Dysfunctional resident lung mesenchymal stem cells contribute to pulmonary microvascular remodeling

被引:76
作者
Chow, Kelsey [1 ]
Fessel, Joshua P. [3 ]
Kaoriihida-Stansbury [4 ]
Schmidt, Eric P. [1 ]
Gaskill, Christa [3 ]
Alvarez, Diego [5 ]
Graham, Brian [1 ]
Harrison, David G. [3 ]
Wagner, David H., Jr. [1 ]
Nozik-Grayck, Eva [2 ]
West, James D. [3 ]
Klemm, Dwight J. [1 ]
Majka, Susan M. [3 ]
机构
[1] Univ Colorado Denver, Dept Med, Aurora, CO USA
[2] Univ Colorado Denver, Dept Pediat, Aurora, CO USA
[3] Vanderbilt Univ, Dept Med, Med Sch, Nashville, TN USA
[4] Univ Penn, Dept Pathol & Lab Med, Philadelphia, PA 19104 USA
[5] Univ S Alabama, Internal Med, Mobile, AL 36688 USA
关键词
endothelial cell; extracellular superoxide dismutase; myofibroblast; niche; pericytes; pulmonary arterial hypertension; resident lung mesenchymal stem cells;
D O I
10.4103/2045-8932.109912
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Pulmonary vascular remodeling and oxidative stress are common to many adult lung diseases. However, little is known about the relevance of lung mesenchymal stem cells (MSCs) in these processes. We tested the hypothesis that dysfunctional lung MSCs directly participate in remodeling of the microcirculation. We employed a genetic model to deplete extracellular superoxide dismutase (EC-SOD) in lung MSCs coupled with lineage tracing analysis. We crossed floxpsod3 and mT/mG reporter mice to a strain expressing Cre recombinase under the control of the ABCG2 promoter. We demonstrated In vivo that depletion of EC-SOD in lung MSCs resulted in their contribution to microvascular remodeling in the smooth muscle actin positive layer. We further characterized lung MSCs to be multipotent vascular precursors, capable of myofibroblast, endothelial and pericyte differentiation in vitro. EC-SOD deficiency in cultured lung MSCs accelerated proliferation and apoptosis, restricted colony-forming ability, multilineage differentiation potential and promoted the transition to a contractile phenotype. Further studies correlated cell dysfunction to alterations in canonical Wnt/beta-catenin signaling, which were more evident under conditions of oxidative stress. Our data establish that lung MSCs are a multipotent vascular precursor population, a population which has the capacity to participate in vascular remodeling and their function is likely regulated in part by the Wnt/beta-catenin signaling pathway. These studies highlight an important role for microenviromental regulation of multipotent MSC function as well as their potential to contribute to tissue remodeling.
引用
收藏
页码:31 / 49
页数:19
相关论文
共 69 条
[1]
Pericytes: Developmental, Physiological, and Pathological Perspectives, Problems, and Promises [J].
Armulik, Annika ;
Genove, Guillem ;
Betsholtz, Christer .
DEVELOPMENTAL CELL, 2011, 21 (02) :193-215
[2]
Bone Marrow Stromal Cells Attenuate Lung Injury in a Murine Model of Neonatal Chronic Lung Disease [J].
Aslam, Muhammad ;
Baveja, Rajiv ;
Liang, Olin D. ;
Fernandez-Gonzalez, Angeles ;
Lee, Changjin ;
Mitsialis, S. Alex ;
Kourembanas, Stella .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2009, 180 (11) :1122-1130
[3]
Intratracheal mesenchymal stem cell administration attenuates monocrotaline-induced pulmonary hypertension and endothelial dysfunction [J].
Baber, Syed R. ;
Deng, Weiwen ;
Master, Ryan G. ;
Bunnell, Bruce A. ;
Taylor, Bradley K. ;
Murthy, Subramanyam N. ;
Hyman, Albert L. ;
Kadowitz, Philip J. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2007, 292 (02) :H1120-H1128
[4]
Cross-talk between Wnt signaling pathways in human mesenchymal stem cells leads to functional antagonism during osteogenic differentiation [J].
Baksh, Dolores ;
Boland, Genevieve M. ;
Tuan, Rocky S. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2007, 101 (05) :1109-1124
[5]
The three R's of lung health and disease: repair, remodeling, and regeneration [J].
Beers, Michael F. ;
Morrisey, Edward E. .
JOURNAL OF CLINICAL INVESTIGATION, 2011, 121 (06) :2065-2073
[6]
Human mesenchymal stem cells promote survival of T cells in a quiescent state [J].
Benvenuto, Federica ;
Ferrari, Stefania ;
Gerdoni, Eno ;
Gualandi, Francesca ;
Frassoni, Francesco ;
Pistoia, Vito ;
Mancardi, Gianluigi ;
Uccelli, Antonio .
STEM CELLS, 2007, 25 (07) :1753-1760
[7]
Molecular profile of mouse stromal mesenchymal stem cells [J].
Chateauvieux, Sebastien ;
Ichante, Jean-Laurent ;
Delorme, Bruno ;
Frouin, Vincent ;
Pietu, Genevieve ;
Langonne, Alain ;
Gallay, Nathalie ;
Sensebe, Luc ;
Martin, Michele T. ;
Moore, Kateri A. ;
Charbord, Pierre .
PHYSIOLOGICAL GENOMICS, 2007, 29 (02) :128-138
[8]
A perivascular origin for mesenchymal stem cells in multiple human organs [J].
Crisan, Mihaela ;
Yap, Solomon ;
Casteilla, Louis ;
Chen, Chien-Wen ;
Corselli, Mirko ;
Park, Tea Soon ;
Andriolo, Gabriella ;
Sun, Bin ;
Zheng, Bo ;
Zhang, Li ;
Norotte, Cyrille ;
Teng, Pang-Ning ;
Traas, Jeremy ;
Schugar, Rebecca ;
Deasy, Bridget M. ;
Badylak, Stephen ;
Buehring, Hans-Joerg ;
Giacobino, Jean-Paul ;
Lazzari, Lorenza ;
Huard, Johnny ;
Peault, Bruno .
CELL STEM CELL, 2008, 3 (03) :301-313
[9]
Formation and Differentiation of Multiple Mesenchymal Lineages during Lung Development Is Regulated by β-catenin Signaling [J].
De Langhe, Stijn P. ;
Carraro, Gianni ;
Tefft, Denise ;
Li, Changgong ;
Xu, Xin ;
Chai, Yang ;
Minoo, Parviz ;
Hajihosseini, Mohammad K. ;
Drouin, Jacques ;
Kaartinen, Vesa ;
Bellusci, Saverio .
PLOS ONE, 2008, 3 (01)
[10]
Levels of mesenchymal FGFR2 signaling modulate smooth muscle progenitor cell commitment in the lung [J].
De langhe, Stijn P. ;
Carraro, Gianni ;
Warburton, David ;
Hajihosseini, Mohammad K. ;
Bellusci, Saverio .
DEVELOPMENTAL BIOLOGY, 2006, 299 (01) :52-62