The bone marrow microenvironment provides indispensable factors to sustain blood production throughout life. It is also a hotspot for the progression of hematologic disorders and the most frequent site of solid tumor metastasis. Preclinical research relies on xenograft mouse models, but these models preclude the human-specific functional interactions of stem cells with their bone marrow microenvironment. Instead, human mesenchymal cells can be exploited for the in vivo engineering of humanized niches, which confer robust engraftment of human healthy and malignant blood samples. However, mesenchymal cells are associated with major reproducibility issues in tissue formation. Here, we report the fast and standardized generation of human mini-b...
BACKGROUND: Existing preclinical murine models often fail to predict effects of anti-cancer drugs. I...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
Human malignant hematopoietic stem and progenitor cells (HSPCs) reside in bone marrow (BM) niches, w...
The bone marrow microenvironment provides indispensable factors to sustain blood production througho...
Despite the bone marrow microenvironment being widely recognised as a key player in cancer research,...
Advances in tissue-engineering have resulted in a versatile tool-box to specifically design a tailor...
Despite the bone marrow microenvironment being widely recognised as a key player in cancer research,...
Hematopoietic stem cells (HSCs) are maintained in a specialized bone marrow (BM) environment, the so...
Current in vivo models for investigating human primary bone tumors and cancer metastasis to the bone...
Despite significant advances, most current in vivo models fail to fully recapitulate the biological ...
Background: Existing preclinical murine models often fail to predict effects of anti-cancer drugs. I...
Ectopic 'humanized ossicles' (hOss) are miniaturized, engineered human bone organs in mice displayin...
The bone marrow microenvironment contains cellular niches that maintain the pool of hematopoietic st...
The generation of humanized ectopic ossicles (hOss) in mice has been proposed as an advanced transla...
BACKGROUND: Existing preclinical murine models often fail to predict effects of anti-cancer drugs. I...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
Human malignant hematopoietic stem and progenitor cells (HSPCs) reside in bone marrow (BM) niches, w...
The bone marrow microenvironment provides indispensable factors to sustain blood production througho...
Despite the bone marrow microenvironment being widely recognised as a key player in cancer research,...
Advances in tissue-engineering have resulted in a versatile tool-box to specifically design a tailor...
Despite the bone marrow microenvironment being widely recognised as a key player in cancer research,...
Hematopoietic stem cells (HSCs) are maintained in a specialized bone marrow (BM) environment, the so...
Current in vivo models for investigating human primary bone tumors and cancer metastasis to the bone...
Despite significant advances, most current in vivo models fail to fully recapitulate the biological ...
Background: Existing preclinical murine models often fail to predict effects of anti-cancer drugs. I...
Ectopic 'humanized ossicles' (hOss) are miniaturized, engineered human bone organs in mice displayin...
The bone marrow microenvironment contains cellular niches that maintain the pool of hematopoietic st...
The generation of humanized ectopic ossicles (hOss) in mice has been proposed as an advanced transla...
BACKGROUND: Existing preclinical murine models often fail to predict effects of anti-cancer drugs. I...
To begin to understand the mechanisms that regulate self-renewal, differentiation, and transformatio...
Human malignant hematopoietic stem and progenitor cells (HSPCs) reside in bone marrow (BM) niches, w...