Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027497 (nausea)
23,468 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Murine monoclonal antibody (Mab) therapy in patients with rheumatoid arthritis (RA) produces an antimouse immunoglobulin response by the recipient. We studied a chimeric (human/mouse) CD7 Mab, in a dose ranging tolerability study in 10 patients with RA. Modest improvements in disease activity occurred with frequent acute adverse effects of malaise, fever and nausea. After treatment, peripheral blood T lymphocyte numbers fell by 50% and CD7 expression fell by 97% for less than 7 days. Our study demonstrates chimeric Mab function in vivo and illustrates the influence of antibody isotype and patient characteristics on adverse effects.
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PMID:Chimeric CD7 monoclonal antibody therapy in rheumatoid arthritis. 127 68

Interleukin-1 (IL-1) has been shown to ameliorate the hematopoietic toxicities of antitumor chemotherapeutic agents in both mice and humans. However, IL-1 toxicity in humans is considerable and is similar to the systemic inflammatory toxicities induced by IL-3, IL-6, and other cytokines with pleiotropic biologic activities, eg, fever, nausea, malaise, and hypotension. We hypothesized that corticosteroids may reduce IL-1 toxicity without reducing IL-1 hematopoietic effects in vivo. C3H/HeJ mice (female, 6 weeks) were treated for 7 days subcutaneously with cortisone acetate (CA), (0.1, 0.25, or 0.5 mg/d/mouse), intraperitoneally with IL-1 (1 or 2 micrograms/d/mouse), or both. As expected, IL-1 increased white blood cell counts, splenic granulocyte-macrophage colony-forming units, and spleen cell number, and protected mice from lethal doses of carboplatin (200 mg/kg; Paraplatin, Bristol Laboratories, Evansville, IN) administered the day after completion of the 7 days of IL-1 administration. CA did not significantly block the hematopoietic effects of IL-1 or the ability of IL-1 to protect mice from the hematopoietic toxicity of carboplatin. IL-1 administered to mice at 8 micrograms/d/mouse for 5 days induced decreased activity, roughening of hair, diarrhea, pancytopenia, multiple metabolic abnormalities, and death in 60% of mice. IL-1 at the therapeutic doses (0.5 to 2 micrograms/d) was not toxic. CA in a dose-dependent manner blocked all of the above mentioned toxicities when administered 24 hours and 30 minutes before each IL-1 injection. CA also decreased IL-1-induced increase in plasma tumor necrosis factor levels at the time point examined.
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PMID:Corticosteroid modulation of interleukin-1 hematopoietic effects and toxicity in a murine system. 806 40

The role of infliximab in managing Crohn's disease (CD) is described. CD is characterized by chronic transmural inflammation at various sites of the gastrointestinal tract, particularly the ileum and colon. The major symptoms are diarrhea, abdominal pain, enterocutaneous and perianal fistulas, and weight loss. Management goals include alleviating symptoms, inducing remission, promoting healing of the intestinal mucosa and fistulas, and modifying the disease process. Drugs traditionally used to manage CD are aminosalicylates, antimicrobials, immunomodulatory agents, and corticosteroids. Infliximab is a chimeric (human-mouse) monoclonal antibody targeted at human tumor necrosis factor-alpha (TNF-alpha), a proinflammatory cytokine important in the pathogenesis of CD. Infliximab antagonizes the biological activity of TNF-alpha by binding to it on macrophage and T-cell surfaces. Clinical trials have shown infliximab to be effective in producing and maintaining a clinical response in patients with refractory, moderate to severe CD. Treatment helps promote healing of intestinal mucosa and closure of fistulas. Infliximab may act more rapidly than most traditional agents and produces less severe adverse effects. The most frequent adverse effects are headache, nausea, and upper-respiratory-tract infections. The recommended dosage is 5 mg/kg i.v. infused over a two-hour period. Infliximab may be given at eight-week intervals for maintenance or management of flare-ups. Infliximab appears useful in the treatment of CD and may improve patients' quality of life.
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PMID:Treatment of Crohn's disease with infliximab. 1122 67

Vagal afferents are extensively distributed in the digestive tract from the oesophagus to the colon. They are involved in the reflex control of normal gastrointestinal (GI) tract function (e.g. secretion and motility) as well as reflexes more characteristic of diseases such as functional dyspepsia and gastroesophageal reflux disease (e.g. vomiting, disordered lower esophageal sphincter relaxation and gastric accommodation). They are also implicated in signalling non-painful sensations (e.g. nausea and early satiety) associated with disease. A variety of receptors has been identified on vagal afferents, which can either enhance (e.g. 5-HT3, CCK1, VR1 and NK1 receptors) or reduce (e.g. ghrelin, leptin, k-opioid and GABAB receptors) activity, offering a range of potential therapeutic targets. Commonly used laboratory species (e.g. rat and mouse) lack an emetic reflex, and the implications of this for models of upper GI disorders have been explored in the light of expanding knowledge of the neuropharmacology of the emetic reflex implicating glutamate, prostanoids, cannabinoids and substance P. Additional pathophysiological roles for vagal afferents (e.g. in thermoregulation, arousal and fatigue) are being investigated, raising the intriguing possibility of the vagus as a target in non-GI disorders.
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PMID:Abdominal vagal afferent neurones: an important target for the treatment of gastrointestinal dysfunction. 1248 26