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Biomedical subjects

H Hasle

Publications and source records attributed to H Hasle.

At least 19 recordsLinked to original sources

Donor leukocyte infusion after hematopoietic stem cell transplantation in patients with juvenile myelomonocytic leukemia.

Juvenile myelomonocytic leukemia (JMML) is a clonal myeloproliferative disorder of early childhood. In all, 21 patients with JMML who received donor leukocyte infusion (DLI) after allogeneic hematopoietic stem cell transplantation (HSCT) for either mixed chimerism (MC, n=7) or relapse (n=14) were studied. Six patients had been transplanted from an HLA-matched sibling and 15 from other donors. Six of the 21 patients (MC: 3/7 patients; relapse: 3/14 patients) responded to DLI. Response rate was significantly higher in patients receiving a higher total T-cell dose (> or =1 x 10(7)/kg) and in patients with an abnormal karyotype. None of the six patients receiving DLI from a matched sibling responded. Response was observed in five of six patients who did and in one of 15 children who did not develop acute graft-versus-host disease following DLI (P=0.01). The overall outcome was poor even for the responders. Only one of the responders is alive in remission, two relapsed, and three died of complications. In conclusion, this study shows that some cases of JMML may be sensitive to DLI, this providing evidence for a graft-versus-leukemia effect in JMML. Infusion of a high number of T cells, strategies to reduce toxicity, and cytoreduction prior to DLI may improve the results.

Child↗

Long-term results in children with AML: NOPHO-AML Study Group--report of three consecutive trials.

In all, 447 children with acute myeloid leukaemia (AML) have been treated on three consecutive NOPHO studies from July 1984 to December 2001. NOPHO-AML 84 was of moderate intensity with an induction of three courses of cytarabine, 6-thioguanine and doxorubicin followed by four consolidation courses with high-dose cytarabine. The 5-year event-free survival (EFS), disease free survival (DFS) and overall survival (OS) were 29, 37 and 38%. NOPHO-AML 88 was of high intensity with the addition of etoposide and mitoxantrone in selected courses during induction and consolidation. The interval between the induction courses should be as short as possible, that is, time intensity was introduced. The 5-year EFS, DFS and OS were 41, 48 and 46%. In NOPHO-AML 93, the treatment was stratified according to response to first induction course. The protocol utilised the same induction blocks as NOPHO-AML 88, but after the first block, children with a hypoplastic, nonleukaemic bone marrow were allowed to recover before the second block. Consolidation was identical with NOPHO-AML 88. The 5-year EFS, DFS and OS in NOPHO-AML 93 were 48, 52 and 65%. The new NOPHO-AML protocol has been based on experiences from previous protocols with stratification of patients with regard to in vivo response and specific cytogenetic aberrations.

Acute Disease↗

The International Prognostic Scoring System (IPSS) for childhood myelodysplastic syndrome (MDS) and juvenile myelomonocytic leukemia (JMML).

The International Prognostic Scoring System (IPSS) for myelodysplastic syndrome (MDS) is based upon weighted data on bone marrow (BM) blast percentage, cytopenia, and cytogenetics, separating patients into four prognostic groups. We analyzed the value of the IPSS in 142 children with de novo MDS and 166 children with juvenile myelomonocytic leukemia (JMML) enrolled in retro- and prospective studies of the European Working Group on childhood MDS (EWOG-MDS). Survivals in MDS and JMML were analyzed separately. Among the criteria considered by the IPSS score, only BM blasts <5% and platelets >100 x 10(9)/l were significantly associated with a superior survival in MDS. In JMML, better survival was associated with platelets >40 x 10(9)/l, but not with any other IPSS factors including cytogenetics. In conclusion, the IPSS is of limited value in both pediatric MDS and JMML. The results reflect the differences between myelodysplastic and myeloproliferative diseases in children and adults.

Child↗

A pediatric approach to the WHO classification of myelodysplastic and myeloproliferative diseases.

Myelodysplastic and myeloproliferative disorders are rare in childhood and there is no widely accepted system for their diagnosis and classification. We propose minimal diagnostic criteria and a simple classification scheme which, while based on accepted morphological features and conforming with the recent suggestions of the WHO, allows for the special problems of myelodysplastic diseases in children. The classification recognizes three major diagnostic groups: (1) juvenile myelomonocytic leukemia (JMML), previously named chronic myelomonocytic leukemia (CMML) or juvenile chronic myeloid leukemia (JCML); (2) myeloid leukemia of Down syndrome, a disease with distinct clinical and biological features, encompassing both MDS and AML occurring in Down syndrome; and (3) MDS occurring both de novo and as a complication of previous therapy or pre-existing bone marrow disorder (secondary MDS). The main subtypes of MDS are refractory cytopenia (RC) and refractory anemia with excess of blasts (RAEB). It is suggested retaining the subtype of RAEB-T with 20-30% blasts in the marrow until more data are available. Cytogenetics and serial assessments of the patients are essential adjuncts to morphology both in diagnosis and classification.

