Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
-dimensional scaffolds using FDM 3D printing for cell culture applications. Develop and optimize biomimetic materials with controlled mechanical and biochemical properties. Functionalize scaffolds with
-
biofabrication of functional tissue constructs. Your research 3D bioprinting of cell-laden tissue constructs Development and optimisation of bioinks and printing parameters Integration of bioprinted tissues with
-
, Faculty of Dentistry, is seeking a Postdoctoral Fellow to develop and apply advanced 3D in vitro models for studies of oral biology, disease mechanisms, tissue regeneration and biomaterial–cell interactions
-
of human microbiomes in endometriosis.” - The research project aims to develop and characterize 3D tissue models based on collagen and other hydrogel matrices to investigate cell-matrix interactions and
-
will involve primary mouse and human stem cell sorting, multi-color flow cytometry, mouse disease models, human patient samples, 3D bone marrow organoid models, single-cell RNA-Sequencing, and general
-
-cell imaging and immunolabeling. These images will then be analyzed in 3D using automated methods. - Manipulate the physical constraints to which nuclei are subjected and compare transcriptional dynamics
-
the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description - 3D iPSC cell culture - Differentiation
-
their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
-
advanced 3D in vitro models for studies of oral biology, disease mechanisms, tissue regeneration and biomaterial–cell interactions. The project will involve the development, characterization and application
-
experiments using cancer and stromal cell models, including CRISPR/Cas9-based genetic approaches to investigate Cx43-dependent mechanisms. Establish and characterise tumour–stromal co-culture and 3D models