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Amanda Almeida de Oliveira
Amanda Almeida de Oliveira
在 ualberta.ca 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Targeting toll‐like receptor 4 signalling pathways: can therapeutics pay the toll for hypertension?
KP Nunes, AA de Oliveira, FE Mowry, VC Biancardi
British journal of pharmacology 176 (12), 1864-1879, 2019
562019
Hypertension and erectile dysfunction: breaking down the challenges
AA de Oliveira, KP Nunes
American Journal of Hypertension, 2020
392020
Blockade of toll-like receptor 4 attenuates erectile dysfunction in diabetic rats
KP Nunes, AA de Oliveira, T Szasz, VC Biancardi, RC Webb
The journal of sexual medicine 15 (9), 1235-1245, 2018
352018
Apelin pathway in cardiovascular, kidney, and metabolic diseases: Therapeutic role of apelin analogs and apelin receptor agonists
AA de Oliveira, A Vergara, X Wang, JC Vederas, GY Oudit
Peptides 147, 170697, 2022
332022
Toll-like receptor 4 and blood pressure: lessons from animal studies
KP Nunes, AA De Oliveira, VV Lima, RC Webb
Frontiers in Physiology 10, 655, 2019
312019
Blockade of Toll-like receptor 4 (TLR4) reduces oxidative stress and restores phospho-ERK1/2 levels in Leydig cells exposed to high glucose
T Karpova, AA de Oliveira, H Naas, F Priviero, KP Nunes
Life sciences 245, 117365, 2020
242020
Toll-like receptor 4 (TLR4) as a possible pathological mechanism in hyperglycemia-associated testicular dysfunction
H Naas, AA de Oliveira, T Karpova, KP Nunes
Medical hypotheses 127, 116-119, 2019
222019
Unveiling the Interplay between the TLR4/MD2 Complex and HSP70 in the Human Cardiovascular System: A Computational Approach
AA de Oliveira, J Faustino, ME de Lima, R Menezes, KP Nunes
International Journal of Molecular Sciences 20 (13), 3121, 2019
222019
An additional physiological role for HSP70: Assistance of vascular reactivity
AA de Oliveira, KP Nunes
Life Sciences 256, 117986, 2020
152020
New insights into the role and therapeutic potential of HSP70 in diabetes
AA de Oliveira, VO Mendoza, S Rastogi, KP Nunes
Pharmacological Research 178, 106173, 2022
132022
Toll-Like Receptor 4 and Heat-Shock Protein 70: Is it a New Target Pathway for Diabetic Vasculopathies?
AA de Oliveira, RC Webb, KP Nunes
Current drug targets 20 (1), 51-59, 2019
132019
Dissecting the interaction between HSP70 and vascular contraction: role of Ca2+ handling mechanisms
AA de Oliveira, F Priviero, RC Tostes, RC Webb, KP Nunes
Scientific reports 11 (1), 1420, 2021
122021
Blockade of the TLR4–MD2 complex lowers blood pressure and improves vascular function in a murine model of type 1 diabetes
AA de Oliveira, J Faustino, RC Webb, KP Nunes
Scientific Reports 10 (1), 12032, 2020
122020
Crosstalk of TLR4, vascular NADPH oxidase, and COVID-19 in diabetes: What are the potential implications?
AA de Oliveira, KP Nunes
Vascular pharmacology 139, 106879, 2021
112021
COVID-19 and ROS Storm: What is the Forecast for Hypertension
AA de Oliveira, F Priviero, VV Lima, RC Webb, KP Nunes
American Journal of Hypertension 34 (8), 779, 2021
92021
Impaired HSP70 expression in the aorta of female rats: a novel insight into sex-specific differences in vascular function
AA De Oliveira, F Priviero, RC Webb, KP Nunes
Frontiers in Physiology 12, 666696, 2021
92021
Pattern recognition receptors as potential therapeutic targets in metabolic syndrome: From bench to bedside
AA de Oliveira, D Davis, KP Nunes
Diabetes & Metabolic Syndrome: Clinical Research & Reviews 13 (2), 1117-1122, 2019
72019
Increased eHSP70-to-iHSP70 ratio disrupts vascular responses to calcium and activates the TLR4-MD2 complex in type 1 diabetes
AA de Oliveira, F Priviero, RC Webb, KP Nunes
Life Sciences 310, 121079, 2022
52022
Mitochondrial fatty acid oxidation is the major source of cardiac ATP production in heart failure with preserved ejection fraction.
Q Sun, B Güven, CS Wagg, AA de Oliveira, H Silver, L Zhang, B Chen, ...
Cardiovascular Research, cvae006-cvae006, 2024
4*2024
Age-Related Decline in Vascular Responses to Phenylephrine Is Associated with Reduced Levels of HSP70
AA de Oliveira, VO Mendoza, F Priviero, RC Webb, KP Nunes
Biomolecules 12 (8), 1125, 2022
42022
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