Child↗

Do parents of children with congenital malformations have a higher cancer risk? A nationwide study in Denmark.

To investigate whether parents of children with congenital malformations more often developed cancer after birth of the child, a population-based case-control study in Denmark was undertaken. By linking the Cancer Registry with the Central Population Registry, we identified 8783 cancer patients having their first child born between 1977 and 1995 before the cancer was diagnosed. Parents of 41 206 firstborn children of a 10% random sample of newborns from the Birth Registry between 1980 and 1995 were identified as controls. We obtained malformation diagnoses of children of cases and controls by linking to the Hospital Discharge Registry. We estimated the association between malformation and cancer by using logistic regression, adjusting for maternal age at birth and sex of child. We found no increased risk of cancer in parents having children with malformations in general, but a higher cancer risk in parents of children born with cleft lip/palate, odds ratio (OR) for all cancer=1.8 (95% confidence interval 1.0-3.2), OR for lymphomas=4.2 (1.3-13.5) and OR for leukaemia=8.1 (2.0-33.7). This association was not restricted to cancer cases diagnosed shortly after birth of the child. Our results suggest a common genetic association between these diseases, but further studies are needed.

Adult↗

Evidence of decreased risk of cancer in individuals with fragile X.

The occurrence of cancer was studied in a cohort of 223 persons with fragile X syndrome, based on information from the Danish Cytogenetic Registry and the Danish Cancer Registry. Four cases of cancer were found, (carcinoma of pancreas, urinary bladder, uterus, and rectum). None of these cancer types have been reported in patients with fragile X syndrome previously. Compared with cancer rates in the general population, the standardized incidence ratio (SIR) was decreased to 0.28 (95% confidence interval: 0.1-0.8). The possibility that the expanded trinucleotide repeats in fragile X syndrome protect against cancer is discussed.

Adolescent↗

Pattern of malignant disorders in individuals with Down's syndrome.

The pattern of occurrence of malignant disorders in people with Down's syndrome (DS) is unique and may serve as a model in the search for leukaemogenic genes and tumour suppressor genes on chromosome 21, since the risk of leukaemia is higher in individuals with DS than in non-DS individuals. Acute lymphoblastic leukaemia in DS shares many of the clinical characteristics of the same malignancy in other patients, and with current intensive therapy the long-term survival is similar. Myelodysplastic syndrome and acute myeloid leukaemia have unique clinical characteristics in these patients and are best described as a single disorder, termed myeloid leukaemia of DS. When these patients are treated intensively, they show better survival rates than patients without DS. This may be related to increased expression of genes on chromosome 21 contributing to increased chemosensitivity. Chronic myeloid leukaemia and chronic lymphocytic leukaemia occur less often than expected. With the exception of an increased risk of retinoblastoma, germ-cell tumours, and perhaps lymphomas, the risk of developing solid tumours is lower in both children and adults. Breast cancer is almost absent, and the risk of a second malignant disease after treatment for leukaemia also appears to be decreased. Increased susceptibility to apoptosis in DS may result in cell death rather than malignant transformation after major cell injuries. This hypothesis would explain the decreased risk of both solid tumours and secondary cancers.

Adolescent↗

[Incidence of cancer in individuals with Down syndrome].

Individuals with Down syndrome have an increased risk of leukaemia, but reliable estimates of the age-specific risk of leukaemia are lacking and very little is known about the risk of solid tumours. We identified 2814 individuals with Down syndrome from the Danish Cytogenetic Register, and linked the data to the Danish Cancer Registry. Standardized incidence ratios (SIRs) and 95% confidence intervals (CIs) were calculated on the basis of age- and sex-specific cancer rates in the general population. Sixty cases of cancer were observed, with 49.8 expected (SIR = 1.20; CI: 0.92-1.55). Leukaemia constituted 60% of the malignancies overall and 97% of the malignancies in children. The SIR for leukaemia varied considerably with age, being 56 (CI: 38-81) at age 0-4 years and 10 (CI: 4-20) at 5-29 years. No cases of leukaemia were observed after age 29. The cumulative risk of leukaemia by the age of 5 years was 2.1% and that by 30 years was 2.7%. Only 24 solid tumours were observed with 47.8 expected (SIR = 0.50; CI: 0.32-0.75). No cases of breast cancer were observed, with 7.3 expected (p = 0.0007). Increased risks of testicular cancer, ovarian cancer, and retinoblastoma were observed but were not statistically significant. The occurrence of cancer in Down syndrome is unique with a high risk of leukaemia in children and a decreased risk of solid tumours in all age groups. The distinctive pattern of malignancies may provide clues in the search for leukaemogenic genes and tumour suppressor genes on chromosome 21.

