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Paclitaxel in combination with vinorelbine in pretreated advanced breast cancer patients.

This phase II study combined paclitaxel (Taxol; Bristol Myers Squibb Company, Princeton, NJ) 135 mg/m2 by 3-hour infusion on day 1 and vinorelbine 25 mg/m2 on days 1 and 8 (in the first 14 patients) or on days 1 and 3 (in the subsequent 20 patients). The courses were repeated every 3 weeks. The second vinorelbine dose (on days 3 or 8) was reduced or omitted according to the toxicities encountered. Thirty-four patients have been treated to date; 21 had received one prior regimen of chemotherapy, 11 had two prior regimens, and two had three prior regimens. Only two patients (6%) had not been exposed to anthracyclines. One hundred twenty-six courses have been administered: 52 with vinorelbine given on days 1 and 8, and 74 with vinorelbine administered on days 1 and 3. The most frequent toxicity was grade 4 neutropenia, which occurred in 64% of the courses; 13 episodes of febrile neutropenia have been reported in eight patients. Filgrastim was administered in 43% of the courses because of febrile neutropenia or delayed recovery (> 72 hours) from grade 4 neutropenia. Mucositis was observed in 18% of the courses (12% grade 1, 3% grade 2, and 3% grade 3). The dose of vinorelbine was reduced or omitted in 86% of courses with the days 1 and 8 schedule, and in 48% of courses with the days 1 and 3 schedule. Among 28 evaluable patients, two complete and 10 partial responses have been observed (response rate, 43%, 95% confidence interval, 19% to 51%). Median duration of response is 5+ months (range, 1 to 15 months). In conclusion, this combination is active and has acceptable toxicities in anthracycline-pretreated breast cancer patients. The delivered dose intensity of vinorelbine is higher with the schedule adopted later in the study, with vinorelbine given on days 1 and 3.

Adult↗

Delayed effects of rhG-CSF mobilization treatment and apheresis on circulating CD34+ and CD34+ Thy-1dim CD38- progenitor cells, and lymphoid subsets in normal stem cell donors for allogeneic transplantation.

Allogeneic transplantation of peripheral blood progenitor cells (PBPC) is emerging as a new stem cell transplant modality. Rather than undergoing general anesthesia for bone marrow harvest, normal blood stem cell donors are subjected to rhG-CSF mobilization treatment followed by single or multiple apheresis. Whereas the effects of cytokine treatment and apheresis on stem cell peripheralization and collection have been described, little is known about delayed effects of rhG-CSF treatment and apheresis on a normal hematopoietic system, and there are no long-term data that address safety issues. Ten normal, patient-related donors underwent a 3 or 4 day rhG-CSF (filgrastim) treatment (12 micrograms/kg/day) followed by single or tandem apheresis. We monitored peripheral blood (PB) cellularity including CD34+ and lymphoid subsets at baseline, during cytokine treatment, prior to apheresis, and at days 2, 4, 7, 30 and 100 post-apheresis. The PB progenitor cell concentration peak prior to apheresis was followed by a nadir by day 7 and normalized by day 30, with the exception of the most primitive CD34+ Thy-1dim CD38- progenitor subset that reached a nadir by day 30. Lymphoid subsets such as CD3, 4, 8, suppressor cells (CD3+ 4- 8- TCR+ alpha beta), and B cells (CD19+) showed a similar pattern with a nadir concentration by day 7, followed, except for B cells, by a rebound by day 30 and subnormal counts at day 100. The PB concentrations of hemoglobin and platelets dropped mainly due to the apheresis procedure itself, and normalized by day 30. With cytokine treatment, the PB alkaline phosphatase and lactate dehydrogenase concentrations increased 2.2- and 2.8-fold, respectively, over baseline, and returned to normal range by day 30. Based on the preliminary nature of this study, the clinical relevance of these findings is still unclear.

ADP-ribosyl Cyclase↗

Dose escalation of paclitaxel with high-dose carboplatin using peripheral blood progenitor cell support in patients with advanced ovarian cancer.

