The Morphological Basis for Altered Endothelial Permeability in Atherosclerosis

1977 ◽  
pp. 969-974 ◽  
Author(s):  
P. Constantinides
Author(s):  
G.E. Adomian ◽  
L. Chuck ◽  
W.W. Pannley

Sonnenblick, et al, have shown that sarcomeres change length as a function of cardiac muscle length along the ascending portion of the length-tension curve. This allows the contractile force to be expressed as a direct function of sarcomere length. Below L max, muscle length is directly related to sarcomere length at lengths greater than 85% of optimum. However, beyond the apex of the tension-length curve, i.e. L max, a disparity occurs between cardiac muscle length and sarcomere length. To account for this disproportionate increase in muscle length as sarcomere length remains relatively stable, the concept of fiber slippage was suggested as a plausible explanation. These observations have subsequently been extended to the intact ventricle.


2019 ◽  
Vol 19 (7) ◽  
pp. 913-920
Author(s):  
Fabiani L. R. Beal ◽  
Pedro R. Beal ◽  
Juliana R. Beal ◽  
Natan Carvalho-Neves ◽  
Octávio L. Franco ◽  
...  

Background: Arginine is considered a semi-essential amino acid in healthy adults and the elderly. This amino acid seems to improve the immune system, stimulate cell growth and differentiation, and increase endothelial permeability, among other effects. For those reasons, it has been theorized that arginine supplementation may be used as an adjuvant to conventional cancer therapy treatments. Objective: This review aims to evaluate the existing knowledge of the scientific community on arginine supplementation in order to improve the efficacy of current cancer treatment. Results: Despite the continued efforts of science to improve treatment strategies, cancer remains one of the greatest causes of death on the planet in adults and elderly people. Chemo and radiotherapy are still the most effective treatments but at the cost of significant side effects. Conclusion: Thus, new therapeutic perspectives have been studied in recent years, to be used in addition to traditional treatments or not, seeking to treat or even cure the various types of cancer with fewer side effects.


2000 ◽  
Vol 28 (9) ◽  
pp. 3161-3165 ◽  
Author(s):  
Peter T. Reid ◽  
Seamas C. Donnelly ◽  
Ian R. MacGregor ◽  
Ian S. Grant ◽  
Evan Cameron ◽  
...  

2021 ◽  
Vol 22 (4) ◽  
pp. 2157
Author(s):  
Anila Duni ◽  
Vassilios Liakopoulos ◽  
Vasileios Koutlas ◽  
Charalampos Pappas ◽  
Michalis Mitsis ◽  
...  

The damage of the endothelial glycocalyx as a consequence of ischemia and/or reperfusion injury (IRI) following kidney transplantation has come at the spotlight of research due to potential associations with delayed graft function, acute rejection as well as long-term allograft dysfunction. The disintegration of the endothelial glycocalyx induced by IRI is the crucial event which exposes the denuded endothelial cells to further inflammatory and oxidative damage. The aim of our review is to present the currently available data regarding complex links between shedding of the glycocalyx components, like syndecan-1, hyaluronan, heparan sulphate, and CD44 with the activation of intricate immune system responses, including toll-like receptors, cytokines and pro-inflammatory transcription factors. Evidence on modes of protection of the endothelial glycocalyx and subsequently maintenance of endothelial permeability as well as novel nephroprotective molecules such as sphingosine-1 phosphate (S1P), are also depicted. Although advances in technology are making the visualization and the analysis of the endothelial glycocalyx possible, currently available evidence is mostly experimental. Ongoing progress in understanding the complex impact of IRI on the endothelial glycocalyx, opens up a new era of research in the field of organ transplantation and clinical studies are of utmost importance for the future.


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