Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.5.1.1 (asparaginase)
2,695 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Relatively nonmyelotoxic drugs and drug combinations were investigated for their ability to eliminate malignant cells from human bone marrow. In vitro 90% inhibitory concentration (IC90) doses were established on granulocyte macrophage colony-forming units (GM-CFU) in culture of bone marrow by using the GM-CFU assay for the following drugs: 4-hydroperoxycyclophosphamide (4-HC), Adriamycin, L-asparaginase, bleomycin, hydrocortisone, VP-16, spirogermanium, Taxol, and vincristine. The leukemic cell kill efficiency of these drugs at IC90 doses was compared with that of 4-HC on acute lymphoid leukemia (ALL) cell lines by using the limiting-dilution assay. Under these conditions, no single drug was superior to 4-HC. To increase the in vitro effect in leukemic cell kill, combinations of vincristine with hydrocortisone, Adriamycin, VP-16, and 4-HC were investigated. Vincristine at 1 to 5 micrograms/mL increased the marrow cytotoxicity of hydrocortisone, Adriamycin, and VP-16, but it was protective (subadditive) with 4-HC. Vincristine and 4-HC in combination was additive to supraadditive on ALL cell lines, increased the leukemic cell kill by one to two logs above 4-HC alone at IC90 doses (P less than .05), and was not affected by the addition of excess marrow cells. The recommended doses for chemopurging in clinical studies are vincristine, 1 to 5 micrograms/mL, plus 4-HC, 5 micrograms/mL.
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PMID:Evaluation of drugs for elimination of leukemic cells from the bone marrow of patients with acute leukemia. 244 78

Four hundred thirty-four children, with good-risk acute lymphocytic leukemia (ALL), were assigned randomly to receive intensive or less intensive maintenance therapy with 6-mercaptopurine and methotrexate, plus vincristine and prednisone pulses in such a way that patients on treatment 1 had their leukocyte counts maintained between 1500 and 3000/mm3. Patients on treatment 2 had leukocyte counts maintained between 3000 and 4500/mm3. Absolute granulocyte counts were maintained above 500/mm3 on both groups. All children received induction treatment with vincristine, prednisone and L-asparaginase and had central nervous system (CNS) prophylaxis with cranial irradiation and intrathecal methotrexate. The overall remission rate was 94%. Event-free survival at 8 years was 44% (SE, 5.6%). There was no significant difference in outcome between treatments 1 and 2 (P = 0.83). The incidence of infection was similar overall and not significantly different between treatment arms.
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PMID:Treatment intensity and outcome for children with acute lymphocytic leukemia of standard risk. A Pediatric Oncology Group Study. 292 55

Luminol-dependent chemiluminescence of whole blood (whole blood CL) was developed to estimate the phagocytic function of granulocytes and the serum opsonin activity simultaneously. Whole blood (0.1 ml) was examined directly and results were obtained within 20 minutes. Phagocytic function of granulocytes can be estimated from the peak CL of whole blood and the number of granulocytes in a specimen, and the opsonin activity from the amount of time the peak CL is shown after the addition of nonopsonized CL inducer (nonopsonized zymosan). Subsequently, whole blood CL was measured to evaluate phagocytic functions in children with disease. Patients with chronic granulomatous disease showed no CL, and one of their mothers (1/3) showed low CL, suggesting she is a carrier. Two patients with hypocomplementemia (SLE and chronic nephritis) showed low serum opsonin activity, and phagocytic function of their granulocytes was enhanced. In cord blood and newborn infants serum opsonin activity was low, and phagocytic function of granulocytes was slightly decreased in cord blood but not in newborn infants. Patients with systemic bacterial infections showed an increased phagocytic function of granulocytes. Anti-cancer drugs decreased serum opsonin activity in children with leukemia or lymphoma. The children treated with L-asparaginase had very low opsonin activity, suggesting the drug inhibits complement synthesis. The measurement of whole blood CL was useful for monitering the phagocytic functions of blood after granulocyte transfusion.
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PMID:[Chemiluminescence of whole blood--analysis of the kinetics and application of clinical examination of phagocytic functions of whole blood from various type of diseases]. 355 74

