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Amaral, S. L., Sanchez, L. S., Chang, A. J., Rossoni, L. V., & Michelini, L. C. (2008). Time course of training-induced microcirculatory changes and of vegf expression in skeletal muscles of spontaneously hypertensive female rats. Brazilian Journal of Medicine Biological Research, 41(5), 424-431.

Atwood, C. S., Bowen, R. L., Smith, M. A., & Perry, G. (2003). Cerebrovascular requirement for sealant, anti-coagulant and remodeling molecules that allow for the maintenance of vascular integrity and blood supply. Brain Research. Brain Research Review, 43(1), 164-178.

Baffert, F., Thurston, G., Rochon-Duck, M., Le, T., Brekken, R., & McDonald, D. M. (2004).

Age-related changes in vascular endothelial growth factor dependency and

angiopoietin-1-induced plasticity of adult blood vessels. Circulation Research, 94(7), 984-992.

Beck, H., Acker, T., Wiessner, C., Allegrini, P. R., & Plate, K. H. (2000). Expression of

angiopoietin-1, angiopoietin-2, and tie receptors after middle cerebral artery occlusion in the rat. American Journal of Pathology, 157(5), 1473-1483.

Bloor, C. M. (2005). Angiogenesis during exercise and training. Angiogenesis, 8(3), 263-271.

Brandes, R. P., Fleming, I., & Busse, R. (2005). Endothelial aging. Cardiovascular Research, 66(2), 286-294.

Bucala, R., Tracey, K. J., & Cerami, A. (1991). Advanced glycosylation products quench nitric oxide and mediate defective endothelium-dependent vasodilatation in experimental diabetes. Journal of Clinical Investigation, 87(2), 432-438.

Cao, L., Jiao, X., Zuzga, D. S., Liu, Y., Fong, D. M., Young, D., et al. (2004). VEGF links hippocampal activity with neurogenesis, learning and memory. Nature Genetics, 36(8), 827-835.

Carlevaro, M. F., Cermelli, S., Cancedda, R., & Descalzi Cancedda, F. (2000). Vascular endothelial growth factor (VEGF) in cartilage neovascularization and chondrocyte differentiation: auto-paracrine role during endochondral bone formation. Journal of Cell Science, 113 ( Pt 1), 59-69.

Carmeliet, P., Ferreira, V., Breier, G., Pollefeyt, S., Kieckens, L., Gertsenstein, M., et al.

(1996). Abnormal blood vessel development and lethality in embryos lacking a single VEGF allele. Nature, 380(6573), 435-439.

Cheluvappa, R., Hilmer, S. N., Kwun, S. Y., Jamieson, H. A., O'Reilly, J. N., Muller, M., et al.

(2007). The effect of old age on liver oxygenation and the hepatic expression of VEGF and VEGFR2. Experimental Gerontology, 42(10), 1012-1019.

Choeiri, C., Staines, W., & Messier, C. (2002). Immunohistochemical localization and

quantification of glucose transporters in the mouse brain. Neuroscience, 111(1), 19-34.

Choi, J., Rees, H. D., Weintraub, S. T., Levey, A. I., Chin, L. S., & Li, L. (2005). Oxidative modifications and aggregation of Cu,Zn-superoxide dismutase associated with Alzheimer and Parkinson diseases. Journal of Biological Chemistry, 280(12), 11648-11655.

Clark, P. J., Brzezinska, W. J., Puchalski, E. K., Krone, D. A., & Rhodes, J. S. (2009).

Functional analysis of neurovascular adaptations to exercise in the dentate gyrus of

young adult mice associated with cognitive gain. Hippocampus, 19(10), 937-950.

Coggan, A. R., Spina, R. J., King, D. S., Rogers, M. A., Brown, M., Nemeth, P. M., et al.

(1992). Skeletal muscle adaptations to endurance training in 60- to 70-yr-old men and women. Journal of Applied Physiology, 72(5), 1780-1786.

Cornford, E. M., & Hyman, S. (2005). Localization of brain endothelial luminal and

abluminal transporters with immunogold electron microscopy. NeuroRx, 2(1), 27-43.

Crameri, R. M., Langberg, H., Teisner, B., Magnusson, P., Schroder, H. D., Olesen, J. L., et al.

(2004). Enhanced procollagen processing in skeletal muscle after a single bout of eccentric loading in humans. Matrix Biology, 23(4), 259-264.

