Non-compliance with oral chemotherapy in childhood leukaemia.
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Biomedical subjects
Publications and source records attributed to J S Lilleyman.
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Daily oral 6-mercaptopurine (6MP) is important in the treatment of childhood lymphoblastic leukaemia (ALL), but there is great inter-patient variability in the pattern of evident drug effect (myelosuppression) seen at a standard dose. In an attempt to reduce that variability the current practise in the United Kingdom for the last 4 years has been to escalate the amount prescribed in patients who do not experience cytopenias at 75 mg/m2. We undertook a study to see whether that strategy would increase the total dose of 6MP prescribed in such patients and whether it would alter the pattern of myelosuppression. Over a 6-month period we studied 44 children treated conventionally (without escalation) and compared them with another 44 (matched for sex) who were treated on the same protocol but where doses were increased in monthly 25% steps if 75 mg/m2 was tolerated without cytopenias. We then compared the two groups for the total dose of drug prescribed and the frequency and duration of neutropenia or thrombocytopenia. The median cumulative dose of 6MP received by the conventionally treated children (10,002 mg/m2) was not significantly different from that of the children treated with dose escalation (9,429 mg/m2). In a comparison of the 30 children who actually received inflated doses of 6MP with the 37 from the conventional cohort who would have been eligible to do so, it was again found that the cumulative median doses were similar (10,460 versus 10,916 mg/m2). There was a difference between the two groups in the pattern of myelosuppression -- the escalated group spent significantly more time off 6MP than did the non-escalated group (median 4.5 versus 3 weeks; P<0.005, 95% CI from -1 to -3). These findings imply that the method of dose escalation employed does not allow more 6MP to be prescribed in children tolerant of the standard dose. The chief effect seems to be to generate longer periods off therapy, and this could paradoxically decrease the anti-neoplastic activity of the drug. Alternative ways of prescribing should be explored.
The current U.K. trial protocol (UKALL XI) for childhood lymphoblastic leukaemia demands mercaptopurine (MP) dose escalation in children who tolerate daily 75 mg/m2 MP (100% dose) without cytopenias. The previous trial (UKALL X) did not. MP metabolism was studied in a group of UKALL XI children (n = 21) who tolerated 100% dosages and who were matched in this respect with a similar group of UKALL X children. Red blood cell MP derived thioguanine nucleotide (TGN) concentrations were measured in both groups under comparable conditions; at 75 mg/m2 MP there was no significant difference. MP dose escalation in the UKALL XI children produced higher TGN concentrations (TGNs at 100% vs 125% dosages, median difference 90 pmol/8 x 10(8) RBCs, 95% CI 25 to 165 pmol, P < 0.02). Assayed at the time of cytopenia induced dose reduction, the UKALL XI children had accumulated significantly higher TGN concentrations than the UKALL X children (median difference 78 pmol/8 x 10(8) RBCs, 95% CI 20 to 144, P < 0.02). These findings indicate that dose escalation in children tolerant of 100% MP dosages produces higher peak TGN concentrations.
The formation of intracellular thionucleotides are a prerequisite for mercaptopurine (MP) cytotoxicity, and interindividual variations in the inherited level of thiopurine methyltransferase (TPMT) activity regulate their formation. Measurement of pretreatment TPMT activities can identify the TPMT "deficient" patient and, conversely, the individual with very high enzyme activities. The former are at higher risk of acute toxicity and potentially fatal bone marrow failure and the latter of suboptimal treatment. Leukaemic children taking MP therapy who form inadequate amounts of thioguanine nucleotides (TGNs) do not experience drug toxicity and are at an increased risk of disease relapse. When low TGNs are due to very high TPMT activities, thioguanine may be a more appropriate thiopurine. Another cause of inadequate TGN concentrations is partial or noncompliance with oral chemotherapy. Compliance problems can be identified by the measurement of both TGNs and methylated drug metabolites.
