Literature DB >> 22128806

Isolation of novel multipotent neural crest-derived stem cells from adult human inferior turbinate.

Stefan Hauser1, Darius Widera, Firas Qunneis, Janine Müller, Christin Zander, Johannes Greiner, Christina Strauss, Patrick Lüningschrör, Peter Heimann, Hartmut Schwarze, Jörg Ebmeyer, Holger Sudhoff, Marcos J Araúzo-Bravo, Boris Greber, Holm Zaehres, Hans Schöler, Christian Kaltschmidt, Barbara Kaltschmidt.   

Abstract

Adult human neural crest-derived stem cells (NCSCs) are of extraordinary high plasticity and promising candidates for the use in regenerative medicine. Here we describe for the first time a novel neural crest-derived stem cell population within the respiratory epithelium of human adult inferior turbinate. In contrast to superior and middle turbinates, high amounts of source material could be isolated from human inferior turbinates. Using minimally-invasive surgery methods isolation is efficient even in older patients. Within their endogenous niche, inferior turbinate stem cells (ITSCs) expressed high levels of nestin, p75(NTR), and S100. Immunoelectron microscopy using anti-p75 antibodies displayed that ITSCs are of glial origin and closely related to nonmyelinating Schwann cells. Cultivated ITSCs were positive for nestin and S100 and the neural crest markers Slug and SOX10. Whole genome microarray analysis showed pronounced differences to human ES cells in respect to pluripotency markers OCT4, SOX2, LIN28, and NANOG, whereas expression of WDR5, KLF4, and c-MYC was nearly similar. ITSCs were able to differentiate into cells with neuro-ectodermal and mesodermal phenotype. Additionally ITSCs are able to survive and perform neural crest typical chain migration in vivo when transplanted into chicken embryos. However ITSCs do not form teratomas in severe combined immunodeficient mice. Finally, we developed a separation strategy based on magnetic cell sorting of p75(NTR) positive ITSCs that formed larger neurospheres and proliferated faster than p75(NTR) negative ITSCs. Taken together our study describes a novel, readily accessible source of multipotent human NCSCs for potential cell-replacement therapy.

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Year:  2012        PMID: 22128806      PMCID: PMC3296122          DOI: 10.1089/scd.2011.0419

Source DB:  PubMed          Journal:  Stem Cells Dev        ISSN: 1547-3287            Impact factor:   3.272


  47 in total

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2.  Gene Expression Omnibus: NCBI gene expression and hybridization array data repository.

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3.  Summaries of Affymetrix GeneChip probe level data.

Authors:  Rafael A Irizarry; Benjamin M Bolstad; Francois Collin; Leslie M Cope; Bridget Hobbs; Terence P Speed
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Review 4.  Cranial neural crest and the building of the vertebrate head.

Authors:  Fabio Santagati; Filippo M Rijli
Journal:  Nat Rev Neurosci       Date:  2003-10       Impact factor: 34.870

5.  Self-renewal capacity is a widespread property of various types of neural crest precursor cells.

Authors:  Andréa Trentin; Corinne Glavieux-Pardanaud; Nicole M Le Douarin; Elisabeth Dupin
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6.  Olfactory ensheathing cells express smooth muscle alpha-actin in vitro and in vivo.

Authors:  Ali Jahed; James W Rowland; Todd McDonald; J Gordon Boyd; Ronald Doucette; Michael D Kawaja
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8.  Experimental analysis of the migration and differentiation of neuroblasts of the autonomic nervous system and of neurectodermal mesenchymal derivatives, using a biological cell marking technique.

Authors:  N M Le Douarin; M A Teillet
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9.  Clonal analysis of quail neural crest cells: they are pluripotent and differentiate in vitro in the absence of noncrest cells.

Authors:  M Sieber-Blum; A M Cohen
Journal:  Dev Biol       Date:  1980-11       Impact factor: 3.582

10.  Clonal analysis of the avian neural crest: migration and maturation of mixed neural crest clones injected into host chicken embryos.

Authors:  M Bronner-Fraser; M Sieber-Blum; A M Cohen
Journal:  J Comp Neurol       Date:  1980-09-15       Impact factor: 3.215

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  56 in total

Review 1.  Adult craniofacial stem cells: sources and relation to the neural crest.

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2.  A contemporary atlas of the mouse diaphragm: myogenicity, vascularity, and the Pax3 connection.

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3.  Priming TLR3 and TLR4 in human adipose- and olfactory mucosa-derived mesenchymal stromal cells and comparison of their cytokine secretions.

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Journal:  Cytotechnology       Date:  2020-01-02       Impact factor: 2.058

4.  Intrastriatal transplantation of adult human neural crest-derived stem cells improves functional outcome in parkinsonian rats.

Authors:  Janine Müller; Christiana Ossig; Johannes F W Greiner; Stefan Hauser; Mareike Fauser; Darius Widera; Christian Kaltschmidt; Alexander Storch; Barbara Kaltschmidt
Journal:  Stem Cells Transl Med       Date:  2014-12-05       Impact factor: 6.940

5.  Olfactory ecto-mesenchymal stem cells possess immunoregulatory function and suppress autoimmune arthritis.

Authors:  Ke Rui; Zhijiang Zhang; Jie Tian; Xiang Lin; Xiaohui Wang; Jie Ma; Xinyi Tang; Huaxi Xu; Liwei Lu; Shengjun Wang
Journal:  Cell Mol Immunol       Date:  2015-09-21       Impact factor: 11.530

Review 6.  Sinonasal carcinoma: clinical, pathological, genetic and therapeutic advances.

Authors:  José Luis Llorente; Fernando López; Carlos Suárez; Mario A Hermsen
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7.  Neural Crest Stem-Like Cells Non-genetically Induced from Human Gingiva-Derived Mesenchymal Stem Cells Promote Facial Nerve Regeneration in Rats.

Authors:  Qunzhou Zhang; Phuong D Nguyen; Shihong Shi; Justin C Burrell; Qilin Xu; Kacy D Cullen; Anh D Le
Journal:  Mol Neurobiol       Date:  2018-01-25       Impact factor: 5.590

8.  Identification of a Novel High Yielding Source of Multipotent Adult Human Neural Crest-Derived Stem Cells.

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Journal:  Stem Cell Rev Rep       Date:  2018-04       Impact factor: 5.739

9.  Improving the glial differentiation of human Schwann-like adipose-derived stem cells with graphene oxide substrates.

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Journal:  Interface Focus       Date:  2018-04-20       Impact factor: 3.906

10.  Office-based olfactory mucosa biopsies.

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Journal:  Int Forum Allergy Rhinol       Date:  2016-02-02       Impact factor: 3.858

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