Croley, A. N., Zwetsloot, K. A., Westerkamp, L. M., Ryan, N. A., Pendergast, A. M., Hickner, R. C., et al. (2005). Lower capillarization, VEGF protein, and VEGF mRNA response to acute exercise in the vastus lateralis muscle of aged vs. young women. Journal of Applied Physiology, 99(5), 1872-1879.

de la Torre, J. C. (2002). Vascular basis of Alzheimer's pathogenesis. Annals of the New York Academy Sciences, 977, 196-215.

Dejana, E., Orsenigo, F., & Lampugnani, M. G. (2008). The role of adherens junctions and VE-cadherin in the control of vascular permeability. Journal of Cell Science, 121(Pt 13), 2115-2122.

Denis, C., Chatard, J. C., Dormois, D., Linossier, M. T., Geyssant, A., & Lacour, J. R. (1986).

Effects of endurance training on capillary supply of human skeletal muscle on two age groups (20 and 60 years). Journal of Physiology (Paris), 81(5), 379-383.

Dennis, R. A., Trappe, T. A., Simpson, P., Carroll, C., Huang, B. E., Nagarajan, R., et al.

(2004). Interleukin-1 polymorphisms are associated with the inflammatory response in human muscle to acute resistance exercise. Journal of Physiology, 560(Pt 3), 617-626.

Desai, B. S., Schneider, J. A., Li, J. L., Carvey, P. M., & Hendey, B. (2009). Evidence of angiogenic vessels in Alzheimer's disease. Journal of Neural Transmission, 116(5), 587-597.

Devangelio, E., Santilli, F., Formoso, G., Ferroni, P., Bucciarelli, L., Michetti, N., et al. (2007).

Soluble RAGE in type 2 diabetes: association with oxidative stress. Free Radical Biology & Medicine, 43(4), 511-518.

Ding, Y. H., Li, J., Zhou, Y., Rafols, J. A., Clark, J. C., & Ding, Y. (2006). Cerebral

angiogenesis and expression of angiogenic factors in aging rats after exercise. Current Neurovascular Research, 3(1), 15-23.

Ding, Y. H., Luan, X. D., Li, J., Rafols, J. A., Guthinkonda, M., Diaz, F. G., et al. (2004).

Exercise-induced overexpression of angiogenic factors and reduction of ischemia/reperfusion injury in stroke. Current Neurovascular Research, 1(5), 411-420.

Donato, A. J., Gano, L. B., Eskurza, I., Silver, A. E., Gates, P. E., Jablonski, K., et al. (2009).

Vascular endothelial dysfunction with aging: endothelin-1 and endothelial nitric oxide synthase. American Journal of Physiology. Heart and Circulatory Physiology, 297(1), H425-432.

Esposito, C., Gerlach, H., Brett, J., Stern, D., & Vlassara, H. (1989). Endothelial

receptor-mediated binding of glucose-modified albumin is associated with increased

monolayer permeability and modulation of cell surface coagulant properties. Journal of Experimental Medicine, 170(4), 1387-1407.

Fabel, K., Tam, B., Kaufer, D., Baiker, A., Simmons, N., Kuo, C. J., et al. (2003). VEGF is necessary for exercise-induced adult hippocampal neurogenesis. European Journal of Neuroscience, 18(10), 2803-2812.

Feng, Y., Pfister, F., Schreiter, K., Wang, Y., Stock, O., Vom Hagen, F., et al. (2008).

Angiopoietin-2 deficiency decelerates age-dependent vascular changes in the mouse retina. Cellular Physiology and Biochemistry, 21(1-3), 129-136.

Feng, Y., vom Hagen, F., Pfister, F., Djokic, S., Hoffmann, S., Back, W., et al. (2007).

Impaired pericyte recruitment and abnormal retinal angiogenesis as a result of angiopoietin-2 overexpression. Thrombosis and Haemostasis, 97(1), 99-108.

Ferrara, N. (1999a). Molecular and biological properties of vascular endothelial growth factor.

Journal of Molecular Medicine, 77(7), 527-543.

Ferrara, N. (1999b). Vascular endothelial growth factor: molecular and biological aspects.

Current Topics in Microbiology and Immunology, 237, 1-30.

Ferrara, N. (2004). Vascular endothelial growth factor: basic science and clinical progress.

