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Cite the Following Article
Chemical and chemoenzymatic routes to bridged homoarabinofuranosylpyrimidines: Bicyclic AZT analogues
Sandeep Kumar, Jyotirmoy Maity, Banty Kumar, Sumit Kumar and Ashok K. Prasad
Beilstein J. Org. Chem. 2022, 18, 95–101.
https://doi.org/10.3762/bjoc.18.10
How to Cite
Kumar, S.; Maity, J.; Kumar, B.; Kumar, S.; Prasad, A. K. Beilstein J. Org. Chem. 2022, 18, 95–101. doi:10.3762/bjoc.18.10
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Scholarly Works
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- Kumar, S.; Arora, A.; Singh, M.; Singh, B. K.; Mukherjee, C.; Singh, S. K. Chemo-enzymatic, regioselective synthesis of dihydropyrimidinone-fused β -amino alcohols and their anti-inflammatory and antioxidant activity evaluation. Synthetic Communications 2024, 54, 1564–1578. doi:10.1080/00397911.2024.2396500
- Johnson, M.; Chidambaram, R.; Davar, N.; Madsen, C.; Sanghvi, Y. S.; Short, R. Kilo-Scale Synthesis of the Dinucleotide DNA Methyltransferase Inhibitor Guadecitabine. Organic Process Research & Development 2024, 28, 2470–2480. doi:10.1021/acs.oprd.4c00072
- Arora, A.; Kumar, S.; Kumar, S.; Singh, S. K.; Dua, A.; Singh, B. K. Natural product inspired diastereoselective synthesis of sugar-derived pyrano[3,2-c]quinolones and their in-silico studies. Carbohydrate research 2024, 539, 109105. doi:10.1016/j.carres.2024.109105
- Singh, B. K.; Kumar, S.; Arora, A.; Kumar, S.; Kumari, P.; Singh, S. K. Diastereoselective Synthesis of Carbohydrate Conjugates: Pyrano[3,2-c]quinolones. Synthesis 2023, 56, 1157–1166. doi:10.1055/s-0042-1751505
- Singla, H.; Kumar, S.; Kavita; Maity, J.; Prasad, A. K. Chemoenzymatic synthesis of bridged homolyxofuranosyl pyrimidine nucleosides: Bicyclic AZT analogues. Carbohydrate research 2023, 527, 108813. doi:10.1016/j.carres.2023.108813