A phase I study of escalating doses of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) given in combination with high-dose carboplatin was conducted to identify the antitumor efficacy and maximum tolerated dose of paclitaxel in patients who had received sequential cycles of paclitaxel/cyclophosphamide as prior treatment for ovarian carcinoma. Eighteen patients with advanced ovarian cancer were treated in this study. Induction therapy consisted of two cycles of cyclophosphamide 3.0 g/m2 plus high-dose paclitaxel 300 mg/m2 plus filgrastim and leukapheresis to harvest peripheral blood progenitor cells, followed by four courses of rapidly cycled high-dose carboplatin with planned dose escalation of paclitaxel (150, 200, 250, and 300 mg/m2) rescued with peripheral blood progenitor cells. The study was amended after accrual of 11 patients, and the remaining seven patients received a single cycle of induction therapy with paclitaxel/cyclophosphamide, followed by four courses of rapidly cycled high-dose carboplatin with planned dose escalation of paclitaxel through levels 200 and 250 mg/m2. All 18 patients have completed therapy. Of the 15 who are evaluable for response, the pathologic complete response was 33% (five of 15 patients). The administration of escalating doses of paclitaxel in combination with high-dose carboplatin following sequential cycles of paclitaxel/cyclophosphamide induction resulted in significant nonhematopoietic toxicity. Induction with a single cycle of paclitaxel/cyclophosphamide resulted in excellent progenitor cell mobilization, and significantly ameliorated the toxicity of this approach. The response rates thus far obtained are promising and warrant further evaluation.

Adult↗

Clinical relevance of point mutations in the cytoplasmic domain of the granulocyte colony-stimulating factor receptor gene in patients with severe congenital neutropenia.

Recently, point mutations in the gene of the granulocyte colony-stimulating factor (G-CSF) receptor have been reported in two patients with severe congenital neutropenia who developed acute myeloid leukemia (AML). We investigated the frequency of these specific G-CSF receptor mutations in patients with congenital neutropenia undergoing treatment with r-metHuG-CSF (Filgrastim) and the clinical relevance of these mutations. Nucleotides 2306 to 2561 including the critical region (nucleotides 2384-2429) from the intracellular domain of the G-CSF receptor gene were amplified by reverse transcriptase-polymerase chain reaction. Detection of point mutations was performed with specific restriction enzyme analysis, as well as sequencing of PCR products. Both genomic DNA and cDNA from neutrophils and mononuclear cells were analyzed from 28 patients with severe congenital neutropenia. Four of 28 patients with congenital neutropenia displayed a point mutation in the tested cytoplasmic region of the G-CSF receptor gene. The point mutations replace a glutamine codon by a stop codon of the G-CSF receptor gene. Among these four congenital neutropenia patients with a mutated G-CSF receptor, two developed AML. All four patients were investigated regularly and no correlation between occurrence of G-CSF receptor mutation and time or dose of r-metHuG-CSF treatment was found. No point mutations in the G-CSF receptor critical domain could be detected in cells from the other 24 congenital neutropenia patients. Furthermore, we tested six family members of the two patients with AML including mothers and fathers, one sister, and one brother who suffers from congenital neutropenia, as well. All family members displayed a normal G-CSF receptor gene. After the acquisition of the G-CSF receptor mutations, the congenital neutropenia patients continued to respond to G-CSF therapy with an increase in absolute neutrophils in the peripheral blood. We conclude that the point mutations in the critical region of the intracellular part of the G-CSF receptor occur spontaneously and are not inherited. From our data, we suggest that the described G-CSF receptor point mutations do not alter the response to treatment with r-metHuG-CSF and are not the cause of severe congenital neutropenia.

Acute Disease↗

Intensified M-VEC chemotherapy with G-CSF support as outpatient treatment for advanced bladder cancer.

The M-VAC regimen (methotrexate, vinblastine, doxorubicin and cisplatin) is widely used in the treatment of advanced or metastatic bladder cancer. In the present trial, an alternate week regimen of M-VEC (with epidoxorubicin instead of doxorubicin) supported by G-CSF (filgrastim) was evaluated. Eligible patients had metastatic or surgically unresectable bladder cancer, not previously treated with systemic chemotherapy. Treatment consisted of methotrexate 30 mg/m2 day 1, vinblastine 3 mg/m2 day 2, epidoxorubicin 60 mg/m2 day 2 and cisplatin 35 mg/m2 days 2 and 3. G-CSF was administered s.c. at the dose of 300 mcg from day 4 to day 11: the treatment was repeated every 2 weeks for six cycles. Twenty-one patients entered the study, and 19 received more than 1 cycle: 78.9% were able to receive full doses of M-VEC as scheduled. The treatment resulted feasible on an outpatient basis, with mild toxicity. Three complete responses (15.8%) and 9 partial responses (47.4%), with an overall objective response rate of 63.2%, were observed.