Endocrine Review, 25(4), 581-611.

Ferrara, N., Carver-Moore, K., Chen, H., Dowd, M., Lu, L., O'Shea, K. S., et al. (1996).

Heterozygous embryonic lethality induced by targeted inactivation of the VEGF gene.

Nature, 380(6573), 439-442.

Firbank, M. J., Wiseman, R. M., Burton, E. J., Saxby, B. K., O'Brien, J. T., & Ford, G. A.

(2007). Brain atrophy and white matter hyperintensity change in older adults and relationship to blood pressure. Brain atrophy, WMH change and blood pressure.

Journal of Neurology, 254(6), 713-721.

Fleming, I., & Busse, R. (1999). NO: the primary EDRF. Journal of Molecular and Cellular Cardiology, 31(1), 5-14.

Fong, G. H., Rossant, J., Gertsenstein, M., & Breitman, M. L. (1995). Role of the Flt-1 receptor tyrosine kinase in regulating the assembly of vascular endothelium. Nature, 376(6535), 66-70.

Fotenos, A. F., Snyder, A. Z., Girton, L. E., Morris, J. C., & Buckner, R. L. (2005). Normative estimates of cross-sectional and longitudinal brain volume decline in aging and AD.

Neurology, 64(6), 1032-1039.

Fujiwara, K. (2006). Platelet endothelial cell adhesion molecule-1 and mechanotransduction in vascular endothelial cells. Journal of Internal Medicine, 259(4), 373-380.

Gale, N. W., Thurston, G., Hackett, S. F., Renard, R., Wang, Q., McClain, J., et al. (2002).

Angiopoietin-2 is required for postnatal angiogenesis and lymphatic patterning, and only the latter role is rescued by Angiopoietin-1. Developmental Cell, 3(3), 411-423.

Gavin, T. P., Drew, J. L., Kubik, C. J., Pofahl, W. E., & Hickner, R. C. (2007). Acute resistance exercise increases skeletal muscle angiogenic growth factor expression.

Acta Physiologica (Oxf), 191(2), 139-146.

Gavin, T. P., Ruster, R. S., Carrithers, J. A., Zwetsloot, K. A., Kraus, R. M., Evans, C. A., et al.

(2007). No difference in the skeletal muscle angiogenic response to aerobic exercise training between young and aged men. Journal of Physiology, 585(Pt 1), 231-239.

Gavin, T. P., Westerkamp, L. M., & Zwetsloot, K. A. (2006). Soleus, plantaris and

gastrocnemius VEGF mRNA responses to hypoxia and exercise are preserved in aged compared with young female C57BL/6 mice. Acta Physiologica (Oxf), 188(2),

113-121.

Gerber, H. P., Vu, T. H., Ryan, A. M., Kowalski, J., Werb, Z., & Ferrara, N. (1999). VEGF couples hypertrophic cartilage remodeling, ossification and angiogenesis during endochondral bone formation. Nature Medicine, 5(6), 623-628.

Gertz, K., Priller, J., Kronenberg, G., Fink, K. B., Winter, B., Schrock, H., et al. (2006).

Physical activity improves long-term stroke outcome via endothelial nitric oxide synthase-dependent augmentation of neovascularization and cerebral blood flow.

Circulation Research, 99(10), 1132-1140.

Goodyear, L. J., Hirshman, M. F., & Horton, E. S. (1991). Exercise-induced translocation of skeletal muscle glucose transporters. American Journal of Physiology, 261(6 Pt 1), E795-799.

Goodyear, L. J., Hirshman, M. F., Smith, R. J., & Horton, E. S. (1991). Glucose transporter number, activity, and isoform content in plasma membranes of red and white skeletal muscle. American Journal of Physiology, 261(5 Pt 1), E556-561.

Gottfried, E., Kunz-Schughart, L. A., Weber, A., Rehli, M., Peuker, A., Muller, A., et al.

(2008). Expression of CD68 in non-myeloid cell types. Scandinavian Journal of Immunology, 67(5), 453-463.

Greenberg, D. A., & Jin, K. (2005). From angiogenesis to neuropathology. Nature, 438(7070), 954-959.