The activity of complement-mediated opsonin was measured by the whole blood chemiluminescence method in 17 children with hematologic malignancy (including 6 with ALL, 7 with ANLL and 4 with non-Hodgkin's lymphoma) during remission induction therapy. The activity of opsonin, which was at the normal level before chemotherapy, decreased in all of the children during the therapy. This phenomenon was especially marked in the children treated with L-asparaginase. Although no clear relationship was found between the decrease in opsonin activity and the susceptibility to infection, it was confirmed that in 4 children having an episode of sepsis or septic fever, the infection started when the granulocyte decreased to the nadir, and simultaneously the activity of opsonin decreased. Therefore, it may be reasonable to suspect the decrease in opsonin activity when treating children with such infections.
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PMID:Impairment of opsonic function in children with hematologic malignancy during remission induction therapy. 399 81

A 15-year-old boy with T-cell acute lymphoblastic leukemia (ALL) (FAB L1), diagnosed in 1995, received combination chemotherapy consisting of 6 weeks of induction (vincristine, epirubicin, L-asparaginase, prednisolone) and 2 weeks of consolidation (cytosine arabinosides, etoposide). After achieving remission, for further maintenance of remission, he was treated with 14 cycles of intensive chemotherapy consisting of 6-MP, 10 mg/kg orally on the first 4 days, and cyclophosphamide, 1200 mg/m2, vincristine, 1.5 mg/m2, epirubicin, 15 mg/m2, and cytosine arabinoside, 40 mg/m2, intravenously on days 4, 11, 39, and 40, respectively. On day 18 of each cycle, he received intravenous methotrexate (MTX) infusion in a total dose of 150 mg/m2 plus oral leucovorin (30 mg/m2 ) rescue 36 h after starting MTX therapy. In addition, oral trimethoprim-sulfamethoxazole was given regularly to prevent Pneumocystis carinii infection. The patient achieved remission during the first course of treatment, but 8 months later the disease relapsed. He then received four doses of MTX (800 mg intravenously) plus leucovorin rescue in the following 4 months. During the last MTX therapy, small hemorrhagic bullae were found on the lateral side of the right ankle, but subsided after a few days. Due to partial remission of the disease, he was admitted again in January 1999 for high-dose MTX therapy. An initial hemogram on admission revealed hemoglobin 7.2 g/dL, white cell count 15,200/mm3, platelet count 153/mm3, blood creatinine 0.5 mg/dL, and alanine leucine aminotransferase (ALT) 20 U/L. He received 8500 mg of MTX (5000 mg/m2 ) as a continuous intravenous infusion for 24 h. Thirty-six hours after the start of MTX infusion, leucovorin (30 mg, intravenous) rescue was initiated every 6 h for 3 days. Another preventive measure to cover MTX toxicity included aggressive intravenous fluid replacement (4 L/m2 /day) and the addition of 25 meq/L sodium bicarbonate to the intravenous fluid to alkalinize the urine. Concurrent medication included 6-MP (50 mg) once daily and trimethoprim-sulfamethoxazole (120 mg, 600 mg) twice daily every other day. Plasma MTX levels were 52.36 micromol/L 24 h after MTX infusion, 1.87 micromol/L after 48 h, 0.57 micromol/L after 72 h, and 0.41 micromol/L after 96 h. These indicated delayed MTX plasma clearance. The blood creatinine level was mildly elevated from 0.5 mg/dL to 0.7 mg/dL. Thirty-six hours after the administration of MTX, the patient developed an erythematous painful swelling on the right middle finger. The erythema, with subsequent large bulla formation, progressed to all the fingers, toes, palms, and the soles of the feet. Some erythematous to hemorrhagic papules also appeared on the bilateral elbows. Subsequently, diffuse tender erythema with extensive erosions and focal tiny pustules developed on the back, abdomen, proximal extremities, and face (Fig. 1a,b). A positive Nikolsky's sign was also present. A biopsy specimen of the right dorsal hand lesion revealed parakeratosis, detached acanthotic epidermis with scattered necrotic keratinocytes, dyskeratotic cells and nuclear atypia, neutrophilic exocytosis, and many neutrophils in the papillary dermis (Fig. 2). The skin condition deteriorated rapidly. Toxic epidermal necrolysis-like lesions involved 90% of the total body surface on the fifth day after MTX infusion. Mucositis, diarrhea, involuntary tremor, fever, and chills were noted. The patient was then sent to the burn unit for intensive skin care. Ten days after MTX therapy, profound agranulocytosis and thrombocytopenia (white cell count 100/mm3, platelets 14,000/mm3, and hemoglobin 5.6 g/dL) were found. The patient was then started on granulocyte colony stimulation factor (G-CSF, 5 microg/kg/day), but his general condition deteriorated rapidly and he died 6 days later due to septic shock and multiple organ failure.
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PMID:Toxic epidermal necrolysis following combination of methotrexate and trimethoprim-sulfamethoxazole. 1097 34