Aged↗

Effect of granulocyte colony-stimulating factor on granulopoiesis of congenital neutropenic children.

We report on two patients with congenital neutropenia, who were treated with filgrastim (recombinant human granulocyte-colony stimulating factor, G-CSF). A poor growth of bone marrow colonies and low sensitivity of colony forming units to colony stimulating factor in vitro before treatment seemed to be associated with a requirement for higher doses of G-CSF to achieve good clinical response in vivo.

Blood Cells↗

[Efficiency of high-dose FEC chemotherapy for the mobilization of hematopoietic stem cells into peripheral blood].

The best regimen for mobilizing hematopoietic stem cells (HSC) into peripheral blood is not yet defined. The efficiency of FEC chemotherapy in the treatment of breast cancer is well established and the effects of FEC on HSC mobilization have been characterized. We tested the feasibility and the toxicity of a high-dose FEC regimen which may improve the mobilizing capacity of conventional FEC. Twenty patients with poor prognosis breast cancer received high-dose FEC and filgrastim 5 micrograms/kg. Three leukaphereses were performed on each patient for 3 consecutive days. Total numbers of CFU-GM and CD34+ cells were assessed, and a retrospective analysis was made. The numbers of CFU-GM/kg and CD34+ cells/kg collected (mean +/- standard error) were respectively 12.2 x 10(5) (+/- 2.4) and 14.6 x 10(6) (+/- 2.5). Extra-hematologic toxicity was negligible. Hematologic recovery after CTCb high-dose chemotherapy and HSC infusion was rapid. High-dose FEC is efficient for collecting HSC in peripheral blood. Extra-hematologic toxicity is weak and hematologic recovery after autograft is normal. Increased dosage of epirubicin and cyclophosphamide could allow a single leukapheresis collection of sufficient HSC from peripheral blood.

Adult↗

Severe chronic neutropenia: pathophysiology and therapy.

The development of recombinant-met human granulocyte-colony stimulating factor (r-metHuG-CSF) for clinical use has had a major influence on the treatment of many diseases. This impact has perhaps been greatest for treatment of severe chronic neutropenia (SCN) conditions for which there were no predictably effective treatment before the availability of these growth factors, particularly r-metHuG-CSF (Filgrastim, Amgen Inc, Thousand Oaks, CA; or Lenograstim, Rhone-Poulenc Rorer, Milan, Italy). Based on careful studies in many countries it is now known that more than 95% of these patients will respond promptly to r-metHuG-CSF treatment with normalization of the blood neutrophil levels and reduction in the occurrence of both major and minor consequences of their severe neutropenia. The availability of this treatment will undoubtedly lead to much additional research on the mechanisms governing neutrophil production and the basic mechanisms that can cause neutropenia among patients who have SCN. Among patients who have SCN those who are diagnosed to have severe congenital neutropenia (Kostmann's syndrome) or Shwachman-Diamond syndrome are at risk of developing myelodysplasia and/or acute myelogenous leukemia. The role of r-metHuG-CSF in facilitating the risk remains to be determined. Thus, it is important that long-term evaluation of the safety and efficacy of treatment of SCN and cooperation in research on these rare conditions proceed under the auspices of an international registry monitoring the clinical outcome of patients with severe congenital neutropenia.

Chronic Disease↗

[Allogenic blood stem cell transplants: characteristics of transplantation material and clinical transplantation course].

