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Food vacuole morphology and membrane retrieval in the microstomal form of Tetrahymena voraxMISLAN, T. W; SMITH-SOMERVILLE, H. E.The Journal of protozoology. 1986, Vol 33, Num 2, pp 172-179, issn 0022-3921Article

Processing of digestive vacuoles in Tetrahymena and the effects of dichloroisoproterenolFOK, A. K; SHOCKLEY, B. U.The Journal of protozoology. 1985, Vol 32, Num 1, pp 6-9, issn 0022-3921Article

The Tetraspanin CD82 Is Specifically Recruited to Fungal and Bacterial Phagosomes prior to AcidificationARTAVANIS-TSAKONAS, Katerina; KASPERKOVITZ, Pia V; PAPA, Eliseo et al.Infection and immunity. 2011, Vol 79, Num 3, pp 1098-1106, issn 0019-9567, 9 p.Article

Analysis of phagosomal proteomes: From latex-bead to bacterial phagosomesQINGBO LI; JAGANNATH, Chinnaswamy; RAO, Prahlad K et al.Proteomics (Weinheim. Print). 2010, Vol 10, Num 22, pp 4098-4116, issn 1615-9853, 19 p.Article

alterations in the protein composition of maturing phagosomesPITT, A; MOYORGA, L. S; STAHL, P. D et al.The Journal of clinical investigation. 1992, Vol 90, Num 5, pp 1978-1983, issn 0021-9738Article

Rapid and sensitive assays for phagosomal acidification in paramecium and tetrahymenaFOK, A. K; UENO, M. S; AZADA, E. A et al.European journal of cell biology. 1985, Vol 38, Num 2, pp 306-311, issn 0171-9335Article

Cholesterol-enriched liposomes affect food-vacuole formation in tetrahymena pyriformisFABCZAK, H.Acta protozoologica. 1986, Vol 25, Num 3, pp 325-330, issn 0065-1583Article

Helical torsion of cell cortex affects phagotrophy of Sc 6 Paramecium tetraureliaKACZANOWSKA, J; GOLC, T.Acta protozoologica. 1986, Vol 25, Num 3, pp 305-313, issn 0065-1583Article

CD4+ T Cells: Guardians of the PhagosomeTUBO, Noah J; JENKINS, Marc K.Clinical microbiology reviews (Print). 2014, Vol 27, Num 2, pp 200-213, issn 0893-8512, 14 p.Article

Francisella tularensis Phagosomal Escape Does Not Require Acidification of the PhagosomeCLEMENS, Daniel L; LEE, Bai-Yu; HORWITZ, Marcus A et al.Infection and immunity. 2009, Vol 77, Num 5, pp 1757-1773, issn 0019-9567, 17 p.Article

Neutrophil NADPH oxidase is reduced at the Anaplasma phagocytophilum phagosomeIJDO, Jacob W; MUELLER, Angel C.Infection and immunity. 2004, Vol 72, Num 9, pp 5392-5401, issn 0019-9567, 10 p.Article

Regulation of phagosome maturation by signals from toll-like receptorsBLANDER, J. Magarian; MEDZHITOV, Ruslan.Science (Washington, D.C.). 2004, Vol 304, Num 5673, pp 1014-1018, issn 0036-8075, 5 p.Article

Survie intracellulaire des micro-organismes = Intracellular survival of microorganismsMUSSO, D; RAOULT, D.La Revue du praticien (Paris). 1996, Vol 46, Num 18, pp 2160-2163, issn 0035-2640Article

Phagocytosis by normal human melanocytes in vitroLE POOLE, I. C; VAN DEN WIJNGAARD, R. M. J. G. J; WESTERHOF, W et al.Experimental cell research. 1993, Vol 205, Num 2, pp 388-395, issn 0014-4827Article

The influence of diamines on the phagosome-lysosome fusion in peritoneal macrophages of miceMOZHENOK, T. P; BULYCHEV, A. G; KUZNETSOVA, I. M et al.Citologiâ. 1991, Vol 33, Num 10, pp 85-88, issn 0041-3771Article

Assessment of Na+-H+ exchange activity in phagosomal membranes of human neutrophilsGRINSTEIN, S; FURUYA, W.American journal of physiology. Cell physiology. 1988, Vol 23, Num 2, pp C272-C285, issn 0363-6143Article

Phagosome formation in Paramecium: effects of solid particlesFOK, A. K; SISON, B. C. JR; UENO, M. S et al.Journal of Cell Science. 1988, Vol 90, Num 3, pp 517-524, issn 0021-9533Article

Subproteome analysis of the neutrophil cytoskeletonPING XU; CRAWFORD, Mark; WAY, Michael et al.Proteomics (Weinheim. Print). 2009, Vol 9, Num 7, pp 2037-2049, issn 1615-9853, 13 p.Article

Imaging of Rab5 activity identifies essential regulators for phagosome maturationKITANO, Masahiro; NAKAYA, Michio; NAKAMURA, Takeshi et al.Nature (London). 2008, Vol 453, Num 7192, pp 241-245, issn 0028-0836, 5 p.Article

Role for RpoS but not RelA of Legionella pneumophila in modulation of phagosome biogenesis and adaptation to the phagosomal microenvironmentABU-ZANT, Alaeddin; ASARE, Rexford; GRAHAM, James E et al.Infection and immunity. 2006, Vol 74, Num 5, pp 3021-3026, issn 0019-9567, 6 p.Article

The Mycobacterium tuberculosis SecA2 System Subverts Phagosome Maturation To Promote Growth in MacrophagesTABB SULLIVAN, Jonathan; YOUNG, Ellen F; MCCANN, Jessica R et al.Infection and immunity. 2012, Vol 80, Num 3, pp 996-1006, issn 0019-9567, 11 p.Article

Acidosomes : recipients of multiple sources of membrane and cargo during development and maturationALLEN, R. D; FOK, A. K.Journal of Cell Science. 1993, Vol 106, pp 411-422, issn 0021-9533, 1Article

Effect of food concentration on digestion and vacuole passage time in the heterotrichous marine ciliate Fibrea salinaCAPRIULO, G. M; DEGNAN, C.Marine biology (Berlin). 1991, Vol 110, Num 2, pp 199-202, issn 0025-3162Article

Alternative activation of macrophages by IL-4 enhances the proteolytic capacity of their phagosomes through synergistic mechanismsBALCE, Dale R; BAOQUAN LI; ALLAN, Euan R. O et al.Blood. 2011, Vol 118, Num 15, pp 4199-4208, issn 0006-4971, 10 p.Article

Burkholderia cenocepacia-induced delay of acidification and phagolysosomal fusion in cystic fibrosis transmembrane conductance regulator (CFTR)-defective macrophagesLAMOTHE, Julie; VALVANO, Miguel A.Microbiology (Reading). 2008, Vol 154, pp 3825-3834, issn 1350-0872, 10 p., 12Article

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