonate and water. The organic fraction was dried (MgSO4), filtered, and concentrated in vacuo. The residue was purified by flash column chromatography (silica gel, 9:1 dichloromethanemethanol) to provide 0.7 g of N5-[4-(4-amino-2-butyl-1H-imidazo[4,5-c]quinolin-1-yl)butyl]-5-isoquinolinesulfonamide as a white crystalline solid, m.p. 96.0 C. (decomposition). 1H NMR (300 MHz, DMSO-d6) delta 9.44 (d, J=0.7 Hz, 1H), 8.64 (d, J=6.1 Hz, 1H), 8.41-8.35 (m, 2H), 8.30 (dd, J=7.4, 1.2 Hz, 1H), 8.11 (t, J=5.6 Hz, 1H), 7.92 (d, J=7.6 Hz, 1H), 7.75 (t, J=7.7 Hz, 1H), 7.61 (dd, J=8.3, 1.2 Hz, 1H), 7.41 (dt, J=7.7, 1.2 Hz, 1H), 7.22 (dt, J=7.6, 1.2 Hz, 1H), 6.47 (broad s, 2H), 4.38 (t, J=7.5 Hz, 2H), 2.86-2.74 (m, 4H), 1.78-1.63 (m, 4H), 1.50-1.34 (m, 4H), 0.94 (t, J=7.4 Hz, 3H); MS (EI) m/e 502.2151 (502.2151 calcd for C27H30N6O2S). Anal calcd for C27H30N6O2S: C, 64.52; H, 6.02; N, 16.72. Found: C, 64.03; H, 6.03; N, 16.55., 105627-79-0

The synthetic route of 105627-79-0 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; 3M Innovative Properties Company; US6677349; (2004); B1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Downstream synthetic route of 36034-54-5

The synthetic route of 36034-54-5 has been constantly updated, and we look forward to future research findings.

36034-54-5, 4-Methoxyisoquinoline is a isoquinoline compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

6-Chloro-1, 3-Oxazino [5,6-c] isoquinoline was prepared by the procedure of Miyoko Toyama and Hirotaka Otomasu starting from1-chloro-4-hydroxy isoquinoline. The starting material: 1-chloro-4-hydroxy isoquinoline (Example 226c) was prepared by the synthetic sequence shown above. MCPBA oxidation of 4-methoxy isoquinoline (Example 222a) was carried as usual to give 79.1% of the corresponding N-oxide (Example 226a). The material was converted into the 1-chloro derivative immediately afterward in POCI3 to give the chloride (Example 226b) in essentially quantitative yield. The crudel-chloro-4-methoxy isoquinoline was de-methylated in BBr3 at room temperature to give the corresponding 1-chloro-4-hydroxy isoquinoline (Example 226c) after treating the crude BBr3 mixture with anhydrous methanol at room temperature, followed by evaporation to get rid of excess of borate residues. The reaction of Miyoko Toyama and Hirotaka Otomasu gave 266mg of 6-chloro-1, 3- oxazino [5,6-c] isoquinoline (Example 226d, 62.3%) overall yield from 300mg of 4- methoxy isoquinoline in 4 steps. LC/MS Rt-min([M-HCHO] H+) [method D]: 2.45(192).’H NMR (400 MHz, CHLOROFORM-D)8 ppm 5.02 (s, 2 H) 5.41 (s, 2 H) 7.68 (m, 1 H) 7.77 (ddd, J=8. 25,6. 91,1. 22 Hz, 1 H) 8.10 (d, J=8. 31 Hz, 1 H) 8.26 (d, J=8. 56 Hz,1 H). The chloride was found to be unreactive under the alkylation protocol of Example 184. The corresponding 6-fluoro-1, 3-oxazino [5,6-c] isoquinoline (Example 226) was prepared by the method of [Uchibori, Y.; Umeno, M.; Yoshiokai, H.; Heterocycles, 1992,34 (8),1507-1510] cited earlier. The reaction was not allowed to go to completion, and the crude reaction mixture was recovered as a mixture of ratio of 1: 2.4 (Cl : F). Without further purification, the chloride/fluoride mixture was alkylated with the tripeptide using the procedure of Example 184 to give 66mg (50.0%) of BOCNH-P3(L-t-BuGly)-P2 [ (4R)- ( 1, 3-oxazino [5,6-c] isoquinoline-6-oxo)-S-proline]-P1 (lR, 2S VinylAcca)-CONHSO2Cyclopropane after preparative HPLC purification. LC/MS Rt-min(MNa+) [method D]: 3.03(764).’H NMR (400 MHz, CD30D)8 ppm 1.01 (s, 9 H) 1.06 (dd, J=8. 07,1. 96 Hz, 2 H) 1.22 (s, 10 H) 1.34 (d, J=6. 11 Hz,1 H) 1.42 (m, 1 H) 1.86 (dd, J=8. 07,5. 38 Hz,1 H) 2.23 (m, 2 H) 2.59 (dd,J=13. 82,6. 97 Hz,1 H) 2.93 (m,1 H) 4.03 (dd,J=11. 86,3. 06 Hz,1 H) 4.23 (s, 1 H) 4.41 (d,J=11. 98 Hz,1 H) 4.50 (dd, J=9. 66,6. 97 Hz,1 H) 4.87 (m, 2 H) 5.11 (d, J=10. 52 Hz, 1 H) 5.28 (d,J=17. 12 Hz,1 H) 5.34 (s, 2 H) 5.74 (m, 2 H) 7.51 (t, J=7. 46 Hz,1 H) 7.70 (t, J=7. 58 Hz,1 H) 7.95 (d, J=8. 31 Hz, 1 H) 8.12 (d, J=8. 31 Hz,1 H)., 36034-54-5