Gustafsson, T., Knutsson, A., Puntschart, A., Kaijser, L., Nordqvist, A. C., Sundberg, C. J., et al. (2002). Increased expression of vascular endothelial growth factor in human skeletal muscle in response to short-term one-legged exercise training. Pflugers Archiv, 444(6), 752-759.

Gustafsson, T., & Kraus, W. E. (2001). Exercise-induced angiogenesis-related growth and transcription factors in skeletal muscle, and their modification in muscle pathology.

Frontiers in Bioscience, 6, D75-89.

Gustafsson, T., & Sundberg, C. J. (2000). Expression of angiogenic growth factors in hum,an skeletal muscle in response to a singular bout of exercise. American Journal of Physiology. Heart and Circulatory Physiology, 279(6), H3144-3145.

Haas, T. L. (2002). Molecular control of capillary growth in skeletal muscle. Canadian Journal of Applied Physiology, 27(5), 491-515.

Haigh, J. J., Morelli, P. I., Gerhardt, H., Haigh, K., Tsien, J., Damert, A., et al. (2003). Cortical and retinal defects caused by dosage-dependent reductions in VEGF-A paracrine signaling. Developmental Biology, 262(2), 225-241.

Hayashi, T., Abe, K., & Itoyama, Y. (1998). Reduction of ischemic damage by application of vascular endothelial growth factor in rat brain after transient ischemia. Journal of Cerebral Blood Flow and Metabolism, 18(8), 887-895.

Hepple, R. T., Mackinnon, S. L., Goodman, J. M., Thomas, S. G., & Plyley, M. J. (1997).

Resistance and aerobic training in older men: effects on VO2peak and the capillary supply to skeletal muscle. Journal of Applied Physiology, 82(4), 1305-1310.

Hiramatsu, M., Kohno, M., Edamatsu, R., Mitsuta, K., & Mori, A. (1992). Increased superoxide dismutase activity in aged human cerebrospinal fluid and rat brain determined by electron spin resonance spectrometry using the spin trap method.

Journal of Neurochemistry, 58(3), 1160-1164.

Hitomi, Y., Watanabe, S., Kizaki, T., Sakurai, T., Takemasa, T., Haga, S., et al. (2008). Acute exercise increases expression of extracellular superoxide dismutase in skeletal muscle and the aorta. Redox Report, 13(5), 213-216.

Iemitsu, M., Maeda, S., Jesmin, S., Otsuki, T., & Miyauchi, T. (2006). Exercise training improves aging-induced downregulation of VEGF angiogenic signaling cascade in hearts. American Journal of Physiology. Heart and Circulatory Physiology, 291(3), H1290-1298.

Itoh, H., Ohkuwa, T., Yamamoto, T., Sato, Y., Miyamura, M., & Naoi, M. (1998). Effects of endurance physical training on hydroxyl radical generation in rat tissues. Life Science, 63(21), 1921-1929.

Jensen, L., Bangsbo, J., & Hellsten, Y. (2004). Effect of high intensity training on

capillarization and presence of angiogenic factors in human skeletal muscle. Journal of Physiology, 557(Pt 2), 571-582.

Ji, L. L., Dillon, D., & Wu, E. (1990). Alteration of antioxidant enzymes with aging in rat skeletal muscle and liver. American Journal of Physiology, 258(4 Pt 2), R918-923.

Kostic, N., Caparevic, Z., Marina, D., Ilic, S., Radojkovic, J., Cosic, Z., et al. (2009). Clinical evaluation of oxidative stress in patients with diabetes mellitus type II -- impact of acute exercise. Vojnosanitetski Preglgled, 66(6), 459-464.

Koyama, T., Xie, Z., Gao, M., Suzuki, J., & Batra, S. (1998). Adaptive changes in the capillary network in the left ventricle of rat heart. Japanese Journal of Physiology, 48(4), 229-241.

Kubes, P., Suzuki, M., & Granger, D. N. (1991). Nitric oxide: an endogenous modulator of leukocyte adhesion. Proceedings of the National Academy of Sciences of the United States of America, 88(11), 4651-4655.

Kwak, H. J., So, J. N., Lee, S. J., Kim, I., & Koh, G. Y. (1999). Angiopoietin-1 is an apoptosis survival factor for endothelial cells. FEBS Letters, 448(2-3), 249-253.

Lange-Asschenfeldt, C., & Kojda, G. (2008). Alzheimer's disease, cerebrovascular dysfunction and the benefits of exercise: from vessels to neurons. Experimental Gerontology, 43(6), 499-504.

