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)

Mycophenolate mofetil, a pro-drug for mycophenolic acid, is an investigational immunosuppressive compound that is being developed for the treatment of rheumatoid arthritis (RA). The drug and its primary metabolite, mycophenolic acid, inhibit the de novo pathway of purine biosynthesis and have greater anti-proliferative effects on lymphocytes than on other rapidly dividing cells. Significant clinical improvement has been seen in many mycophenolate mofetil-treated RA patients who have been refractory to treatment with a variety of disease-modifying anti-rheumatic drugs (DMARDs). Treatment with mycophenolate mofetil reduces rheumatoid factor titres, immunoglobulin (IgG, IgM, and IgA) levels, and the total number of T cells (CD2) in RA patient peripheral blood; in addition, lymphocyte mitogen responses are inhibited and delayed hypersensitivity skin test reactivity is decreased. A dose of 2 g daily is more effective than lower doses, including several pulsing regimens. The most frequent adverse events reported by patients on mycophenolate mofetil are gastrointestinal, mainly nausea, vomiting, abdominal pain, and diarrhea. RA studies have demonstrated no clinically significant nephrotoxicity, hepatotoxicity, or bone marrow toxicity attributable to mycophenolate mofetil.
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PMID:Therapy of rheumatoid arthritis with mycophenolate mofetil. 832 35

BTI-322, a rat monoclonal IgG2b directed against the CD2 antigen on T cells and natural killer (NK) cells, blocks primary and memory alloantigen proliferative responses in vitro. We have evaluated the pharmacokinetics and safety of BTI-322 during treatment of 20 transplant recipients with steroid-refractory acute graft-versus-host disease (GVHD). Treatment consisted of BTI-322 by intravenous (IV) bolus or 30-minute infusion at approximately 0.1 mg/kg/d for 10 days in addition to continuing high-dose steroids and tacrolimus or cyclosporine. Pharmacokinetic sampling was performed in 10 patients; the t1/2 +/- SE was 9.1 +/- 1.3 hours, the Cmax was 2,549 +/- 291 ng/mL, the Vd was 3.97 +/- 0.95 L, and the Vd/kg was 0. 05 +/- 0.01 L/kg. Ten patients experienced transient dyspnea sometimes accompanied by nausea, vomiting, diarrhea, and tachycardia shortly after the initial bolus dose of drug, but serious drug-related adverse events were not seen during the remainder of the infusions. At the end of treatment (day 11), there were six patients with complete responses and five with a reduction in grade of GVHD for a total response rate of 55% (95% confidence interval [CI], 32% to 77%). Antibodies targeting CD2 may be active in the treatment of acute GVHD, and evaluation of a humanized form of BTI-322 is warranted.
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PMID:A phase II study of BTI-322, a monoclonal anti-CD2 antibody, for treatment of steroid-resistant acute graft-versus-host disease. 983 11

A 27-year-old pregnant woman was admitted to a local hospital because of headache, nausea, and general fatigue. Her blood examination showed leukocytosis, anemia, and thrombocytopenia. She was referred to our hospital in March 1998. Her bone marrow was normocellular with an excess of blasts (89.1%, peroxidase stain(-), PAS stain(-)) that displayed a positive immunophenotype for CD2, CD4, CD5, CD7, CD34, CD38, and CD71. Chromosome analysis revealed complex abnormal karyotypes. The patient was given a diagnosis of acute lymphoblastic leukemia associated with central nervous system and breast infiltration, and received induction chemotherapy during the second trimester of her pregnancy. After she achieved complete remission, a cesarean section was performed, and a healthy baby delivered. Our experience in this case demonstrated that combination chemotherapy during the second trimester of pregnancy is feasible.
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PMID:[Acute lymphoblastic leukemia with breast infiltration during the second trimester of pregnancy and followed by successful delivery]. 1049 40

Alefacept belongs to the new generation of drugs applied in the treatment of psoriasis. It is an immunomodulatory recombinant, fully human lymphocyte function associated antigen-3/immunoglobulin G1 fusion protein (LFA-3-Ig) CD2 antagonist that targets memory-effector T cells by binding CD2 on the T cell surface. It blocks the interactions of leukocyte functional antigen (LFA)-3 with CD2 interaction. This drug is used to treat moderate-to-severe chronic plaque psoriasis and there was conducted a pilot study of psoriatic arthritis. It was observed that Alefacept had reduced peripheral-blood memory effector T-lymphocyte (CD45RO+) counts, cells which are responsible for sustaining the disease. Pharyngitis, dizziness, increased cough, nausea, pruritus, myalgia, chills, injection site inflammation, and accidental injury were recorded. So far, in the conducted trials no generalised immunosuppression or increased risk of infection or malignancy were observed. The possibility of increased risk of infections and malignancies must be considered because of reduced lymphocyte counts.
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PMID:Possibilities of using alefacept in the treatment of psoriasis. 1532 11

