Resident cell lineages are preserved in pulmonary vascular remodeling

被引:36
作者
Crnkovic, Slaven [1 ,2 ]
Marsh, Leigh M. [1 ]
El Agha, Elie [3 ]
Voswinckel, Robert [4 ]
Ghanim, Bahil [5 ]
Klepetko, Walter [5 ]
Stacher-Priehse, Elvira [1 ,6 ]
Olschewski, Horst [7 ]
Bloch, Wilhelm [8 ]
Bellusci, Saverio [3 ]
Olschewski, Andrea [1 ,2 ]
Kwapiszewska, Grazyna [1 ,2 ]
机构
[1] Ludwig Boltzmann Inst Lung Vasc Res, Graz, Austria
[2] Med Univ Graz, Dept Physiol, Graz, Austria
[3] Justus Liebig Univ Giessen, ECCPS, German Ctr Lung Res DZL, UGMLC, Giessen, Germany
[4] Friedberg Hosp, Clin Internal Med, Friedberg, Germany
[5] Med Univ Vienna, Dept Thorac Surg, Vienna, Austria
[6] Med Univ Graz, Inst Pathol, Graz, Austria
[7] Med Univ Graz, Div Pulmonol, Dept Internal Med, Graz, Austria
[8] German Sports Univ Cologne, Cologne, Germany
基金
奥地利科学基金会;
关键词
fate mapping; pulmonary vascular remodeling; SMOOTH-MUSCLE-CELLS; MARROW-DERIVED CELLS; ARTERIAL-HYPERTENSION; MESENCHYMAL TRANSITION; HYPOXIA; LUNG; RECRUITMENT; EXPRESSION; THYMIDINE-H-3; CIRCULATION;
D O I
10.1002/path.5044
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Pulmonary vascular remodeling is the main pathological hallmark of pulmonary hypertension disease. We undertook a comprehensive and multilevel approach to investigate the origin of smooth muscle actin-expressing cells in remodeled vessels. Transgenic mice that allow for specific, inducible, and permanent labeling of endothelial (Cdh5-tdTomato), smooth muscle (Acta2-, Myh11-tdTomato), pericyte (Cspg4-tdTomato), and fibroblast (Pdgfra-tdTomato) lineages were used to delineate the cellular origins of pulmonary vascular remodeling. Mapping the fate of major lung resident cell types revealed smooth muscle cells (SMCs) as the predominant source of cells that populate remodeled pulmonary vessels in chronic hypoxia and allergen-induced murine models. Combining in vivo cell type-specific, time-controlled labeling of proliferating cells with a pulmonary artery phenotypic explant assay, we identified proliferation of SMCs as an underlying remodeling pathomechanism. Multicolor immunofluorescence analysis showed a preserved pattern of cell type marker localization in murine and human pulmonary arteries, in both donors and idiopathic pulmonary arterial hypertension (IPAH) patients. Whilst neural glial antigen 2 (chondroitin sulfate proteoglycan 4) labeled mostly vascular supportive cells with partial overlap with SMC markers, PDGFR-expressing cells were observed in the perivascular compartment. The luminal vessel side was lined by a single cell layer expressing endothelial markers followed by an adjacent and distinct layer defined by SMC marker expression and pronounced thickening in remodeled vessels. Quantitative flow cytometric analysis of single cell digests of diverse pulmonary artery layers showed the preserved separation into two discrete cell populations expressing either endothelial cell (EC) or SMC markers in human remodeled vessels. Additionally, we found no evidence of overlap between EC and SMC ultrastructural characteristics using electron microscopy in either donor or IPAH arteries. Lineage-specific marker expression profiles are retained during pulmonary vascular remodeling without any indication of cell type conversion. The expansion of resident SMCs is the major underlying and evolutionarily conserved paradigm of pulmonary vascular disease pathogenesis. (c) 2018 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland.
引用
收藏
页码:485 / 498
页数:14
相关论文
共 41 条
[1]   Dysfunctional resident lung mesenchymal stem cells contribute to pulmonary microvascular remodeling [J].
