How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses.
Since monumental studies from scientists like His, Ramón y Cajal, Lorente de Nó and many others have put down roots for modern neuroscience, the scientific community has spent a considerable amount of time, and money, investigating any aspect of the evolution, development and function of neurons. To...
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doaj-16d06af981324a989766b2dea72a70e52020-11-24T21:35:52ZengFrontiers Media S.A.Frontiers in Cellular Neuroscience1662-51022014-07-01810.3389/fncel.2014.00201100288How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses.Giulio eSrubek Tomassy0Valentina eFossati1Harvard UniversityThe New York Stem Cell FoundationSince monumental studies from scientists like His, Ramón y Cajal, Lorente de Nó and many others have put down roots for modern neuroscience, the scientific community has spent a considerable amount of time, and money, investigating any aspect of the evolution, development and function of neurons. Today, the complexity and diversity of myriads of neuronal populations is still focus of extensive studies in hundreds of laboratories around the world. However, our prevalent neuron-centric perspective has dampened the efforts in understanding glial cells, even though their active participation in the brain physiology and pathophysiology has been increasingly recognized over the years. Among all glial cells of the central nervous system (CNS), oligodendrocytes (OLs) are a particularly specialized type of cells that provide fundamental support to neuronal activity by producing the myelin sheath. Despite their functional relevance, the developmental mechanisms regulating the generation of OLs are still poorly understood. In particular, it is still not known whether these cells share the same degree of heterogeneity of their neuronal companions and whether multiple subtypes exist within the lineage. Here, we will review and discuss current knowledge about OL development and function in the brain and spinal cord. We will try to address some specific questions: do multiple OL subtypes exist in the CNS? What is the evidence for their existence and those against them? What are the functional features that define an oligodendrocyte? We will end our journey by reviewing recent advances in human pluripotent stem cell differentiation towards OLs. This exciting field is still at its earliest days, but it is quickly evolving with improved protocols to generate functional OLs from different spatial origins. As stem cells constitute now an unprecedented source of human OLs, we believe that they will become an increasingly valuable tool for deciphering the complexity of human OL identity.http://journal.frontiersin.org/Journal/10.3389/fncel.2014.00201/fullMyelin Sheatholigodendrocytesoligodendrocyte progenitorsCNS developmentCellular DiversityCellular identity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giulio eSrubek Tomassy Valentina eFossati |
spellingShingle |
Giulio eSrubek Tomassy Valentina eFossati How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. Frontiers in Cellular Neuroscience Myelin Sheath oligodendrocytes oligodendrocyte progenitors CNS development Cellular Diversity Cellular identity |
author_facet |
Giulio eSrubek Tomassy Valentina eFossati |
author_sort |
Giulio eSrubek Tomassy |
title |
How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
title_short |
How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
title_full |
How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
title_fullStr |
How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
title_full_unstemmed |
How big is the myelinating orchestra? Cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
title_sort |
how big is the myelinating orchestra? cellular diversity within the oligodendrocyte lineage: facts and hypotheses. |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Cellular Neuroscience |
issn |
1662-5102 |
publishDate |
2014-07-01 |
description |
Since monumental studies from scientists like His, Ramón y Cajal, Lorente de Nó and many others have put down roots for modern neuroscience, the scientific community has spent a considerable amount of time, and money, investigating any aspect of the evolution, development and function of neurons. Today, the complexity and diversity of myriads of neuronal populations is still focus of extensive studies in hundreds of laboratories around the world. However, our prevalent neuron-centric perspective has dampened the efforts in understanding glial cells, even though their active participation in the brain physiology and pathophysiology has been increasingly recognized over the years. Among all glial cells of the central nervous system (CNS), oligodendrocytes (OLs) are a particularly specialized type of cells that provide fundamental support to neuronal activity by producing the myelin sheath. Despite their functional relevance, the developmental mechanisms regulating the generation of OLs are still poorly understood. In particular, it is still not known whether these cells share the same degree of heterogeneity of their neuronal companions and whether multiple subtypes exist within the lineage. Here, we will review and discuss current knowledge about OL development and function in the brain and spinal cord. We will try to address some specific questions: do multiple OL subtypes exist in the CNS? What is the evidence for their existence and those against them? What are the functional features that define an oligodendrocyte? We will end our journey by reviewing recent advances in human pluripotent stem cell differentiation towards OLs. This exciting field is still at its earliest days, but it is quickly evolving with improved protocols to generate functional OLs from different spatial origins. As stem cells constitute now an unprecedented source of human OLs, we believe that they will become an increasingly valuable tool for deciphering the complexity of human OL identity. |
topic |
Myelin Sheath oligodendrocytes oligodendrocyte progenitors CNS development Cellular Diversity Cellular identity |
url |
http://journal.frontiersin.org/Journal/10.3389/fncel.2014.00201/full |
work_keys_str_mv |
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