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As part of a programme assessing the pharmacokinetics of oral thiopurines given for lymphoblastic leukaemia, we assayed intracellular metabolites of mercaptopurine in children from all over the United Kingdom who were given a standard dose of the drug. The metabolites we measured, thioguanine nucleotides and methylmercaptopurines, are products of two competing metabolic pathways and would be expected to show an inverse correlation. A total of 327 children from 17 centres in the UK were studied. All were on the same therapeutic schedule of mercaptopurine. All had been on an unattenuated full protocol-directed dose (at least 75 mg m-2) for a minimum of 7 days before assay. There was a very wide variation in the concentration of the two metabolites measured; the thioguanine nucleotides ranged from 0 to 1255 pmol per 8 x 10(8) red cells (median 289, lower quartile 210, upper quartile 377) and the methylmercaptopurine metabolites ranged from 0 to 46.3 nmol per 8 x 10(8) red cells (median 5.18, lower quartile 2.31, upper quartile 11.59). The anticipated negative correlation was not apparent, but the ratio between the two was not randomly distributed. No child had both metabolite concentrations in the upper quartiles, but in 32 (10%) children the concentration of both metabolites was in the lower quartile. Of the 32, only one metabolite was detected in four and none at all in six. The most likely explanation for these findings is that a minority of children with lymphoblastic leukaemia fail to take oral mercaptopurine either totally or intermittently. The extent of the problem is unknown, but we suspect it may be clinically important in at least 10% of patients.
1. Red blood cells from four children with lymphoblastic leukemia were age fractionated on Percoll density gradients into 'young', 'middle-aged' and 'old' cells. 2. The rates of accumulation of the mercaptopurine (MP) metabolites thioguanine nucleotides (TGNs) and methylmercaptopurine nucleotides (MeMPs) were measured in the cell fractions from the start of MP continuing chemotherapy. 3. TGNs and MeMP metabolites were present in all the red cell fractions after 3 days oral MP. There was no significant difference between the metabolite concentrations measured in either young, middle-aged or old cells (Mann-Whitney P = 1.0 to 0.12). 4. These observations suggest that MP metabolites do not enter red cells at the stem cell level at the start of therapy. 5. With respect to the monitoring of therapy, these results suggest that the concentration of TGNs after 7 to 10 days MP could be used to predict eventual steady-state concentrations using a simple model.
We have examined the factors influencing prognosis in over 4000 children with acute lymphoblastic leukaemia (ALL) aged 1-14 who have been treated on consecutive MRC UKALL trials from 1972 to 1990. During this time the results of treatment have improved steadily but are consistently superior in girls when compared with boys; the 5-year event-free survival in girls improving from 51% to 71% and in boys from 31% to 57%. These results were independent of age and presenting leucocyte count. Boys not only had a testicular relapse rate of 10% but an excess of bone marrow relapse, particularly evident after 2 years from diagnosis. Other prognostic factors included organomegaly and the morphology of leukaemic blast cells; immunophenotype of the leukaemia, however, had no independent significance after allowance for age, sex and leucocyte count. The influence of sex on prognosis was reaffirmed when we examined various methods of identifying children at highest risk of treatment failure for whom alternative therapy such as bone marrow transplantation might be justified. In MRC UKALL X children had been deemed 'high risk' on the basis of leucocyte count alone, but with further follow-up it has become apparent that girls with an initial leucocyte count of > 100 x 10(9)/l have a similar prognosis to boys with a lower count. We therefore derived a risk score based on sex, age and count which has given better discrimination between standard risk (66% 5-year survival) and poor risk (39%) survival than other methods. This group of worse-risk children includes 16% of boys but only 3% of all girls. Gender remains an important prognostic factor in UKALL trials and there are very few girls who are at highest risk of treatment failure. The reasons for this remain unclear, but the pattern of relapses suggests that boys more often get inadequate systemic therapy. We postulate that the reasons for treatment failure may relate to sensitivity to continuing (maintenance) chemotherapy.
Transmission of hepatitis C virus (HCV) is an important hazard of blood transfusion and may result in chronic liver disease. 98 children from Nottingham and Sheffield with haematological malignancies were studied to determine the prevalence of HCV infection by enzyme immunoassay and RT/PCR techniques. The children had been exposed to up to 184 donors through red cell and platelet transfusion, the majority prior to routine testing for HCV infection in blood donors. Only one sample showed evidence of HCV infection being both ELISA and RT/PCR positive. None of the samples taken since donor screening were positive. This provides reassurance as to the low rate of HCV acquisition in multi-transfused patients in this part of the U.K. compared to other parts of the world.
Values for MCV, MCH, MCHC and red cell distribution width (RDW) derived from subjects with HbC and HbE traits using a Technicon H*1 automated blood count analyser were compared. Significantly higher MCH, MCHC and RDW values were found in those with HbC trait. By use of a simple discriminant function (MCHC2 x RDW/1000), 19/20 subjects with HbC trait gave a value > or = 16.3, and 20/21 subjects with HbE trait gave a value < or = 16.2. The function described may be of value as an adjunct to electrophoresis in intralaboratory quality control.
