| Literature DB >> 30071637 |
Nadine Zumbrägel1, Harald Gröger2.
Abstract
A proof of concept for a one-pot process merging a heterocycle formation by a classical chemical approach at basic conditions with a biocatalytic reduction, running at neutral pH conditions, is reported. A crucial component for this process is the compartmentalization of the single reactions by the use of polydimethylsiloxane thimbles. This process was applied successfully towards an asymmetric synthesis of (S)-2,2,3-trimethyl-1-thia-4-azaspiro[4.4]nonane, leading to excellent enantioselectivities of 99% enantiomeric excess (ee).Entities:
Keywords: Asinger-type multi-component reaction; asymmetric synthesis; biocatalysis; cascades; compartmentalization; heterocycles
Year: 2018 PMID: 30071637 PMCID: PMC6164193 DOI: 10.3390/bioengineering5030060
Source DB: PubMed Journal: Bioengineering (Basel) ISSN: 2306-5354
Figure 1(A) Concept of our recent work: Synthesis of 3-thiazolidines (4a) in a two-pot-/two-step cascade [17]. (B) Concept of this work: One-pot synthesis towards 3-thiazolidines (4a) via compartmentalization approach using polydimethylsiloxane (PDMS) thimbles.
Figure 2(A) Results for the Asinger-type multi-component reaction under different conditions. (B) Mechanical stirrer based on a KPG stirrer for high stirring speed inside the PDMS thimble.
Figure 3Results for the reduction of 3-thiazoline (3a) using an E. coli whole-cell catalyst in the presence of different amounts of methanol/dimethylsulfoxide (DMSO) as a co-solvent.
Figure 4Results for the biotransformation of 3-thiazoline (3a) in the presence of different concentrations of either cyclopentanone (2) or 3-chloro-3-methylbutan-2-one (1).
Figure 5One-pot process towards synthesis of (S)-2,2,3-trimethyl-1-thia-4-azaspiro[4.4]nonane (4a).