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Functional redundancy between Apc and Apc2 regulates tissue homeostasis and prevents tumourigenesis in murine mammary epithelium (2016)
Journal Article
Reed, K., Daly, C., Shaw, P., Ordonez, L., Williams, G., Quist, J., …Clarke, A. (2016). Functional redundancy between Apc and Apc2 regulates tissue homeostasis and prevents tumourigenesis in murine mammary epithelium. European Journal of Cancer, 61(S1), S52-S53. https://doi.org/10.1016/s0959-8049%2816%2961177-2

Aberrant Wnt signaling within breast cancer is associated with poor prognosis, but regulation of this pathway in breast tissue remains poorly understood and the consequences of immediate or long-term dysregulation remain elusive. The exact contributi... Read More about Functional redundancy between Apc and Apc2 regulates tissue homeostasis and prevents tumourigenesis in murine mammary epithelium.

Anti-Inflammatory effect of Pleurotus ostreatus (oyster mushroom) aqueous extracts on Rattus norvegicus (albino rats) (2016)
Journal Article
Zitte, L., Konya, R., & Akpiri, R. Anti-Inflammatory effect of Pleurotus ostreatus (oyster mushroom) aqueous extracts on Rattus norvegicus (albino rats). 3D Research, 6(3), 061-067. https://doi.org/10.15580/gjbs.2016.3.051816091

Anti-inflammatory effect of Pleurotusostreatus (oyster mushroom) aqueous extract was studied. The extract was prepared using a novel design of relative moisture content to determine the dry weight of the extract. Thirty-five albino rats (grouped in... Read More about Anti-Inflammatory effect of Pleurotus ostreatus (oyster mushroom) aqueous extracts on Rattus norvegicus (albino rats).

Heterologous production of fungal maleidrides reveals the cryptic cyclization involved in their biosynthesis (2016)
Journal Article
Williams, K., Szwalbe, A. J., Mulholland, N. P., Vincent, J. L., Bailey, A., Willis, C. L., …Cox, R. J. (2016). Heterologous production of fungal maleidrides reveals the cryptic cyclization involved in their biosynthesis. Angewandte Chemie International Edition, 55(23), 6784-6788. https://doi.org/10.1002/anie.201511882

Fungal maleidrides are an important family of bioactive secondary metabolites that consist of 7, 8, or 9-membered carbocycles with one or two fused maleic anhydride moieties. The biosynthesis of byssochlamic acid (a nonadride) and agnestadride A (a h... Read More about Heterologous production of fungal maleidrides reveals the cryptic cyclization involved in their biosynthesis.