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Experimental Eye Research|February 22, 2001
Incidence and severity of herpetic stromal keratitis: impaired by the depletion of lymph node macrophagesD Bauer, S Mrzyk, N Van Rooijen, et al.Journal of Immunological Methods|July 6, 1992
Monoclonal antibody mediated targeting of enzymes. A comparative study using the mouse spleen as a model systemN van Rooijen, H ter Hart, G Kraal, et al.Archives of Virology|January 1, 1996
West Nile virus neuroinvasion and encephalitis induced by macrophage depletion in miceD Ben-Nathan, I Huitinga, S Lustig, et al.Immunology|December 1, 1996
Mucosal immunoadjuvant activity of liposomes: role of alveolar macrophagesA de Haan, G Groen, J Prop, et al.European Journal of Immunology|March 31, 2000
Dual role for macrophages in vivo in pathogenesis and control of murine Salmonella enterica var. Typhimurium infectionsO L Wijburg, C P Simmons, N van Rooijen, et al.Current Eye Research|December 28, 1999
Macrophage-depletion influences the course of murine HSV-1 keratitisD Bauer, S Mrzyk, N van Rooijen, et al.Gene Therapy|June 6, 1998
Effects of macrophage depletion and anti-CD40 ligand on transgene expression and redosing with recombinant adenovirusC S Stein, J L Pemberton, N van Rooijen, et al.Immunology|January 1, 1998
Role of spleen macrophages in innate and acquired immune responses against mouse hepatitis virus strain A59O L Wijburg, M H Heemskerk, C J Boog, et al.Journal of Virology|December 1, 1996
Different roles for CD4+ and CD8+ T lymphocytes and macrophage subsets in the control of a generalized virus infectionG Karupiah, R M Buller, N Van Rooijen, et al.Journal of Reproductive Immunology|May 1, 1995
Response to Leydig cell apoptosis in the absence of testicular macrophagesF Gaytan, C Bellido, C Morales, et al.Pageof 30