Most neurodegenerative diseases are characterized by a complex and mostly still unresolved pathology. This fact, together with the lack of reliable disease models, has precluded the development of effective therapies counteracting the disease progression. The advent of human pluripotent stem cells has revolutionized the field allowing the generation of disease-relevant neural cell types that can be used for disease modeling, drug screening and, possibly, cell transplantation purposes. In this Review, we discuss the applications of human pluripotent stem cells, the development of efficient protocols for the derivation of the different neural cells and their applicability for robust in vitro disease modeling and drug screening platforms for m...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Extracellular amyloid-beta deposition and intraneuronal Tau-laden neurofibrillary tangles are prime ...
Human pluripotent stem cells (hPSCs) represent a new and exciting field in modern medicine, now the ...
Many human neurological diseases are not currently curable and result in devastating neurologic sequ...
Many human neurological diseases are not currently curable and result in devastating neurologic sequ...
Neurodegeneration is the umbrella term for the progressive loss of structure or function of neurons....
Introduction: Although intensive efforts have been made, effective treatments for neurodegenerative ...
Induced pluripotent stem cell (iPSC) technology holds promise for modeling neurodegenerative disease...
Human pluripotent stem cells, including embryonic (hES) and induced pluripotent stem cells (hiPS), r...
The availability of human stem cells heralds a new era for modeling normal and pathologic tissues an...
Human pluripotent stem cells (hPSCs) represent a new and exciting field in modern medicine, now the ...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Among the disciplines of medicine, the study of neurological disorders is particularly challenging. ...
The high attrition rate in drug development processes calls for additional human-based model systems...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Extracellular amyloid-beta deposition and intraneuronal Tau-laden neurofibrillary tangles are prime ...
Human pluripotent stem cells (hPSCs) represent a new and exciting field in modern medicine, now the ...
Many human neurological diseases are not currently curable and result in devastating neurologic sequ...
Many human neurological diseases are not currently curable and result in devastating neurologic sequ...
Neurodegeneration is the umbrella term for the progressive loss of structure or function of neurons....
Introduction: Although intensive efforts have been made, effective treatments for neurodegenerative ...
Induced pluripotent stem cell (iPSC) technology holds promise for modeling neurodegenerative disease...
Human pluripotent stem cells, including embryonic (hES) and induced pluripotent stem cells (hiPS), r...
The availability of human stem cells heralds a new era for modeling normal and pathologic tissues an...
Human pluripotent stem cells (hPSCs) represent a new and exciting field in modern medicine, now the ...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Among the disciplines of medicine, the study of neurological disorders is particularly challenging. ...
The high attrition rate in drug development processes calls for additional human-based model systems...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Remarkable advances in cellular reprogramming have made it possible to generate pluripotent stem cel...
Extracellular amyloid-beta deposition and intraneuronal Tau-laden neurofibrillary tangles are prime ...