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Biomedical subjects

C H Pui

Publications and source records attributed to C H Pui.

At least 145 records · Page 8Linked to original sources

Persistence of circulating blasts after 1 week of multiagent chemotherapy confers a poor prognosis in childhood acute lymphoblastic leukemia.

Early response to therapy, typically assessed by bone marrow status, is predictive of outcome in childhood acute lymphoblastic leukemia (ALL). Less is known about the significance of early clearance of blast cells in peripheral blood. We reviewed medical records of all patients with ALL enrolled on St Jude Total Therapy Study XI (February 1984 to September 1988) to determine the presence of blast cells in peripheral blood at diagnosis and after 1 week of intensive induction therapy. Of the 358 patients, 59 lacked evidence of circulating blast cells at diagnosis, and data were unavailable for 2 patients. The prognostic significance of persistent circulating blast cells in the remaining 297 patients was assessed in a multivariate analysis that included known adverse prognostic factors. Persistent circulating leukemic blasts were present at day 8 in 41 patients (14%). Compared with the "blast-negative" group, these patients had a significantly higher frequency of several adverse clinical features (leukocyte count > 50 x 10(9)/L, mediastinal mass, central nervous system leukemia, T-cell phenotype, lack of CD10 expression, and L2 morphology) and a significantly poorer 5-year event-free survival (34% +/- 8% [SE] v 77% +/- 3%, P < .01). By multivariate analysis, blast cell persistence at week 1 was the most significant adverse feature in the overall cohort (relative risk, 2.9; 95% confidence interval, 1.8 to 4.8) and in an analysis limited to B-lineage cases (relative risk, 3.6; 95% confidence interval, 1.9 to 7.1). Patients identified by this simple, noninvasive measure may benefit from early modification of therapy.

Antineoplastic Combined Chemotherapy Protocols↗

Frequent deletion of p16INK4a/MTS1 and p15INK4b/MTS2 in pediatric acute lymphoblastic leukemia.

The tandemly linked p16INK4aMTS1 and p15INK4b/MTS2 genes on chromosome 9, band p21 encode proteins that function as specific inhibitors of the cyclin D-dependent kinases CDK4 and CDK6. This locus undergoes frequent bi-allelic deletion in human cancer cell lines, suggesting that the encoded proteins may function as tumor suppressors. However, more recent analysis of primary tumor samples has shown a much lower frequency of abnormalities affecting this region, raising doubt over the importance of these proteins in human malignancies. Hemizygous deletions and rearrangements of chromosome 9, band p21, are among the most frequent cytogenetic abnormalities detected in pediatric acute lymphoblastic leukemia (ALL), occurring in approximately 10% of cases. To determine if the p16INK4a/p15INK4b locus might be the target of these chromosomal lesions, we analyzed both genes in primary clinical samples from 43 pediatric ALL patients using interphase fluorescence in situ hybridization, Southern blot analysis, and the polymerase chain reaction. Deletions of p16INK4a/p15INK4b were identified in 18 of 20 cases with cytogenetically observed abnormalities of 9p and 5 of 23 with apparently normal chromosomes 9p, with the majority containing bi-allelic deletions (16 homozygous/7 hemizygous). Although most homozygous deletions involved both genes, Southern blot analysis showed an interstitial deletion in a single case that was confined to p16INK4a, suggesting that p15INK4b was not the critical target gene in this case. Sequence analysis of both p16INK4a and p15INK4b in all seven cases with hemizygous deletions failed to show mutations within the coding regions of the retained alleles. In this select group of patients, deletion of p16INK4a/p15INK4b was associated with T-cell phenotype, nonhyperdiploid karyotype (< 50 chromosomes), and poor event-free survival. These findings indicate that deletion of the p16INK4a/p15INK4b locus is one of the most common genetic abnormalities so far detected in pediatric ALL, and that loss of one or more of these cell cycle kinase inhibitors is important in leukemogenesis.

Adolescent↗

Polymorphic thiopurine methyltransferase in erythrocytes is indicative of activity in leukemic blasts from children with acute lymphoblastic leukemia.