Alefacept is a selective immunomodulating, antipsoriatic drug that blocks the LFA-3/CD2 interaction necessary for the activation and proliferation of memory effector T cells by binding to CD2 expressed on the T cell surface. Because the CD4+ count is reduced by alefacept, it is recommended that this count be monitored on a regular basis to ensure that it does not drop below 250 cells/mul. Few side effects have been related to the use of alefacept that differ from placebo even when CD4+ counts drop below 250 cells/microl. The side effects that have been reported are minor and include: headache, nasopharyngitis, rhinitis, influenza, upper respiratory tract infections, pruritus, arthralgias, fatigue, nausea, accidental injury and increases in liver enzymes. Serious infections and malignancies do not appear linked to the use of alefacept. The percentage of patients who developed antibodies against alefacept is very low. Alefacept is a very safe biological therapy for moderate-to-severe chronic plaque psoriasis with few side effects reported. The utility of checking CD4 counts while administering alefacept for 12 weeks appears minimal.
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PMID:Alefacept: a safety profile. 1625 57

Aggressive natural killer-cell leukaemia (ANKL) is a rare type of disease with fulminant course and poor outcome. The disease is more prevalent among Asians than in other ethnic groups and shows strong association with Epstein-Barr virus (EBV) and P-glycoprotein (P-gp) expression associated with multidrug resistance. Here we present a case of a 47 year old Caucasian female with a prior medical history of azathioprine treated ulcerative colitis who developed EBV-negative form of ANKL. The patient presented with hepatosplenomegaly, fever and nausea with peripheral blood and bone marrow infiltration with up to 70% of atypical lymphoid cells positive for cCD3, CD2, CD7, CD56, CD38, CD45, TIA1 and granzyme B, and negative for sCD3, CD4, CD5, CD8, CD34 and CD123 indicative of ANKL. Neoplastic CD56(+) NK-cells showed high level of P-glycoprotein expression and activity, but also strong expression of phosphorylated extracellular signal-regulated protein kinases 1 and 2 (ERK1/2) MAP kinase. The patient was treated with an intensive polychemotherapy regimen designed for treatment of acute lymphoblastic leukaemia, but one month after admission developed sepsis, coma and died of cardiorespiratory arrest. We present additional evidence that, except for the immunophenotype, leukaemic NK-cells resemble normal NK-cells in terms of P-gp functional capacity and expression of phosphorylated ERK1/2 signalling molecule. In that sense drugs that block P-glycoprotein activity and activated signalling pathways might represent new means for targeted therapy.
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PMID:Epstein-Barr virus-negative aggressive natural killer-cell leukaemia with high P-glycoprotein activity and phosphorylated extracellular signal-regulated protein kinases 1 and 2. 2308 5

Inflammatory pseudotumour is a rare condition that can affect various organs. The clinical and histologic appearance of the pseudotumour may mimic haematological, lymphoproliferative, paraneoplastic or malignant processes. A previously healthy 39-year-old man presented with nephrotic syndrome. He had a history of headaches, nausea and swollen ankles. Computed tomography of the abdomen revealed a 6-cm mass in the spleen. Following a renal biopsy, a diagnosis of membranoproliferative glomerulonephritis (MPGN) type I was made. Splenectomy was performed and the examination revealed a mixed population of lymphocytes with predominantly T-cells, B-cells and lymphoplasmacytoid cells. Immunostaining confirmed that the small cells were mostly T-cells positive for all T-cell markers including CD2, CD3, CD4, CD5, CD7 and CD8. A diagnosis of inflammatory pseudotumour was established. The removal of the spleen was followed by remission of glomerulonephritis, but it was complicated by a subphrenic abscess and pneumonia. This association between an inflammatory pseudotumour of the spleen and MPGN has not been previously described. Abnormal immune response due to the inflammation leading to secondary glomerulonephritis might be the main pathogenic mechanism.
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PMID:Membranoproliferative glomerulonephritis and inflammatory pseudotumour of the spleen. 2356 42