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m. Ian Phillips
m. Ian Phillips
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Functions of angiotensin in the central nervous system
IM Phillips
Annual review of physiology 49 (1), 413-433, 1987
8731987
Paracrine action enhances the effects of autologous mesenchymal stem cell transplantation on vascular regeneration in rat model of myocardial infarction
YL Tang, Q Zhao, X Qin, L Shen, L Cheng, J Ge, MI Phillips
The Annals of thoracic surgery 80 (1), 229-237, 2005
6352005
Autologous mesenchymal stem cell transplantation induce VEGF and neovascularization in ischemic myocardium
YL Tang, Q Zhao, YC Zhang, L Cheng, M Liu, J Shi, YZ Yang, C Pan, J Ge, ...
Regulatory peptides 117 (1), 3-10, 2004
6022004
Improved graft mesenchymal stem cell survival in ischemic heart with a hypoxia-regulated heme oxygenase-1 vector
YL Tang, Y Tang, YC Zhang, K Qian, L Shen, MI Phillips
Journal of the American College of Cardiology 46 (7), 1339-1350, 2005
5242005
Hypoxic preconditioning enhances the benefit of cardiac progenitor cell therapy for treatment of myocardial infarction by inducing CXCR4 expression
YL Tang, W Zhu, M Cheng, L Chen, J Zhang, T Sun, R Kishore, MI Phillips, ...
Circulation research 104 (10), 1209-1216, 2009
4532009
Upregulation of endothelial receptor for oxidized low-density lipoprotein (LOX-1) in cultured human coronary artery endothelial cells by angiotensin II type 1 receptor activation
DY Li, YC Zhang, MI Philips, T Sawamura, JL Mehta
Circulation research 84 (9), 1043-1049, 1999
4261999
Levels of angiotensin and molecular biology of the tissue renin angiotensin systems
MI Phillips, EA Speakman, B Kimura
Regulatory peptides 43 (1-2), 1-20, 1993
4171993
Effect of exercise training on blood pressure in 70-to 79-yr-old men and women.
CC Cononie, JE Graves, ML Pollock, MI Phillips, C Sumners, JM Hagberg
Medicine and science in sports and exercise 23 (4), 505-511, 1991
3491991
Angiotensin II as a pro-inflammatory mediator.
MI Phillips, S Kagiyama
Current opinion in investigational drugs (London, England: 2000) 3 (4), 569-577, 2002
3132002
Angiotensin in the brain
MI Phillips
Neuroendocrinology 25 (6), 354-377, 1978
3111978
Angiotensin II in central nervous system physiology
MI Phillips, C Sumners
Regulatory peptides 78 (1-3), 1-11, 1998
3041998
Aerobic exercise training–induced left ventricular hypertrophy involves regulatory MicroRNAs, decreased angiotensin-converting enzyme-angiotensin II, and synergistic regulation …
T Fernandes, NY Hashimoto, FC Magalhães, FB Fernandes, DE Casarini, ...
Hypertension 58 (2), 182-189, 2011
2802011
MicroRNAs 29 are involved in the improvement of ventricular compliance promoted by aerobic exercise training in rats
UPR Soci, T Fernandes, NY Hashimoto, GF Mota, MA Amadeu, KT Rosa, ...
Physiological genomics 43 (11), 665-673, 2011
2722011
The multiple actions of angiotensin II in atherosclerosis
KM Schmidt-Ott, S Kagiyama, MI Phillips
Regulatory peptides 93 (1-3), 65-77, 2000
2642000
Antisense inhibition of AT1 receptor mRNA and angiotensinogen mRNA in the brain of spontaneously hypertensive rats reduces hypertension of neurogenic origin
R Gyurko, D Wielbo, MI Phillips
Regulatory peptides 49 (2), 167-174, 1993
2591993
Evidence for an endogenous brain renin-angiotensin system
MI Phillips
Fed. Proc. 38, 2260-2266, 1979
2451979
Angiotensin II–induced cardiac hypertrophy and hypertension are attenuated by epidermal growth factor receptor antisense
S Kagiyama, S Eguchi, GD Frank, T Inagami, YC Zhang, MI Phillips
Circulation 106 (8), 909-912, 2002
2362002
THE BRAIN ISORENIN-ANGIOTENSIN SYSTEM. BIOCHEMISTRY, LOCALIZATION, AND POSSIBLE ROLE IN DRINKING AND BLOOD PRESSURE REGULATION.
D Ganten, K Fuxe, P MI, M JFE, U Ganten
2361978
Brain renin angiotensin in disease
MI Phillips, EM De Oliveira
Journal of molecular medicine 86, 715-722, 2008
2312008
Exercise training prevents the microvascular rarefaction in hypertension balancing angiogenic and apoptotic factors: role of microRNAs-16,-21, and-126
T Fernandes, FC Magalhães, FR Roque, MI Phillips, EM Oliveira
Hypertension 59 (2), 513-520, 2012
2142012
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