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Endotoxins and disease mechanisms
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Morrison DC, Ryan JL. 1987. Endotoxins and disease mechanisms. Annu Rev Med 1987; 38: 417-432.
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Lipopolysaccharide induced hyporesponsiveness to its own action in RAW 246.7 cells
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Virca GD, Kim SY, Glaser KB, Ulevitch RJ. Lipopolysaccharide induced hyporesponsiveness to its own action in RAW 246.7 cells. J Biol Chem 1989; 264: 21951-21956.
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Adaptation to bacterial lipopolysaccharide control lipopolysaccharide-induced tumor necrosis factor production in rabbit macrophages
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Mathison JC, Virca GD, Wolfson E, Tobias PS, Glaser K, Ulevitch RJ. Adaptation to bacterial lipopolysaccharide control lipopolysaccharide-induced tumor necrosis factor production in rabbit macrophages. J Clin Invest 1990; 85: 1108-1118.
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Glaser, K.5
Ulevitch, R.J.6
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Preexposure of macrophages to low doses of lipopolysaccharide inhibits the expression of tumor necrosis mRNA but not of IL-1β mRNA
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Takatsuka N, Tokunaga T, Akagawa KS. Preexposure of macrophages to low doses of lipopolysaccharide inhibits the expression of tumor necrosis mRNA but not of IL-1β mRNA. J Immunol 1991; 146: 3824-3830.
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In vitro desensitization to lipopolysaccharide suppresses tumor necrosis factor, interleukin-1 and interleukin-6 gene expression in a similar fashion
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Ziegler-Heitbrock HWL, Blumenstein M, Kafferlein E et al. In vitro desensitization to lipopolysaccharide suppresses tumor necrosis factor, interleukin-1 and interleukin-6 gene expression in a similar fashion. Immunology 1992; 75: 264-268.
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Ziegler-Heitbrock, H.W.L.1
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Lipopolysaccharide-induced selective priming effects on TNF-α and nitric oxide production
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Zhang X, Morrison DC. Lipopolysaccharide-induced selective priming effects on TNF-α and nitric oxide production. J Exp Med 1993; 177: 511-516.
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Zhang, X.1
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Low-dose lipopolysaccharide (LPS) pretreatment of mouse macrophages modulates LPS-dependent interleukin-6 production in vitro
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Hirohashi N, Morrison DC. Low-dose lipopolysaccharide (LPS) pretreatment of mouse macrophages modulates LPS-dependent interleukin-6 production in vitro. Infect Immun 1996; 64: 1011-1015.
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Hirohashi, N.1
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Population dynamics of inducible nitric oxide synthase production by LPS- And LPS-IFN-γ-stimulated mouse macrophages
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Pace JL, Lowenstein CJ, Phillips TA et al. Population dynamics of inducible nitric oxide synthase production by LPS-and LPS-IFN-γ-stimulated mouse macrophages. J Endotoxin Res 1994; 1: 227-233.
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Immunohistochemical demonstration of cytoplasmic and membrane-associated tumor necrosis factor in murine macrophages
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Chensue SW, Remick DG, Shmyr-Forsch C, Beals T, Kunkel SL. Immunohistochemical demonstration of cytoplasmic and membrane-associated tumor necrosis factor in murine macrophages. Am J Pathol 1988; 133: 564-572.
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Rapid determination of cell-associated tumor necrosis factor production by flow cytometry
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His ED, Remick DG. Rapid determination of cell-associated tumor necrosis factor production by flow cytometry. Lab Invest 1993; 68: 740-745.
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Isolation of a macrophage-like cell line defective in binding of LPS: Influence of serum and LPS polysaccharide chain length on macrophage activation
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Kirikae T, Schade U, Kirikae F, Rietschel ETh, Morrison DC. Isolation of a macrophage-like cell line defective in binding of LPS: influence of serum and LPS polysaccharide chain length on macrophage activation. J Immunol 1993; 151: 2742-2752.
