Aldehyde Dehydrogenase, a Marker of Normal and Malignant Stem Cells, Typifies Mesenchymal Progenitors in Perivascular Niches

Author:

Gomez-Salazar Mario A12ORCID,Wang Yiyun2,Thottappillil Neelima2,Hardy Reef W3,Alexandre Manon14,Höller Fabian1,Martin Niall1,Gonzalez-Galofre Zaniah N1,Stefancova Dorota1,Medici Daniele1,James Aaron W2,Péault Bruno13

Affiliation:

1. Center for Regenerative Medicine and Center for Cardiovascular Research, University of Edinburgh , Edinburgh , UK

2. Department of Pathology, Johns Hopkins University , Baltimore, MB , USA

3. Orthopaedic Hospital Research Center and Broad Stem Cell Research Center, David Geffen School of Medicine, University of California, Los Angeles , CA , USA

4. Polytech Marseille, Aix Marseille University , Marseille , France

Abstract

Abstract Innate mesenchymal stem cells exhibiting multilineage differentiation and tissue (re)generative—or pathogenic—properties reside in perivascular niches. Subsets of these progenitors are committed to either osteo-, adipo-, or fibrogenesis, suggesting the existence of a developmental organization in blood vessel walls. We evaluated herein the activity of aldehyde dehydrogenase, a family of enzymes catalyzing the oxidation of aldehydes into carboxylic acids and a reported biomarker of normal and malignant stem cells, within human adipose tissue perivascular areas. A progression of ALDHLow to ALDHHigh CD34+ cells was identified in the tunica adventitia. Mesenchymal stem cell potential was confined to ALDHHigh cells, as assessed by proliferation and multilineage differentiation in vitro of cells sorted by flow cytometry with a fluorescent ALDH substrate. RNA sequencing confirmed and validated that ALDHHigh cells have a progenitor cell phenotype and provided evidence that the main isoform in this fraction is ALDH1A1, which was confirmed by immunohistochemistry. This demonstrates that ALDH activity, which marks hematopoietic progenitors and stem cells in diverse malignant tumors, also typifies native, blood vessel resident mesenchymal stem cells.

Funder

Consejo Nacional de Ciencia y Tecnología of Mexico

Maryland Stem Cell Research Fund

Britain Israel Research and Academic Exchange Partnership

British Heart Foundation

NIH

NIAMS

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

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