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G Demetri

Publications and source records attributed to G Demetri.

15 recordsLinked to original sources

Neutropenic enterocolitis as a complication of high dose chemotherapy with stem cell rescue in patients with solid tumors: a case series with a review of the literature.

BACKGROUND: This case series with an accompanying review of the literature describes neutropenic enterocolitis as a complication of high dose chemotherapy with stem cell rescue in patients with solid tumors. METHODS: Neutropenic enterocolitis is documented in two patients undergoing autologous stem cell transplantation. A review of MEDLINE from 1970 to the present was performed to delineate the prior related disease settings in which this condition has been described. The nature of the clinical syndrome and controversies regarding management are discussed. RESULTS: The authors report two patients who each received autologous stem cell transplantation for the treatment of a solid tumor. Both patients presented with progressive abdominal pain, signs of peritoneal irritation on examination, and pneumatosis intestinalis. In the first case, the syndrome developed rapidly over several hours, requiring emergent surgical intervention during the period of postchemotherapy nadir. In the second case, the patient developed a slowly progressive clinical picture that was managed successfully with medical therapy alone. A review of the literature suggests that neutropenic enterocolitis arises due to drug-induced bowel wall mucosal injury followed by superinfection with colonic and opportunistic organisms. Surgical intervention potentially is beneficial in patients who develop an acute syndrome that is unresponsive to antibiotic and supportive therapy. Those patients who can be stabilized with medical management often will recover once reengraftment occurs. CONCLUSIONS: Neutropenic enterocolitis is described in two patients undergoing autologous stem cell transplantation for solid tumors. The management of this life-threatening complication is controversial and governed by the nature of the clinical presentation.

Antineoplastic Combined Chemotherapy Protocols

Repetitive cycles of cyclophosphamide, thiotepa, and carboplatin intensification with peripheral-blood progenitor cells and filgrastim in advanced breast cancer patients.

PURPOSE: As an alternative to single-cycle cyclophosphamide, thiotepa, and carboplatin (CTCb) intensification, we evaluated the feasibility of administering one-quarter dose CTCb for four cycles with peripheral-blood progenitor-cell (PBPC) and filgrastim (granulocyte colony-stimulating factor [G-CSF]) in advanced-stage breast cancer patients. PATIENTS AND METHODS: From June 1992 to August 1993, 20 stage IIIB (n = 7) and IV (n = 13) breast cancer patients received 78 cycles of induction with doxorubicin 90 mg/m2 by intravenous (IV) bolus with G-CSF 5 microg/kg/d by subcutaneous injection (SC) repeated every 14 to 21 days for four cycles. PBPC were collected by 2-hour single-blood volume leukapheresis on 2 consecutive days at the time of hematologic recovery from each cycle of doxorubicin. Eighteen patients received 61 cycles of intensification with cyclophosphamide 1,500 mg/m2, thiotepa 125 mg/m2, and carboplatin 200 mg/m2 by IV continuous infusion with G-CSF 10 microg/kg/d SC and PBPC support repeated every 21 to 42 days for four cycles. RESULTS: Twelve of 20 patients (60%) completed all four planned cycles of doxorubicin induction followed by four cycles of one-quarter dose CTCb intensification. Statistically significantly decreases in the yield of mononuclear cells (MNC) (median slope per day, -0.032; P = .03), granulocyte-macrophage colony-forming unit (CFU-GM) (median slope per day, -0.57; P = .0008), and burst-forming unit-erythroid (BFU-E) (median slope per day, -1.18; P = .006) were observed over the course of the eight leukaphereses. Of 18 patients who began CTCb, 12 (67%) completed four cycles. Six patients were removed from study during intensification: two for progressive disease (PD), one refused further treatment, and three for dose-limiting hematologic toxicity. A fourth patient fulfilled the criteria for dose-limiting hematologic toxicity after cycle 4. The toxicity of the multiple cycle CTCb intensification regimen consisted of grade IV leukopenia, grade IV thrombocytopenia, and febrile neutropenia in 100%, 100%, and 26% of cycles, respectively. The median duration of each CTCb cycle was 24 days (range, 18 to 63), and the median duration of an absolute neutrophil count (ANC) < or = 500/microL and platelet count < or = 20,000/microL during each cycle was 6 days (range, 2 to 15) and 4 days (range, 0 to 38), respectively. CONCLUSION: It is feasible to administer repetitive cycles of one-quarter dose CTCb intensification with PBPC and G-CSF. Additional studies are required to determine whether multiple cycles of CTCb intensification might offer a therapeutic advantage over a single high-dose cycle.

Adult

Angiosarcoma.

