Biomedical Engineering Reference
In-Depth Information
101. M. Mas, A. Escrig and J.L. Gonzalez-Mora, In vivo electrochemical measurement of nitric oxide in
corpus cavernosum penis. J. Neurosci. Methods 119 , 143-150 (2002).
102. K.Z. Kedziora-Kornatowska, M. Luciak, J. Blaszczyk, and W. Pawlak, Effect of aminoguanidine on
the generation of superoxide anion and nitric oxide by peripheral blood granulocytes of rats with strep-
tozotocin-induced diabetes. Clin. Chim. Acta 278 , 45-53 (1998).
103. G.B. Stefano, P. Cadet, C. Breton, Y. Goumon, V. Prevot, J. P. Dessaint, J.C. Beauvillain, A.S. Roumier,
I. Welters, and M. Salzet, Estradiol-stimulated nitric oxide release in human granulocytes is dependent
on intracellular calcium transients: evidence of a cell surface estrogen receptor. Blood 95 , 3951-3958
(2000).
104. S. Uhlmann, U. Friedrichs,W. Eichler, S. Hoffmann, and P. Wiedemann, Direct measurement of VEGF-
induced nitric oxide production by choroidal endothelial cells. Microvasc. Res. 62 , 179-189 (2001).
105. S. Kashiwagi, Y. Izumi, T. Gohongi, Z.N. Demou, L. Xu, P.L. Huang, D.G. Buerk, L.L. Munn,
R K. Jain, and D. Fukumura, NO mediates mural cell recruitment and vessel morphogenesis in murine
melanomas and tissue-engineered blood vessels. J. Clin. Invest. 115 , 1816-1827 (2005).
106. M. Tsatmali, A. Graham, D. Szatkowski, J. Ancans, P. Manning, C.J. McNeil, A.M. Graham, and
A.J. Thody, Alpha-melanocyte-stimulating hormone modulates nitric oxide production in melanocytes.
J. Invest. Dermatol. 114 , 520-526 (2000).
107. J. Rysz, M. Luciak, J. Kedziora, J. Blaszczyk, and E. Sibinska, Nitric oxide release in the peripheral
blood during hemodialysis. Kidney Int. 51 , 294-300 (1997).
108. M. Rievaj, J. Lietava, and D. Bustin, Electrochemical determination of nitric oxide in blood samples.
Chem. Pap.-Chem. Zvesti 58 , 306-310 (2004).
109. G. Larfars, F. Lantoine, M.A. Devynck, and H. Gyllenhammar, Electrochemical detection of nitric
oxide production in human polymorphonuclear neutrophil leukocytes. Scand. J. Clin. Lab. Invest. 59 ,
361-368 (1999).
110. N. Kasuya, Y. Kishi, S. Sakita, F. Numano, and M. Isobe, Acute vigorous exercised primes enhanced
NO release in human platelets. Atherosclerosis 161 , 225-232 (2002).
111. J.P. de la Cruz, J.A. Gonzalez-Correa, A. Guerrero, E. Marquez, F. Martos and F.S. de la Cuesta,
Differences in the effects of extended-release aspirin and plain-formulated aspirin on prostanoids and
nitric oxide in healthy volunteers. Fundam. Clin. Pharmacol. 17 , 363-372 (2003).
112. J.E. Freedman, J. Loscalzo, M.R.M.R. Barnard, C. Alpert, J.F. Keaney, and A.D. Michelson, Nitric oxide
released from activated platelets inhibits platelet recruitment. J. Clin. Invest. 100 , 350-356 (1997).
113. X.R. Shi, T.Y. Ren, and A.L. Nuttall, The electrochemical and fl uorescence detection of nitric oxide in
the cochlea and its increase following loud sound. Hear. Res. 164 , 49-58 (2002).
114. Z.G. Jiang, X.R. Shi, H. Zhao, J.Q. Si, and A.L. Nuttall, Basal nitric oxide production contributes to
membrane potential and vasotone regulation of guinea pig in vitro spiral modiolar artery. Hear. Res.
189 , 92-100 (2004).
115. Y. Sakihama, S. Nakamura, and H. Yamasaki, Nitric oxide production mediated by nitrate reductase in
the green alga Chlamydomonas reinhardtii: an alternative NO production pathway in photosynthetic
organisms. Plant Cell Physiol. 43 , 290-297 (2002).
116. H. Yamasaki, Y. Sakihama, and S. Takahashi, An alternative pathway for nitric oxide production in
plants: new features of an old enzyme. Trends Plant Sci. 4 , 128-129 (1999).
117. H. Yamasaki and Y. Sakihama, Simultaneous production of nitric oxide and peroxynitrite by plant
nitrate reductase: in vitro evidence for the NR-dependent formation of active nitrogen species. FEBS
Lett. 468 , 89-92 (2000).
118. S. Grande, P. Bogani, A. de Saizieu, G. Schueler, C. Galli, and F. Visioli, Vasomodulating potential of
Mediterranean wild plant extracts. J. Agric. Food Chem. 52 , 5021-5026 (2004).
119. L.L. Moroz, T.P. Norekian, T.J. Pirtle, K.J. Robertson, and R.A. Satterlie, Distribution of NADPH-
diaphorase reactivity and effects of nitric oxide on feeding and locomotory circuitry in the pteropod
mollusc, Clione limacina. J. Comp. Neurol. 427 , 274-284 (2000).
120. U. Simonsen, R.W. Wadsworth, N.H. Buus, and M.J. Mulvany, In vitro simultaneous measurements
of relaxation and nitric oxide concentration in rat superior mesenteric artery. J. Physiol.-London 516 ,
271-282 (1999).
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