Lappalainen, Z., Lappalainen, J., Oksala, N. K., Laaksonen, D. E., Khanna, S., Sen, C. K., et al. (2009). Diabetes impairs exercise training-associated thioredoxin response and glutathione status in rat brain. Journal of Applied Physiology, 106(2), 461-467.

Lautenschlager, N. T., Cox, K. L., Flicker, L., Foster, J. K., van Bockxmeer, F. M., Xiao, J., et al. (2008). Effect of physical activity on cognitive function in older adults at risk for Alzheimer disease: a randomized trial. JAMA, 300(9), 1027-1037.

Lee, J. S., Song, S. H., Kim, J. M., Shin, I. S., Kim, K. L., Suh, Y. L., et al. (2008).

Angiopoietin-1 prevents hypertension and target organ damage through its interaction with endothelial Tie2 receptor. Cardiovascular Research, 78(3), 572-580.

Leosco, D., Rengo, G., Iaccarino, G., Sanzari, E., Golino, L., De Lisa, G., et al. (2007). Prior exercise improves age-dependent vascular endothelial growth factor downregulation

and angiogenesis responses to hind-limb ischemia in old rats. Journal of Gerontology.

Series A, Biological Sciences and Medical Sciences, 62(5), 471-480.

Lim, H. S., Blann, A. D., Chong, A. Y., Freestone, B., & Lip, G. Y. (2004). Plasma vascular endothelial growth factor, angiopoietin-1, and angiopoietin-2 in diabetes: implications for cardiovascular risk and effects of multifactorial intervention. Diabetes Care, 27(12), 2918-2924.

Lim, H. S., Lip, G. Y., & Blann, A. D. (2005). Angiopoietin-1 and angiopoietin-2 in diabetes mellitus: relationship to VEGF, glycaemic control, endothelial damage/dysfunction and atherosclerosis. Atherosclerosis, 180(1), 113-118.

Liu, X. B., Jiang, J., Gui, C., Hu, X. Y., Xiang, M. X., & Wang, J. A. (2008). Angiopoietin-1 protects mesenchymal stem cells against serum deprivation and hypoxia-induced apoptosis through the PI3K/Akt pathway. Acta Pharmacologica Sinica, 29(7), 815-822.

Lloyd, P. G., Prior, B. M., Yang, H. T., & Terjung, R. L. (2003). Angiogenic growth factor expression in rat skeletal muscle in response to exercise training. American Journal of Physiology. Heart and Circulatory Physiology, 284(5), H1668-1678.

Lou, S. J., Liu, J. Y., Chang, H., & Chen, P. J. (2008). Hippocampal neurogenesis and gene expression depend on exercise intensity in juvenile rats. Brain Research, 1210, 48-55.

Loughna, S., & Sato, T. N. (2001). Angiopoietin and Tie signaling pathways in vascular development. Matrix Biology, 20(5-6), 319-325.

Makinde, T., & Agrawal, D. K. (2008). Intra and extravascular transmembrane signalling of angiopoietin-1-Tie2 receptor in health and disease. Journal of Cellular and Molecular Medicine, 12(3), 810-828.

Marti, H. J., Bernaudin, M., Bellail, A., Schoch, H., Euler, M., Petit, E., et al. (2000).

Hypoxia-induced vascular endothelial growth factor expression precedes

neovascularization after cerebral ischemia. American Journal of Pathology, 156(3), 965-976.

Marttila, R. J., Lorentz, H., & Rinne, U. K. (1988). Oxygen toxicity protecting enzymes in Parkinson's disease. Increase of superoxide dismutase-like activity in the substantia nigra and basal nucleus. Journal of Neurological Sciences, 86(2-3), 321-331.

McCloskey, D. P., Adamo, D. S., & Anderson, B. J. (2001). Exercise increases metabolic capacity in the motor cortex and striatum, but not in the hippocampus. Brain Research, 891(1-2), 168-175.

Mellion, B. T., Ignarro, L. J., Ohlstein, E. H., Pontecorvo, E. G., Hyman, A. L., & Kadowitz, P.

J. (1981). Evidence for the inhibitory role of guanosine 3', 5'-monophosphate in ADP-induced human platelet aggregation in the presence of nitric oxide and related vasodilators. Blood, 57(5), 946-955.

