Microglia, the resident macrophages of the central nervous system, are key players in neuroinflammation and neurodegenerative diseases, such as Alzheimer’s and Parkinson’s. These cells represent promising cellular targets for therapeutic intervention, therefore a detailed cellular biological knowledge of microglia is of paramount importance. Current microglia in vitro cell culture models are limited in their ability to recapitulate in vivo microglia in terms of gene expression and cell morphology. There is growing evidence that mimicking the cellular environment of microglia in the central nervous system will contribute to a more physiologically accurate culture model. Three-dimensional geometries, and physical and biochemical cues similar ...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
The biomechanical properties of the brain microenvironment, which is composed of different neural ce...
Background: We report a novel method of culturing microglia in three dimension (3D) using collagen a...
Microglia are the resident macrophages of the central nervous system and contribute to maintaining b...
Alzheimer’s disease (AD) has become increasingly prevalent owing to the rise in aging population, he...
As the complex structure of nervous tissue cannot be mimicked in two-dimensional (2D) cultures, the ...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
A particular challenge to the field of neuroscience involves translating findings from 2D in vitro s...
Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and ...
In vitro studies utilising conventional two dimensional (2D) culture systems have been used regularl...
INTRODUCTION: Recent studies showed that microglia (MG) play critical roles in neurodegeneration, an...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Cortical neurons, in their native state, are organized in six different cell layers; and the thickne...
A major obstacle in glioma research is the lack of in vitro models that can retain cellular features...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
The biomechanical properties of the brain microenvironment, which is composed of different neural ce...
Background: We report a novel method of culturing microglia in three dimension (3D) using collagen a...
Microglia are the resident macrophages of the central nervous system and contribute to maintaining b...
Alzheimer’s disease (AD) has become increasingly prevalent owing to the rise in aging population, he...
As the complex structure of nervous tissue cannot be mimicked in two-dimensional (2D) cultures, the ...
In this contribution, the authors present our advances in three-dimensional (3D) neuronal cell cultu...
A particular challenge to the field of neuroscience involves translating findings from 2D in vitro s...
Damage in the Peripheral Nervous System (PNS) is related to numerous neurodegenerative diseases and ...
In vitro studies utilising conventional two dimensional (2D) culture systems have been used regularl...
INTRODUCTION: Recent studies showed that microglia (MG) play critical roles in neurodegeneration, an...
Inherent limitations of the traditional approaches to study brain function and disease, such as rode...
Recent progress in the field of human induced pluripotent stem cells (iPSCs) has led to the efficien...
Cortical neurons, in their native state, are organized in six different cell layers; and the thickne...
A major obstacle in glioma research is the lack of in vitro models that can retain cellular features...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
The biomechanical properties of the brain microenvironment, which is composed of different neural ce...
Background: We report a novel method of culturing microglia in three dimension (3D) using collagen a...