We have analysed the clinical course of the 14 consecutive allogeneic peripheral blood stem cell transplantations (PBSCT) and cellular composition of the grafts. Donors were HLA-identical siblings except for the one donor who was only HLA-phenotypically identical brother. Nine of them were sex-mismatched to their recipient. Donors received filgrastim (G-CSF) at a dose of 10 microkilograms/kg for 5 days (4-6). Leukaphereses were started at 5 day to obtain the target dose 4 x 10(6) CD34+ cells/kg recipient weight. Median 24 l of blood (24-36) was processed collecting: 10.3 x 10(8)/kg (6.69-18.8) WBC, 9.9 x 10(8)/kg (5.87-16.02) MNC, 9.72 x 10(6)/kg (0.74-18.98) CD34+ cells, 242.5 x 10(6)/kg (77.9-422) T lymphocytes (CD4+ to CD8+ ratio was 1.5), 76 x 10(6)/kg (24-113) B lymphocytes, 33 x 10(6)/kg (14-88) NK cells and 168.8 x 104/kg (23.1-271.4) CFU-GM with 131.7 x 10(4)/kg (8.4-297.6) BFU-E. Engraftment times to a neutrophil count (ANC) > 0.5 x 10(9)/l was achieved at a median of 15 days (range 10-23) in all patients whereas the platelet count > 20 x 10(9)/l at a median of 14 days (9-19) in all but one patient who received the smallest dose of CD34+ cells. Acute graft versus host disease (GvHD) developed in 8 patients who survived more than 30 days. Most of them (75%) were patients with chronic myeloid leukaemia (CML). In 4 of them GvHD was steroid resistant. Chronic GvHD developed in 3 of 6 evaluable patients. We confirm that allogeneic PBSCT result in rapid and longterm trilineage engraftment. However, the observation of the increasing incidence and severity of acute GvHD in patients with CML will require verification in the larger setting of patients after completion of ongoing clinical trials.

Adult↗

High-dose infusional doxorubicin and cyclophosphamide: a feasibility study of tandem high-dose chemotherapy cycles without stem cell support.

The purpose of this study was to determine the maximally tolerated dose of doxorubicin administered during two cycles of intensive chemotherapy with cyclophosphamide and doxorubicin without stem cell support in patients with advanced cancer and to assess the cumulative cardiac toxicity of the regimen by noninvasive radionuclide imaging and by pre-and postchemotherapy endomyocardial biopsies. Thirty-eight patients (thirty-six with high risk or metastatic breast cancer) were treated in a dose-escalation trial using a fixed dose of i.v. cyclophosphamide (4.2 g/m2) administered over 2 h on day 5 and escalating doses of doxorubicin (50-175 mg/m2) given as a 96-h continuous i.v. infusion on days 1-4, using Filgrastim (granulocyte colony-stimulating factor) for hematological support beginning on day 6. All patients underwent pretreatment, and 28 patients underwent postchemotherapy endomyocardial biopsies. Twenty-nine of 38 patients received two cycles of treatment (median number of days between cycles, 44; range, 34-62). Twenty-one patients had received doxorubicin previously at cumulative dose levels </=150 mg/m2; all patients had pretreatment endomyocardial biopsy scores less than 1. One patient treated at the highest dose level of doxorubicin (175 mg/m2) developed symptoms of mild congestive heart failure following two cycles of chemotherapy. Pre- and posttreatment radionuclide ejection fractions were 65 and 45%, respectively; this patient had a posttreatment endomyocardial biopsy score of 1 (damage to <5% of myocytes). One additional patient at this dose level had an asymptomatic biopsy score of 1, with a decrease in ejection fraction from 62 to 43%; this recovered to 58% 5 months after completion of chemotherapy. Six additional patients treated at lower dose levels had abnormal posttreatment endomyocardial biopsies without abnormal posttreatment ejection fractions. Nine patients received only one cycle of chemotherapy: five patients due to decreased cardiac ejection fraction following cycle 1 (two of these patients had normal endomyocardial biopsies, and two patients had biopsy scores of 1); one patient secondary to tumor progression following cycle one; one patient due to persistently detectable Clostridium difficile toxin in the stool; one patient refused cycle two; and one patient died following cycle one of complications related to sepsis. A single patient experienced a grand mal seizure associated with orthostatic hypotension, which was considered the dose-limiting toxicity. The median duration (over two cycles) of granulocytopenia (absolute granulocyte count <500/microliter) at the maximally tolerated dose level of 150 mg/m2 was 8.5 days (range, 5-13 days), and the median duration of thrombocytopenia (platelets <20,000/microliter) was 2.5 days (range, 0-9 days). The median duration of hospitalization including chemotherapy administration was 23 days (range, 19-36 days). Other toxicities included stomatitis, fever, diarrhea, and emesis. One patient developed acute leukemia 54 months posttreatment. We conclude that two courses of high-dose cyclophosphamide and doxorubicin using granulocyte colony-stimulating factor are feasible and safe with tolerable myocardial toxicity as evidenced by serial endomyocardial biopsies. The dose-limiting toxicity encountered was a grand mal seizure. The recommended Phase II dose is doxorubicin 150 mg/m2 administered as a 96-h infusion on days 1-4, with cyclophosphamide 4. 2 g/m2 on day 5 and G-CSF 5 microgram/kg/day started on day 6 and administered until the total WBC is above 10,000/microliter for three consecutive days.