Milkiewicz, M., Hudlicka, O., Verhaeg, J., Egginton, S., & Brown, M. D. (2003). Differential expression of Flk-1 and Flt-1 in rat skeletal muscle in response to chronic ischaemia:

favourable effect of muscle activity. Clinical Science (Lond), 105(4), 473-482.

Millauer, B., Wizigmann-Voos, S., Schnurch, H., Martinez, R., Moller, N. P., Risau, W., et al.

(1993). High affinity VEGF binding and developmental expression suggest Flk-1 as a major regulator of vasculogenesis and angiogenesis. Cell, 72(6), 835-846.

Miquel, J., Economos, A. C., Fleming, J., & Johnson, J. E., Jr. (1980). Mitochondrial role in

cell aging. Experimental Gerontology, 15(6), 575-591.

Miyata, T., Wada, Y., Cai, Z., Iida, Y., Horie, K., Yasuda, Y., et al. (1997). Implication of an increased oxidative stress in the formation of advanced glycation end products in patients with end-stage renal failure. Kidney International, 51(4), 1170-1181.

Morbidelli, L., Chang, C. H., Douglas, J. G., Granger, H. J., Ledda, F., & Ziche, M. (1996).

Nitric oxide mediates mitogenic effect of VEGF on coronary venular endothelium.

American Journal of Physiology, 270(1 Pt 2), H411-415.

Moreira, P. I., Siedlak, S. L., Aliev, G., Zhu, X., Cash, A. D., Smith, M. A., et al. (2005).

Oxidative stress mechanisms and potential therapeutics in Alzheimer disease. Journal of Neural Transmission, 112(7), 921-932.

Mu, D., Jiang, X., Sheldon, R. A., Fox, C. K., Hamrick, S. E., Vexler, Z. S., et al. (2003).

Regulation of hypoxia-inducible factor 1alpha and induction of vascular endothelial growth factor in a rat neonatal stroke model. Neurobiology of Disease, 14(3), 524-534.

Nadar, S. K., Blann, A., Beevers, D. G., & Lip, G. Y. (2005). Abnormal angiopoietins 1&2, angiopoietin receptor Tie-2 and vascular endothelial growth factor levels in

hypertension: relationship to target organ damage [a sub-study of the

Anglo-Scandinavian Cardiac Outcomes Trial (ASCOT)]. Journal of Internal Medicine, 258(4), 336-343.

Namba, T., Koike, H., Murakami, K., Aoki, M., Makino, H., Hashiya, N., et al. (2003).

Angiogenesis induced by endothelial nitric oxide synthase gene through vascular endothelial growth factor expression in a rat hindlimb ischemia model. Circulation, 108(18), 2250-2257.

Nehlig, A. (1997). Cerebral energy metabolism, glucose transport and blood flow: changes with maturation and adaptation to hypoglycaemia. Diabetes Metabolism, 23(1), 18-29.

Olfert, I. M., Breen, E. C., Mathieu-Costello, O., & Wagner, P. D. (2001a). Chronic hypoxia attenuates resting and exercise-induced VEGF, flt-1, and flk-1 mRNA levels in skeletal muscle. Journal of Applied Physiology, 90(4), 1532-1538.

Olfert, I. M., Breen, E. C., Mathieu-Costello, O., & Wagner, P. D. (2001b). Skeletal muscle capillarity and angiogenic mRNA levels after exercise training in normoxia and chronic hypoxia. Journal of Applied Physiology, 91(3), 1176-1184.

Papapetropoulos, A., Garcia-Cardena, G., Dengler, T. J., Maisonpierre, P. C., Yancopoulos, G.

D., & Sessa, W. C. (1999). Direct actions of angiopoietin-1 on human endothelium:

evidence for network stabilization, cell survival, and interaction with other angiogenic growth factors. Laboratory Investigation, 79(2), 213-223.

Parenti, A., Morbidelli, L., Cui, X. L., Douglas, J. G., Hood, J. D., Granger, H. J., et al. (1998).

Nitric oxide is an upstream signal of vascular endothelial growth factor-induced extracellular signal-regulated kinase1/2 activation in postcapillary endothelium.

Journal of Biological Chemistry, 273(7), 4220-4226.

Parsons, P. A. (2003). From the stress theory of aging to energetic and evolutionary expectations for longevity. Biogerontology, 4(2), 63-73.

