日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Recurrent hypoglycaemia promotes cardiomyopathy and cardiac vulnerability in a rodent model of type 1 diabetes

在1型糖尿病啮齿动物模型中,反复低血糖会促进心肌病和心脏脆弱性。

Forteath, Calum; Merchant, Heather J; Kocherry, Cyril; Murdoch, Colin E; Kerr, Jennifer; Gallagher, Jennifer R; Evans, Mark L; Thorens, Bernard; Pedersen-Bjergaard, Ulrik; de Galan, Bastiaan E; McCrimmon, Rory J; McNeilly, Alison D

Expression of Concern for Elevated circulating amyloid concentrations in obesity and diabetes promote vascular dysfunction

肥胖和糖尿病患者体内循环淀粉样蛋白浓度升高会促进血管功能障碍,对此表示关注。

Meakin, Paul J; Coull, Bethany M; Tuharska, Zofia; McCaffery, Christopher; Akoumianakis, Ioannis; Antoniades, Charalambos; Brown, Jane; Griffin, Kathryn J; Platt, Fiona; Ozber, Claire H; Yuldasheva, Nadira Y; Makava, Natallia; Skromna, Anna; Prescott, Alan; McNeilly, Alison D; Siddiqui, Moneeza; Palmer, Colin Na; Khan, Faisel; Ashford, Michael Lj

Activation of the Nrf2 Pathway by Sulforaphane Improves Hypoglycaemia-Induced Cognitive Impairment in a Rodent Model of Type 1 Diabetes

萝卜硫素激活Nrf2通路可改善1型糖尿病啮齿动物模型中低血糖引起的认知障碍

Merchant, Heather J; Forteath, Calum; Gallagher, Jennifer R; Dinkova-Kostova, Albena T; Ashford, Michael L J; McCrimmon, Rory J; McNeilly, Alison D

The Ancient Drug Salicylate Indirectly Targets Fructose-1,6-Bisphosphatase to Suppress Liver Glucose Production in Diet-Induced Obese Mice.

古代药物水杨酸盐通过间接靶向果糖-1,6-二磷酸酶来抑制饮食诱导肥胖小鼠的肝脏葡萄糖生成

Nisr Raid B, Atrih Abdelmadjid, Lara Erika J Gutierrez, Lamont Douglas, Luda Katarzyna M, McCrimmon Rory J, Sakamoto Kei, Rena Graham, McNeilly Alison D

High intensity interval training as a novel treatment for impaired awareness of hypoglycaemia in people with type 1 diabetes (HIT4HYPOS): a randomised parallel-group study

高强度间歇训练作为一种治疗1型糖尿病患者低血糖感知障碍的新方法(HIT4HYPOS):一项随机平行组研究

Farrell, Catriona M; McNeilly, Alison D; Hapca, Simona; Fournier, Paul A; Jones, Timothy W; Facchinetti, Andrea; Cappon, Giacomo; West, Daniel J; McCrimmon, Rory J

Correction: Chronic hyperglycaemia increases the vulnerability of the hippocampus to oxidative damage induced during post-hypoglycaemic hyperglycaemia in a mouse model of chemically induced type 1 diabetes

更正:在化学诱导的1型糖尿病小鼠模型中,慢性高血糖会增加海马体对低血糖后高血糖期间氧化损伤的易感性。

McNeilly, Alison D; Gallagher, Jennifer R; Evans, Mark L; de Galan, Bastiaan E; Pedersen-Bjergaard, Ulrik; Thorens, Bernard; Dinkova-Kostova, Albena T; Huang, Jeffrey-T; Ashford, Michael L J; McCrimmon, Rory J

Correction: Cold-induced dishabituation in rodents exposed to recurrent hypoglycaemia

更正:反复低血糖暴露的啮齿动物的冷诱导去习惯化

Vickneson, Keeran; Blackburn, Jessica; Gallagher, Jennifer R; Evans, Mark L; de Galan, Bastiaan E; Pedersen-Bjergaard, Ulrik; Thorens, Bernard; McNeilly, Alison D; McCrimmon, Rory J

Chronic hyperglycaemia increases the vulnerability of the hippocampus to oxidative damage induced during post-hypoglycaemic hyperglycaemia in a mouse model of chemically induced type 1 diabetes

在化学诱导的1型糖尿病小鼠模型中,慢性高血糖会增加海马体对低血糖后高血糖期间氧化损伤的易感性。

McNeilly, Alison D; Gallagher, Jennifer R; Evans, Mark L; de Galan, Bastiaan E; Pedersen-Bjergaard, Ulrik; Thorens, Bernard; Dinkova-Kostova, Albena T; Huang, Jeffrey-T; Ashford, Michael L J; McCrimmon, Rory J

Metformin increases the uptake of glucose into the gut from the circulation in high-fat diet-fed male mice, which is enhanced by a reduction in whole-body Slc2a2 expression

二甲双胍可增加高脂饮食喂养的雄性小鼠肠道对循环中葡萄糖的吸收,而全身Slc2a2表达的降低会增强这种作用。

Morrice, Nicola; Vainio, Susanne; Mikkola, Kirsi; van Aalten, Lidy; Gallagher, Jennifer R; Ashford, Michael L J; McNeilly, Alison D; McCrimmon, Rory J; Grosfeld, Alexandra; Serradas, Patricia; Koffert, Jukka; Pearson, Ewan R; Nuutila, Pirjo; Sutherland, Calum

Challenges and solutions for diabetes early career researchers in the COVID-19 recovery: Perspectives of the Diabetes UK Innovators in Diabetes

COVID-19 疫情后糖尿病领域青年研究人员面临的挑战与解决方案:英国糖尿病创新者协会的视角

Gage, Matthew C; Harrington, Deirdre; Brierley, Gemma V; Freathy, Rachel M; Gabriel, Brendan M; Gibson, Rachel; McNeilly, Alison D; Meek, Claire L; Roberts, Lee D