| Literature DB >> 26389018 |
Gorakshanath B Shinde1, Pravin K Mahale1, Santhosh A Padaki1, Navnath C Niphade1, Raghunath B Toche2, Vijayavitthal T Mathad1.
Abstract
An efficient, safe and improved process for the preparation of ticagrelor 1, a platelet aggregation inhibitor is described. Synthesis comprises the condensation of pyrimidine amine derivative 14 with cyclopentyl derivative 13 in ethylene glycol followed by construction of triazole compound 16 by diazotization of the obtained intermediate 15 with a green and safer reagent "Resin-NO2" in water and acetonitrile mixture. Condensation of 16 with cyclopropylamine derivative 10 followed by deprotection of compound 12 with hydrochloric acid in dichloromethane (DCM) furnished ticagrelor 1 with an overall yield of 65 % and purity of 99.78 % by HPLC. Each reaction stage was optimized independently to establish the scalable and plant friendly process. An efficient and a safe process for key intermediate 14 which involve nitration reaction has also been developed. Safety parameters were established by understanding the thermal events of the reaction by DSC analysis.Graphical abstractSynthesis of ticagrelor via resin-NO2 catalysed formation of triazole ring.Entities:
Keywords: Arterial thrombosis; Diazotization; Nitration; Resin-NO2; Ticagrelor; Triazole
Year: 2015 PMID: 26389018 PMCID: PMC4571033 DOI: 10.1186/s40064-015-1299-6
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Scheme 1Reported process for ticagrelor as per basic patent route
Fig. 1Potential impurities of ticagrelor
Scheme 2Improved process reported by innovator
Scheme 3Synthetic approaches for the preparation of compound 14
Screening experimental data for condensation of 13 and 14
| Solvent | Base | Catalyst | Temp (°C) | Time (h) | Reaction yield (%) | Isolated yield (%) | HPLC purity |
|---|---|---|---|---|---|---|---|
| Ethanol | TEA | – | 75–78 | 30.0 | 62.5 | 28.25 | 68.00 |
| IPA | DIPEA | DBU | 78–80 | 50.0 | 70.2 | 34.28 | 75.00 |
| Methanol | DIPEA | DBU | 61–65 | 52.0 | 12.0 | 45.71 | 15.00 |
| Toluene | TEA | KI | 108–111 | 31.0 | 11.5 | 48.97 | 15.00 |
| MEG | DIPEA | KI | 120–125 | 6.0 | 83.5 | 72.00 | 99.51 |
| MEG | DIPEA | – | 120–125 | 5.0 | 85.00 | 67.97 | 99.60 |
| MEG | DIPEA | DBU | 120–125 | 5.0 | 85.5 | 77.14 | 99.65 |
| MEG | TEA | DBU | 120–125 | 6.0 | 54.0 | 54.29 | 60.00 |
| ACN | K2CO3 | – | 80–85 | 30.0 | 25.0 | 60.00 | 30.00 |
| DMF | K2CO3 | – | 100–105 | 24.0 | 16.0 | 56.00 | 21.00 |
Optimization of mole ratio of compound 13 with respect to compound 14
| Compd. | Compd. | Base | Catalyst | Temp (°C) | Reaction yield (%) | Isolated yield (%) | HPLC purity (%) |
|---|---|---|---|---|---|---|---|
| 10.0 | 1.00 | DIPEA | DBU | 120–125 | 85.15 | 59.40 | 99.03 |
| 10.0 | 0.90 | DIPEA | DBU | 120–125 | 82.30 | 54.25 | 95.11 |
| 10.0 | 1.05 | DIPEA | DBU | 120–125 | 87.95 | 69.85 | 99.38 |
| 10.0 | 1.10 | DIPEA | DBU | 100–105 | 88.65 | 67.14 | 98.38 |
| 10.0 | 1.20 | DIPEA | DBU | 120–125 | 94.50 | 73.14 | 99.31 |
| 25.0 | 1.10 | DIPEA | KI | 120–125 | 91.85 | 73.00 | 99.51 |
| 10.0 | 1.10 | DIPEA | – | 120–125 | 89.45 | 67.97 | 99.60 |
| 10.0 | 1.10 | DIPEA | DBU | 135–140 | 92.20 | 72.00 | 99.30 |
| 100.0 | 1.10 | DIPEA | DBU | 120–125 | 94.90 | 79.95 | 99.37 |
| 100.0 | 1.10 | DIPEA | DBU | 120–125 | 95.05 | 80.81 | 99.35 |
| 100.0 | 1.10 | DIPEA | DBU | 120–125 | 94.65 | 79.96 | 99.57 |
All the reactions are performed in MEG. 10 volumes of MEG was used w. r. to compound 13 provided favourable results
Scheme 4Improved approach for the synthesis of Ticagrelor (1)
Monitoring the elimination of impurities in downstream process for 1
| Sample station (for HPLC analysis) | Impurities and there content by HPLC (%) | |||||
|---|---|---|---|---|---|---|
|
|
|
|
|
| SMUI | |
| Crude | 99.25 | ND | ND | 0.32 | 0.01 | 0.06 |
| Acetonitrile purification | 99.74 | ND | ND | 0.05 | 0.01 | 0.06 |
| Crude | 98.70 | 0.07 | ND | 0.30 | 0.06 | 0.14 |
| Acetonitrile purification | 99.60 | ND | ND | 0.05 | 0.01 | 0.05 |
| Crude | 99.44 | ND | ND | 0.29 | 0.02 | 0.03 |
| Acetonitrile purification | 99.78 | ND | ND | 0.04 | ND | 0.03 |
ND not detected