A sustainable synthetic route for biobased 6-hydroxyhexanoic acid, adipic acid and ε-caprolactone by integrating bio- and chemical catalysis

2020 ◽  
Vol 22 (14) ◽  
pp. 4450-4455
Author(s):  
Sang-Hyun Pyo ◽  
Ji Hoon Park ◽  
Vanessa Srebny ◽  
Rajni Hatti-Kaul

A green synthetic route and possible utilization of biobased 6-carbon polymer building blocks 6-hydroxyhexanoic acid, adipic acid and ε-caprolactone from biomass via 1,6-hexanediol, a hydrogenation product of biobased 5-hydroxymethylfurfural.

Molecules ◽  
2021 ◽  
Vol 26 (11) ◽  
pp. 3366
Author(s):  
Antonio Arcadi ◽  
Andrea Calcaterra ◽  
Giancarlo Fabrizi ◽  
Andrea Fochetti ◽  
Antonella Goggiamani ◽  
...  

An alternative Au(I)-catalyzed synthetic route to functionalized 1,2-dihydroquinolines is reported. This novel approach is based on the use of N-ethoxycarbonyl protected-N-propargylanilines as building blocks that rapidly undergo the IMHA reaction affording the 6-endo cyclization product in good to high yields. In the presence of N-ethoxycarbonyl-N-propargyl-meta-substituted anilines, the regiodivergent cyclization at the ortho-/para-position is achieved by the means of catalyst fine tuning.


Synlett ◽  
2021 ◽  
Author(s):  
Robin Van Den Hauwe ◽  
Mathias Elsocht ◽  
Charlie Hollanders ◽  
Steven Ballet

An efficient three step synthesis towards 3-amino-1,4-benzodiazepin-2-one derivatives is presented. The versatile Ugi-4-component reaction (Ugi-4CR) and Boc-deprotection is followed by a ligand-free Ullmann condensation. This protocol allows the rapid construction of a diverse array of substituted 1,5-benzodiazepinones. Since Ugi-based products are typically limited by their ‘inert’ C-terminal amides, the use of a convertible (‘cleavable’) isocyanide was envisaged and resulted in building blocks that can be made SPPS-compatible. To demonstrate the potential of this novel synthetic route, the design and preparation of novel phenylurea-1,5-bezondiazepin-4(5H)-one dipeptide mimetics with potential CCK2-antagonist properties is reported.


2020 ◽  
Vol 10 (8) ◽  
pp. 2644-2651 ◽  
Author(s):  
Noemi Capece ◽  
Achraf Sadier ◽  
Camila Palombo Ferraz ◽  
Joëlle Thuriot-Roukos ◽  
Mariusz Pietrowski ◽  
...  

1,6-Hexanediol is a relevant building blocks that could be obtained from biomass and transformed under base free conditions into adipic acid used for polymer synthesis.


2019 ◽  
Vol 15 ◽  
pp. 811-817 ◽  
Author(s):  
Karen J Ardila-Fierro ◽  
Andrij Pich ◽  
Marc Spehr ◽  
José G Hernández ◽  
Carsten Bolm

In recent times, many biologically relevant building blocks such as amino acids, peptides, saccharides, nucleotides and nucleosides, etc. have been prepared by mechanochemical synthesis. However, mechanosynthesis of lipids by ball milling techniques has remained essentially unexplored. In this work, a multistep synthetic route to access mono- and diacylglycerol derivatives by mechanochemistry has been realized, including the synthesis of diacylglycerol-coumarin conjugates.


ChemCatChem ◽  
2016 ◽  
Vol 8 (8) ◽  
pp. 1500-1506 ◽  
Author(s):  
Hongfang Zhang ◽  
Xiukai Li ◽  
Xiaoyun Su ◽  
Ee Lui Ang ◽  
Yugen Zhang ◽  
...  

2018 ◽  
Vol 115 (9) ◽  
pp. 2096-2101 ◽  
Author(s):  
Kelly A. Markham ◽  
Claire M. Palmer ◽  
Malgorzata Chwatko ◽  
James M. Wagner ◽  
Clare Murray ◽  
...  

