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T Trippett

Publications and source records attributed to T Trippett.

9 recordsLinked to original sources

A 2-step comprehensive high-dose chemoradiotherapy second-line program for relapsed and refractory Hodgkin disease: analysis by intent to treat and development of a prognostic model.

Salvage of patients with relapsed and refractory Hodgkin disease (HD) with high-dose chemoradiotherapy (HDT) and autologous stem cell transplantation (ASCT) results in event-free survival (EFS) rates from 30% to 50%. Unfortunately, the reduction in toxicity associated with modern supportive care has improved EFS by only 5% to 10% and has not reduced the relapse rate. Results of a comprehensive 2-step protocol encompassing dose-dense and dose-intense second-line chemotherapy, followed by HDT and ASCT, are reported. Sixty-five consecutive patients, 22 with primary refractory HD and 43 with relapsed HD, were treated with 2 biweekly cycles of ifosfamide, carboplatin, and etoposide (ICE). Peripheral blood progenitor cells from responding patients were collected, and the patients were given accelerated fractionation involved field radiotherapy (IFRT) followed by cyclophosphamide-etoposide and either intensive accelerated fractionation total lymphoid irradiation or carmustine and ASCT. The EFS rate at a median follow-up of 43 months, as analyzed by intent to treat, was 58%. The response rate to ICE was 88%, and the EFS rate for patients who underwent transplantation was 68%. Cox regression analysis identified 3 factors before the initiation of ICE that predicted for outcome: B symptoms, extranodal disease, and complete remission duration of less than 1 year. EFS rates were 83% for patients with 0 to 1 adverse factors, 27% for patients with 2 factors, and 10% for patients with 3 factors (P <.001). These results compare favorably with other series and document the feasibility and efficacy of giving uniform dose-dense and dose-intense cytoreductive chemotherapy and integrating accelerated fractionation radiotherapy into an ASCT treatment program. This prognostic model provides a basis for risk-adapted HDT.

Adolescent↗

Diagnosis of mediastinal masses in pediatric patients using mediastinoscopy and the Chamberlain procedure.

BACKGROUND/PURPOSE: Mediastinal masses commonly are referred to the pediatric surgeon and can be difficult diagnostic problems. Various techniques have been used to perform biopsy in the mediastinum, but there are few reports of mediastinoscopy or Chamberlain procedure in children in the literature. The authors reviewed their experience with these techniques in a pediatric oncology population. METHODS: The medical records of all patients on the pediatric surgical service between 1987 and 1997, inclusive, who underwent mediastinoscopy or Chamberlain procedure were reviewed. Demographic data, diagnostic accuracy, complications, operating time, and blood loss were recorded. RESULTS: Sixteen consecutive patients underwent 13 Chamberlain procedures and six mediastinoscopies over the above period. Diagnostic accuracy was found to be 95% overall (100% for Chamberlain procedure, 83% for mediastinoscopy). Five complications occurred in the Chamberlain group and none in the mediastinoscopy group. No complication required thoracotomy or sternotomy. Among patients whose sole reason for admission was diagnosis of a mediastinal mass, the mean hospital stay was 1.7+/-0.8 days (n = 7) for those who underwent Chamberlain procedure and 1.4+/-0.9 days (n = 4) for those who underwent mediastinoscopy. One mediastinoscopy was performed as an ambulatory procedure. CONCLUSION: Mediastinoscopy and the Chamberlain procedure are effective and safe techniques for biopsy of mediastinal masses in this age group.

Adolescent↗

Defective transport is a common mechanism of acquired methotrexate resistance in acute lymphocytic leukemia and is associated with decreased reduced folate carrier expression.

Methotrexate (MTX) transport was examined in 27 patients with untreated acute lymphocytic leukemia (ALL) and 31 patients with relapsed ALL using a previously described fluorescent MTX analog (PT430) displacement assay (Blood 80:1158, 1992). Only 13% of untreated patients were considered to have impaired MTX transport, whereas more than 70% of relapsed patients had evidence of impaired MTX transport. To further characterize the basis for this defect, Northern analyses for the reduced folate carrier (RFC) were performed on the RNA available from the leukemic blasts of 24 patients in whom MTX transport had been measured. Six of nine samples with impaired MTX transport had decreased RFC expression (one had no detectable RFC expression), while three had no decrease in RFC expression. None of 15 samples with normal MTX transport had decreased RFC expression. A reverse-transcriptase polymerase chain reaction (RT-PCR) assay was developed to quantitate RFC mRNA expression more accurately. Decreased RFC expression was demonstrated in six of the nine samples with impaired MTX transport, confirming the results obtained by Northern blot. These data indicate decreased RFC expression associated with impaired MTX transport is observed in relapsed ALL following treatment with MTX-containing therapy.

Adolescent↗

Amplification of the dihydrofolate reductase gene is a mechanism of acquired resistance to methotrexate in patients with acute lymphoblastic leukemia and is correlated with p53 gene mutations.

Although dihydrofolate reductase (DHFR) gene amplification is a common mechanism of resistance to methotrexate (MTX) in tumor cell lines, with the exception of a few case reports, the incidence of this phenomenon as a mechanism of MTX resistance in the clinic has not been reported. We studied 38 untreated patients and 29 patients in relapse with acute lymphoblastic leukemia (ALL) for gene amplification and p53 gene mutations. Three patients were studied both at diagnosis and at each of two relapses after treatment with MTX. Nine of 29 relapsed patients (31%) had low-level DHFR gene amplification (two to four gene copies) associated with increased levels of DHFR mRNA and enzyme activity. Of significance was a correlation of gene amplification with p53 mutations in seven of nine relapsed patients (P < .001). Low-level DHFR gene amplification may be an important cause of MTX resistance in ALL and strengthens the concept that mutations in the p53 gene may lead to gene amplification as a consequence of defective cell cycle control.