Adult↗

Systemic effects of pegylated recombinant human megakaryocyte growth and development factor in combination with recombinant murine granulocyte colony-stimulating factor in a murine model of myelosuppression.

Megakaryocyte growth and development factor (MGDF) stimulates megakaryopoiesis and thrombopoiesis in vivo. Previous studies indicate that administration of pegylated recombinant human (PEG-rHu) MGDF in combination with recombinant murine granulocyte colony-stimulating factor (rMuG-CSF) prevented lethality and reduced hematotoxicity in carboplatin-treated/irradiated mice, a disease-state animal model of radio-chemotherapy. In the current study we have further characterized the effects of PEG-rHuMGDF in combination with rMuG-CSF with respect to clinical chemistry, hematology variables, and histologic evaluations to determine whether any potential toxicological interaction exists both in normal and myelosuppressed mice. Myelosuppression and subsequent thrombocytopenia in mice was induced with a combination of a single intraperitoneal injection of 1.25 mg carboplatin followed 4 h later with sublethal gamma irradiation exposure of 500 rad. Both normal and carboplatin-treated/irradiated mice were administered daily subcutaneous injections of 50 micrograms/kg PEG-rHuMGDF alone and in combination with 10 micrograms/kg rMuG-CSF for 21 consecutive days. Administration of PEG-rHuMGDF alone or in combination with rMuG-CSF to carboplatin-treated/irradiated mice increased survival 70 and 100%, respectively, and accelerated platelet recovery. Microscopic examination of nonhematopoietic organs showed no evidence of any morphological changes in normal and carboplatin-treated/irradiated animals. In hematopoietic organs clinically significantly increased granulopoiesis and megakaryopoiesis, as well as extramedullary granulopoiesis within the mandibular and mesenteric lymph nodes, were present. The erythroid line was unaffected by cytokine treatment. In normal, non-carboplatin-treated/irradiated mice, platelet counts increased 6 and 12-fold above baseline in the groups administered PEG-rHuMGDF alone or in combination with rMuG-CSF, respectively. The results of this study provide a basis for coadministration of PEG-rHuMGDF with Filgrastim (rHuG-CSF) in the clinical treatment of myelosuppression induced by radiation and chemotherapy.

Animals↗

Clinical toxicity of cryopreserved circulating progenitor cells infusion.

BACKGROUND: We evaluated the infusion-related toxicity of cryopreserved autologous circulating progenitor cells transplanted in 22 patients receiving high dose chemotherapy and stem cells transplantation for malignancy. MATERIALS AND METHODS: Progenitor cells were collected following mobilization with chemotherapy plus filgrastim and stored in liquid nitrogen in the presence of 10% dimethylsulfoxide (DMSO). Before infusion of the graft, patients were medicated with mannitol, hydrocortisone and clorphenamine. The amount of DMSO infused as well as the number of dead and damaged cells were evaluated as possible cause of toxicity. RESULTS: Eleven patients (50%) experienced symptoms related to graft infusion, nausea and vomiting being the most common adverse events. Hypotension was documented in 3 patients (one of them developing transient bradycardia resolved with atropin administration) and one had hypertension with tachycardia. Other observed side effects were: chest tightness (2 pts), fever and chills (3 pts), associated with abdominal cramps (2 pts). 7 out of 8 (88%) patients infused with greater than 30 mL volume of DMSO experienced side-effects, the grade of toxicity being significantly less in those receiving lower amount (< 30 mL) of DMSO. Two out of 4 pts who received the highest number of dead cells (> 10 x 10(9)) developed toxicity. CONCLUSIONS: In our experience the infusion of cryopreserved peripheral blood progenitors caused minor to moderate toxicity in most cases and, when present, side effects were observed only during infusion. The amount of DMSO present in the graft is related to the grade of toxicity.