Adolescent↗

[Occurrence of cancer in individuals with Down syndrome].

Individuals with Down syndrome have an increased risk of leukaemia, but reliable estimates of the age-specific risk of leukaemia are lacking and very little is known about the risk of solid tumours. We identified 2814 individuals with Down syndrome from the Danish Cytogenetic Register, and linked the data to the Danish Cancer Registry. Standardized incidence ratios (SIRs) and 95% confidence intervals (CIs) were calculated on the basis of age- and sex-specific cancer rates in the general population. Sixty cases of cancer were observed, with 49.8 expected (SIR = 1.20; CI: 0.92-1.55). Leukaemia constituted 60% of the malignancies overall and 97% of the malignancies in children. The SIR for leukaemia varied considerably with age, being 56 (CI: 38-81) at age 0-4 years and 10 (CI: 4-20) at 5-29 years. No cases of leukaemia were observed after age 29. The cumulative risk of leukaemia by the age of 5 years was 2.1% and that by 30 years was 2.7%. Only 24 solid tumours were observed with 47.8 expected (SIR = 0.50; CI: 0.32-0.75). No cases of breast cancer were observed, with 7.3 expected (p = 0.0007). Increased risks of testicular cancer, ovarian cancer, and retinoblastoma were observed but were not statistically significant. The occurrence of cancer in Down syndrome is unique with a high risk of leukaemia in children and a decreased risk of solid tumours in all age groups. The distinctive pattern of malignancies may provide clues in the search for leukaemogenic genes and tumour suppressor genes on chromosome 21.

Adolescent↗

[The objective structured clinical examination in postgraduate pediatric training. The first Danish experiences].

To evaluate the usefulness of an objective structured clinical examination (OSCE) for identifying weaknesses of the educational program and for providing feedback to trainees in paediatrics an 8-station OSCE was given. Ten residents on different levels of training participated. Stations covered a wide spectrum of clinical situations and included three video-recordings of patients. Skills in history-taking, examination, listing of differential diagnoses, planning of work-up as well as in communication and counselling were assessed. Verbal as well as written feedback was provided to all the trainees. In five trainees skills in examination were relatively weak, and subsequently it was possible to implement improvements in the educational program. Strengths and weaknesses of the educational program can be identified, but the benefits of the OSCE should be balanced with the extra workload and logistical difficulties.

Clinical Competence↗

Risks of leukaemia and solid tumours in individuals with Down's syndrome.

BACKGROUND: Individuals with Down's syndrome have a greater risk of leukaemia than the general population, but reliable estimates of the age-specific risk are lacking and little is known about the risk of solid tumours. METHODS: We identified 2814 individuals with Down's syndrome from the Danish Cytogenetic Register, and linked the data to the Danish Cancer Registry. The number of person-years at risk was 48453. Standardised incidence ratio (SIR) and 95% CI were calculated of the basis of cancer rates specific for age and sex in the general population. FINDINGS: 60 cases of cancer were found, with 49.8 expected (SIR 1.20 [95% CI 0.92-1.55]). Leukaemia constituted 60% of cases of malignant disease overall and 97% of cases in children. The SIR for leukaemia varied with age, being 56 (38-81) at age 0-4 years and 10 (4-20) at 5-29 years. No cases of leukaemia were seen after the age of 29 years. The SIR for acute myeloid leukaemia was 3.8 (1.7-8.4) times higher than that for acute lymphoblastic leukaemia in children aged 0-4 years. The cumulative risk for leukaemia by the age of 5 years was 2.1% and that by 30 years was 2.7%. Only 24 solid tumours were seen, with 47.8 expected (0.50 [0.32-0.75]). No cases of breast cancer were found, with 7.3 expected (p=0.0007). Higher than expected numbers of testicular cancers, ovarian cancers, and retinoblastomas were seen but were not significant. INTREPRETATION: The occurrence of cancer in Down's syndrome is unique with a high risk of leukaemia in children and a decreased risk of solid tumours in all age-groups. The distinctive pattern of malignant diseases may provide clues in the search for leukaemogenic genes and tumour-suppressor genes on chromosome 21.

Adolescent↗