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All Outputs (3)

Geometry alone influences stem cell differentiation in a precision 3D printed stem cell niche (2018)
Preprint / Working Paper
Prina, E., Sidney, L., Tromayer, M., Moore, J., Liska, R., Bertolin, M., Ferrari, S., Hopkinson, A., Dua, H., Yang, J., Wildman, R., & Rose, F. R. Geometry alone influences stem cell differentiation in a precision 3D printed stem cell niche

Stem cells within epithelial tissues reside in anatomical structures known as crypts that are known to contribute to the mechanical and chemical milieu important for function. To date, epithelial stem cell therapies have largely ignored the niche and... Read More about Geometry alone influences stem cell differentiation in a precision 3D printed stem cell niche.

New renewably-sourced polyesters from limonene-derived monomers (2018)
Journal Article
Thomsett, M. R., Moore, J. C., Buchard, A., Stockman, R. A., & Howdle, S. M. (2019). New renewably-sourced polyesters from limonene-derived monomers. Green Chemistry, 21(1), 149-156. https://doi.org/10.1039/c8gc02957a

The functionalisation of limonene has enabled the synthesis of two renewably-sourced monomers for the formation of terpene-derived polyesters. Three methods for the synthesis of the novel hydroxy-acid 6 are reported and their green-credentials scruti... Read More about New renewably-sourced polyesters from limonene-derived monomers.

Sulfonimidates: useful synthetic intermediates for sulfoximine synthesis via C–S bond formation (2018)
Journal Article
Matos, P. M., Lewis, W., Moore, J. C., & Stockman, R. A. (2018). Sulfonimidates: useful synthetic intermediates for sulfoximine synthesis via C–S bond formation. Organic Letters, 20(12), 3674-3677. https://doi.org/10.1021/acs.orglett.8b01473

The ever-increasing prevalence of sulfoximine derivatives in drug discovery programmes has brought about a renaissance in the development of methods for their synthesis. Sulfoximine synthesis via C-S bond formation however has been comparatively unde... Read More about Sulfonimidates: useful synthetic intermediates for sulfoximine synthesis via C–S bond formation.