Adult↗

Allogeneic peripheral blood stem cell transplantation in patients with haematological malignancies.

OBJECTIVE: To report the initial data on allogeneic peripheral blood stem cell transplantation for haematological malignancies in Pakistan. DESIGN: A single centre descriptive study. PLACE AND DURATION OF STUDY: Bismillah Taqee Institute of Health Sciences and Blood Diseases Centre from September 1999 to June 2004. PATIENTS AND METHODS: Patients with haematological malignancies were included who had received allogeneic PBSC transplantation of Filgrastim (rhG-CSF) mobilized peripheral blood stem cells from HLA-identical siblings (except one 5/6 antigen sibling) with Busulphan and Cyclophosphamide standard conditioning therapy in all patients. No patient received antibiotics for gut decontamination. Empirical antibiotics included Ceftriaxone and Amikacin for febrile neutropenia, oral Itraconazole for antifungal prophylaxis while oral acyclovir was used for antiviral prophylaxis. All donors and recipients were CMV IgG positive Cyclosporin A / Methotrexate were given for graft versus host disease (GvHD) prophylaxis. Stem cells were harvested using Haemonetics MCS+ cell separator. All patients received G-CSF starting from day +4 until their neutrophil count rose to normal. RESULTS: There were 21 patients with age range of 8-38 years and male to female ratio of 2:1. Engraftment was achieved in all patients; median time to absolute neutrophil count of > 0.5 x 10(9)/l was 10 days (range 8 - 12 days) and platelet count of > 20 x 10(9)/l was 14 days (12-17 days). Acute graft versus host disease ( aGvHD) was seen in 7 patients; one patient had grade IV skin and hepatic GvHD; another patient had grade III gut GvHD, grade II GvHD was seen in 3 patients while grade I skin aGvHD was seen in 2 patients. Median hospital stay was 34 days. Treatment related mortality was seen in 3 patients (18%). Chronic GvHD was seen in 5 patients. Four more patients died during the follow-up period. Malaria was seen in 2 while tuberculosis developed in one case. Relapse was seen in 2 patients. The estimated probability of survival at one hundred day, at one year and five years was 82, 47 and 40 percent respectively. CONCLUSION: Haematopoietic stem cell transplant programme can be developed in a developed country setting. Post transplant complications are similar to what have been reported in the developed countries. In endemic areas malaria could prove to be fatal if not recognised and treated early.

Adolescent↗

Measurement of serum granulocyte colony-stimulating factor in a patient with congenital agranulocytosis (Kostmann's syndrome).

A 12-month-old boy with Kostmann's syndrome was admitted with cavitary pulmonary disease. He had also had bacterial conjunctivitis, periorbital cellulitis, pneumonitis, and otitis media since the age of 10 days. His umbilical cord had not fallen off until he was 3 weeks old. Neutropenia was diagnosed at 4 weeks of age. Antineutrophil antibody studies were negative. A bone marrow aspirate showed granulocytic hypoplasia and a maturation arrest at the promyelocyte stage. Hematopoietic cell culture showed normal numbers of colony-forming units-granulocyte macrophage. Serum granulocyte-macrophage colony-stimulating factor level, was 0.24 ng/mL (normal, greater than 0.05 ng/mL). Serum granulocyte colony-stimulating factor levels, measured by enzyme immunoassay, were undetectable. The patient was successfully treated with filgrastim (granulocyte colony-stimulating factor), with an increase in the absolute neutrophil count to 10.0 x 10(9)/L. Thus, our case of Kostmann's syndrome appears to represent a defect in regulation or production of granulocyte colony-stimulating factor.

Agranulocytosis↗

Renal medullary carcinoma: clinical and therapeutic aspects of a newly described tumor.

