Limitations of tetrazolium salts in delineating infarcted brain
- 1 January 1984
- journal article
- research article
- Published by Springer Nature in Acta Neuropathologica
- Vol. 65 (2) , 150-157
- https://doi.org/10.1007/bf00690469
Abstract
Summary Tetrazolium salts, histochemical indicators of mitochondrial respiratory enzymes, have been used by some pathologists to detect infarcts in myocardium. We explored the utility of this technique in detecting experimental brain infarcts and report our findings. Infarcts were produced in cats, gerbils, and rats by unilateral temporal and permanent cerebral vessel occlusion. After various time periods the animals were killed, and their brains were reacted with 2,3,5, triphenyl, 2H-tetrazolium chloride (TTC). The experimental and contralateral hemispheres were examined by light and electron microscopy. The TTC-stained tissue was correlated with histology. In some situations the histological condition of the tissue correlated well with the TTC staining results. Brain regions supplied by temporarily occluded vessels and judged infarcted by light and electron microscopy did not stain. In these regions less than 6% of the mitochondria were intact. In brain tissue from animals with permanent vessel occlusion (no reflow) mitochondria were intact despite the fact that other cellular organelles, such as nuclei, were destroyed. TTC stained such mitochondria and as a result could not distinguish infarcted brain in complete ischemia situations (no reflow). Another draw back to this staining procedure was 36 h after infarction macrophages with intact mitochondria would replace damage neurons and be stained. Under ideal conditions though this technique can detect irreversibly damaged brain as early as 2.5 h after artery occlusion.Keywords
This publication has 37 references indexed in Scilit:
- Early phase acute myocardial infarct size quantification: Validation of the triphenyl tetrazolium chloride tissue enzyme staining techniquePublished by Elsevier ,2004
- SIGNIFICANCE OF FLUID FLOW FOR MORPHOLOGY OF ACUTE HYPOXIC‐ISCHAEMIC BRAIN CELL INJURYNeuropathology and Applied Neurobiology, 1984
- Ultrastructural, functional, and biochemical criteria for estimation of reversibility of ischemic injury: A study on the effects of global ischemia on the isolated dog heartJournal of Molecular and Cellular Cardiology, 1979
- Diffuse cerebral ischemia in the cat: III. Neuropathological sequelae of severe ischemiaAnnals of Neurology, 1979
- Diffuse cerebral ischemia in the cat: II. Regional metabolites during severe ischemia and recirculationAnnals of Neurology, 1978
- An electron microscope study of the effects of acute ischaemia in the brainCells Tissues Organs, 1978
- CELL VOLUME REGULATION IN ACUTE MYOCARDIAL ISCHEMIC INJURY*Acta Medica Scandinavica, 1976
- Macroscopic identification of early myocardial infarction by dehydrogenase alterationsJournal of Clinical Pathology, 1966
- REVERSIBLE AND IRREVERSIBLE CHANGES IN THE FINE STRUCTURE OF NERVOUS TISSUE DURING OXYGEN AND GLUCOSE DEPRIVATIONThe Journal of cell biology, 1965
- CYTOCHEMICAL DEMONSTRATION OF SUCCINIC DEHYDROGENASE BY THE USE OF A NEW p-NITROPHENYL SUBSTITUTED DITETRAZOLEJournal of Histochemistry & Cytochemistry, 1957