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The Journal of Experimental Medicine|September 11, 1976
Studies on the mechanism of phagocytosis. II. The interaction of macrophages with anti-immunoglobulin IgG-coated bone marrow-derived lymphocytesF M Griffin, J A Griffin, S C SilversteinThe Journal of Cell Biology|September 1, 1988
A prelysosomal compartment sequesters membrane-impermeant fluorescent dyes from the cytoplasmic matrix of J774 macrophagesT H Steinberg, J A Swanson, S C SilversteinThe Journal of Biological Chemistry|February 5, 1990
Organic anion transport in macrophage membrane vesiclesB J Lipman, S C Silverstein, T H SteinbergCell Calcium|February 1, 1990
Inhibition of Fura-2 sequestration and secretion with organic anion transport blockersF Di Virgilio, T H Steinberg, S C SilversteinJournal of Cellular Physiology|July 1, 1983
The role of the mannose/N-acetylglucosamine receptor in the pinocytosis of horseradish peroxidase by mouse peritoneal macrophagesS S Sung, R S Nelson, S C SilversteinThe Journal of Biological Chemistry|October 10, 1979
Increased ATP and creatine phosphate turnover in phagocytosing mouse peritoneal macrophagesJ D Loike, V F Kozler, S C SilversteinThe Journal of Cell Biology|March 1, 1985
Phorbol esters and horseradish peroxidase stimulate pinocytosis and redirect the flow of pinocytosed fluid in macrophagesJ A Swanson, B D Yirinec, S C SilversteinThe Journal of Experimental Medicine|March 1, 1984
Creatine kinase expression and creatine phosphate accumulation are developmentally regulated during differentiation of mouse and human monocytesJ D Loike, V F Kozler, S C SilversteinThe Journal of Experimental Medicine|October 1, 1983
Fibronectin and serum amyloid P component stimulate C3b- and C3bi-mediated phagocytosis in cultured human monocytesS D Wright, L S Craigmyle, S C SilversteinPageof 24