Ex Vivo Visualization and Analysis of the Muscle Stem Cell Niche

Author(s):  
Aviva J. Goel ◽  
Robert S. Krauss
Author(s):  
Omid Mashinchian ◽  
Addolorata Pisconti ◽  
Emmeran Le Moal ◽  
C. Florian Bentzinger

Blood ◽  
1998 ◽  
Vol 92 (12) ◽  
pp. 4641-4651 ◽  
Author(s):  
Pankaj Gupta ◽  
Theodore R. Oegema ◽  
Joseph J. Brazil ◽  
Arkadiusz Z. Dudek ◽  
Arne Slungaard ◽  
...  

Abstract Stem cell localization, conservation, and differentiation is believed to occur in niches in the marrow stromal microenvironment. Our recent observation that long-term in vitro human hematopoiesis requires a stromal heparan sulfate proteoglycan (HSPG) led us to hypothesize that such HSPG may orchestrate the formation of the stem cell niche. We compared the structure and function of HS from M2-10B4, a hematopoiesis-supportive cell line, with HS from a nonsupportive cell line, FHS-173-We. Long-term culture-initiating cell (LTC-IC) maintenance was enhanced by PG from supportive cells but not by PG from nonsupportive cells (P < .005). The supportive HS were significantly larger and more highly sulfated than the nonsupportive HS. Specifically, supportive HS contained higher 6-O-sulfation on the glucosamine residues. In agreement with these observations, purified 6-O-sulfated heparin and highly 6-O-sulfated bovine kidney HS similarly maintained LTC-IC. In contrast, completely desulfated heparin, N-sulfated heparin, and unmodified heparin did not support LTC-IC maintenance. Moreover, the supportive HS promoted LTC-IC maintenance but not differentiation of CD34+/HLA-DR−cells into colony-forming cells (CFCs) and mature blood cells. The supportive HS but not the nonsupportive HS bound both cytokines and matrix components critical for hematopoiesis, including interleukin-3 (IL-3), macrophage inflammatory protein-1 (MIP-1), and thrombospondin (TSP). Significantly more CD34+ cells adhered directly to immobilized O-sulfated heparin than to N-sulfated or desulfated heparin. Thus, hematopoiesis-supportive stromal HSPG possessing large, highly 6-O-sulfated HS mediate the juxtaposition of hematopoietic progenitors with stromal cells, specific growth-promoting (IL-3) and growth-inhibitory (MIP-1 and platelet factor 4 [PF4]) cytokines, and extracellular matrix (ECM) proteins such as TSP. We conclude that the structural specificity of stromal HSPG that determines the selective colocalization of cytokines and ECM components leads to the formation of discrete niches, thereby orchestrating the controlled growth and differentiation of stem cells. These findings may have important implications for ex vivo expansion of and gene transfer into primitive hematopoietic progenitors.


2017 ◽  
Vol 145 ◽  
pp. S173
Author(s):  
Meryem Baghdadi ◽  
David Castel ◽  
So-ichiro Fukada ◽  
David Birk ◽  
Frederic Relaix ◽  
...  

2011 ◽  
Vol 15 (10) ◽  
pp. 2269-2272 ◽  
Author(s):  
Florina M. Bojin ◽  
Oana I. Gavriliuc ◽  
Mirabela I. Cristea ◽  
Gabriela Tanasie ◽  
Carmen S. Tatu ◽  
...  

2021 ◽  
Vol 1 (10) ◽  
Author(s):  
Svenja C. Schüler ◽  
Simon Dumontier ◽  
Jonathan Rigaux ◽  
C. Florian Bentzinger

Circulation ◽  
2008 ◽  
Vol 118 (suppl_18) ◽  
Author(s):  
Nalini M Rajamannan

Bicuspid aortic valve disease is the most common congenital cardiac malformation and indication for surgery for aortic valve patients. The age of onset for the development of stenosis is earlier in bicuspid aortic valves than tricuspid aortic valves. Understanding the cellular mechanisms of this valve lesion, will help to develop novel approaches towards slowing disease progression. This study hypothesizes that bicuspid aortic valve disease develops secondary to a tissue stem cell niche to activate a cross-talk mechanism which induces Notch1 cleavage and Lrp5 mediated bone formation specific to the bicuspid aortic valve. Human ex vivo bicuspid valves versus control aortic valves were tested for Notch1 expression by RTPCR, Western Blot and Immunohistochemistry. eNOS null bicuspid mice: control (n=20), cholesterol (n=20), cholesterol + Atorvastatin (n=20), were tested for the development of aortic stenosis by Visual Sonics Echo, Immunohistochemistry for Notch1, Wnt, Lrp5, Osteocalcin, PCNA and RTPCR for Notch1, Lrp5, Cbfa1, Osteocalcin. In vitro studies were performed to characterize Wnt secretion from aortic valve endothelial cells and gene expression for Notch1, Lp5 and osteocalcin from the valve myofibroblast cells. This study characterizes the secretion of Wnt3a (>300-fold, p<0.01) from aortic valve endothelium in the presence of abnormal nitric oxide regulation and lipids as measured by eNOS enzymatic activity and tissue nitrite levels. Osteoblastogenesis in the adjacent myofibroblast cell is activated via Notch1 cleavage(p<0.001) and upregulation of the Wnt3a/Lrp5 receptor. Human ex vivo valves express Notch1 cleavage as compared to normal valves from heart transplant(p<0.01). Cholesterol treated eNOS mice develop severe stenosis with cleavage of Notch1, increase in Lrp5, Wnt3a, cyclin, Cbfa1, and Osteopontin,(3-fold increase(p<0.01) which was not present in the controls and normalized in the statin treated valves. Targeting the Notch1/Wnt3a/Lrp5 pathway in bicuspid valvular calcification presents a novel approach towards treating this disease. The importance of this cross talk mechanism is demonstrated in three models of aortic valve disease and will have important clinical implications. This research has received full or partial funding support from the American Heart Association, AHA National Center.


2010 ◽  
Vol 224 (3) ◽  
pp. 807-816 ◽  
Author(s):  
Young-Il Yang ◽  
Hyeong-In Kim ◽  
Min-Young Choi ◽  
Sung-Hee Son ◽  
Min-Jeong Seo ◽  
...  

Aging Cell ◽  
2008 ◽  
Vol 7 (4) ◽  
pp. 590-598 ◽  
Author(s):  
Suchitra D. Gopinath ◽  
Thomas A. Rando

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