Structure of 1315051-74-1
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The BI-3802 was designed by Boehringer Ingelheim and could be obtained free of charge through the Boehringer Ingelheim open innovation portal opnMe.com, associated with its negative control.
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Batch number can be found on the product's label following the word 'Batch'.
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CAS No. : | 1315051-74-1 |
Formula : | C6H11NO3 |
M.W : | 145.16 |
SMILES Code : | O=C([C@H]1N(C)CCOC1)O |
GHS Pictogram: |
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Signal Word: | Warning |
Hazard Statements: | H302-H315-H319-H335 |
Precautionary Statements: | P261-P264-P270-P271-P280-P301+P312-P302+P352-P304+P340-P305+P351+P338-P330-P332+P313-P337+P313-P362-P403+P233-P405-P501 |
* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.
Yield | Reaction Conditions | Operation in experiment |
---|---|---|
With hydrogen;palladium hydroxide on carbon; In ethanol; at 20℃; for 24h; | EXAMPLE 19: 4-methyl-morpholine-3 (S) -carboxylic acid (6- CHLORO-9H-ss-CARBOLIN-8-YL)-AMIDE [00158] A slurry of morpholine-3 (S) -carboxylic acid (3.00 g, 22.9 mmol) in EtOH (115 ml) was stirred at RT. A solution of aqueous CH2O (3.42 ml, 45.8 mmol, 37% w/w in H20) was added, followed by Pd (OH) 2 (600 mg, 20% w/w on charcoal). The flask was charged with hydrogen (1 atm) and the grey slurry was stirred for 24 hr at RT under a balloon of hydrogen. The flask was purged with nitrogen and the black slurry was diluted with MeOH, filtered through filter paper and concentrated to a reduced volume. The pale grey solution was filtered through a 0.45 um syringe filter to remove residual Pd (OH) 2 and concentrated to yield a clear colorless oil. The oil was placed under high vacuum for 24 hr and a white, solid foam was isolated. The foam was dissolved in pyridine (200 ml) and 6-CHLORO-9H-P-CARBOLIN- 8-ylamine (3.74 g, 17.2 mmol) was added, followed by EDCI (5. 87 g, 30.6 mmol). The clear pale orange solution was stirred at RT for 24 hr. The solution was diluted with H20 (300 ml) and poured into a separatory funnel containing EtOAc (300 ml). The mixture was shaken and the layers were separated. The aqueous layer was extracted with EtOAc (3 x 150 ml) and the combined organic layers were washed with H2O and brine. The organic layer was dried, filtered and concentrated to yield a brown oil which was placed under high vacuum. The resulting brown foam was triturated with MeOH and the precipitate which formed was filtered and washed with MeOH. The resulting pale yellow solid was purified via chiral HPLC to yield a white solid (3.23 g). 1H-NMR (300 MHz, DMSO-d6): 5 11.36 (s, 1); 10.02 (s, 1) ; 9.04 (s, 1); 8.38 (d, 1); 8.22-8. 21 (m, 1); 8.15 (d, 1); 7.91-7. 90 (m, 1); 4.00 (dd, 1); 3.85-3. 81 (m, 1); 3.69 - 3. 58 (m, 2); 2.99-2. 95 (dd, 1); 2.89-2. 85 (m, 1); 2.32 (s, 3); 2.32-2. 24 (m, 1). NH40Ac standard conditions. DAD Rf = 1.89 min. M+H = 345. Chiral preparative HPLC: 10% v/v EtOH/Hexanes. Chiralcel OD column. Rf = 11.5-14 min. Enantiopurity of product 2 99% ee. | |
With hydrogen;palladium(II) hydroxide/carbon; In ethanol; water; at 20℃; under 760.051 Torr; for 24h; | Example 19 4-methyl-<strong>[106825-79-0]morpholine-3(S)-carboxylic acid</strong> (6-chloro-9H-beta-carbolin-8-yl)-amide A slurry of <strong>[106825-79-0]morpholine-3(S)-carboxylic acid</strong> (3.00 g, 22.9 mmol) in EtOH (115 ml) was stirred at RT. A solution of aqueous CH2O (3.42 ml, 45.8 mmol, 37% w/w in H2O) was added, followed by Pd(OH)2 (600 mg, 20% w/w on charcoal). The flask was charged with hydrogen (1 atm) and the grey slurry was stirred for 24 hr at RT under a balloon of hydrogen. The flask was purged with nitrogen and the black slurry was diluted with MeOH, filtered through filter paper and concentrated to a reduced volume. The pale grey solution was filtered through a 0.45 mum syringe filter to remove residual Pd(OH)2 and concentrated to yield a clear colorless oil. The oil was placed under high vacuum for 24 hr and a white, solid foam was isolated. The foam was dissolved in pyridine (200 ml) and 6-chloro-9H-beta-carbolin-8-ylamine (3.74 g, 17.2 mmol) was added, followed by EDCI (5.87 g, 30.6 mmol). The clear pale orange solution was stirred at RT for 24 hr. The solution was diluted with H2O (300 ml) and poured into a separatory funnel containing EtOAc (300 ml). The mixture was shaken and the layers were separated. The aqueous layer was extracted with EtOAc (3*150 ml) and the combined organic layers were washed with H2O and brine. The organic layer was dried, filtered and concentrated to yield a brown oil which was placed under high vacuum. The resulting brown foam was triturated with MeOH and the precipitate which formed was filtered and washed with MeOH. The resulting pale yellow solid was purified via chiral HPLC to yield a white solid (3.23 g). 1H-NMR (300 MHz, DMSO-d6): delta 11.36 (s, 1); 10.02 (s, 1); 9.04 (s, 1); 8.38 (d, 1); 8.22-8.21 (m, 1); 8.15 (d, 1); 7.91-7.90 (m, 1); 4.00 (dd, 1); 3.85-3.81 (m, 1); 3.69-3.58 (m, 2); 2.99-2.95 (dd, 1); 2.89-2.85 (m, 1); 2.32 (s, 3); 2.32-2.24 (m, 1). NH4OAc standard conditions. DAD Rf=1.89 min. M+H=345. Chiral preparative HPLC: 10% v/v EtOH/Hexanes. Chiralcel OD column. Rf=11.5-14 min. Enantiopurity of product>=99% ee. |
Tags: 1315051-74-1 synthesis path| 1315051-74-1 SDS| 1315051-74-1 COA| 1315051-74-1 purity| 1315051-74-1 application| 1315051-74-1 NMR| 1315051-74-1 COA| 1315051-74-1 structure
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