Catalysts · 2017 · 44 citations · 22 references
EngineeringConsecutive ApproachEndogenous Aldehyde ReductasesBiosynthesisDodecanoic AcidsBiochemical EngineeringCarboxylic Acid ReductasePolymer IndustryNatural Product BiosynthesisChemical BiotechnologyBiotransformationAldehyde DehydrogenaseBiochemistryBiocatalysisNatural Product SynthesisBiomolecular EngineeringBiomanufacturingLong-chain αMetabolismMedicine
α,ω-Diols are important monomers widely used for the production of polyesters and polyurethanes. Here, biosynthesis of α,ω-diols (C8–C16) from renewable free fatty acids using CYP153A monooxygenase, carboxylic acid reductase, and E. coli endogenous aldehyde reductases is reported. The highest yield of α,ω-diol was achieved for the production of 1,12-dodecanediol. In the nicotinamide adenine dinucleotide phosphate (NADPH) cofactor regeneration system, 5 g/L of 1,12-dodecanediol was synthesized in 24 h reaction from the commercial ω-hydroxy dodecanoic acid. Finally, 1.4 g/L 1,12-dodecanediol was produced in a consecutive approach from dodecanoic acids. The results of this study demonstrated the scope of the potential development of bioprocesses to substitute the petroleum-based products in the polymer industry.
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Renewable polymeric materials from vegetable oils: a perspective
Gerard Lligadas, Juan C. Ronda, Marina Galià et al. · Materials Today · 2013 · 534 citations · Full text
Condensation polymers from natural oils
Vinay Sharma, Patit Paban Kundu · Progress in Polymer Science · 2008 · 299 citations