The activity of thiopurine methyltransferase (TPMT) exhibits genetic polymorphism, with approximately 1 in 300 individuals inheriting TPMT deficiency as an autosomal recessive trait, and about 11% having intermediate activity (ie, heterozygotes). Patients with TPMT deficiency accumulate excessive concentrations of 6-thioguanine nucleotides (TGNs) and develop severe toxicity when treated with standard dosages of mercaptopurine. High TPMT activity has been associated with lower concentrations of TGNs, yielding a higher risk of treatment failure in children with acute lymphoblastic leukemia (ALL). As the biochemical basis of these pharmacodynamic relationships has not been fully elucidated, we investigated the variability and relationship of TPMT activity in erythrocytes and lymphoblasts from children with ALL. A 58-fold range of erythrocyte TPMT activity was found among 119 patients receiving ALL chemotherapy (0.6 to 34.9 U/mL packed erythrocytes), but relatively low intrapatient variability (coefficient of variation, 13.5%) was observed over 1 year. A 27-fold range in TPMT activity was observed in leukemic blasts obtained from 42 patients at initial diagnosis (3.3 to 88.9 U/1 x 10(9) cells). TPMT activity in leukemic blasts at diagnosis was significantly correlated with TPMT in erythrocytes before therapy (rs = .75, P < .0001, N = 13). These data document extensive interpatient variability of TPMT activity in ALL blasts and establish its linkage to polymorphic TPMT activity in erythrocytes, providing a new mechanism by which erythrocytes serve as prognostic markers of mercaptopurine metabolism and TPMT activity in children with ALL.

Adolescent↗

Outcome of treatment for childhood cancer in black as compared with white children. The St Jude Children's Research Hospital experience, 1962 through 1992.

OBJECTIVE: To determine whether there is a racial difference in prognosis among childhood cancers. DESIGN: An overall (30-year) survival analysis by race was followed by separate studies for "early" and "recent" treatment eras, defined by time points at which significantly improved outcome was demonstrated for specific tumor types. Stratified analyses were performed to adjust for recognized prognostic features. SETTING: Pediatric oncology research and treatment center. PATIENTS: The study included 798 black and 4507 white children with newly diagnosed malignancies treated from January 1962 through June 1992. These patients were accepted for treatment regardless of their financial status and were enrolled on disease-specific protocols. RESULTS: Across the 30-year study period, black children had a significantly poorer rate of survival than white children (P < .001, log-rank test). In the early treatment era, a significant difference was seen for all forms of cancer combined (P < .001), with 10-year Kaplan-Meier estimates (+/- SE) of 37% +/- 3% for black children and 50% +/- 1% for white children. This difference largely reflected the poorer prognosis of black children with the most common childhood cancer, acute lymphoblastic leukemia. In the recent treatment era, there were no significant differences in treatment outcome by race for specific disease categories or for all forms of cancer combined. Ten-year survival rates were 67% +/- 6% for black children and 66% +/- 3% for white children, indicating a significantly greater improvement in the former group. CONCLUSION: With equal access to effective contemporary treatment, black children with cancer fare as well as white children when treated with protocol-based therapy at a pediatric oncology research center.

Adolescent↗

A single point mutation leading to loss of catalytic activity in human thiopurine S-methyltransferase.

Thiopurine S-methyltransferase (TPMT; S-adenosyl-L-methionine:thiopurine S-methyltransferase, EC 2.1.1.67) activity exhibits genetic polymorphism, with approximately 0.33% of Caucasians and African-Americans inheriting TPMT deficiency as an autosomal recessive trait. To determine the molecular genetic basis for this polymorphism, we cloned the TPMT cDNA from a TPMT-deficient patient who had developed severe hematopoietic toxicity during mercaptopurine therapy. Northern blot analysis of RNA isolated from leukocytes of the deficient patient demonstrated the presence of TPMT mRNAs of comparable size to that in subjects with high TPMT activity. Sequencing of the mutant TPMT cDNA revealed a single point mutation (G238-->C), leading to an amino acid substitution at codon 80 (Ala80-->Pro). When assessed in a yeast heterologous expression system, this mutation led to a 100-fold reduction in TPMT catalytic activity relative to the wild-type cDNA, despite a comparable level of mRNA expression. A mutation-specific PCR amplification method was developed and used to detect the G238-->C mutation in genomic DNA of the propositus and her mother. This inactivating mutation in the human TPMT gene provides insights into the genetic basis for this inherited polymorphism in drug metabolism.