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Adult

Therapy with recombinant human erythropoietin in patients with myelodysplastic syndromes.

We conducted a Phase I-II trial of recombinant human erythropoietin-beta (rhEPO) in patients with myelodysplastic syndrome (MDS). Patients with anemia and pathologically confirmed MDS were eligible for the study. Treatment consisted of rhEPO by subcutaneous injection thrice weekly for 6 weeks at one of three dose levels (100 U/kg (three patients), 200 U/kg (three patients) and 400 U/kg (14 patients)). Ferrous sulfate (325 mg po tid) was also administered if the transferrin saturation was below 30% (two patients). Patients were monitored with weekly CBC, white cell differential, and reticulocyte counts. Bone marrow examinations were performed at the conclusion of the treatment period and after a 2 week washout period. Patients who responded to therapy were continued on rhEPO at the same dose for 6 additional months. Response criteria included: 50% reduction in transfusion requirements compared with the 6 week pre-study period; doubling of reticulocyte count that was maintained on two determinations at least 1 week apart; or an increase in hemoglobin by at least 1.2 gm/dl without transfusions. Pre-treatment factors potentially predictive of response were analyzed by univariate analysis and in a multivariate fashion by classification and regression trees. Seven of the twenty patients sustained an untransfused rise in serum hemoglobin > or = 1.2 gm/dl. Four of the sixteen patients (including three of seven patients experiencing a rise in serum hemoglobin) who were transfusion-dependent prior to the study achieved a reduction or elimination of their transfusion requirements. Five of thirteen patients who received rhEPO during the extension phase had a continued response. A low baseline erythropoietin level (< 50 mU/ml) was the best predictor of hemoglobin response when controlling for other variables. rhEPO has a role in the treatment of certain patients with MDS, particularly in those whose endogenous serum erythropoietin levels are not markedly elevated.

Adult

Recombinant human erythropoietin for the treatment of the anaemia associated with autologous bone marrow transplantation.

Patients with solid tumours undergoing high-dose chemotherapy with autologous bone marrow transplantation use an average of 10 units of packed red blood cells (PRBC) while awaiting haemopoietic reconstitution. They are also known to have inappropriately low endogenous erythropoietin levels for their degree of anaemia. This pilot study was designed to determine the effects of recombinant human erythropoietin (rHuEPO) on erythroid recovery and PRBC transfusion requirements. Ten patients received high-dose chemotherapy (days -7 to -3), bone marrow reinfusion (day 0), and then rHuEPO (day 1 onward). RHuEPO (200 units/kg intravenous bolus daily), along with iron supplementation, was administered for 28 d or until a haematocrit (Hct) of 35% (independent of transfusions) was reached, whichever occurred first. PRBCs were routinely given for Hct < or = 25% and platelets for counts < 20,000/microliters. Eight (80%) patients developed a brisk reticulocytosis (median peak reticulocyte count 0.32 x 10(9)/l) and a haematocrit > or = 30% independent of red blood cell transfusions within 32 d of receiving marrow, as compared to 20/37 (54%) similarly treated controls. An unexpected finding was the more rapid engraftment in myeloid and platelet lineages in a subset of rHuEPO-treated patients. Quick return of red blood cells (17 v 33 d) (P = 0.0001), platelets (14 v 19 d) (P = 0.04), and neutrophils (13 v 25 d) (P = 0.01) (with circulating myeloblasts and early myeloid forms) characterized recovery from an ifosfamide-based intensification with rHuEPO support. Similar trilineage enhancement of haemopoiesis did not occur with the possibly more myeloablative cyclophosphamide-based regimens. Despite the enhancement by rHuEPO on reticulocytosis, there was no significant decrease in PRBC transfusion requirements. RHuEPO proved to be a well-tolerated agent in enhancing reticulocytosis following high-dose chemotherapy. Further study to elucidate the activity of erythropoietin on both erythroid and non-erythroid growth and maturation appears warranted.

Adult

Effect of recombinant human interleukin-3 on haematological recovery from chemotherapy-induced myelosuppression.