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AIMS: Children in a United Kingdom national trial for relapsed non-B lymphoblastic leukaemia (ALL) had their diagnostic and relapse marrow cytomorphology compared to see what changes occur during the evolution of the disease. METHODS: Each relapse slide was assessed blindly for French American British (FAB) type and other morphological features by a panel of three independent microscopists without reference to each other or any diagnostic material. Diagnostic slides had been assessed by the same panel on an earlier occasion. RESULTS: A total of 134 consecutive children was studied. Six (5%) were classified as FAB type L2 at diagnosis, compared with 18 (13%) at relapse (a difference of 9%). Twenty two (16%) changed their FAB type, 17 (13%) from L1 to L2 and five (4%) from L2 to L1. The FAB score fell at relapse in 34 children and rose in 14, a difference of 14%. Cell size was the commonest feature to change (increasing in 22 and diminishing in nine) followed by prominent nucleoli (appearing in 21 and disappearing in six). Forty four (33%) children had vacuolated blasts at diagnosis, compared with 48 (36%) at relapse. Twenty five changed their vacuole score substantially, 14 gaining > 10% and 11 falling < 10%. CONCLUSIONS: These findings reflect the variability of lymphoblast cytomorphology, but also show a trend for cells to have more prominent nucleoli and greater size at relapse. Factors controlling these features of the FAB type are unknown, but they may simply be related to the growth fraction of a particular disease and not to any lineage specific biological feature.
To determine whether skin puncture blood can be used reliably for CD4 lymphocyte counts, the numbers of the major subsets of lymphocytes were assessed in paired venous and skin puncture blood samples from 22 children and 10 adults. Paired values were highly correlated, with skin puncture values being about 7% higher than venous values for each cell type. Differences were of borderline statistical significance for total lymphocytes and for each subset except CD3+ CD8+ T lymphocytes. Nevertheless, the magnitude of the differences was small and unlikely to be of clinical importance, and it seems that skin puncture samples may be preferable for CD4 counts in children or adults with difficult venous access.
A study was carried out to determine the frequency of combined iron deficiency and beta-thalassaemia trait in a cohort of British Asian children to see whether the trait protects iron status. Of 470 consecutive children with red cell microcytosis, 77 had beta-thalassaemia trait and 26 (34%) of these also had evidence of iron deficiency. It was most common and profound in children under five years of age where the prevalence was 16 in 33 (48.5%). This suggests that iron deficiency is no less common in Asian children with beta-thalassaemia trait than in those without. It should not be presumed that the trait protects iron status or that the two are in any way mutually exclusive, at least in the early years.
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Many months' treatment with daily oral mercaptopurine is an important part of therapy for nearly all children with lymphoblastic leukaemia (ALL). Even when prescribed the same dose based on body surface area, patients have widely different intracellular concentrations of drug metabolites. Whether this variation matters in terms of disease control is not yet clear. To find out, we followed up a large group of children with ALL in whom mercaptopurine-derived thioguanine nucleotides in the red cells were measured during treatment with an identical dose of mercaptopurine early in first remission. 172 unselected children (100 boys, 72 girls) were recruited between 1980 and 1992. At median follow-up of 5 years from diagnosis 42 (24%) had relapsed; 30 had erythrocyte thioguanine nucleotide concentrations below the group median (284 pmol per 8 x 10(8) erythrocytes) and 12 had values above the median. The actuarial relapse-free survival at 5 years was 63% in the below-median group and 84% in the above-median group (difference 21% [95% CI 3-39%], p = 0.0018). Multivariate analysis showed that erythrocyte thioguanine nucleotide concentration was independent of other prognostic variables including age, leukaemia immunophenotype, white-blood-cell count at diagnosis, trial protocol, and sex. Whatever the cause, in childhood ALL variable formation of intracellular mercaptopurine metabolites seems to be clinically important. Therapeutic schedules that include long-term daily oral mercaptopurine might be more effective if such metabolites are monitored.
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Immune tolerance was induced in five consecutive young boys with haemophilia and factor VIII inhibitors using frequent conventional doses of human factor VIII. All therapy was given at home by parents and the four youngest boys had surgically implanted central venous catheters (Port-a-Cath). Two catheters eventually became infected after 2 and 4 years respectively, otherwise the devices were trouble-free and liked by the families concerned. Regular domiciliary factor VIII therapy in pre-school children is not difficult with an aid to venous access and immune tolerance can be achieved in those developing factor VIII inhibitors.