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Kirikae, T.1
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14
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0028906579
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CD14 is not involved in Rhodobacter sphaeroides diphosphoryl lipid A inhibition of tumor necrosis factor alpha and nitric oxide induction by taxol in murine macrophages
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Kirikae F, Kirikae T, Qureshi N, Takayama K, Morrison DC, Nakano M. CD14 is not involved in Rhodobacter sphaeroides diphosphoryl lipid A inhibition of tumor necrosis factor alpha and nitric oxide induction by taxol in murine macrophages. Infect Immun 1995; 63: 486-497
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Kirikae, F.1
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Contribution of clonally distinct subpopulations to heterogeneous production of inducible nitric oxide synthase by LPS-stimulated mouse macrophages
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Alley EW, Zhang X, Russell SW. Contribution of clonally distinct subpopulations to heterogeneous production of inducible nitric oxide synthase by LPS-stimulated mouse macrophages. J Endotoxin Res 1994: 1: 235-242.
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Traces of bacterial lipopolysaccharide suppress IFN-γ-induced nitric oxide synthase gene expression in primary mouse macrophages
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Bogdan C, Vodovotz Y, Paik J, Xie Q-W, Nathan C. Traces of bacterial lipopolysaccharide suppress IFN-γ-induced nitric oxide synthase gene expression in primary mouse macrophages. J Immunol 1993; 151: 301-309.
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Havell EA, Spitalny GL. Endotoxin-induced interferon synthesis in primary mouse macrophages. J Immunol 1993; 151: 301-309.
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Studies on the expression of spontaneous and induced interferons in mouse peritoneal macrophages by means of monoclonal antibodies to mouse interferons
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Belardelli F, Gessani E, Proietti E et al. Studies on the expression of spontaneous and induced interferons in mouse peritoneal macrophages by means of monoclonal antibodies to mouse interferons. J Gen Virol 1987; 68: 2203-2212.
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Development of functional diversity in mouse macrophages - Mutual exclusion of two phenotypic states
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Laszlo DJ, Henson PM, Remigio LK et al. Development of functional diversity in mouse macrophages - mutual exclusion of two phenotypic states. Am J Pathol 1993; 143: 587-597.
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Lipopolysaccharide and a phorbol ester stimulate secretion of tumor necrosis factor-α from alveolar macrophages through action on overlapping subsets of cells
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Taylor MJ, Hehnke K, Clark CL. Lipopolysaccharide and a phorbol ester stimulate secretion of tumor necrosis factor-α from alveolar macrophages through action on overlapping subsets of cells. J Leukoc Biol 1993: 54: 384-388.
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0027181961
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Adenosine and a related carbocyclic nucleoside analogue selectively inhibit tumor necrosis factor-α production and protect mice against endotoxin challenge
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Parmely MJ, Zhou W-W, Edwards III CK, Borcherding DR, Silverstein R, Morrison DC. Adenosine and a related carbocyclic nucleoside analogue selectively inhibit tumor necrosis factor-α production and protect mice against endotoxin challenge. J Immunol 1993; 151: 389-396.
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Parmely, M.J.1
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Two functionally independent pathways for lipopolysaccharide-dependent activation of mouse peritoneal macrophages
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Amura CR, Chen L-C, Hirohashi N, Lei M-G, Morrison DC. Two functionally independent pathways for lipopolysaccharide-dependent activation of mouse peritoneal macrophages. J Immunol 1997; 159: 5079-5083.
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Differential regulation of LPS activation pathways in mouse macrophages by LPS binding proteins
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Amura CR, Kamei T, Ito N, Soares MJ, Morrison DC. Differential regulation of LPS activation pathways in mouse macrophages by LPS binding proteins. J Immunol 1998; 161: 2551-2560.
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Amura, C.R.1
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Reprogramming of LPS-primed macrophages is controlled by a counterbalanced production of IL-10 and IL-12
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Shnyra A, Brewington R, Alipio A, Amura CR, Morrison DC. Reprogramming of LPS-primed macrophages is controlled by a counterbalanced production of IL-10 and IL-12. J Immunol 1998; 160: 3729-3736.
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Shnyra, A.1
Brewington, R.2
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