Patients with non-small-cell lung cancer (NSCLC) were treated with ICE chemotherapy (ifosfamide 2000 mg/m2, days 1-3; carboplatin 300 mg/m2, day 1; etoposide 75 mg/m2, days 1-3) intravenously (i.v.) during the first 3 d of a maximum of four 28 d treatment cycles. Interleukin-3 (IL-3) was administered in cycles 2 and 4 as a daily subcutaneous (s.c.) injection on days 5-18. Cohorts of three patients were treated at dosage levels of 0.5, 1.25, 2.5, 5.0, 10.0 and 15.0 micrograms/kg/d. At 15.0 micrograms/kg/d a 'flu-like' syndrome of myalgias, arthralgias and fatigue was considered dose-limiting. Other toxicities were headache, fever, urticaria, arrhythmia, chills and flushing. Subsequently, nine patients were added to the group receiving 10 micrograms/kg/d. 27 patients received IL-3 after their second course of ICE. At 10 and 15 micrograms/kg/d, IL-3 in cycle 2 was associated with enhanced haematological recovery. Depth of neutrophil nadir and days of neutropenia (ANC < 0.5 x 10(9)/l) were reduced in 9/13 patients and in 8/11 patients, respectively. No effect was seen on platelet nadir or days of thrombocytopenia. IL-3 was well tolerated up to 10 micrograms/kg/d when given as a daily s.c. injection. Results suggest IL-3 as a potential adjunct to chemotherapy, and further studies to explore administration of IL-3 in combination with other cytokines in this setting are warranted.

Adolescent

Long-term follow-up of a phase III study of recombinant human granulocyte-macrophage colony-stimulating factor after autologous bone marrow transplantation for lymphoid malignancies.

One hundred and twenty-eight patients with non-Hodgkin's lymphoma (NHL), Hodgkin's disease (HD), and acute lymphoblastic leukemia (ALL) previously reported from a phase III trial of rhGM-CSF or placebo following autologous bone marrow transplantation (ABMT) were investigated for the development of late toxicities. Median follow-up is 36 months. No apparent long-term deleterious effects on BM function were observed. Moreover, disease-free survival and overall survival were similar for patients on both treatment arms, arguing for the long-term safety of recombinant human granulocyte macrophage-colony-stimulating factor (rhGM-CSF). The only factors predictive for both a high risk of relapse over time and mortality were having the diagnosis of ALL and/or undergoing ABMT in resistant relapse. We attempted to identify clinical variables before BM harvest, at the time of marrow infusion, or events within the first 100 days posttransplant, which might predict speed of neutrophil recovery in the setting of placebo or rhGM-CSF administration after ABMT. Only previous exposure to agents that deplete stem cells led to a significant delay in neutrophil recovery, suggesting their avoidance in patients who may undergo ABMT. Nevertheless, even those patients benefited from rhGM-CSF. For all patients, rhGM-CSF and agents that deplete stem cells were the strongest independent predictors for neutrophil engraftment. With the increasing use of newer hematopoietic growth factors both alone and in combination, long-term follow-up is essential to confirm the same safety that we report with rhGM-CSF.

Adolescent

The Wilms tumour gene WT1 is expressed in murine mesoderm-derived tissues and mutated in a human mesothelioma.

The tumour suppressor gene WT1 encodes a transcription factor expressed in tissues of the genito-urinary system. Inactivation of this gene is associated with the development of Wilms tumour a pediatric kidney cancer. We show that WT1 is also expressed at high levels in many supportive structures of mesodermal origin in the mouse. We also describe a case of adult human mesothelioma, a tumour derived from the peritoneal lining, that contains a homozygous point mutation within WT1. This mutation, within the putative transactivation domain, converts the protein from a transcriptional repressor of its target sequence to a transcriptional activator. The role of WT1 in normal development thus extends to diverse structures derived from embryonic mesoderm and disruption of WT1 function contributes to the onset of adult, as well as pediatric, tumours.

Adult

Use of peripheral-blood progenitor cells abrogates the myelotoxicity of repetitive outpatient high-dose carboplatin and cyclophosphamide chemotherapy.

PURPOSE: Attempts to increase dose-intensity in clinical practice have been limited by cumulative hematologic toxicity despite the use of hematopoietic growth factors. To address this problem, we designed a study to determine whether four cycles of dose-intensive chemotherapy with carboplatin could be administered in the outpatient setting using granulocyte-macrophage colony-stimulating factor (GM-CSF) and peripheral-blood progenitor cells (PBPCs) that had been harvested before initiation of treatment. PATIENTS AND METHODS: An initial cycle (cycle no. 0) of cyclophosphamide 4 g/m2 followed by GM-CSF was used to mobilize PBPCs harvested by leukapheresis for 6 consecutive days. Cycles no. 1 through 4 consisted of outpatient carboplatin 600 mg/m2 and cyclophosphamide 600 mg/m2 followed by GM-CSF 5 micrograms/kg subcutaneously (SC) twice per day every 28 days. In cycle no. 1, PBPC were not reinfused to assess the effects of GM-CSF alone. In cycles no. 2 through 4, PBPCs were reinfused on day 3 in an outpatient setting. RESULTS: In eight assessable patients, the addition of PBPCs in cycle no. 2 resulted in a significant reduction in the median duration of thrombocytopenia less than 20,000/microL (6.5 v 1 day; P = .016), days to platelets more than 50,000/microL (20.5 v 15 days; P = .020), number of platelet transfusions (five v 1.5; P = .016), and duration of neutropenia (absolute neutrophil count [ANC] < 1,000/microL (7 v 2.5 days; P = .008) when compared with cycle no. 1. Dose-limiting hematologic toxicity, defined as more than 7 days of platelets less than 20,000/microL or ANC less than 500/microL, was observed in four of eight patients during cycle no. 1, but not during cycles no. 2, 3, and 4 of chemotherapy supported by PBPCs (a total of 19 cycles in eight patients). Five of eight patients completed all four cycles of high-dose therapy. Three patients did not complete four cycles due to late thrombocytopenia (n = 2) or tumor progression (n = 1). CONCLUSION: These results indicate a benefit of PBPCs in addition to GM-CSF in alleviating myelosuppression of dose-intensive chemotherapy. Initial collection of PBPCs may allow administration of repetitive cycles of high-dose chemotherapy with acceptable toxicity to outpatients at disease onset.

