Establishing Human Niche Xenograft Models for Myeloid and Lymphoid Leukemia Driven By MLL-AF9

被引:0
|
作者
Carretta, Marco [1 ]
Jaques, Jennifer [1 ]
de Boer, Bauke [1 ]
Yuan, Huipin [2 ]
Martens, Anton C. [3 ]
Vellenga, Edo [1 ]
Groen, Richard W. J. [3 ]
Schuringa, Jan Jacob [1 ]
机构
[1] Univ Groningen, Univ Med Ctr Groningen, Canc Res Ctr Groningen, Groningen, Netherlands
[2] Xpand Biotechnol BV, Bilthoven, Netherlands
[3] Univ Med Ctr Utrecht, Utrecht, Netherlands
关键词
D O I
暂无
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
引用
收藏
页数:3
相关论文
共 50 条
  • [31] G1 cell-cycle arrest and apoptosis by histone deacetylase inhibition in MLL-AF9 acute myeloid leukemia cells is p21 dependent and MLL-AF9 independent
    R Tonelli
    R Sartini
    R Fronza
    F Freccero
    M Franzoni
    D Dongiovanni
    M Ballarini
    S Ferrari
    M D'apolito
    G Di Cola
    G Capranico
    A Khobta
    R Campanini
    P Paolucci
    S Minucci
    A Pession
    Leukemia, 2006, 20 : 1307 - 1310
  • [32] Modeling BCR-ABL and MLL-AF9 leukemia in a human bone marrow-like scaffold-based xenograft model
    Sontakke, P.
    Carretta, M.
    Jaques, J.
    Brouwers-Vos, A. Z.
    Lubbers-Aalders, L.
    Yuan, H.
    de Bruijn, J. D.
    Martens, A. C. M.
    Vellenga, E.
    Groen, R. W. J.
    Schuringa, J. J.
    LEUKEMIA, 2016, 30 (10) : 2064 - 2073
  • [33] Structural maintenance of chromosomes 4 is required for leukemia stem cell maintenance in MLL-AF9 induced acute myeloid leukemia
    Peng, Luyun
    Tang, Yuanting
    Zhang, Yingchi
    Guo, Siqi
    Peng, Leiwen
    Ye, Lei
    Wang, Yuefang
    Jiang, Yongmei
    LEUKEMIA & LYMPHOMA, 2018, 59 (10) : 2423 - 2430
  • [34] Modeling BCR-ABL and MLL-AF9 leukemia in a human bone marrow-like scaffold-based xenograft model
    P Sontakke
    M Carretta
    J Jaques
    A Z Brouwers-Vos
    L Lubbers-Aalders
    H Yuan
    J D de Bruijn
    A C M Martens
    E Vellenga
    R W J Groen
    J J Schuringa
    Leukemia, 2016, 30 : 2064 - 2073
  • [35] Leukemic and Hematopoietic Stem Cells Compete for the Same Functional Marrow Niche in a MLL-AF9 Murine Leukemia Model
    Desmond, Ronan G.
    Bat, Taha
    Kamenyeva, Olena
    Mizukawa, Benjamin
    Mulloy, James C.
    Larochelle, Andre
    Dunbar, Cynthia E.
    BLOOD, 2012, 120 (21)
  • [36] G1 cell-cycle arrest and apoptosis by histone deacetylase inhibition in MLL-AF9 acute myeloid leukemia cells is p21 dependent and MLL-AF9 independent
    Tonelli, R.
    Sartini, R.
    Fronza, R.
    Freccero, F.
    Franzoni, M.
    Dongiovanni, D.
    Ballarini, M.
    Ferrari, S.
    D'Apolito, M.
    Di Cola, G.
    Capranico, G.
    Khobta, A.
    Campanini, R.
    Paolucci, P.
    Minucci, S.
    Pession, A.
    LEUKEMIA, 2006, 20 (07) : 1307 - 1310
  • [37] Conditional Deletion of the Hoxa Cluster in MLL-AF9 Is Incompatible with Leukemia Maintenance
    Kettyle, Laura M.
    Grishagin, Ivan
    Dickson, Glenda J.
    Lebert-Ghali, Charles-Etienne
    Bijl, Janetta Jacoba
    McMullin, Mary Frances
    Lappin, Terence R. J.
    Mills, Ken I.
    Thompson, Alexander
    BLOOD, 2015, 126 (23)
  • [38] Modeling human MLL-AF9 translocated acute myeloid leukemia from single donors reveals RET as a potential therapeutic target
    F Barabé
    L Gil
    M Celton
    A Bergeron
    V Lamontagne
    É Roques
    K Lagacé
    A Forest
    R Johnson
    L Pécheux
    J Simard
    J Pelloux
    A Bellemare-Pelletier
    E Gagnon
    J Hébert
    S Cellot
    B T Wilhelm
    Leukemia, 2017, 31 : 1166 - 1176
  • [39] Meis1 maintains stemness signature in MLL-AF9 leukemia
    Kumar, Ashish R.
    Sarver, Aaron L.
    Wu, Baolin
    Kersey, John H.
    BLOOD, 2010, 115 (17) : 3642 - 3643
  • [40] Genome Engineering to Prospectively Investigate the Pathogenesis of MLL-AF9 Acute Leukemia
    Buechele, Corina
    Breese, Erin H.
    Schneidawind, Dominik
    Porteus, Matthew H.
    Cleary, Michael L.
    BLOOD, 2014, 124 (21)