Adolescent↗

Pharmacologic-guided trial of sequential methotrexate and thioguanine in children with advanced malignancies.

PURPOSE: Based on in vitro studies that have shown synergistic effects of sequential administration of methotrexate (MTX) and thioguanine (6-TG), we conducted a pharmacologically guided trial of sequential MTX and 6-TG to determine the following: (1) the maximum-tolerated dose (MTD) of 6-TG; (2) the nature of the dose-limiting toxicity; and (3) the modulation effect of MTX on 6-TG given by this sequence and schedule. PATIENTS AND METHODS: Thirty-one children with advanced malignancies (acute leukemia, n = 10; lymphoma n = 10; and solid tumors, n = 11) were treated weekly for 3 weeks with a 2-week rest; treatment consisted of a fixed dose of MTX (30 mg/m2 over 24 hours) followed by a 2-hour infusion of 6-TG in escalating doses. RESULTS: Measurement of plasma MTX, 6-TG, and mononuclear 5-phosphoribosyl-1-pyrophosphate (PRPP) levels indicates that the desired biochemical modulation and serum levels were achieved. Nonhematologic toxicities were mild and the dose-limiting toxicity was bone marrow depression. A 300-mg/m2 dose of 6-TG with MTX is considered the MTD. Responses were noted in patients with lymphoma. CONCLUSION: Encouraging antitumor effects were produced with this regimen in heavily pretreated patients with lymphoma, particularly Hodgkin's disease (HD). The durations of responses were 17, 13+, 12, 9, and 7+ months. A phase II trial of the MTX/6-TG combination is warranted for the treatment of relapsed lymphoma.

Adolescent↗

Decreased polyglutamylation of methotrexate in acute lymphoblastic leukemia blasts in adults compared to children with this disease.

We compared blast cells from adult and pediatric patients with untreated acute lymphoblastic leukemia (ALL) (as separated groups of T-lineage cell and B-lineage cell ALL) to determine if methotrexate (MTX) polyglutamate formation in adult patients might be a contributing cause to the known difference in clinical outcome, since MTX is a key drug in chemotherapy regimens. Adult B-lineage cell ALL blasts and blasts from the patients with T-lineage cell ALL accumulated lower amounts of total MTX and polyglutamates, especially long-chain MTX polyglutamates (glu3-6) than pediatric B-lineage cell ALL blasts. In view of the importance of polyglutamylation of MTX as a determinant of cytotoxicity of this drug, decreased formation of MTX polyglutamates is likely a contributing cause to the lower cure rate in adult ALL and T-lineage cell ALL as compared to childhood B-lineage cell ALL.

Adult↗

Defective transport as a mechanism of acquired resistance to methotrexate in patients with acute lymphocytic leukemia.

Although the mechanisms of resistance to methotrexate (MTX) are known in experimental tumors made resistant to this drug, little information is available regarding acquired resistance to MTX in patients. A competitive displacement assay using the fluorescent lysine analogue of MTX, N-(4-amino-4-deoxy-N10-methylpteroyl)-N epsilon-(4'-fluorescein-thiocarbamyl)-L-lysine (PT430), was developed as a sensitive method of detection of transport resistance to MTX in cell lines, as well as in blast cells from patients with leukemia. Rapid uptake of PT430 at high concentrations (20 mumol/L) in leukemic blasts resulted in achievement of steady-state levels within 2 hours. Subsequent incubation with the folate antagonists, MTX and trimetrexate (TMTX), which differ in the mode of carrier transport, produced characteristic patterns of PT430 displacement. Flow cytometric analysis of the mean fluorescence intensity in the human CCRF-CEM T-cell lymphoblastic leukemia cell line and its MTX-resistant subline clearly identified the presence of transport deficiency in the resistant subline. Analysis of blasts from 17 patients with leukemia, nine with no prior chemotherapy and eight previously treated with chemotherapy, found evidence of MTX transport resistance in two of the four patients who were treated with MTX and considered to be clinically resistant to the drug. The finding that blast cells of some patients with leukemia considered clinically resistant to MTX is due to decreased MTX transport has important implications for clinical use of this drug and for new drug development.

Adolescent↗

Enzymes of the thymidylate cycle as targets for chemotherapeutic agents: mechanisms of resistance.

This brief review should serve to indicate that it is possible to assess tumor sensitivity to antifolates using fresh human tissue in short-term culture. The assays described differ from general assays of tumor sensitivity, such as the clonogenic assay or assays that measure 3H-thymidine incorporation as an indicator of cell viability (32-34), in that the effect of a drug on a human specific target (dihydrofolate reductase) is measured. These specific assays also may prove to be extremely useful in the detection of acquired drug resistance and for new analog drug development. In a general sense, this type of assay may eventually also be useful for guiding and selecting treatment for individual patients with other drugs with known mechanisms of action. Knowledge of the basis of tumor resistance is essential to develop new approaches to treatment, such as the use of other folate analogs that may still be effective, and to devise ways in which to selectively inhibit tumor cell growth using new analogs (trimetrexate) and leucovorin.

Antimetabolites, Antineoplastic↗