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Far-red tracer analysis of traumatic cerebrovascular permeability.

The Journal of surgical research (2014-06-08)
George P Liao, Scott D Olson, Daniel J Kota, Robert A Hetz, Philippa Smith, Supinder Bedi, Charles S Cox
ZUSAMMENFASSUNG

Blood brain barrier (BBB) compromise is a key pathophysiological component of secondary traumatic brain injury characterized by edema and neuroinflammation in a previously immune-privileged environment. Current assays for BBB permeability are limited by working size, harsh extraction processes, suboptimal detection via absorbance, and wide excitation fluorescence spectra. In this study, we evaluate the feasibility of Alexa Fluor 680, a far-red dye bioconjugated to dextran, as an alternative assay to improve resolution and sensitivity. Alexa Fluor was introduced intravenously on the day of sacrifice to three groups: sham, controlled cortical impact (CCI), and CCI treated with a cell based therapy known to reduce BBB permeability. The brains were sectioned coronally and imaged using an infrared laser scanner to generate intensity plot profiles as well as signal threshold images to distinguish regions with varying degrees of permeability. Linear plot profile analysis demonstrated greater signal intensity from CCI than treated rats at corresponding injury depths. Threshold analysis identified rims of signal at low + narrow threshold ranges. The integrated signals from a treatment group known to preserve the BBB were significantly less than the groups with CCI injury alone. There was no significant difference at high + wide signal intensity threshold ranges. Alexa Fluor 680 infrared photodetection and image analysis can aid in detecting differential degrees of BBB permeability after traumatic brain injury and maybe particularly useful in demonstrating BBB preservation of at-risk regions in response to therapeutic agents.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr ~70,000
Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr ~40,000
Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr 450,000-650,000
Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr ~6,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 1,500,000-2,800,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 35,000-45,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 9,000-11,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 60,000-76,000
Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr ~100,000
Supelco
Dextran, analytical standard, 25,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 150,000
Supelco
Dextran, analytical standard, 5,000
Supelco
Dextran aus Leuconostoc mesenteroides, analytical standard, suitable for gel permeation chromatography (GPC), Mw 670,000
Supelco
Dextran, analytical standard, suitable for gel permeation chromatography (GPC), Set Mp 1,000-400,000
Supelco
Dextran, analytical standard, 670,000
Supelco
Dextran, analytical standard, 150,000
Supelco
Dextran, analytical standard, 1,000
Supelco
Dextran, analytical standard, 270,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, Mr ~200,000
Supelco
Dextran, analytical standard, 12,000
Sigma-Aldrich
Dextran aus Leuconostoc spp., Mr 15,000-25,000
Sigma-Aldrich
Dextran -Lösung aus Leuconostoc mesenteroides, 20 % (w/w) (Autoclaved)
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, Mr ~60,000
Supelco
Dextran, analytical standard, 410,000
Sigma-Aldrich
Dextran, enzymatic synth.
Supelco
Dextran, analytical standard, 50,000
Supelco
Dextran aus Leuconostoc mesenteroides, analytical standard, suitable for gel permeation chromatography (GPC), Mw 5,000
Supelco
Dextran, analytical standard, 80,000
Supelco
Dextran aus Leuconostoc mesenteroides, analytical standard, Mw 1,000
Sigma-Aldrich
Dextran aus Leuconostoc mesenteroides, average mol wt 48,000-90,000