Alleles↗

Childhood acute lymphoblastic leukemia with equivocal chromosome markers of the t(1;19) translocation.

The t(1;19)(q23;p13) or its derivative encodes an E2A-PBXI fusion transcript and protein that has been shown to have important prognostic and therapeutic implications in patients with acute lymphoblastic leukemia (ALL). We describe two childhood cases in which a der(22)t(1;22)(q21-23;p13) cytogenetically mimicked a der(19)t(1;19)(q23;p13). In one case, which was phenotyped as early pre-B ALL with hyperdiploidy but lacked evidence of an E2A-PBX1 gene fusion by molecular study, the poor banding quality of chromosomes led to misinterpretation of the cytogenetic findings; a correct diagnosis was established only after analysis by the fluorescence in situ hybridization (FISH) method. The second case, which was classified as pseudodiploid pre-B ALL, had both a derivative 19 and a derivative 22 but lacked sufficient cells for evaluation of E2A-PBX1 gene fusion. This case was included in order to compare the der(19)t(1;19) and the der(22)t(1;22) and to pinpoint the difficulty in distinguishing these markers. FISH analysis can resolve diagnostic uncertainty in cases of ALL with equivocal chromosome 19 markers.

Child, Preschool↗

Intrauterine monoclonal origin of neonatal concordant acute lymphoblastic leukemia in monozygotic twins.

We report detailed immunological, cytogenetic and molecular evidence for complete identity of the leukemic cell populations in monozygotic female twins with concordant leukemia diagnosed at two months of age. Both infants had early pre-B acute lymphoblastic leukemia with the (11;19)(q23;p13) chromosomal translocation. A common clonal origin of leukemia in these infants was suggested by the finding of identical oligoclonal heavy chain immunoglobulin gene rearrangements. Leukemic cell DNA was examined for 11q23 rearrangements by Southern blotting and restriction fragments of identical size were found in the two cases, in contrast to the diversity of rearrangements observed in other unrelated and nontwinned control infants with t(11;19)(q23;p13). Similar restriction fragments were absent in blood mononuclear DNA from both parents, liver tissue from one twin and remission bone marrow of the other, indicating that the 11q23 rearrangement was acquired and not inherited as a chromosomal abnormality or polymorphism. These findings provide a definitive evidence for intrauterine single cell origin, with twin to twin transmission, of concordant leukemia in this infant twin pair.

Blotting, Southern↗

An intensive re-treatment protocol for children with an isolated CNS relapse of acute lymphoblastic leukemia.

PURPOSE: To assess the salvage rate and long-term complications among children treated with an intensive regimen for isolated CNS relapse during first remission of acute lymphoblastic leukemia (ALL). PATIENTS AND METHODS: Twelve boys and eight girls, diagnosed at a median age of 4 years, had CNS relapse at a median age of 7 years. Five had CNS leukemia at presentation, while five completed treatment before relapse. First complete remission lasted a median of 22.5 months. Ten patients had received cranial irradiation plus intrathecal (IT) therapy, and the remainder had received high-dose intravenous and/or IT methotrexate (MTX) as CNS-directed treatment. Retrieval therapy consisted of a five-agent intensive reinduction regimen followed by continuation therapy with four rotating drug pairs. Triple-IT therapy was administered weekly for 4 to 5 weeks, then every 6 weeks until craniospinal radiation (cranium, 24 Gy; spine, 15 Gy; both sites, 1.5 Gy per fraction) was administered. RESULTS: All 20 children achieved a second complete remission. The 5-year estimate of disease-free survival (mean +/- SE) was 70% +/- 11%. Thirteen patients remain in remission at 71+ to 126+ months (median, 104+), and 10 of 13 patients tested have normal IQ scores. Four patients have had a second relapse (one CNS and three non-CNS), and three have developed other malignancies. Prior cranial irradiation was associated with subsequent failure; only three of 10 patients who previously received radiotherapy, compared with all of the other 10 patients, remained in second remission. CONCLUSION: This intensive retrieval therapy is effective and well tolerated by children with an isolated CNS relapse of ALL, especially those who have not received prior cranial irradiation. Most patients have no significant neuropsychologic impairment.

