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Fever clinical trials

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NCT ID: NCT00020865 Active, not recruiting - Lymphoma Clinical Trials

Levofloxacin Compared With Cefepime in Treating Cancer Patients With Fever and Neutropenia

Start date: September 2001
Phase: Phase 3
Study type: Interventional

RATIONALE: Levofloxacin may be effective in reducing fever and controlling other symptoms of neutropenia in patients who are being treated for cancer. It is not yet known whether levofloxacin is more effective than cefepime in reducing fever and controlling symptoms of neutropenia. PURPOSE: Randomized phase III trial to compare the effectiveness of levofloxacin with that of cefepime in reducing fever and controlling symptoms of neutropenia in patients who are being treated for cancer.

NCT ID: NCT00020527 Completed - Lymphoma Clinical Trials

Caspofungin Acetate in Treating Children With Fever and Neutropenia

Start date: March 2001
Phase: N/A
Study type: Interventional

RATIONALE: Giving caspofungin acetate may be effective in preventing or controlling fever and neutropenia caused by chemotherapy or bone marrow transplantation. PURPOSE: Clinical trial to study the effectiveness of caspofungin acetate in treating children who have fever and neutropenia caused by a weakened immune system.

NCT ID: NCT00003805 Completed - Lymphoma Clinical Trials

Prevention of Infection in Patients With Hematologic Cancer and Persistent Fever Caused by a Low White Blood Cell Count

Start date: November 1997
Phase: Phase 3
Study type: Interventional

RATIONALE: Antibiotic therapy may prevent the development of infection in patients with hematologic cancer and the persistent fever caused by a low white blood cell count. It is not yet known which regimen of antibiotics is most effective in preventing infection in these patients. PURPOSE: Randomized phase III trial to study the effectiveness of piperacillin-tazobactam with or without vancomycin in reducing fever in patients who have leukemia, lymphoma, or Hodgkin's disease.

NCT ID: NCT00003739 Completed - Neutropenia Clinical Trials

Antibiotic Therapy With or Without G-CSF in Treating Children With Neutropenia and Fever Caused by Chemotherapy

Start date: March 1999
Phase: Phase 3
Study type: Interventional

RATIONALE: Antibiotics may decrease the side effects of neutropenia and fever caused by chemotherapy. Colony-stimulating factors such as G-CSF may increase the number of immune cells found in bone marrow or peripheral blood and may help a person's immune system recover from the side effects of chemotherapy. It is not yet known whether antibiotic therapy plus G-CSF is more effective than antibiotic therapy alone for treating side effects caused by chemotherapy. PURPOSE: Randomized phase III trial to compare the effectiveness of antibiotic therapy with or without G-CSF in treating children who have neutropenia and fever that are caused by chemotherapy.

NCT ID: NCT00003045 Completed - Prostate Cancer Clinical Trials

Hyperthermia Plus Radiation Therapy in Treating Patients With Nonmetastatic Advanced Prostate Cancer

Start date: April 1997
Phase: N/A
Study type: Interventional

Hyperthermia therapy may kill prostate cancer cells by heating them to several degrees above body temperature. Radiation therapy uses high-energy x-rays to damage tumor cells. Combining hyperthermia with radiation therapy may kill more tumor cells. The purpose of this study is to determine the ability of hyperthermia when combined with radiation therapy and in some patients hormonal therapy to control prostate cancer.

NCT ID: NCT00002974 Completed - Sarcoma Clinical Trials

Whole-Body Hyperthermia Plus Chemotherapy in Treating Patients With Advanced Sarcoma

Start date: July 1996
Phase: Phase 2
Study type: Interventional

RATIONALE: Hyperthermia therapy kills tumor cells by heating them to several degrees above body temperature. Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. Combining chemotherapy with whole-body hyperthermia may kill more tumor cells. PURPOSE: Phase II trial to study the effectiveness of whole-body hyperthermia plus combination chemotherapy in treating patients who have advanced sarcoma that is metastatic or that cannot be surgically removed.

NCT ID: NCT00001790 Completed - Fever Clinical Trials

Phase I Study of the Safety, Tolerance, and Pharmacokinetics of FK463 in Immunocompromised Children With Fever and Neutropenia