Polyketides represent an extremely diverse class of secondary metabolites often explored for their bioactive traits. These molecules are also attractive building blocks for chemical catalysis and polymerization. However, the use of polyketides in larger scale chemistry applications is stymied by limited titers and yields from both microbial and chemical production. Here, we demonstrate that an oleaginous organism (specifically, Yarrowia lipolytica) can overcome such production limitations owing to a natural propensity for high flux through acetyl–CoA. By exploring three distinct metabolic engineering strategies for acetyl–CoA precursor formation, we demonstrate that a previously uncharacterized pyruvate bypass pathway supports increased production of the polyketide triacetic acid lactone (TAL). Ultimately, we establish a strain capable of producing over 35% of the theoretical conversion yield to TAL in an unoptimized tube culture. This strain also obtained an averaged maximum titer of 35.9 ± 3.9 g/L with an achieved maximum specific productivity of 0.21 ± 0.03 g/L/h in bioreactor fermentation. Additionally, we illustrate that a β-oxidation-related overexpression (PEX10) can support high TAL production and is capable of achieving over 43% of the theoretical conversion yield under nitrogen starvation in a test tube. Next, through use of this bioproduct, we demonstrate the utility of polyketides like TAL to modify commodity materials such as poly(epichlorohydrin), resulting in an increased molecular weight and shift in glass transition temperature. Collectively, these findings establish an engineering strategy enabling unprecedented production from a type III polyketide synthase as well as establish a route through O-functionalization for converting polyketides into new materials.


Synlett ◽  
2019 ◽  
Vol 30 (20) ◽  
pp. 2209-2215 ◽  
Author(s):  
Ke Du ◽  
Andrew C.-H. Sue

Rim-differentiated pillar[5]arenes (P[5]s) are intriguing macrocyclic molecular platforms with C 5-symmetry, but their conventional statistical syntheses suffer from low yields and laborious separation. Our group recently reported a ‘pre-oriented’ protocol that results in highly selective production of C 5-symmetric P[5]s among four constitutional isomers. Subsequently, we devised a more general divergent synthetic route starting with a common P[5] precursor with rim differentiation, followed by a series of high-yielding reactions that permit successive transformations of both rims freely. As a result, a variety of rim-differentiated P[5]s can be made to order in gram-scale quantities. This total solution not only populates the list of C 5-symmetric P[5]s, but also enables further design and synthesis of assorted five-fold organic building blocks towards complex supramolecular architectures.


2009 ◽  
Vol 62 (6) ◽  
pp. 546 ◽  
Author(s):  
Ligong Liu ◽  
Ken D. Johnstone ◽  
Jon K. Fairweather ◽  
Keith Dredge ◽  
Vito Ferro

An improved synthetic route to α(1→3)/α(1→2)-linked mannooligosaccharides has been developed and applied to a more efficient preparation of the potent anti-angiogenic sulfated pentasaccharide, benzyl Manα(1→3)-Manα(1→3)-Manα(1→3)-Manα(1→2)-Man hexadecasulfate, using only two monosaccharide building blocks. Of particular note are improvements in the preparation of both building blocks and a simpler, final deprotection strategy. The route also provides common intermediates for the introduction of aglycones other than benzyl, either at the building block stage or after oligosaccharide assembly. The anti-angiogenic activity of the synthesized target compound was confirmed via the rat aortic assay.


2021 ◽  
Author(s):  
Ying Sim ◽  
felix leon ◽  
Rakesh Ganguly ◽  
jesus diaz ◽  
Jack K. Clegg ◽  
...  

Herein, we report an unprecedented combination of pre-arranged building blocks and a multi-step synthetic route to rationally and simultaneously enable access to an unfolded tetrameric macrocycle, which is not accessible using conventional synthetic strategies. The obtained macrocycle, cis-[μ-P(μ-NtBu)]2(μ-p-OC6H4C(O)O)]4[μ-P(μ-NtBu)]2 (4), is the first unfolded open-face hybrid cyclodiphosphazane macrocycle reported and displays a cavity area of 110.1 Å2 - the largest of its kind.<br>


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