Adult

Tissue factor gene expression in acute myeloblastic leukemia.

We have studied tissue factor gene expression in the leukocytes of 22 patients with acute myeloblastic leukemia (AML). Total RNA from peripheral blood or bone marrow cells depleted of monocytes was analyzed by Northern blot analysis using a 32P-labeled tissue factor cDNA probe. Cells from 10 cases expressed tissue factor mRNA and positive cases were distributed among the myeloblastic, myelomonocytic, and monocytic subtypes of AML. Tissue factor transcripts were not detected in cells derived from normal bone marrow. The expression of this gene product on the surface of leukemic cells could contribute to the excessive thrombin generation that has been observed in some individuals with this disorder.

Blood Coagulation Factors

Circulating interleukin 6 during a continuous infusion of tumor necrosis factor and interferon gamma.

Plasma samples obtained from patients receiving a 24-h continuous infusion of human recombinant (hr)TNF or a combination of two overlapping, 24-h continuous infusions of hrIFN-gamma and hrTNF were analyzed for IL-6 in a sensitive bioassay. A transient appearance of circulating IL-6 was observed with peak levels between 3 and 6 h after the start of the hrTNF infusion. These peak levels correlated quite well with the dose of hrTNF administered (r = 0.86; p less than 0.001). The maximal value observed was 27.5 ng/ml IL-6 in a sample of a patient receiving 545 micrograms/m2 hrTNF. The combination of hrIFN-gamma (200 micrograms/m2) and hrTNF in the infusions resulted in higher IL-6 levels than a comparable dose of hrTNF alone. A maximal value of 23.5 ng/ml IL-6 was observed in a patient receiving 205 micrograms/m2 hrTNF. No IL-6 was found in the plasma of patients during the 12-h infusion with hrIFN-gamma alone, except for two borderline samples.

Drug Administration Schedule

Ecdysteroid-inducible polypeptides in a Drosophila cell line.

In the Drosophila melanogaster cell line Kc-H, ecdysteroid hormone treatment causes increased relative synthesis of three ecdysteroid-inducible polypeptides (EIPs), named according to their molecular weights (in kilodaltons) EIP 40, EIP 29 and EIP 28. Increased synthesis of the EIPs is detectable within 45 min (EIP 28) or 75 min (EIPs 40 and 29), is maximal at 4-8 hr and continues for almost 2 days. During this period no other major changes in protein synthesis are discernible using one-dimensional gels. At maximum, EIP 28 synthesis is elevated at least 10 fold above its basal level, and EIPs 40 and 29 somewhat less. EIP induction is ecdysteroid-specific and is detectable in the presence of 10(-8) M 20-hydroxyecdysone. It does not occur in hormone-resistant cells. Apparently identical polypeptides are inducible in another ecdysteroid-responsive cell line, Schneider's line 3. Because EIP synthesis is an early and substantial response to ecdysteroids, this is a promising system for the study of steroid hormone action.

Animals

Stem cell factor is a potent synergistic factor in hematopoiesis.

Stem cell factor (SCF), a ligand for c-kit, has a broad range of activities including effects on cells at or near the level of the multipotential stem cell as well as on committed cells. Preclinical studies show that SCF can protect against lethal irradiation, elicit multilineage responses in peripheral blood and bone marrow cellularity, and increase circulating peripheral blood progenitor cells (PBPC) in a dose-dependent manner. Recombinant human SCF has major clinical potential through its synergy with other factors, especially recombinant human granulocyte colony-stimulating factor, to enhance mobilization of PBPC.

Animals