Cholesterol and cell membrane function: a hypothesis concerning etiology of atherosclerosis.

[1]  V. Tomasi,et al.  The role of phosphatidylserine in the hormonal control of adenylate cyclase of rat liver plasma membranes. , 1972, Biochimica et biophysica acta.

[2]  J. Froehlich,et al.  EFFECT OF ADENOSINE 3'-5'-CYCLIC MONOPHOSPHATE ON CELL PROLIFERATION , 1972, The Journal of cell biology.

[3]  D. Papahadjopoulos,et al.  Phospholipid requirements for (Na + + K + )-ATPase activity: head-group specificity and fatty acid fluidity. , 1972, Biochimica et biophysica acta.

[4]  E. Oldfield,et al.  Dynamics of lipids in membranes: Heterogeneity and the role of cholesterol , 1972, FEBS letters.

[5]  D. Papahadjopoulos,et al.  Permeability properties of phospholipid membranes: effect of cholesterol and temperature. , 1972, Biochimica et biophysica acta.

[6]  E. Mayhew Ion transport by ouabain resistant and sensitive ehrlich ascites carcinoma cells , 1972, Journal of cellular physiology.

[7]  R. Demel,et al.  The properties of polyunsaturated lecithins in monolayers and liposomes and the interactions of these lecithins with cholesterol , 1972 .

[8]  R. Mavis,et al.  The effect of phospholipid fatty acid composition in membranous enzymes in Escherichia coli. , 1972, The Journal of biological chemistry.

[9]  R. Ostwald,et al.  Erythrocyte membranes--effect of increased cholesterol content on permeability. , 1971, Biochimica et biophysica acta.

[10]  A. Keith,et al.  Temperature-induced phase changes in mitochondrial membranes detected by spin labeling. , 1971, The Journal of biological chemistry.

[11]  G. Levey Restoration of glucagon responsiveness of solubilized myocardial adenyl cyclase by phosphatidylserine. , 1971, Biochemical and biophysical research communications.

[12]  D. Papahadjopoulos,et al.  Interactions of basic proteins with phospholipid membranes. Binding and changes in the sodium permeability of phosphatidylserine vesicles. , 1971, The Journal of biological chemistry.

[13]  C. F. Fox,et al.  Biogenesis of microbial transport systems: evidnce for coupled incorporation of newly synthesized lipids and proteins into membrane. , 1971, Journal of molecular biology.

[14]  H. Rasmussen Cell Communication, Calcium Ion, and Cyclic Adenosine Monophosphate , 1970, Science.

[15]  J. Gier,et al.  Valinomycin-induced permeation of 86Rb+ of liposomes with varying composition through the bilayers , 1970 .

[16]  V. P. Skipski,et al.  Lipid composition of rat liver plasma membranes. , 1969, The Journal of biological chemistry.

[17]  H. Lécuyer,et al.  Structure of aqueous mixtures of lecithin and cholesterol. , 1969, Journal of molecular biology.

[18]  J. Gier,et al.  The effect of partial replacements of membrane cholesterol by other steroids on the osmotic fragility and glycerol permeability of erythrocytes. , 1969, Biochimica et biophysica acta.

[19]  L. van Deenen,et al.  The role of cholesterol in lipid membranes. , 1969, Biochimica et biophysica acta.

[20]  G. Bourne,et al.  HISTOCHEMISTRY OF THE DEVELOPMENT OF ATHEROSCLEROSIS * , 1968, Annals of the New York Academy of Sciences.

[21]  H. C. Stary,et al.  PRELIMINARY EXPERIENCE WITH MITOTIC ACTIVITY OF CELLULAR ELEMENTS IN THE ATHEROSCLEROTIC PLAQUES OF CHOLESTEROL‐FED RABBITS STUDIED BY LABELING WITH TRITIATED THYMIDINE * , 1968, Annals of the New York Academy of Sciences.

[22]  D. Kritchevsky,et al.  The metabolism of free and esterified cholesterol in tissue culture cells: a review. , 1968, Experimental and molecular pathology.

[23]  J. Graham,et al.  The incorporation of steroid molecules into lecithin sols, beta-lipoproteins and cellular membranes. , 1968, European journal of biochemistry.

[24]  G. Nelson,et al.  Lipid composition of erythrocytes in various mammalian species. , 1967, Biochimica et biophysica acta.

[25]  D. Papahadjopoulos,et al.  Phospholipid model membranes. II. Permeability properties of hydrated liquid crystals. , 1967, Biochimica et biophysica acta.

[26]  C. Green,et al.  The exchange of unesterified cholesterol between human low-density lipoproteins and rat erythrocyte 'ghosts'. , 1967, The Biochemical journal.

[27]  W. Norton,et al.  THE LIPID COMPOSITION OF PURIFIED BOVINE BRAIN MYELIN * , 1966, Journal of neurochemistry.

[28]  W. Insull,et al.  Cholesterol, triglyceride, and phospholipid content of intima, media, and atherosclerotic fatty streak in human thoracic aorta. , 1966, The Journal of clinical investigation.

[29]  D. B. Zilversmit,et al.  Uptake and Release of Cholesterol by Rabbit Atheromatous Lesions , 1966, Circulation research.

[30]  D. B. Zilversmit,et al.  Does a Metabolic Barrier to Circulating Cholesterol Protect the Arterial Wall? , 1966, Circulation.

[31]  J. O'brien,et al.  Lipid composition of the normal human brain: gray matter, white matter, and myelin. , 1965, Journal of lipid research.

[32]  Elspeth B. Smith,et al.  The influence of age and atherosclerosis on the chemistry of aortic intima , 1965 .

[33]  D. Hanahan,et al.  Characterization and quantification of red cell lipids in normal man. , 1964, Journal of lipid research.

[34]  M. Lubin,et al.  ON THE ROLE OF INTRACELLULAR POTASSIUM IN PROTEIN SYNTHESIS. , 1964, Biochimica et biophysica acta.

[35]  R. Curtis,et al.  APPLICATION OF A TISSUE CULTURE TECHNIQUE TO SCREEN COMPOUNDS FOR THE PREVENTION OF LIPOID DEPOSITION IN AORTA CELLS. , 1963, The Australian journal of experimental biology and medical science.

[36]  C. Böttcher,et al.  Changes in the composition of phospholipids and of phospholipid fatty acids associated with atherosclerosis in the human aortic wall , 1961 .

[37]  D. Rutstein,et al.  Effects of linolenic and stearic acids on cholesterol-induced lipoid deposition in human aortic cells in tissue-culture. , 1958, Lancet.

[38]  O. Portman Arterial composition and metabolism: esterified fatty acids and cholesterol. , 1970, Advances in lipid research.

[39]  O. Portman,et al.  Nutritional control of arterial lipid composition in squirrel monkeys: major ester classes and types of phospholipids. , 1967, The Journal of nutrition.

[40]  H. Lisser,et al.  Adrenal cortical tumor causing hirsutism without other evidence of virilization. , 1952, The Journal of clinical endocrinology and metabolism.