Start date: October 1998
Phase: Phase 1
Study type: Interventional

The objective of this study is to evaluate the safety, tolerance, and pharmacokinetics of FK463, a novel echinocandin (cell wall-active antifungal lipopeptide), as early empirical therapy for prevention of fungal infections in immunocompromised children. The study is designed as a multicenter open label, sequential dose escalation study of intravenous FK463. Intravenous FK463 will be administered daily as an hour infusion to patients with new onset of fever and neutropenia (absolute neutrophil count less than or equal to 500/mm3) who will be initiated onto broad spectrum empirical antibacterial therapy. The patient population consists of children ages 2 to 17 years of age; two age cohorts will be studied (2-12, 13-17). Dosage levels will be 0.5mg/kg/day (not to exceed 25 mg/day), 1.0 mg/kg/day (not to exceed 50 mg/day), 1.5 mg/kg/day (not to exceed 75 mg/day) and 2.0mg/kg/day (not to exceed 100mg/day). The planned sample size is 64 patients (a maximum of two replacement patients may be added to a given dose level and age cohort, for a total of no more than 10 patients per dose level and age cohort. The study will enroll no more than 80 patients). At each dosage level, a total of 8 patients will be enrolled into each age cohort (2-12, 13-17); a total of 16 patients will be enrolled into each dosage level. The first group of patients will receive FK463 at 0.5 mg/kg/day (not to exceed 25 mg/day). The second group of patients will receive 1.0 mg/kg/day (not to exceed 50mg/day). The third group of patients will receive 1.5 mg/kg/day (not to exceed 75 mg/day). The fourth group of patients will receive 2.0mg/kg/day (not to exceed 100mg/day). Study drug will continue until recovery from neutropenia (ANC post nadir greater than or equal 250/mm3) or until the initiation of conventional deoxycholate amphotericin B or a lipid formulation of amphotericin B for empirical antifungal therapy or for proven fungal infection. Patients may receive FK463 for a maximum duration of 14 days. For any patient who meets institutional criteria to start standard empirical antifungal therapy with conventional deoxycholate amphotericin B or a lipid formulation of amphotericin B (greater than 96 hours on study drug) or who has a proven breakthrough fungal infection, FK463 will be discontinued and conventional deoxycholate amphotericin B or a lipid formulation of amphotericin B will be initiated.

NCT ID: NCT00001373 Recruiting - Fever Clinical Trials

Familial Mediterranean Fever and Related Disorders: Genetics and Disease Characteristics

Start date: March 10, 1994
Phase:
Study type: Observational

This study is designed to explore the genetics and pathophysiology of diseases presenting with intermittent fever, including familial Mediterranean fever, TRAPS, hyper-IgD syndrome, and related diseases. The following individuals may be eligible for this natural history study: 1) patients with known or suspected familial Mediterranean fever, TRAPS, hyper-IgD syndrome or related disorders; 2) relatives of these patients; 3) healthy, normal volunteers 7 years of age or older. Patients will undergo a medical and family history, physical examination, blood and urine tests. Additional tests and procedures may include the following: 1. X-rays 2. Consultations with specialists 3. DNA sample collection (blood or saliva sample) for genetic studies. These might include studies of specific genes, or more complete sequencing of the genome. 4. Additional blood samples a maximum of 1 pint (450 ml) during a 6-week period for studies of white cell adhesion (stickiness) 5. Leukapheresis for collecting larger amounts of white cells for study. For this procedure, whole blood is collected through a needle in an arm vein. The blood flows through a machine that separates it into its components. The white cells are removed and the rest of the blood is returned to the body through another needle in the other arm. Patients may be followed approximately every 6 months to monitor symptoms, adjust medicine dosages, and undergo routine blood and urine tests. They will receive genetic counseling by the study team on the risk of having affected children and be advised of treatment options. Participating relatives will undergo a medical and family history, possibly with a review of medical records, physical examination, blood and urine tests. Additional procedures may include a 24-hour urine collection, X-rays, and consultations with medical specialists. A DNA sample (blood or saliva) will also be collected for genetic studies. Additional blood samples of no more than 550 mL during an 8-week period may be requested for studies of white cell adhesion (stickiness). Relatives who have familial Mediterranean fever, TRAPS, or hyper-IgD syndrome will receive the same follow-up and counseling as described for patients above. Normal volunteers and patients with gout will have a brief health interview and check of vital signs (blood pressure and pulse) and will provide a blood sample (up to 90 ml, or 6 tablespoons). Additional blood samples of no more than 1 pint over a 6-week period may be requested in the future.

NCT ID: NCT00001338 Completed - Sepsis Clinical Trials

A Prospective, Randomized, Phase III Trial of FLAC (5-Fluorouracil, Leucovorin, Adriamycin, Cytoxan) Chemotherapy With GM-CSF (Granulocyte-Macrophage Colony-Stimulating Factor) Versus PIXY 321 in Advanced Breast Cancer

Start date: June 1993
Phase: Phase 3
Study type: Interventional

This is a prospective, randomized Phase III trial of FLAC chemotherapy with GM-CSF versus PIXY321 in advanced breast cancer. The primary endpoints of this study will be the duration of thrombocytopenia and the time to recovery of platelets to 50,000/microliters. Other clinical endpoints will include the depth and duration of leukopenia, neutropenia, and anemia, the platelet and RBC transfusion requirements, and the number of documented instances of sepsis and hospitalizations for fever and neutropenia. Laboratory correlates will include the detailed evaluation of the effects on circulating hematopoietic progenitor cells by GM-CSF and PIXY321 and the potential effects these agents have on the bone marrow micro-environment. After 5 cycles of FLAC with GM-CSF versus PIXY321, patients will be treated with 5 cycles of 96 hour infusional taxol. The goal of this part of the study will be to assess the toxicity and feasibility of administering infusional taxol following dose-intensive FLAC chemotherapy.