| Literature DB >> 26706246 |
Gomathi Ramakrishnan1,2, Bin Dong1, Kathryn G Todd1,2, Ashfaq Shuaib2,3, Ian R Winship4,5.
Abstract
Cerebral collateral circulation provides alternative vascular routes for blood to reach ischemic tissues during stroke. Collateral therapeutics attempt to augment flow through these collateral channels to reduce ischemia and brain damage during acute ischemic stroke. Transient aortic occlusion (TAO) has pre-clinical data suggesting that it can augment collateral blood flow and clinical data suggesting a benefit for patients with moderate cortical strokes. By diverting blood from the periphery towards the cerebral circulation, TAO has the potential to augment primary collateral flow at the circle of Willis and thereby improve outcome even during large, hemispheric strokes. Using proximal middle and anterior cerebral artery occlusion in rats, we demonstrate that TAO reduces mortality and improves collateral blood flow in severely ischemic animals. As such, TAO may be an effective therapy to reduce early mortality during severe ischemia associated with proximal occlusions.Entities:
Keywords: Cerebral blood flow; Collateral blood flow; Collateral therapeutics; Ischemia; Neuroprotection; Stroke
Mesh:
Year: 2015 PMID: 26706246 PMCID: PMC4770060 DOI: 10.1007/s12975-015-0443-5
Source DB: PubMed Journal: Transl Stroke Res ISSN: 1868-4483 Impact factor: 6.829
Fig. 1a Laser speckle contrast imaging (LSCI) data showing changes in blood flow associated with proximal middle cerebral artery occlusion (MCAo) and treatment with transient aortic occlusion (TAO). Images show blood flow recorded at baseline (pre-MCAo), post-MCAo, 15 min after TAO, and 75 min after TAO. Anastomoses between the MCA and anterior cerebral artery (ACA) are apparent after MCAo. An increase in speckle contrast intensity post-MCAo reflects a decrease in blood flow (ischemia), while the darker images after TAO demonstrate increased blood flow after treatment. b Representative LSCI data from a sham-TAO animal showing a more moderate ischemia (less intense speckle contrast, but clear formation of anastomoses indicating MCAo) and little change in blood flow after sham. c Pseudo-colored LSCI maps of blood flow (with cooler colors reflecting greater blood flow, warmer colors showing lower flow) showing increases in flow through MCA segments downstream of ACA connections (see white arrows) after TAO (note increased diameter and darker colors of identified MCA segments). d Contigency table illustrating reduced mortality prior to imaging completion (within 3 h of MCAo onset) in animals treated with TAO as opposed to sham-TAO. e τ /τ values reflecting changes in blood flow velocity relative to baseline show that TAO animals that survived through imaging had a trend towards lower blood flow than did sham-TAO animals that survived. Sham-TAO animals that died within 3 h of MCAo onset had more severe ischemia (reduced τ /τ ), suggesting that lower mean τ /τ in TAO animals results from reduced mortality in severely ischemic animals. Scale bars, 1 mm
Physiological parameters
| Oxygen saturation | Heart rate | Breath rate | ||
|---|---|---|---|---|
| Pre-MCAo | ||||
| TAO | Mean | 98.83 | 366.75 | 100.43 |
| S.E.M | 0.38 | 10.69 | 5.92 | |
| Sham—survived | Mean | 99.09 | 386.76 | 97.55 |
| S.E.M | 0.34 | 20.66 | 6.80 | |
| Sham—died | Mean | 99.45 | 365.26 | 85.22 |
| S.E.M | 0.05 | 22.84 | 7.61 | |
| Post-MCAo | ||||
| TAO | Mean | 98.84 | 389.54 | 96.53 |
| S.E.M | 0.14 | 11.91 | 6.56 | |
| Sham—survived | Mean | 99.18 | 414.15 | 89.58 |
| S.E.M | 0.22 | 20.28 | 3.22 | |
| Sham—died | Mean | 99.56 | 394.81 | 86.03 |
| S.E.M | 0.05 | 22.84 | 7.61 | |
| Post-TAO or sham | ||||
| TAO | Mean | 95.98 | 404.40 | 96.99 |
| S.E.M | 0.93 | 13.15 | 5.68 | |
| Sham—survived | Mean | 98.20 | 381.01 | 94.99 |
| S.E.M | 1.08 | 31.18 | 8.85 | |
Multivariate analyses of physiological parameters monitored via pulse oximetry did not reveal any differences in oxygen saturation, heart rate, or breath rate that could account for differences in early mortality
Fig. 2a, b Scatter plots showing τ /τ values measured in distal MCA segments or surface veins, respectively, for individual rats after middle cerebral artery occlusion (MCAo) and transient aortic occlusion (TAO) or sham-TAO. The horizontal line denotes the mean. While multivariate ANOVA did not identify a significant main effect, significant increases in blood flow from post-MCAo values were observed in some (5/9) TAO-treated rats. No comparable changes in flow were observed in sham-TAO rats. c, d Diameter of distal MCA segments and surface veins, respectively, measured 75 min after cessation of TAO or Sham-TAO. # denotes a significant difference from a hypothetical (normalized) baseline value of 1.0 on a single sample t test. e, f A variance-stabilizing transformation was achieved by performing a log transform of τ /τ values. e shows a clear separation among rats that responded to TAO with an increase in τ /τ in distal MCA segments (+, denoted by dashed oval) and rats that did not respond to TAO. f Multivariate ANOVA detected a significant effect of group on log(τ /τ ) when rats were categorized as TAO “responding” or “non-responding” (i.e., rats that exhibited a clear increase in MCA flow after TAO vs. rats with no significant change in MCA flow) or sham-TAO. **** denotes significant (P < .0001) Holm-Sidak post hoc comparisons. g, h τ /τ values from TAO responders and non-responders, respectively, showing that TAO responders had severe ischemia prior to treatment that was normalized near baseline values by TAO (whereas TAO non-responders had less severe ischemia and no change due to treatment). i Representative H&E-stained tissue sections showing demarcation of early infarct from healthy tissue (black arrows, distances from Bregma shown below images). j Pooling τ /τ values across treatment groups, a clear inverse relationship between amount of blood flow (relative to baseline) in distal MCA segments (measured 75 min after TAO or sham-TAO, 2 h after MCAo onset) and the volume of early infarct detected 3 h after MCAo onset