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Combined chemoenzymatic strategy for sustainable continuous synthesis of the natural product hordenine.

Stefania GianolioDavid Roura PadrosaFrancesca Paradisi
Published in: Green chemistry : an international journal and green chemistry resource : GC (2022)
To improve sustainability, safety and cost-efficiency of synthetic methodologies, biocatalysis can be a helpful ally. In this work, a novel chemoenzymatic stategy ensures the rapid synthesis of hordenine, a valuable phenolic phytochemical under mild working conditions. In a two-step cascade, the immobilized tyrosine decarboxylase from Lactobacillus brevis ( Lb TDC) is here coupled with the chemical reductive amination of tyramine. Starting from the abundant and cost-effective amino acid l-tyrosine, the complete conversion to hordenine is achieved in less than 5 minutes residence time in a fully-automated continuous flow system. Compared to the metal-catalyzed N , N -dimethylation of tyramine, this biocatalytic approach reduces the process environmental impact and improves its STY to 2.68 g L -1 h -1 .
Keyphrases
  • amino acid
  • machine learning
  • deep learning
  • high throughput
  • life cycle
  • room temperature
  • human health
  • risk assessment
  • loop mediated isothermal amplification
  • quantum dots