scholarly journals Role of iNOS‐derived nitric oxide (NO) on hind limb ischemia/reperfusion (I/R)‐induced remote injury to the gut

2007 ◽  
Vol 21 (6) ◽  
Author(s):  
Kazuhiro Katada ◽  
Aurelia Bihari ◽  
Kenneth A Harris ◽  
Tom L Forbes ◽  
Richard F Potter ◽  
...  
2012 ◽  
Vol 32 (suppl_1) ◽  
Author(s):  
Alvaro F Manrique ◽  
Shyamal C Bir ◽  
Elvis Peter ◽  
Rui Wang ◽  
Christopher G Kevil

Introduction: Arteriogenesis is an important process involving remodeling of collateral vasculature during chronic or intermittent tissue ischemia. CSE and eNOS are the two principle enzymes for hydrogen sulfide (H 2 S) and Nitric Oxide (NO) generation. Although role of NO during arteriogenesis is partially known, the role of CSE dependent H 2 S production during arteriogenesis remains unknown. Hypothesis/objective: We sought to determine the role of CSE generated H 2 S on arteriogenesis activity of CSE knockout (CSEKO) mice compared to eNOS knock out (eNOSKO) and wild type (WT) mice during hind limb ischemia. Method: Permanent unilateral hind limb ischemia was induced in 12-week-old CSE KO, eNOS KO, and WT mice and studied until day 21. Tissue perfusion was measured using indicator dye blush rates with the SPY Imager system over time along with laser doppler flowmetry. Temporal development of arterial remodeling was also observed using SPY imaging, and vessel number, length and branch morphometry determined over time. Microfil vascular casting was performed to further examine the number of collaterals in ischemic muscles at the end of the study. Histological arteriogenesis was evaluated by vascular smooth muscle actin (SMA) positive vessel density with dual fluorescence staining of anti-CD31 (endothelial positive cell) and anti-α-SMA antibodies. Results: Tissue perfusion was significantly impaired in CSE KO and eNOS KO mice compared to WT mice at different time points throughout the study period. Both CSE KO and eNOS KO mice showed significantly less blush rate than WT mice. SMA positive vessel density was also significantly less in CSE KO and eNOS KO mice than that in WT mice. Conclusion: CSE generated H 2 S and eNOS derived NO play important roles in regulating ischemic arterial remodeling as demonstrated in our studies. The mechanism of impaired arteriogenesis in both mutant mice and the interaction between these two gasotransmitters has yet to be elucidated.


2019 ◽  
Vol 302 (11) ◽  
pp. 2070-2081 ◽  
Author(s):  
Marwa A. A. Ibrahim ◽  
Walaa M. Elwan ◽  
Hanan A. Elgendy

PLoS ONE ◽  
2014 ◽  
Vol 9 (4) ◽  
pp. e95720 ◽  
Author(s):  
Mohamad Masoumy ◽  
Jack Yu ◽  
Jun Yao Liu ◽  
Nathan Yanasak ◽  
Christopher Middleton ◽  
...  

2006 ◽  
Vol 20 (5) ◽  
Author(s):  
Kazuhiro Katada ◽  
Aurelia Bihari ◽  
Big Wei Sun ◽  
Kenneth A. Harris ◽  
Richard F. Potter ◽  
...  

Circulation ◽  
2014 ◽  
Vol 130 (suppl_2) ◽  
Author(s):  
Sebastian Cremer ◽  
Anne Klotzsche-von Ameln ◽  
Alessia Orlandi ◽  
Irina Korovina ◽  
Bettina Gercken ◽  
...  

Developmental endothelial locus-1 (Del-1) is an endothelial cell-derived secreted protein circulating in blood and associated with the cell surface and the extracellular matrix. As we previously demonstrated, Del-1 restricts leukocyte recruitment by inhibiting the β2-integrin, LFA-1. Leukocytes and progenitor cells (PC) may contribute to angiogenesis. The role of endogenous Del-1 in angiogenesis is elusive. We found, that physiological angiogenesis of the developing retina was not affected in the Del-1-/- mice compared to the wildtype (WT) mice. Surprisingly, Del-1-/- mice displayed a significantly increased angiogenic response compared to WT mice after induction of hind limb ischemia (144 ± 6 % increase of capillary density) and retinal ischemia (retinopathy of prematurity model) suggesting that endogenous Del-1 is an inhibitor of ischemia-induced neovascularization. Silencing of Del-1 with siRNA did not affect the angiogenic sprouting of endothelial cell (EC) spheroids, indicating that Del-1 blocks angiogenesis in a non-endothelial cell autonomous pathway. Soluble Del-1 blocked the adhesion of inflammatory cells on EC monolayers. In line with these results, ischemic muscles and ischemic retinae from Del-1-/- mice displayed an enhanced infiltration with inflammatory cells compared to the WT mice. Since Del-1 blocks inflammatory cell homing by inhibiting the leukocytic LFA-1-integrin, we addressed the role of the Del-1/LFA-1-integrin interaction on the inhibitory function of endogenous Del-1 on angiogenesis. Indeed, Del-1/LFA-1-double deficiency reversed the pro-angiogenic phenotype of the Del-1-/- mice to the level of WT mice in the model of hind limb ischemia. Thus, the inhibitory role of Del-1 on neovascularization is mediated by the interaction of Del-1 with the LFA-1-integrin. Moreover, Del-1-deficiency led to an increased homing of intravenously injected murine fluorescence-labeled WT Lin- BM PC in ischemic muscles in comparison to WT mice after the induction of hind limb ischemia. Taken together, Del-1 acts as a negative regulator of ischemia-induced angiogenesis by interacting with the LFA-1-integrin expressed in hematopoietic cells, thereby inhibiting the homing of hematopoietic cells to ischemic tissues.


2008 ◽  
Vol 48 (3) ◽  
pp. 701-708 ◽  
Author(s):  
Jeanwan Kang ◽  
Hassan Albadawi ◽  
Virendra I. Patel ◽  
Thomas A. Abbruzzese ◽  
Jin-Hyung Yoo ◽  
...  

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