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All Outputs (5)

The importance of m6A topology in chicken embryo mRNA: a precise mapping of m6A at the conserved chicken β-actin zipcode (2023)
Journal Article
Baron, F., Zhang, M., Archer, N., Bellows, E., Knight, H. M., Welham, S., …Bodi, Z. (2023). The importance of m6A topology in chicken embryo mRNA: a precise mapping of m6A at the conserved chicken β-actin zipcode. RNA, 29(6), 777-789. https://doi.org/10.1261/rna.079615.123

N6-methyladenosine (m6A) in mRNA regulates almost every stage in the mRNA life cycle, and the development of methodologies for the high-throughput detection of methylated sites in mRNA using m6A-specific methylated RNA immunoprecipitation with next-g... Read More about The importance of m6A topology in chicken embryo mRNA: a precise mapping of m6A at the conserved chicken β-actin zipcode.

Acetylsalicylic acid interferes with embryonic kidney growth and development by a prostaglandin-independent mechanism (2017)
Journal Article
Welham, S. J., Sparrow, A. J., Gardner, D. S., & Elmes, M. J. (2017). Acetylsalicylic acid interferes with embryonic kidney growth and development by a prostaglandin-independent mechanism. World Journal of Nephrology, 6(1), https://doi.org/10.5527/WJN.v6.i1.21

AIM: To evaluate the effects of the non-selective, non-steroidal anti-inflammatory drug (NSAID) acetylsalicylic acid (ASA), on ex vivo embryonic kidney growth and development. METHODS: Pairs of fetal mouse kidneys at embryonic day 12.5 were cultured... Read More about Acetylsalicylic acid interferes with embryonic kidney growth and development by a prostaglandin-independent mechanism.

Remote effects of acute kidney injury in a porcine model (2016)
Journal Article
Devonald, M. A., O’Sullivan, S. E., Gardner, D. S., De Brot, S., Dunford, L. J., Grau-Roma, L., …Devonald, M. A. J. (2016). Remote effects of acute kidney injury in a porcine model. AJP - Renal Physiology, 310(4), F259-F271. https://doi.org/10.1152/ajprenal.00389.2015

© 2016 the American Physiological Society. Acute kidney injury (AKI) is a common and serious condition with no specific treatment. An episode of AKI may affect organs distant from the kidney, further increasing the morbidity associated with AKI. The... Read More about Remote effects of acute kidney injury in a porcine model.

Remote conditioning or erythropoietin before surgery primes kidneys to clear ischemia-reperfusion-damaged cells: a renoprotective mechanism? (2014)
Journal Article
Gardner, D. S., Welham, S. J., Dunford, L. J., McCulloch, T. A., Hodi, Z., Sleeman, P., …Devonald, M. A. (2014). Remote conditioning or erythropoietin before surgery primes kidneys to clear ischemia-reperfusion-damaged cells: a renoprotective mechanism?. AJP - Renal Physiology, 306(8), F873-F884. https://doi.org/10.1152/ajprenal.00576.2013

Acute kidney injury is common, serious with no specific treatment. Ischemia-reperfusion is a common cause of acute kidney injury (AKI). Clinical trials suggest that preoperative erythropoietin (EPO) or remote ischemic preconditioning may have a renop... Read More about Remote conditioning or erythropoietin before surgery primes kidneys to clear ischemia-reperfusion-damaged cells: a renoprotective mechanism?.

Excess maternal salt intake produces sex-specific hypertension in offspring: putative roles for kidney and gastrointestinal sodium handling (2013)
Journal Article
Gray, C., Al-Dujaili, E. A., Sparrow, A. J., Gardiner, S. M., Craigon, J., Welham, S. J., & Gardner, D. S. (2013). Excess maternal salt intake produces sex-specific hypertension in offspring: putative roles for kidney and gastrointestinal sodium handling. PLoS ONE, 8(8), Article e72682. https://doi.org/10.1371/journal.pone.0072682

Hypertension is common and contributes, via cardiovascular disease, towards a large proportion of adult deaths in the Western World. High salt intake leads to high blood pressure, even when occurring prior to birth – a mechanism purported to reside i... Read More about Excess maternal salt intake produces sex-specific hypertension in offspring: putative roles for kidney and gastrointestinal sodium handling.