Penn, J. S., Madan, A., Caldwell, R. B., Bartoli, M., Caldwell, R. W., & Hartnett, M. E.

(2008). Vascular endothelial growth factor in eye disease. Progress in Retinal and Eye Research, 27(4), 331-371.

Pepper, M. S., Ferrara, N., Orci, L., & Montesano, R. (1992). Potent synergism between vascular endothelial growth factor and basic fibroblast growth factor in the induction of angiogenesis in vitro. Biochemical and Biophysical Research Communications, 189(2), 824-831.

Pepper, M. S., Wasi, S., Ferrara, N., Orci, L., & Montesano, R. (1994). In vitro angiogenic and proteolytic properties of bovine lymphatic endothelial cells. Experimental Cell Research, 210(2), 298-305.

Picciotti, P., Torsello, A., Wolf, F. I., Paludetti, G., Gaetani, E., & Pola, R. (2004).

Age-dependent modifications of expression level of VEGF and its receptors in the inner ear. Experimental Gerontology, 39(8), 1253-1258.

Ploug, T., Stallknecht, B. M., Pedersen, O., Kahn, B. B., Ohkuwa, T., Vinten, J., et al. (1990).

Effect of endurance training on glucose transport capacity and glucose transporter expression in rat skeletal muscle. American Journal of Physiology, 259(6 Pt 1), E778-786.

Prior, B. M., Lloyd, P. G., Ren, J., Li, H., Yang, H. T., Laughlin, M. H., et al. (2004). Time course of changes in collateral blood flow and isolated vessel size and gene expression after femoral artery occlusion in rats. American Journal of Physiology.

Heart and Circulatory Physiology, 287(6), H2434-2447.

Prior, B. M., Lloyd, P. G., Yang, H. T., & Terjung, R. L. (2003). Exercise-induced vascular remodeling. Exercise and Sport Sciences Reviews, 31(1), 26-33.

Proctor, D. N., Sinning, W. E., Walro, J. M., Sieck, G. C., & Lemon, P. W. (1995). Oxidative capacity of human muscle fiber types: effects of age and training status. Journal of Applied Physiology, 78(6), 2033-2038.

Przybyla, B., Gurley, C., Harvey, J. F., Bearden, E., Kortebein, P., Evans, W. J., et al. (2006).

Aging alters macrophage properties in human skeletal muscle both at rest and in response to acute resistance exercise. Experimental Gerontology, 41(3), 320-327.

Quinn, T. P., Peters, K. G., De Vries, C., Ferrara, N., & Williams, L. T. (1993). Fetal liver kinase 1 is a receptor for vascular endothelial growth factor and is selectively

expressed in vascular endothelium. Proceedings of the National Academy of Sciences of the United States of America, 90(16), 7533-7537.

Raab, S., Beck, H., Gaumann, A., Yuce, A., Gerber, H. P., Plate, K., et al. (2004). Impaired brain angiogenesis and neuronal apoptosis induced by conditional homozygous inactivation of vascular endothelial growth factor. Thrombosis and Haemostasis, 91(3), 595-605.

Radoff, S., Cerami, A., & Vlassara, H. (1990). Isolation of surface binding protein specific for advanced glycosylation end products from mouse macrophage-derived cell line RAW 264.7. Diabetes, 39(12), 1510-1518.

Radziszewski, W., Chopra, M., Zembowicz, A., Gryglewski, R., Ignarro, L. J., & Chaudhuri, G. (1995). Nitric oxide donors induce extrusion of cyclic GMP from isolated human blood platelets by a mechanism which may be modulated by prostaglandins.

International Journal of Cardiology, 51(3), 211-220.

Ramasamy, R., Vannucci, S. J., Yan, S. S., Herold, K., Yan, S. F., & Schmidt, A. M. (2005).

Advanced glycation end products and RAGE: a common thread in aging, diabetes, neurodegeneration, and inflammation. Glycobiology, 15(7), 16R-28R.

Ramasamy, R., Yan, S. F., & Schmidt, A. M. (2005). The RAGE axis and endothelial dysfunction: maladaptive roles in the diabetic vasculature and beyond. Trends in Cardiovascular Medicine, 15(7), 237-243.

