The development of three-dimensional environments to mimic the in vivo cellular response is a problem in the building of disease models. This study aimed to synthesize and validate three-dimensional support for culturing monoclonal plasma cells (mPCs) as a disease model for multiple myeloma. The three-dimensional environment is a biomimetic microgel formed by alginate microspheres and produced on a microfluidic device whose surface has been functionalized by a layer-by-layer process with components of the bone marrow’s extracellular matrix, which will interact with mPC. As a proof of concept, RPMI 8226 cell line cells were cultured in our 3D culture platform. We proved that hyaluronic acid significantly increased cell proliferation and corr...
Three-dimensional (3-D) culture models are emerging as invaluable tools in tumor biology, since they...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
This Research provides an overview of the applications and overall challenges of creating 3D-In Vitr...
The development of three-dimensional environments to mimic the in vivo cellular response is a proble...
[EN] The development of three-dimensional environments to mimic the in vivo cellular response is a p...
Multiple myeloma is a hematologic neoplasm caused by an uncontrolled clonal proliferation of neoplas...
In this work, we use this micro manipulation technique to build a 3D scaffold as a biomimetic model ...
International audienceBackground: Spheroid cultures are known to mimic closely the properties of tum...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
We previously reported a new approach for micromanipulation and encapsulation of human stem cells us...
Multiple myeloma (MM) is a malignancy of terminally-differentiated plasma cells that develops mainly...
Tumour microenvironment greatly influences the development and metastasis of cancer progression. The...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
The National Cancer Institute estimates that approximately 40% of men and women will be diagnosed wi...
Alginate hydrogels can be used to develop a three-dimensional environment in which various cell type...
Three-dimensional (3-D) culture models are emerging as invaluable tools in tumor biology, since they...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
This Research provides an overview of the applications and overall challenges of creating 3D-In Vitr...
The development of three-dimensional environments to mimic the in vivo cellular response is a proble...
[EN] The development of three-dimensional environments to mimic the in vivo cellular response is a p...
Multiple myeloma is a hematologic neoplasm caused by an uncontrolled clonal proliferation of neoplas...
In this work, we use this micro manipulation technique to build a 3D scaffold as a biomimetic model ...
International audienceBackground: Spheroid cultures are known to mimic closely the properties of tum...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
We previously reported a new approach for micromanipulation and encapsulation of human stem cells us...
Multiple myeloma (MM) is a malignancy of terminally-differentiated plasma cells that develops mainly...
Tumour microenvironment greatly influences the development and metastasis of cancer progression. The...
International audienceThree-dimensional cell culture has revolutionized cellular biology research an...
The National Cancer Institute estimates that approximately 40% of men and women will be diagnosed wi...
Alginate hydrogels can be used to develop a three-dimensional environment in which various cell type...
Three-dimensional (3-D) culture models are emerging as invaluable tools in tumor biology, since they...
Specific niches within the tumor bone marrow (BM) microenvironment afford a sanctuary for multiple m...
This Research provides an overview of the applications and overall challenges of creating 3D-In Vitr...