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The role of IRF1 and IRF2 transcription factors in leukaemogenesis.

Acute myeloid leukaemia (AML) is the most common form of leukaemia in adults. Although of the order of 75-85% of patients will achieve complete remission after induction chemotherapy, long-term survival is still relatively low. Despite the progress in the rational design of drugs in disorders such as chronic myeloid leukaemia, AML lacks a single specific pathogenomic event to act as a drug target. Interferon regulatory factor 1 (IRF1) is a member of a family of related proteins that act as transcriptional activators or repressors. IRF1 and its functional antagonist IRF2 originally discovered as transcription factors regulating the interferon-beta (IFN-beta) gene, are involved in the regulation of normal haematopoiesis and leukaemogenesis. IRF1 appears to act as a tumour suppressor gene and IRF2 as an oncogene. IRF1 acts to repress IRF2 function through the repression of cyclin-dependent kinase (CDK) inhibitor p21WAF1 critical for cell growth control. It appears that the tumour suppression function of IRF1 is abolished by IRF2. This review focuses on the interaction between IRF1 and IRF2 in myeloid development and leukaemogenesis, particularly in relation to the Ras signalling pathway. IRF2 may be a viable and specific therapeutic target in human leukaemia.

Acute Disease↗

[On-line evaluation of the cardiotocogram using computer technology].

For an analysis of the cardiotocogram obtained by the fetal monitor HP 8040A the authors used original hardware and software means, i.e. PC XT IBM compatible in connection with an intelligent analog input periphery, which preprocesses the basic information, and with a programme using a scheme originating from the Maeda's evaluation of CTG modified by Srp. After having obtained 25 tracings (more than 8.5 hours), a detailed analysis of the computer interpretation of each course was performed, i.e. of the description of individual pathogenomic phenomena of the type of baseline heart rate, amplitude of variability, accelerations and decelerations including time parameters and mutual correlations. The results of the statistic evaluation are discussed, above all those concerning the decelerations, where the interpretation is so far burdened by a higher false negativity. Proposals for further elaboration of the programme means are presented including the optimalisation of the scheme used in evaluation, the running graphic presentation of the results and further graphic outputs for documentation purposes.

Cardiotocography↗