Chow, Kelsey ;
Fessel, Joshua P. ;
Kaoriihida-Stansbury ;
Schmidt, Eric P. ;
Gaskill, Christa ;
Alvarez, Diego ;
Graham, Brian ;
Harrison, David G. ;
Wagner, David H., Jr. ;
Nozik-Grayck, Eva ;
West, James D. ;
Klemm, Dwight J. ;
Majka, Susan M. .
PULMONARY CIRCULATION, 2013, 3 (01) :31-49
[2]  
Cotran RS, 1988, ENDOTHELIAL BIOL HLT, P335
[3]   Origin of neomuscularized vessels in mice exposed to chronic hypoxia [J].
Crnkovic, Slaven ;
Hrzenjak, Andelko ;
Marsh, Leigh M. ;
Olschewski, Andrea ;
Kwapiszewska, Grazyna .
RESPIRATORY PHYSIOLOGY & NEUROBIOLOGY, 2011, 179 (2-3) :342-345
[4]   Hypoxia exposure induces the emergence of fibroblasts lacking replication repressor signals of PKCζ in the pulmonary artery adventitia [J].
Das, Mita ;
Burns, Nana ;
Wilson, Shelly J. ;
Zawada, Wojciech M. ;
Stenmark, Kurt R. .
CARDIOVASCULAR RESEARCH, 2008, 78 (03) :440-448
[5]   Pulmonary artery adventitial fibroblasts cooperate with vasa vasorum endothelial cells to regulate vasa vasorum neovascularization - A process mediated by hypoxia and endothelin-1 [J].
Davie, Neil J. ;
Gerasimovskaya, Evgenia V. ;
Hofmeister, Stephen E. ;
Richman, Aaron P. ;
Jones, Peter L. ;
Reeves, John T. ;
Stenmark, Kurt R. .
AMERICAN JOURNAL OF PATHOLOGY, 2006, 168 (06) :1793-1807
[6]   Resident PW1+ Progenitor Cells Participate in Vascular Remodeling During Pulmonary Arterial Hypertension [J].
Dierick, France ;
Hery, Tiphaine ;
Hoareau-Coudert, Benedicte ;
Mougenot, Nathalie ;
Monceau, Virginie ;
Claude, Caroline ;
Crisan, Mihaela ;
Besson, Vanessa ;
Dorfmueller, Peter ;
Marodon, Gilles ;
Fadel, Elie ;
Humbert, Marc ;
Yaniz-Galende, Elisa ;
Hulot, Jean-Sebastien ;
Marazzi, Giovanna ;
Sassoon, David ;
Soubrier, Florent ;
Nadaud, Sophie .
CIRCULATION RESEARCH, 2016, 118 (05) :822-833
[7]   Progeny of Olig2-Expressing Progenitors in the Gray and White Matter of the Adult Mouse Cerebral Cortex [J].
Dimou, Leda ;
Simon, Christiane ;
Kirchhoff, Frank ;
Takebayashi, Hirohide ;
Goetz, Magdalena .
JOURNAL OF NEUROSCIENCE, 2008, 28 (41) :10434-10442
[8]   Hypoxia-induced pulmonary vascular remodeling requires recruitment of circulating mesenchymal precursors of a monocyte/macrophage lineage [J].
Frid, MG ;
Brunetti, JA ;
Burke, DL ;
Carpenter, TC ;
Davie, NJ ;
Reeves, JT ;
Roedersheimer, MT ;
van Rooijen, N ;
Stenmark, KR .
AMERICAN JOURNAL OF PATHOLOGY, 2006, 168 (02) :659-669
[9]   Endothelial to Mesenchymal Transition Contributes to Endothelial Dysfunction in Pulmonary Arterial Hypertension [J].
Good, Robert B. ;
Gilbane, Adrian J. ;
Trinder, Sarah L. ;
Denton, Christopher P. ;
Coghlan, Gerry ;
Abraham, David J. ;
Holmes, Alan M. .
AMERICAN JOURNAL OF PATHOLOGY, 2015, 185 (07) :1850-1858
[10]   Bone marrow-derived cells contribute to pulmonary vascular remodeling in hypoxia-induced pulmonary hypertension [J].
Hayashida, K ;
Fujita, J ;
Miyake, Y ;
Kawada, H ;
Ando, K ;
Ogawa, S ;
Fukuda, K .
CHEST, 2005, 127 (05) :1793-1798