Rao, J., Oz, G., & Seaquist, E. R. (2006). Regulation of cerebral glucose metabolism. Minerva Endocrinologica, 31(2), 149-158.

Richardson, R. S., Wagner, H., Mudaliar, S. R., Henry, R., Noyszewski, E. A., & Wagner, P. D.

(1999). Human VEGF gene expression in skeletal muscle: effect of acute normoxic and hypoxic exercise. American Journal of Physiology, 277(6 Pt 2), H2247-2252.

Richardson, R. S., Wagner, H., Mudaliar, S. R., Saucedo, E., Henry, R., & Wagner, P. D.

(2000). Exercise adaptation attenuates VEGF gene expression in human skeletal muscle. American Journal of Physiology. Heart and Circulatory Physiology, 279(2), H772-778.

Ritthaler, U., Deng, Y., Zhang, Y., Greten, J., Abel, M., Sido, B., et al. (1995). Expression of receptors for advanced glycation end products in peripheral occlusive vascular disease.

American Journal of Pathology, 146(3), 688-694.

Ryan, A. S., Nicklas, B. J., & Berman, D. M. (2006). Aerobic exercise is necessary to improve glucose utilization with moderate weight loss in women. Obesity (Silver Spring), 14(6), 1064-1072.

Ryan, N. A., Zwetsloot, K. A., Westerkamp, L. M., Hickner, R. C., Pofahl, W. E., & Gavin, T.

P. (2006). Lower skeletal muscle capillarization and VEGF expression in aged vs.

young men. Journal of Applied Physiology, 100(1), 178-185.

Saggu, H., Cooksey, J., Dexter, D., Wells, F. R., Lees, A., Jenner, P., et al. (1989). A selective increase in particulate superoxide dismutase activity in parkinsonian substantia nigra.

Journal of Neurochemistry, 53(3), 692-697.

Sanz, A., Pamplona, R., & Barja, G. (2006). Is the mitochondrial free radical theory of aging intact? Antioxidants & Redox Signaling, 8(3-4), 582-599.

Schleicher, E. D., Wagner, E., & Nerlich, A. G. (1997). Increased accumulation of the

glycoxidation product N(epsilon)-(carboxymethyl)lysine in human tissues in diabetes and aging. Journal of Clinical Investigation, 99(3), 457-468.

Schmidt, A. M., Hori, O., Chen, J. X., Li, J. F., Crandall, J., Zhang, J., et al. (1995). Advanced glycation endproducts interacting with their endothelial receptor induce expression of vascular cell adhesion molecule-1 (VCAM-1) in cultured human endothelial cells and in mice. A potential mechanism for the accelerated vasculopathy of diabetes. Journal of Clinical Investigation, 96(3), 1395-1403.

Schmidt, A. M., Yan, S. D., & Stern, D. M. (1995). The dark side of glucose. Nature Medicine, 1(10), 1002-1004.

Schmidt, A. M., Yan, S. D., Wautier, J. L., & Stern, D. (1999). Activation of receptor for advanced glycation end products: a mechanism for chronic vascular dysfunction in diabetic vasculopathy and atherosclerosis. Circulation Research, 84(5), 489-497.

Schmidt, A. M., Yan, S. D., Yan, S. F., & Stern, D. M. (2000). The biology of the receptor for advanced glycation end products and its ligands. Biochimica et Biophysica Acta, 1498(2-3), 99-111.

Schneider, U. C., Schilling, L., Schroeck, H., Nebe, C. T., Vajkoczy, P., & Woitzik, J. (2007).

Granulocyte-macrophage colony-stimulating factor-induced vessel growth restores

cerebral blood supply after bilateral carotid artery occlusion. Stroke, 38(4), 1320-1328.

Shalaby, F., Rossant, J., Yamaguchi, T. P., Gertsenstein, M., Wu, X. F., Breitman, M. L., et al.

(1995). Failure of blood-island formation and vasculogenesis in Flk-1-deficient mice.

Nature, 376(6535), 62-66.

Shetty, A. K., Hattiangady, B., & Shetty, G. A. (2005). Stem/progenitor cell proliferation factors FGF-2, IGF-1, and VEGF exhibit early decline during the course of aging in

Shetty, A. K., Hattiangady, B., & Shetty, G. A. (2005). Stem/progenitor cell proliferation factors FGF-2, IGF-1, and VEGF exhibit early decline during the course of aging in

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