Adolescent↗

L-asparaginase may potentiate the leukemogenic effect of the epipodophyllotoxins.

The risk for induction of epipodophyllotoxin-related acute myeloid leukemia (AML) depends largely on the schedule of drug administration and, to a lesser degree, the cumulative dose. Concomitant use of other genotoxic drugs, such as alkylating agents and cisplatin, can increase the hazard further. We have treated 154 consecutive higher-risk cases of acute lymphoblastic leukemia in our recent Total Therapy Study XIII with an intensive post-remission regimen of chemotherapy that included etoposide given every other week or less often-a schedule associated with a relatively low cumulative incidence of secondary AML in our Study XI. Unexpectedly, four patients have developed secondary AML at 12 to 23 months from the start of treatment (median, 16 months). The 2-year cumulative risk estimate significantly exceeds that for 185 historical controls in Study XI whose continuation regimen included epipodophyllotoxins every other week: 5.4% (95% confidence interval, 0-11%) compared with 1.1% (0-2.6%), P = 0.046. Compared to patients treated in Study XI, those enrolled in Study XIII receive fewer scheduled doses of epipodophyllotoxin (48 (all etoposide) vs 63 (30 etoposide, 33 teniposide)) but 16 to 19 additional doses of L-asparaginase and eight additional doses of high-dose methotrexate, all within the week preceding etoposide treatment. We attribute the apparently increased rate of secondary AML in Study XIII to the use of L-asparaginase immediately before etoposide administration. On this schedule, the enzyme could increase systemic exposure to etoposide or its catechol metabolites and reduce the ability of cells to repair DNA damage.

Acute Disease↗

Treatment of childhood leukemias.

Contemporary protocols, featuring early intensive multiagent chemotherapy, will cure at least 65% of children with acute lymphoblastic leukemia and up to 40% of those with acute myeloid leukemia. In acute lymphoblastic leukemia, emphasis is placed on stringent risk assessment at diagnosis so that only those patients at high risk of relapse are treated aggressively, with less toxic treatments reserved for lower-risk patients. Treatment strategies are less risk-based in acute myeloid leukemia, although genetic analysis has begun to aid in establishing therapeutic options for individual patients (eg, high-dose chemotherapy, differentiation-inducing agents, and bone marrow transplantation). For children with either the adult or juvenile form of chronic myeloid leukemia, allogeneic bone marrow transplantation remains the only curative treatment. In the future, it may be possible to direct therapy to specific genetic lesions that have been recently identified in leukemic cells.

Acute Disease↗

Biology and treatment of infant leukemias.

