Literature DB >> 24105912

Membrane biophysics define neuron and astrocyte progenitors in the neural lineage.

J L Nourse1, J L Prieto, A R Dickson, J Lu, M M Pathak, F Tombola, M Demetriou, A P Lee, L A Flanagan.   

Abstract

Neural stem and progenitor cells (NSPCs) are heterogeneous populations of self-renewing stem cells and more committed progenitors that differentiate into neurons, astrocytes, and oligodendrocytes. Accurately identifying and characterizing the different progenitor cells in this lineage has continued to be a challenge for the field. We found previously that populations of NSPCs with more neurogenic progenitors (NPs) can be distinguished from those with more astrogenic progenitors (APs) by their inherent biophysical properties, specifically the electrophysiological property of whole cell membrane capacitance, which we characterized with dielectrophoresis (DEP). Here, we hypothesize that inherent electrophysiological properties are sufficient to define NPs and APs and test this by determining whether isolation of cells solely by these properties specifically separates NPs and APs. We found NPs and APs are enriched in distinct fractions after separation by electrophysiological properties using DEP. A single round of DEP isolation provided greater NP enrichment than sorting with PSA-NCAM, which is considered an NP marker. Additionally, cell surface N-linked glycosylation was found to significantly affect cell fate-specific electrophysiological properties, providing a molecular basis for the cell membrane characteristics. Inherent plasma membrane biophysical properties are thus sufficient to define progenitor cells of differing fate potential in the neural lineage, can be used to specifically isolate these cells, and are linked to patterns of glycosylation on the cell surface. © AlphaMed Press.

Entities:  

Keywords:  Astrocyte progenitor; Biophysical properties; Dielectrophoresis; Electrophysiological properties; Glycosylation; Neural stem cell; Neuron progenitor

Mesh:

Year:  2014        PMID: 24105912      PMCID: PMC5367858          DOI: 10.1002/stem.1535

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  40 in total

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Journal:  Glycobiology       Date:  2006-12-15       Impact factor: 4.313

Review 2.  Role of membrane potential in the regulation of cell proliferation and differentiation.

Authors:  Sarah Sundelacruz; Michael Levin; David L Kaplan
Journal:  Stem Cell Rev Rep       Date:  2009-06-27       Impact factor: 5.739

3.  Real-time label-free monitoring of adipose-derived stem cell differentiation with electric cell-substrate impedance sensing.

Authors:  Pierre O Bagnaninchi; Nicola Drummond
Journal:  Proc Natl Acad Sci U S A       Date:  2011-04-04       Impact factor: 11.205

4.  Separation of human breast cancer cells from blood by differential dielectric affinity.

Authors:  F F Becker; X B Wang; Y Huang; R Pethig; J Vykoukal; P R Gascoyne
Journal:  Proc Natl Acad Sci U S A       Date:  1995-01-31       Impact factor: 11.205

5.  Developmental changes of glycosphingolipids and expression of glycogenes in mouse brains.

Authors:  Sathaporn Ngamukote; Makoto Yanagisawa; Toshio Ariga; Susumu Ando; Robert K Yu
Journal:  J Neurochem       Date:  2007-09-19       Impact factor: 5.372

6.  Electrically addressable vesicles: tools for dielectrophoresis metrology.

Authors:  Salil P Desai; Michael D Vahey; Joel Voldman
Journal:  Langmuir       Date:  2009-04-09       Impact factor: 3.882

7.  Prospective cell sorting of embryonic rat neural stem cells and neuronal and glial progenitors reveals selective effects of basic fibroblast growth factor and epidermal growth factor on self-renewal and differentiation.

Authors:  Dragan Maric; Irina Maric; Yoong Hee Chang; Jeffery L Barker
Journal:  J Neurosci       Date:  2003-01-01       Impact factor: 6.167

8.  Isolation of rare cells from cell mixtures by dielectrophoresis.

Authors:  Peter R C Gascoyne; Jamileh Noshari; Thomas J Anderson; Frederick F Becker
Journal:  Electrophoresis       Date:  2009-04       Impact factor: 3.535

