Biomedical Engineering Reference
In-Depth Information
133. Chabanel, A., Flamm, M., Sung, K.L., Lee, M.M., Schachter, D., Chien, S.: Influence of
cholesterol content on red cell membrane viscoelasticity and fluidity. Biophys. J. 44(2),
171-176 (1983). doi: 10.1016/S0006-3495(83)84288-X
134. Coderch, L., Fonollosa, J., De Pera, M., Estelrich, J., De La Maza, A., Parra, J.L.: Influence
of cholesterol on liposome fluidity by EPR. Relationship with percutaneous absorption.
J. Controlled Release Off. J. Controlled Release Soc. 68(1), 85-95 (2000)
135. Gleason, M.M., Medow, M.S., Tulenko, T.N.: Excess membrane cholesterol alters calcium
movements, cytosolic calcium levels, and membrane fluidity in arterial smooth muscle cells.
Circ. Res. 69(1), 216-227 (1991)
136. Niggli, V., Meszaros, A.V., Oppliger, C., Tornay, S.: Impact of cholesterol depletion on
shape changes, actin reorganization, and signal transduction in neutrophil-like HL-60 cells.
Exp. Cell Res. 296(2), 358-368 (2004). doi: 10.1016/j.yexcr.2004.02.015
137. Pierini, L.M., Eddy, R.J., Fuortes, M., Seveau, S., Casulo, C., Maxfield, F.R.: Membrane
lipid organization is critical for human neutrophil polarization. J. Biol. Chem. 278(12),
10831-10841 (2003). doi: 10.1074/jbc.M212386200
138. Zhang, X., Shin, H.Y.: Linking the pathobiology of hypercholesterolemia with the
neutrophil mechanotransduction. Lipoproteins—Role in Health and Diseases, Intech d.o.o,
Rijeka, pp. 223-252 (2012). doi: 10.1002/app.39543
139. Palmblad, J., Hallberg, D., Engstedt, L.: Polymorphonuclear (PMN) function after small
intestinal shunt operation for morbid obesity. Br. J. Haematol. 44(1), 101-108 (1980)
140. DeLano, F.A., Schmid-Schonbein, G.W.: Enhancement of glucocorticoid and mineral-
ocorticoid receptor density in the microcirculation of the spontaneously hypertensive rat.
Microcirculation 11(1), 69-78 (2004)
141. Sutanto, W., Oitzl, M.S., Rots, N.Y., Schobitz, B., Van den Berg, D.T., Van Dijken, H.H.,
Mos, J., Cools, A.R., Tilders, F.J., Koolhaas, J.M., et al.: Corticosteroid receptor plasticity in
the central nervous system of various rat models. Endocr. Regul. 26(3), 111-118 (1992)
142. Kordonowy, L.L., Burg, E., Lenox, C.C., Gauthier, L.M., Petty, J.M., Antkowiak, M.,
Palvinskaya, T., Ubags, N., Rincon, M., Dixon, A.E., Vernooy, J.H., Fessler, M.B., Poynter,
M.E., Suratt, B.T.: Obesity is associated with neutrophil dysfunction and attenuation of
murine acute lung injury. Am. J. Respir. Cell Mol. Biol. 47(1), 120-127 (2012). doi: 10.
1165/rcmb.2011-0334OC
143. Bakan, E., Yildirim, A., Kurtul, N., Polat, M.F., Dursun, H., Cayir, K.: Effects of type 2
diabetes mellitus on plasma fatty acid composition and cholesterol content of erythrocyte
and leukocyte membranes. Acta Diabetol. 43(4), 109-113 (2006). doi: 10.1007/s00592-
007-0224-4
144. Day, A.P., Bellavia, S., Jones, O.T., Stansbie, D.: Effect of simvastatin therapy on cell
membrane cholesterol content and membrane function as assessed by polymorphonuclear
cell NADPH oxidase activity. Ann. Clin. Biochem. 34(Pt 3), 269-275 (1997)
145. Levy, Y., Leibowitz, R., Aviram, M., Brook, J.G., Cogan, U.: Reduction of plasma
cholesterol by lovastatin normalizes erythrocyte membrane fluidity in patients with severe
hypercholesterolaemia. Br. J. Clin. Pharmacol. 34(5), 427-430 (1992)
146. Oh, H., Mohler 3rd, E.R., Tian, A., Baumgart, T., Diamond, S.L.: Membrane cholesterol is a
biomechanical regulator of neutrophil adhesion. Arterioscler. Thromb. Vasc. Biol. 29(9),
1290-1297 (2009). doi: 10.1161/ATVBAHA.109.189571
147. Henninger,
D.D.,
Gerritsen,
M.E.,
Granger,
D.N.:
Low-density
lipoprotein
receptor
knockout
mice
exhibit
exaggerated
microvascular
responses
to
inflammatory
stimuli.
Circ. Res. 81(2), 274-281 (1997)
148. Lechi, C., Zatti, M., Corradini, P., Bonadonna, G., Arosio, E., Pedrolli, C., Lechi, A.:
Increased leukocyte aggregation in patients with hypercholesterolaemia. Clin. Chim. Acta.
Int. J. Clin. Chem. 144(1), 11-16 (1984)
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