Page last updated: 2024-08-24

lisofylline and Inflammation

lisofylline has been researched along with Inflammation in 9 studies

Research

Studies (9)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's4 (44.44)18.2507
2000's3 (33.33)29.6817
2010's1 (11.11)24.3611
2020's1 (11.11)2.80

Authors

AuthorsStudies
Abdelzaher, LA; Ali, M; Bakr, MH; Desai, AA; Mali, V; Radwan, E; Sayed, SA1
Wyska, E1
Brayman, KL; Carter, JD; Chen, M; Ellett, JD; Nadler, JL; Yang, Z1
Gu, J; Mison, A; Nadler, JL; Pei, H; Thimmalapura, PR1
Bianco, JA; Bursten, S; Le, T; Porubek, D; Rice, GC; Singer, JW; Weeks, R; West, J; Wilson, T1
Bianco, JA; Bursten, S; Michnick, J; Rice, GC; Rosen, J; Singer, JW; Weeks, R1
Abraham, E; Allbee, J; Bursten, S; Guidot, DM; Repine, JE; Rice, G; Shenkar, R; Singer, JW; Tuder, R; Woodson, P1
Howe, TS; McCray, PB; O'Neill, MA; Thorne, PS1
Bright, JJ; Sriram, S1

Reviews

1 review(s) available for lisofylline and Inflammation

ArticleYear
Immunotherapy of inflammatory demyelinating diseases of the central nervous system.
    Immunologic research, 2001, Volume: 23, Issue:2-3

    Topics: Adult; Animals; Anti-Inflammatory Agents, Non-Steroidal; CD4-Positive T-Lymphocytes; Cerebrospinal Fluid; Chlamydia Infections; Chlamydophila pneumoniae; Cytokines; Demyelinating Autoimmune Diseases, CNS; Disease Models, Animal; Encephalomyelitis, Autoimmune, Experimental; Enzyme Inhibitors; Glatiramer Acetate; Humans; Immunotherapy; Inflammation; Interleukin-12; Mice; Multiple Sclerosis; Pentoxifylline; Peptides; Protein Kinase Inhibitors; Protein Kinases; Signal Transduction; Transforming Growth Factor beta

2001

Other Studies

8 other study(ies) available for lisofylline and Inflammation

ArticleYear
Lisofylline mitigates cardiac inflammation in a mouse model of obesity through improving insulin secretion and activating cardiac AMPK signaling pathway.
    Cytokine, 2021, Volume: 138

    Topics: Adipose Tissue; AMP-Activated Protein Kinases; Animals; Apoptosis; Blood Glucose; Body Weight; Disease Models, Animal; Heart; Inflammation; Insulin; Insulin Resistance; Insulin Secretion; Insulin-Secreting Cells; Male; Mice; Mice, Inbred C57BL; Myocardium; Obesity; Pentoxifylline; Signal Transduction; Up-Regulation

2021
Pharmacokinetic-pharmacodynamic modeling of methylxanthine derivatives in mice challenged with high-dose lipopolysaccharide.
    Pharmacology, 2010, Volume: 85, Issue:5

    Topics: Animals; Anti-Inflammatory Agents, Non-Steroidal; Biomarkers; Dose-Response Relationship, Drug; Half-Life; Inflammation; Lipopolysaccharides; Male; Mice; Models, Biological; Pentoxifylline; Tumor Necrosis Factor-alpha; Xanthines

2010
Inflammatory blockade improves human pancreatic islet function and viability.
    American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons, 2005, Volume: 5, Issue:3

    Topics: Anti-Inflammatory Agents, Non-Steroidal; Apoptosis; Cell Survival; DNA-Binding Proteins; Female; Glucose; Humans; Inflammation; Insulin; Insulin Secretion; Islets of Langerhans; Islets of Langerhans Transplantation; Male; Pentoxifylline; Phosphorylation; STAT4 Transcription Factor; Trans-Activators

2005
Activation of the 12-lipoxygenase and signal transducer and activator of transcription pathway during neointima formation in a model of the metabolic syndrome.
    American journal of physiology. Endocrinology and metabolism, 2006, Volume: 290, Issue:1

    Topics: Angioplasty, Balloon; Animals; Anti-Inflammatory Agents, Non-Steroidal; Arachidonate 12-Lipoxygenase; Blood Glucose; Body Weight; Carotid Arteries; Carotid Artery Injuries; Cell Proliferation; Disease Models, Animal; Ectodysplasins; Female; Gene Expression; Inflammation; Insulin; Ki-67 Antigen; Lipids; Membrane Proteins; Metabolic Syndrome; Pentoxifylline; Phosphorylation; Rats; Rats, Zucker; STAT4 Transcription Factor; Tumor Necrosis Factors; Tunica Intima

2006
Potential role for phosphatidic acid in mediating the inflammatory responses to TNF alpha and IL-1 beta.
    Circulatory shock, 1994, Volume: 44, Issue:1

    Topics: Animals; Base Sequence; Chromatography, High Pressure Liquid; Diglycerides; Female; Inflammation; Interleukin-1; Lipopolysaccharides; Mass Spectrometry; Mice; Mice, Inbred BALB C; Molecular Sequence Data; NF-kappa B; Pentoxifylline; Phosphatidic Acids; Second Messenger Systems; Shock, Septic; Sphingomyelins; Tumor Necrosis Factor-alpha

1994
CT-1501R selectively inhibits induced inflammatory monokines in human whole blood ex vivo.
    Shock (Augusta, Ga.), 1994, Volume: 1, Issue:4

    Topics: 3T3 Cells; Animals; Cells, Cultured; Dinoprostone; Fibroblasts; Humans; In Vitro Techniques; Inflammation; Interleukin 1 Receptor Antagonist Protein; Interleukin-1; Interleukin-6; Interleukin-8; Mice; Monokines; Pentoxifylline; Phosphatidic Acids; RNA, Messenger; Sialoglycoproteins; Tumor Necrosis Factor-alpha

1994
Phosphatidic acid signaling mediates lung cytokine expression and lung inflammatory injury after hemorrhage in mice.
    The Journal of experimental medicine, 1995, Feb-01, Volume: 181, Issue:2

    Topics: Acyltransferases; Animals; Cell Adhesion; Cells, Cultured; Chemotaxis, Leukocyte; Cytokines; Hemorrhage; Humans; Inflammation; Lung; Mice; Pentoxifylline; Phosphatidic Acids; Signal Transduction

1995
Early-onset inflammatory responses in vivo to adenoviral vectors in the presence or absence of lipopolysaccharide-induced inflammation.
    American journal of respiratory cell and molecular biology, 1999, Volume: 20, Issue:6

    Topics: Adenoviridae; Animals; Anti-Inflammatory Agents; Anti-Inflammatory Agents, Non-Steroidal; Bronchoalveolar Lavage Fluid; Cystic Fibrosis; Dexamethasone; Dose-Response Relationship, Drug; Endotoxins; Gene Transfer Techniques; Inflammation; Lipopolysaccharides; Male; Mice; Mice, Inbred C3H; Pentoxifylline; Pneumonia; Time Factors

1999