Growth pattern and clinical correlation of subcutaneously inoculated human primary acute leukemias in severe combined immunodeficiency mice

被引:26
作者
Yan, Y
Salomon, O
McGuirk, J
Dennig, D
Fernandez, J
Jagiello, C
Hai, N
Collins, N
Steinherz, P
OReilly, RJ
机构
[1] MEM SLOAN KETTERING CANC CTR,DEPT MED,BONE MARROW TRANSPLANTAT SERV,NEW YORK,NY 10021
[2] MEM SLOAN KETTERING CANC CTR,DEPT PEDIAT,NEW YORK,NY 10021
[3] MEM SLOAN KETTERING CANC CTR,RES ANIM LAB,NEW YORK,NY 10021
关键词
D O I
10.1182/blood.V88.8.3137.bloodjournal8883137
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We examined the ability of patient-derived human leukemic blasts to generate leukemic growth and dissemination in severe combined immunodeficiency (SCID) mice by subcutaneous inoculation without conditioning treatment or administration of growth-promoting cytokines. Additionally, we correlated the growth pattern with the clinical outcome of patients from whom the leukemic cells were derived. The leukemias displayed three distinct growth patterns, ie, either aggressive, indolent, or no tumor growth. Leukemic cells from 6 of 13 patients with acute myeloid leukemia (AML), 4 of 7 T-cell acute lymphoblastic leukemia (T-ALL), and 11 of 16 patients with B-lineage ALL grew as subcutaneous tumors, with a significant number subsequently disseminating into distant organs in SCID mice. Patients whose leukemic blasts displayed an aggressive growth and dissemination pattern in SCID mice had a relatively poor clinical outcome, whereas patients with AML and T- or B-lineage ALL whose leukemic blasts grew indolently or whose cells failed to induce growth had a more favorable clinical course. Our study has shown that the subcutaneous inoculation of patient-derived human leukemic cells in SCID mice can engraft and grow as subcutaneous tumors with subsequent dissemination to distant organs in a manner analogous to their pattern of growth in humans. Additionally, these data suggest a clinical correlation to the growth and dissemination of some leukemic subtypes that may represent not only an additional prognosticator for patient outcome, but also a vehicle for the study of the biologic behavior of human leukemias and the development of novel therapeutic strategies. (C) 1996 by The American Society of Hematology.
引用
收藏
页码:3137 / 3146
页数:10
相关论文
共 21 条
[1]  
CARETRO P, 1977, RES CLIN LAB, V19, P337
[2]  
CESANO A, 1993, BLOOD, V81, P2714
[3]  
CESANO A, 1991, BLOOD, V77, P2463
[4]   CHILDHOOD ACUTE MYELOID-LEUKEMIA IN MICE WITH SEVERE COMBINED IMMUNODEFICIENCY [J].
CHELSTROM, LM ;
GUNTHER, R ;
SIMON, J ;
RAIMONDI, SC ;
KRANCE, R ;
CRIST, WM ;
UCKUN, FM .
BLOOD, 1994, 84 (01) :20-26
[5]   STUDIES ON THE DEVELOPMENT OF HUMAN ACUTE MYELOID-LEUKEMIA XENOGRAFTS IN IMMUNE-DEPRIVED MICE - COMPARISON WITH CELLS IN SHORT-TERM CULTURE [J].
CLUTTERBUCK, RD ;
HILLS, CA ;
HOEY, P ;
ALEXANDER, P ;
POWLES, RL ;
MILLAR, JL .
LEUKEMIA RESEARCH, 1985, 9 (12) :1511-1518
[6]   GROWTH OF PRIMARY HUMAN ACUTE LYMPHOBLASTIC AND MYELOBLASTIC-LEUKEMIA IN SCID MICE [J].
DELORD, C ;
CLUTTERBUCK, R ;
POWLES, R ;
MORILLA, R ;
HANBY, A ;
TITLEY, J ;
MIN, T ;
MILLAR, J .
LEUKEMIA & LYMPHOMA, 1994, 16 (1-2) :157-165
[7]  
DELORD C, 1991, EXP HEMATOL, V19, P991
[8]  
KAMELREID S, 1991, BLOOD, V78, P2973
[9]   A MODEL OF HUMAN ACUTE LYMPHOBLASTIC-LEUKEMIA IN IMMUNE-DEFICIENT SCID MICE [J].
KAMELREID, S ;
LETARTE, M ;
SIRARD, C ;
DOEDENS, M ;
GRUNBERGER, T ;
FULOP, G ;
FREEDMAN, MH ;
PHILLIPS, RA ;
DICK, JE .
SCIENCE, 1989, 246 (4937) :1597-1600
[10]   ESTABLISHMENT AND CHARACTERIZATION OF THE TUMORS OF CHRONIC LYMPHOCYTIC-LEUKEMIA CELL-LINE IN NUDE AND SCID MICE [J].
KAWATA, A ;
HAN, T ;
DADEY, B ;
WEIER, HUG ;
OKAZAKI, M ;
YOKOTA, S ;
FUKIAGE, T ;
XIAO, H ;
BLOCK, AW ;
BARCOS, M ;
HENDERSON, E ;
YOSHIDA, M ;
SEON, BK .
LEUKEMIA RESEARCH, 1993, 17 (10) :883-894