BACKGROUND: Renal medullary carcinoma is a newly described, aggressive kidney tumor. All patients with the disease have been African-American with sickle cell (SC) trait or hemoglobin SC disease. METHODS: Patient information was obtained from individual patient records and from the Department of Defense national data bank, The Defense Enrollment and Eligibility Reporting System. Data were obtained from either personal review of the patient's records or from discussion with the patient's physician. Cytogenetic studies were performed on one patient. RESULTS: Six patients are presented. All had SC trait. Median age was 24.5 years and 1 patient was female. Time from diagnosis to death averaged 3 months (range 1-7 mos). No objective responses were reported to a wide variety of chemo and immunotherapies: cyclophosphamide, doxorubicin, cisplatin; methotrexate, vinblastine, doxorubicin, and cisplatin; single agent interferon; single agent paclitaxel; or single agent vinblastine. Investigational regimens included topotecan, doxorubicin, and filgrastim; alpha-interferon, interleukin-2, and 5-fluorouracil; and single agent paclitaxel. Cytogenetic studies revealed numerous structural, as well as numerical anomalies. Of the cells successfully karyotyped (n=4), 2 contained abnormalities of chromosome 3 and all contained monosomy 11. CONCLUSIONS: Renal medullary carcinoma is an aggressive, chemoresistant tumor. Time from discovery of tumor to patient death is very short and has been altered by a wide variety of chemotherapies and immunotherapies. An unidentified genetic component is likely present.

Adult↗

Management of intermediate-prognosis germ-cell cancer: results of a phase I/II study of Taxol-BEP.

The standard chemotherapy regimen in metastatic germ-cell cancer is bleomycin, etoposide and cisplatin (BEP). Chemotherapy studies testing cisplatin dosage and the substitution of ifosfamide for bleomycin have not shown this to be superior to BEP. Paclitaxel (Taxol) has demonstrated promising activity as a second-line treatment in patients with relapsing or cisplatin-refractory germ-cell cancer. Hence, the potential of incorporating paclitaxel in first-line chemotherapy should be investigated. We assessed the feasibility of the addition of paclitaxel to BEP (T-BEP) in a phase I/II study in patients with intermediate- or poor-prognosis germ-cell cancer or with carcinoma of unknown primary (CUP). Paclitaxel was investigated at dose levels of 75, 125, 175 and 200 mg/m2 given as a 3 hr infusion on day 1, before the start of BEP. BEP comprised etoposide at a dose of either 120 mg/m2 on days 1, 3 and 5 or 100 mg/m2 on days 1-5. To deliver the highest possible dose of paclitaxel into BEP, all patients received filgrastim (G-CSF). Thirty patients were entered, 14 of whom had intermediate- (n = 7) or poor- (n = 7) prognosis germ-cell cancer. Paclitaxel up to 200 mg/m2 and BEP at 360 mg/m2 was well tolerated. There was minimal neurosensory and no neuromotor toxicity with the use of 4 T-BEP cycles. More pronounced myelotoxicity and diarrhea at the higher dose level of etoposide resulted in a recommended dose level for multicenter phase II/III testing of paclitaxel 175 mg/m2 and BEP 500 mg/m2. Of the 13 evaluable patients with intermediate- or poor-prognosis germ-cell cancer, all achieved complete response. With a median follow-up of 18 months, none of these patients has relapsed. We conclude that T-BEP is a well-tolerated induction regimen that should be further tested for its therapeutic potential. A randomized phase II/III study of T-BEP vs. BEP has been started as an EORTC trial in patients with intermediate-prognosis disease.

Adolescent↗

Expression of class I, II and III epitopes of the CD34 antigen by normal and leukemic hemopoietic cells.

