DocumentCode
2091494
Title
Assessment of microcirculatory effects of glycine by intravital microscopy in rats
Author
Podoprigora, G.I. ; Blagosklonov, Oleg ; Angoue, O. ; Boulahdour, Hatem ; Nartsissov, Y.R.
Author_Institution
Res. Inst. of Cytochemistry & Mol. Pharmacology, Moscow, Russia
fYear
2012
fDate
Aug. 28 2012-Sept. 1 2012
Firstpage
2651
Lastpage
2654
Abstract
Experimental studies using laboratory animal models have shown a potential vasoactive effect of natural metabolites such as glycine. The present study used intravital microscopy in laboratory rat models to study the microcirculation in the brain pial and mesentery vessels. To investigate the pial microvasculature, a stereotaxis-like animal fixing device was used. The intravital microscopy unit consisted of a binocular microscope equipped with a digital photo-video camera, processor, monitor and printer. Using reflected light, a special contact lens with an amplified focus depth provided high-resolution images of nontransparent tissue objects that typically have insufficient light exposure. Glycine had a vasodilatory effect on microvessels in the rat brain and mesenterium. The diameter of pial arterioles increased after glycine application especially markedly (up to 250% of initial size). These changes were not observed when physiological saline was used. Even a very small amount of glycine (a drop on the needle) was sufficient to stop the early stages of histamine-induced blood stasis development in 3-5 s in mesenterial microvessels. The vasodilatory effect of glycine on the pial microcirculation correlates with its reported positive therapeutic effect in cerebral ischemic stroke. The ability of glycine to avoid or prevent histamine-induced microcirculatory alterations in mesenterial microvessels may have potential clinical applications.
Keywords
biomedical optical imaging; blood; blood vessels; brain; haemodynamics; haemorheology; light reflection; medical disorders; optical microscopy; amplified focus depth; binocular microscope; brain pial microcirculation; cerebral ischemic stroke; contact lens; digital photovideo camera; glycine; high-resolution images; histamine-induced blood stasis development; histamine-induced microcirculatory alterations; insufficient light exposure; intravital microscopy; laboratory animal models; light reflection; mesenterial microvessels; mesentery vessels; microcirculatory effect assessment; monitor; natural metabolites; needle; nontransparent tissue objects; physiological saline; pial arteriole diameter; printer; processor; rats; stereotaxis-like animal fixing device; therapeutic effect; time 3 s to 5 s; vasoactive effect; Blood; Brain models; Microscopy; Monitoring; Rats; Animals; Glycine; Microcirculation; Microscopy, Video; Microvessels; Rats; Tomography, Optical Coherence; Vasodilator Agents;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location
San Diego, CA
ISSN
1557-170X
Print_ISBN
978-1-4244-4119-8
Electronic_ISBN
1557-170X
Type
conf
DOI
10.1109/EMBC.2012.6346509
Filename
6346509
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