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PubMed:11274760 JSONTXT

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DisGeNET

Id Subject Object Predicate Lexical cue
T0 88-91 gene:1822 denotes NOD
T1 45-73 disease:C1961102 denotes acute lymphoblastic leukemia
T2 88-91 gene:1822 denotes NOD
T3 45-73 disease:C0023449 denotes acute lymphoblastic leukemia
T4 339-342 gene:1822 denotes NOD
T5 396-399 disease:C0023449 denotes ALL
T6 339-342 gene:1822 denotes NOD
T7 396-399 disease:C1961102 denotes ALL
T8 339-342 gene:1822 denotes NOD
T9 343-347 disease:C0085110 denotes SCID
R1 T0 T1 associated_with NOD,acute lymphoblastic leukemia
R2 T2 T3 associated_with NOD,acute lymphoblastic leukemia
R3 T4 T5 associated_with NOD,ALL
R4 T6 T7 associated_with NOD,ALL
R5 T8 T9 associated_with NOD,SCID

PubMed_Structured_Abstracts

Id Subject Object Predicate Lexical cue
T1 114-315 OBJECTIVE denotes The aim of this study was to develop an animal model for human acute lymphoblastic leukemia (ALL) in which the kinetics and characteristics of leukemia can be sequentially monitored in individual mice.
T2 339-553 METHODS denotes NOD/SCID mice were inoculated intravenously with primary ALL. Progression of leukemia was monitored throughout the development of disease by determination of absolute leukemic cell counts (LCC) in peripheral blood.
T3 563-1470 RESULTS denotes LCC as low as 10(4) leukemic cells/mL blood could be detected. ALL cells from 5 of 5 patients engrafted, and after identification of the first leukemic cells in peripheral blood, LCC increased exponentially. Leukemic cells showed specificity of homing to spleen and bone marrow, and LCC strongly correlated with the level of leukemic engraftment in these organs throughout disease progression, demonstrating that LCC are representative for overall leukemic burden. Cytogenetic analysis of leukemic cells recovered after six successive in vivo transfers revealed no major karyotypic changes as compared to primary cells, and selection of the dominant clones was observed. This selection process was reflected by an increase in the rate of leukemic progression as compared to the first inoculation, demonstrating the accuracy with which kinetics of leukemic progression can be studied by determination of LCC.
T4 1484-1650 CONCLUSIONS denotes This model is suitable for detailed studies of kinetics and characteristics of ALL in vivo, and it may be useful for monitoring effects of novel therapeutic regimens.