| Literature DB >> 35481106 |
Tiago Bozzola1, Ulf J Nilsson1, Ulf Ellervik1.
Abstract
A direct one-step nucleophilic substitution of the 4-OAc of acetyl protected Neu5Ac is presented. Previously published methods for direct substitution of the 4-OAc are limited to cyclic secondary amines. Here we present conditions that allow for a much wider range of nitrogen nucleophiles as well as thiols and cyanide, to be used. The present investigation significantly broadens the scope of 4-aminations and allows for the introduction of a wide variety of different nucleophiles. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35481106 PMCID: PMC9016497 DOI: 10.1039/d2ra01576e
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Synthesis of 4-amino sialic acids.
Chart 14-Aminations with benzylamine.
4-Amination reactionsa
|
| |||||
|---|---|---|---|---|---|
| Compound | X | R | Time | Temperature | Yield |
| 4a |
| Ac | 3 days | −5 °C | 25% |
| H | 20 h | −10 °C | 34% | ||
| 4b |
| Ac | 7 days | RT | 39% |
| H | — | — | Not tested | ||
| 4c |
| Ac | 30 days | RT | 34% |
| H | 17 days | RT | 39% | ||
| 4d |
| Ac | 30 days | RT | 66% |
| H | — | — | Not tested | ||
| 4e |
| Ac | 3 days | RT | 20% |
| H | 2 h | RT | 25% | ||
| 4f |
| Ac | >30 days | RT | 0% |
| H | 7 days | RT | 45% | ||
| 4g |
| Ac | >30 days | RT | 0% |
| H | 4 h | RT | 41% | ||
| 4h |
| Ac | 7 days | RT | 21% |
| H | 2 days | RT | 38% | ||
| 4i |
| Ac | — | — | Not tested |
| H | 4 hours | RT | 89% | ||
| 4l |
| Ac | — | — | Not tested |
| H | 4 hours | RT | 63% | ||
Reaction conditions: 3–10 eq of nucleophile in pyridine at room temperature until disappearance of starting material or appearance of side products.
3 eq of t-BuOK are additionally present.
3 eq of Cs2CO3 are additionally present.
Scheme 2(a) Proposed mechanism of 4-aminations. (b) Stick model of compound 3 (the glycerol chain is omitted for clarity). In red the 02 to C4 distance, while in green the hydrogen bond between the proton on the 2-OH and the C1 carbonyl.