9.  Genetics and the environment converge to dysregulate N-glycosylation in multiple sclerosis.

Authors:  Haik Mkhikian; Ani Grigorian; Carey F Li; Hung-Lin Chen; Barbara Newton; Raymond W Zhou; Christine Beeton; Sevan Torossian; Gevork Grikor Tatarian; Sung-Uk Lee; Ken Lau; Erin Walker; Katherine A Siminovitch; K George Chandy; Zhaoxia Yu; James W Dennis; Michael Demetriou
Journal:  Nat Commun       Date:  2011       Impact factor: 14.919

10.  Biophysical characteristics reveal neural stem cell differentiation potential.

Authors:  Fatima H Labeed; Jente Lu; Hayley J Mulhall; Steve A Marchenko; Kai F Hoettges; Laura C Estrada; Abraham P Lee; Michael P Hughes; Lisa A Flanagan
Journal:  PLoS One       Date:  2011-09-30       Impact factor: 3.240

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  13 in total

1.  Increasing label-free stem cell sorting capacity to reach transplantation-scale throughput.

Authors:  Melinda G Simon; Ying Li; Janahan Arulmoli; Lisa P McDonnell; Adnan Akil; Jamison L Nourse; Abraham P Lee; Lisa A Flanagan
Journal:  Biomicrofluidics       Date:  2014-11-20       Impact factor: 2.800

2.  Identification of neural stem and progenitor cell subpopulations using DC insulator-based dielectrophoresis.

Authors:  Yameng Liu; Alan Jiang; Estelle Kim; Clarissa Ro; Tayloria Adams; Lisa A Flanagan; Thomas J Taylor; Mark A Hayes
Journal:  Analyst       Date:  2019-06-05       Impact factor: 4.616

Review 3.  Separation of neural stem cells by whole cell membrane capacitance using dielectrophoresis.

Authors:  Tayloria N G Adams; Alan Y L Jiang; Prema D Vyas; Lisa A Flanagan
Journal:  Methods       Date:  2017-08-31       Impact factor: 3.608

4.  Heat pulse excitability of vestibular hair cells and afferent neurons.

Authors:  Richard D Rabbitt; Alan M Brichta; Hessam Tabatabaee; Peter J Boutros; JoongHo Ahn; Charles C Della Santina; Lauren A Poppi; Rebecca Lim
Journal:  J Neurophysiol       Date:  2016-05-25       Impact factor: 2.714

5.  Single-cell microfluidic impedance cytometry: from raw signals to cell phenotypes using data analytics.

Authors:  Carlos Honrado; Paolo Bisegna; Nathan S Swami; Federica Caselli
Journal:  Lab Chip       Date:  2021-01-05       Impact factor: 6.799

6.  Static stretch affects neural stem cell differentiation in an extracellular matrix-dependent manner.

Authors:  Janahan Arulmoli; Medha M Pathak; Lisa P McDonnell; Jamison L Nourse; Francesco Tombola; James C Earthman; Lisa A Flanagan
Journal:  Sci Rep       Date:  2015-02-17       Impact factor: 4.379

7.  Size and dielectric properties of skeletal stem cells change critically after enrichment and expansion from human bone marrow: consequences for microfluidic cell sorting.

Authors:  Miguel Xavier; María C de Andrés; Daniel Spencer; Richard O C Oreffo; Hywel Morgan
Journal:  J R Soc Interface       Date:  2017-08       Impact factor: 4.118

Review 8.  Dielectrophoresis for Biomedical Sciences Applications: A Review.

Authors:  Nurhaslina Abd Rahman; Fatimah Ibrahim; Bashar Yafouz
Journal:  Sensors (Basel)       Date:  2017-02-24       Impact factor: 3.576

9.  Cell Surface N-Glycans Influence Electrophysiological Properties and Fate Potential of Neural Stem Cells.

Authors:  Andrew R Yale; Jamison L Nourse; Kayla R Lee; Syed N Ahmed; Janahan Arulmoli; Alan Y L Jiang; Lisa P McDonnell; Giovanni A Botten; Abraham P Lee; Edwin S Monuki; Michael Demetriou; Lisa A Flanagan
Journal:  Stem Cell Reports       Date:  2018-09-06       Impact factor: 7.765

10.  Label-free enrichment of fate-biased human neural stem and progenitor cells.

Authors:  Tayloria N G Adams; Alan Y L Jiang; Nicolo S Mendoza; Clarissa C Ro; Do-Hyun Lee; Abraham P Lee; Lisa A Flanagan
Journal:  Biosens Bioelectron       Date:  2019-12-28       Impact factor: 10.618

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