Peripheral blood samples from 115 consecutive patients and bone marrow samples from 9 healthy donors were studied for percentages of CD34-expressing cells, quantitative expression of various CD34 epitopes as defined by fluorescence mean channel, and mutual inhibition of the different CD34 monoclonal antibodies detecting the various CD34 epitopes. The study focused only on samples from patients with presumably elevated numbers of CD34-expressing cells, due to the nature of the disease. Samples from patients with chronic myeloproliferative syndromes, acute leukemias from nonhematological cancer patients during mobilization with filgrastim, and normal bone marrow samples were studied. Elevated numbers of CD34-expressing cells (> 0.04% of all nucleated cells) were detected in 111 of 124 patients. An almost identical expression of CD34 epitopes as detected by phycoerythrin-conjugated monoclonal antibodies QBEND-10, 8G12, and ICH3 were detected, whereas expression of the IMMU409 epitope was detected in only a few samples (19 of 111). Reactivity of IMMU-133 was almost identical to that of QBEND-10. Reactivity of BIRMA-K3, the only CD34 monoclonal used in this study, but not described in previous workshops, was almost identical to that of 8G12. From studies on mutual inhibition of binding, two families of CD34 epitopes are defined. The first family is comprised of QBEND-10, IMMU-133, My-10, and ICH-3, and the second one is comprised of only 8G12 and BIRMA-K3.

Antigens, CD34↗

Ear drops for the removal of ear wax.

BACKGROUND: Problems attributed to the accumulation of wax (cerumen) are one of the most common reasons for people to present to their general practitioners with ear trouble (Sharp 1990). Treatment for this condition often involves use of a wax softening agent (cerumenolytic) in order to disperse the cerumen and reduce the need for syringing, or to facilitate syringing should it prove necessary, but there is no consensus on the effectiveness of the wide variety of cerumenolytics in use. OBJECTIVES: To assess the effectiveness of ear drops (cerumenolytics) for the removal of symptomatic ear wax. SEARCH STRATEGY: We searched the Cochrane ENT Group Register, the Cochrane Central Register of Controlled Trials (CENTRAL, Issue 1, 2003), and MEDLINE and EMBASE up to March 2003. Reference lists of all trials were also manually searched. SELECTION CRITERIA: We identified all randomised controlled trials (with or without blinding) in which a cerumenolytic was evaluated in comparison with either no treatment, a placebo, or other cerumenolytics in participants with hard or impacted ear wax, and in which the proportion of participants with sufficient clearance of the external canal to make further mechanical clearance unnecessary (primary outcome measure) was stated or calculable. The full text articles of all the retrieved trials of possible relevance were reviewed by the two reviewers and the inclusion criteria applied independently. Any differences in opinion about which studies to include in the review were resolved by discussion. DATA COLLECTION AND ANALYSIS: Trials were graded for methodological quality using the Cochrane approach. Data extraction was performed in a standardised manner by one reviewer and rechecked by the other reviewer, and where necessary investigators were contacted to obtain missing information. Meta-analysis was neither possible nor considered appropriate because of the heterogeneity of the treatments, treatment amounts and durations, trial procedures, and scoring systems. A narrative overview of the results is therefore presented. MAIN RESULTS: Eight trials satisfied the inclusion criteria, the majority of which were of poor quality. In all, 587 participants received one of nine different cerumenolytics. One trial compared active treatments with no treatment, two trials compared active treatments with water or a saline 'placebo', and all eight trials placed two or more active treatments in head-to-head comparisons. Seven trials included syringing as a secondary treatment where necessary.Overall, results were inconclusive. One trial found a significant difference between one of three active agents (Cerumol) in comparison to no treatment, but no statistically significant difference was found between these three agents (sodium bicarbonate ear drops; Cerumol; sterile water). In two trials no statistical difference was found between the effectiveness of either sodium bicarbonate ear drops, Cerumol, Cerumenex or Colace versus a sterile water or saline 'placebo'. Three trials (from the same source) found statistically significant differences in favour of the same active agent (Exterol) in comparison to glycerol and Cerumol. Three trials found no statistically significant difference between two or more cerumenolytics (Otocerol versus Cerumol; Audax versus Earex; sodium bicarbonate ear drops versus Cerumol). Two trials comparing the same two cerumenolytics (Cerumenex versus Colace) also failed to show any significant benefit of one over the other. No serious adverse effects were reported from any of the interventions. REVIEWER'S CONCLUSIONS: Trials to date have been heterogeneous and of poor quality, making it difficult to offer any definitive recommendations on the effectiveness of cerumenolytics for the removal of symptomatic ear wax. Future trials should be of high methodological quality, have large sample sizes, and compare both oil-based and water-based solvents with placebo and/or no treatment.

Carbamide Peroxide↗