Reversible posterior leukoencephalopathy syndrome (RPLS) is recently described disorder with typical radiological findings in the posterior regions of the cerebral hemisphere and cerebellum. Its clinical symptoms include headache, decreased alertness, mental abnormalities, such as confusion, diminished spontaneity of speech, and changed behavior ranging from drowsiness to stupor, seizures, vomiting and abnormalities of visual perception like cortical blindness. RPLS is caused by various heterogeneous factors, the commonest being hypertension, followed by non-hypertensive causes such as eclampsia, renal diseases and immunosuppressive therapy. We presented nine patients with RPLS who had primary diagnoses such as acute post-streptococcal glomerulonephritis, idiopathic hypertension, the performing of intravenous immunoglobulin for infection with crescentic glomerulonephritis, erythrocyte transfusion for severe iron deficiency, L: -asparaginase treatment for acute lymphoblastic leukemia and performing of granulocyte-colony stimulating factor for ulcerative colitis due to neutropenia. Early recognition of RPLS as complication during different diseases and therapy in childhood may facilitate precise diagnosis and appropriate treatment.
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PMID:Reversible posterior leukoencephalopathy syndrome in childhood: report of nine cases and review of the literature. 1980 87

The toxicity of the recombinant protein towards the expression host remains a significant deterrent for bioprocess development. In this study, the expression of human granulocyte macrophage-colony stimulating factor (hGM-CSF), which is known to be toxic to its host, was enhanced many folds using a combination of genetic and bioprocess strategies in Escherichia coli. The N terminus attachment of endoxylanase and asparaginase signal sequences from Bacillus subtilis and E. coli, respectively, in combination with and without His-tag, considerably improved expression levels. Induction and media optimization studies in shake flask cultures resulted in a maximal hGM-CSF concentration of 365 mg/L in the form of inclusion bodies (IBs) with a specific product yield (Y (P/X)) of 120 mg/g dry cell weight in case of the asparaginase signal. Culturing the cells in nutrient rich Terrific broth maintained the specific product yields (Y (P/X)) while a 6.6-fold higher volumetric concentration of both product and biomass was obtained. The purification and refolding steps were optimized resulting in a 95% pure protein with a fairly high refolding yield of 45%. The biological activity of the refolded protein was confirmed by a cell proliferation assay on hGM-CSF dependent human erythroleukemia TF-1 cells. This study demonstrated that this indeed is a viable route for the efficient production of hGM-CSF.
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PMID:Optimization of human granulocyte macrophage-colony stimulating factor (hGM-CSF) expression using asparaginase and xylanase gene's signal sequences in Escherichia coli. 2156 4