Tumor xenografts in immunodeficient mice, while routinely used in cancer research, preclude studying interactions of immune and cancer cells or, if humanized by allogeneic immune cells, are of limited use for tumor-immunological questions. Here, we explore a novel way to generate cancer models with an autologous humanized immune system. We demonstrate that hematopoietic stem and progenitor cells (HSPCs) from bone marrow aspirates of non-metastasized carcinoma patients, which are taken at specialized centers for diagnostic purposes, can be used to generate a human immune system in NOD-scid IL2r-Gamma(null) (NSG) and HLA-I expressing NSG mice (NSG-HLA-A2/HHD) comprising both, lymphoid and myeloid cell lineages. Using NSG-HLA-A2/HHD mice, we s...
Introduction Models of mice carrying a human immune system, so-called humanized mice, are used incre...
International audienceOver the last decade, incrementally improved xenograft mouse models, which sup...
Despite significant advances, most current in vivo models fail to fully recapitulate the biological ...
Tumor xenografts in immunodeficient mice, while routinely used in cancer research, preclude studying...
Tumor xenografts in immunodeficient mice, while routinely used in cancer research, preclude studying...
Humanized tumor mice (HTM) were generated by the co-transplantation of human hematopoietic stem cell...
Hematopoietic stem cells (HSCs) are defined by their ability to repopulate the bone marrow of myeloa...
The immunological impact on antibody-based anticancer therapies remains incompletely understood due ...
Immunodeficient mice engrafted with human immune systems provide an exciting model to study human im...
Mouse models of human cancer have been used extensively to circumvent the complexity in human patien...
Breast cancer is a highly inter- and intra-individual heterogeneous disease that comprises a number ...
Induction of specific immune response against therapy-resistant tumor cells can potentially improve ...
The humanized bone marrow-liver-thymus (BLT) mouse model harbors a nearly complete human immune syst...
Humanized mice are a promising translational model for studying human hematopoiesis and immunity. T...
Humanized mice are a promising translational model for studying human hematopoiesis and immunity. T...
Introduction Models of mice carrying a human immune system, so-called humanized mice, are used incre...
International audienceOver the last decade, incrementally improved xenograft mouse models, which sup...
Despite significant advances, most current in vivo models fail to fully recapitulate the biological ...
Tumor xenografts in immunodeficient mice, while routinely used in cancer research, preclude studying...
Tumor xenografts in immunodeficient mice, while routinely used in cancer research, preclude studying...
Humanized tumor mice (HTM) were generated by the co-transplantation of human hematopoietic stem cell...
Hematopoietic stem cells (HSCs) are defined by their ability to repopulate the bone marrow of myeloa...
The immunological impact on antibody-based anticancer therapies remains incompletely understood due ...
Immunodeficient mice engrafted with human immune systems provide an exciting model to study human im...
Mouse models of human cancer have been used extensively to circumvent the complexity in human patien...
Breast cancer is a highly inter- and intra-individual heterogeneous disease that comprises a number ...
Induction of specific immune response against therapy-resistant tumor cells can potentially improve ...
The humanized bone marrow-liver-thymus (BLT) mouse model harbors a nearly complete human immune syst...
Humanized mice are a promising translational model for studying human hematopoiesis and immunity. T...
Humanized mice are a promising translational model for studying human hematopoiesis and immunity. T...
Introduction Models of mice carrying a human immune system, so-called humanized mice, are used incre...
International audienceOver the last decade, incrementally improved xenograft mouse models, which sup...
Despite significant advances, most current in vivo models fail to fully recapitulate the biological ...