The synthetic route of 36034-54-5 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; BRISTOL-MYERS SQUIBB COMPANY; WO2003/99274; (2003); A1;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Brief introduction of 105627-79-0

105627-79-0, The synthetic route of 105627-79-0 has been constantly updated, and we look forward to future research findings.

105627-79-0, Isoquinoline-5-sulfonyl chloride hydrochloride is a isoquinoline compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

EXAMPLE 3 In 100 ml of ice water was dissolved 10.56 g of 5-isoquinolinesulfonyl chloride hydrochloride, and the pH of the solution was adjusted to 6 with a saturated aqueous sodium hydrogencarbonate solution, followed by extraction with 100 ml of dichloromethane. The dichloromethane layer was added dropwise to a 100 ml of dichloromethane solution containing 8.7 g of N-hexylethanolamine and 6.1 g of triethylamine over 20 minutes while cooling with ice. The mixture was stirred at a temperature of 15 C. to 20 C. for 3 hours, washed with water, and dried with anhydrous magnesium sulfate. Then, thedichloromethane was removed under reduced pressure to obtain an oily residue. The thus obtained oily residue was subjected to purification by silica gel column chromatography (Wacogel C-200, 200 g; solvent: a 5% methanol solution in chloroform) to obtain 5.24 g of N-hexyl-N-(2-hydroxyethyl)-5-isoquinolinesulfonamide.

105627-79-0, The synthetic route of 105627-79-0 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; Asahi Kasei Kogyo Kabushiki Kaisha; US4798897; (1989); A;,
Isoquinoline – Wikipedia
Isoquinoline | C9H7N – PubChem

 

Simple exploration of 13130-79-5

13130-79-5, 13130-79-5 1-Bromoisoquinolin-3-amine 289845, aisoquinoline compound, is more and more widely used in various fields.

13130-79-5, 1-Bromoisoquinolin-3-amine is a isoquinoline compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

To a solution of 1-bromoisoquinolin-3-amine (200 mg, 0.897 mmol, Maybridge Chemical Co., Altrincham, UK) in tetrahydrofuran (5 mL) at rt was added sodium bis(trimethylsilyl)amide (1M solution in tetrahydrofuran, 1.79 mL, 1.79 mmol). The mixture was stirred for 10 mm before a solution of Boc-anhydnde (0.208 mL, 0.897 mmol) in THF (1 mL) was added. The reaction mixture was stirred for 5 mm before being diluted with sat. aq. NH4C1 (50 mL) and EtOAc (50 mL). The organic layer was separated, dried over Na2SO4, filtered, and concentrated. Purification by silica gel column chromatography eluting with 0-20% EtOAc in heptane afforded tert-butyl (1-bromoisoquinolin-3-yl)carbamate. m/z (ESI, +ve) 345.0 (M+Na)t

13130-79-5, 13130-79-5 1-Bromoisoquinolin-3-amine 289845, aisoquinoline compound, is more and more widely used in various fields.

Reference£º
Patent; AMGEN INC.; LANMAN, Brian Alan; CEE, Victor J.; PICKRELL, Alexander J.; REED, Anthony B.; YANG, Kevin C.; KOPECKY, David John; WANG, Hui-Ling; LOPEZ, Patricia; ASHTON, Kate; BOOKER, Shon; TEGLEY, Christopher M.; (303 pag.)WO2018/119183; (2018); A2;,
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Isoquinoline | C9H7N – PubChem