The leukemias of infancy, characterized by an equal distribution of lymphoid and myeloid subtypes, account for 2.5-5% of the acute lymphoblastic leukemias (ALL) and 6-14% of the acute myeloid leukemias (AML) of childhood. Rearrangements of the MLL gene on chromosome 11q23 are the most common genetic abnormalities in both ALL and AML, occurring in 70-80% and approximately 60% of cases, respectively. Infants with ALL and a rearrangement of MLL typically present with hyperleukocytosis, massive organomegaly, CNS involvement, CD10- B-lineage phenotype and myeloid-associated antigen (CD15) expression. Prognosis in these cases is uniformly poor, whereas in similar cases without the genetic defect, it is good to intermediate. The presenting features of infant AML include monoblastic or myelomonoblastic morphology, hyperleukocytosis and extramedullary involvement. Expected outcome approximates that for ALL (approximately 30% long-term survival rate). Rare congenital forms of lymphoid or myeloid leukemia, manifested at birth or during the first month of life, carry a dismal prognosis, especially when a MLL/11q23 rearrangement is present; such cases should be carefully distinguished by chromosomal/molecular analysis and cell culture techniques from transient myeloproliferative disorders which require only supportive care but close follow-up for subsequent development of leukemia. Juvenile chronic myeloid leukemia also can occur in infants and may be responsive to chemotherapy alone. Rapid progress has been made over the past decade in understanding the biology of infant leukemias. The biggest challenge now is to develop more effective treatment, especially for patients with MLL rearrangements.

Animals↗

TEL/AML1 fusion resulting from a cryptic t(12;21) is the most common genetic lesion in pediatric ALL and defines a subgroup of patients with an excellent prognosis.

The t(12;21)(p13;q22) is identified by routine cytogenetics in less than 0.05% of pediatric acute lymphoblastic leukemia (ALL) patients. This translocation encodes a TEL/AML-1 chimeric product comprising the helix-loop-helix domain of TEL, a member of the ETS-like family of transcription factors, fused to AML-1, the DNA-binding subunit of the AML-1/CBF beta transcription factor complex. Both TEL and AML-1 are involved in several myeloid leukemia-associated translocations with AML-1/CBF beta being altered in 20-30% of de novo acute myeloid leukemia (AML) cases. We now demonstrate that a TEL/AML1 chimeric transcript encoded by a cryptic t(12;21) is observed in 22% of pediatric ALL, making it the most common genetic lesion in these patients. Moreover, TEL/AML1 expression defined a distinct subgroup of patients characterized by an age between 1 and 10 years, B lineage immunophenotype, non-hyperdiploid DNA content and an excellent prognosis. These data demonstrate that molecular diagnostic approaches are invaluable in identifying clinically distinct subgroups, and that the AML1/CBF beta transcription complex is the most frequent target of chromosomal rearrangements in human leukemia.

Base Sequence↗

Epipodophyllotoxin-related acute myeloid leukemia: a study of 35 cases.

To define better the risk of epipodophyllotoxin-related acute myeloid leukemia (AML) after extended follow-up and to assess responses to intensive salvage therapy, all patients who developed this complication after treatment for acute lymphoblastic leukemia (ALL) or non-Hodgkin lymphoma (NHL) in consecutive clinical trials at St Jude Children's Research Hospital from 1979 to 1994 were studied. Cases with 'lineage switch' or 'clonal selection' were excluded. Epipodophyllotoxin-related AML developed in 32 of 1140 patients treated for ALL and in three of 332 treated for NHL; it was a first adverse event in 25 and two cases, respectively. The complication was diagnosed at 12-130 months (median 34 months) after the initiation of treatment with epipodophyllotoxins; all but one of the cases occurred within 73 months, indicating that the risk is negligible after 6 years. The predominant karyotypic feature was 11q23 translocations (71% of cases); 21q22 rearrangements were rare. In a stepwise Cox regression analysis, two factors increased the risk of this complication: weekly or twice weekly administration of epipodophyllotoxins (P < 0.001); and the administration of asparaginase immediately before epipodophyllotoxin therapy (P < 0.001). Initial responses to salvage therapy were comparable to those reported for de novo AML: 92% of the evaluable patients entered complete remission after combination treatment. Single-agent therapy with 2-chlorodeoxyadenosine induced complete or partial remissions in one-half of the patients treated. The long-term survival rate was dismal. Of the 17 evaluable patients treated exclusively with chemotherapy, only one is alive at 84 months, compared to three of 16 patients who underwent bone marrow transplantation (alive at 10, 23 and 73 months). Cases of epipodophyllotoxin-related AML constitute a unique clinical syndrome that will require innovative strategies for cure.

Acute Disease↗