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Biomedical subjects

M S Cannon

Publications and source records attributed to M S Cannon.

At least 19 recordsLinked to original sources

The leukocytes of the roughtail gecko Cyrtopodion scabrum: a bright-field and phase-contrast study.

The morphology of the peripheral blood leukocytes of the roughtail gecko, Cyrtopodion scrabum, is carefully described in Wright-Giemsa and toluidine-blue-stained blood films, and in the living condition by phase-contrast microscopy, using supravitally stained preparations. Mature eosinophils, basophils and small lymphocytes commonly occur in the blood, while monocytes are rarely seen. In addition, macrophages are occasionally encountered, but neutrophils cannot be observed. Developmental stages in eosinophil and basophil differentiation can be seen. This study serves as a basis for the cytochemical localization of substances within these blood cells.

Animals↗

Evaluation of hypercholesterol diet-induced changes in viscoelastic properties of carotid circulation in pigs.

Measurements of pulsatile pressure and flow at the input of the left and right carotid arteries and a new lumped parameter model were used to quantify changes in the overall dynamic mechanical properties of the carotid circulation between five control diet-fed pigs and five pigs fed a hyperlipidemic diet for 16 wk. The model represents the portion of the circulation supplied by either the left or the right carotid artery and is characterized by five parameters: peripheral resistance (Rp), an overall inertance (L), and an overall frequency-dependent compliance constituted by a capacitor C (static compliance) in series with a Maxwell section, i.e., a capacitor Cd, in parallel with a resistor Rd. Rp was calculated as the ratio between mean pressure (P) and mean flow (Q). The other four parameters were estimated by fitting measured to model predicted flows. The average static compliance was reduced by 40% (P = 0.01) between normal (P = 62.0 +/- 4.3 mmHg) and hyperlipidemic diet-fed pigs (P = 62.7 +/- 4.7 mmHg). A significant reduction in the overall cross-sectional area was inferred from a 53% increase (P = 0.05) in L, whereas resistance vessel tone was unchanged as judged from estimates of Rp. No signs of occlusive disease were found in any of the animals.

Animals↗

Pathophysiological consequences of atherosclerosis extend into the coronary microcirculation. Restoration of endothelium-dependent responses by L-arginine.

The goals of this study were 1) to quantitate the effects of atherosclerosis on physiological and pharmacological endothelium-dependent vasoactive responses in coronary arterioles downstream from arterial lesions and 2) to determine if administration of L-arginine, the precursor for endothelium-derived was induced in pigs, and vasomotor responses of isolated, cannulated coronary arterioles (30-70 microns in diameter) were assessed by measuring diameter changes in vitro. To assess pharmacological alterations of endothelium-dependent responses, dose-response curves were constructed to ADP, serotonin, and histamine. To assess physiological alterations in endothelial function, different flow rates were established across the vessel. Arteriolar diameters were measured in vessels from normal and atherosclerotic pigs under control conditions, after administration of L-arginine, and after endothelial denudation. In arterioles from normal pigs, administration of serotonin, histamine, or ADP produced dose-dependent vasodilation, which was abolished by endothelial denudation. In arterioles from atherosclerotic pigs, administration of histamine, serotonin, and ADP produced dilation at only the highest doses (10(-6)-10(-7) M), and the extent of dilation was only 20-30% of that observed in arterioles from normal pigs. Initiation of flow also produced vasodilation in arterioles from normal pigs that was completely abolished after endothelial denudation. In arterioles from atherosclerotic pigs, flow-induced responses were absent. These abnormal physiological and pharmacological responses (i.e., blunted vasodilation to pharmacological stimulation and to flow) were restored after administration of L-arginine for 40 minutes. The vascular responses after administration of L-arginine were not different from those observed under control conditions in arterioles from normal pigs. In addition, L-arginine did not restore vasodilation to the endothelium-dependent agonists in denuded segments. From these data in arterioles downstream from atherosclerotic lesions, we conclude that 1) the ED50 and maximal responses of endothelium-dependent vasodilation to ADP, histamine, and serotonin are attenuated; 2) the physiological response to flow, that is, flow-mediated endothelium-dependent vasodilation, is absent; and 3) the abnormality in arteriolar responsiveness during large vessel disease involves an impairment of the synthesis and/or release of endothelium-derived relaxing factor.

Animals↗

Iron pyronine and alcian blue for staining acid mucin in plastic-embedded sections.

Iron pyronine Y and Alcian blue demonstrated sulfated and nonsulfated acid mucin, respectively, in plastic-embedded sections. Safran used in combination with these two dyes stained collagen and some reticulum fibers. Sulfated acid mucin was red, while nonsulfated acid mucin stained blue; collagen appeared yellow to greenish yellow. The iron pyronine Y-Alcian blue-safran staining method, when used as in the present article, produces excellent cellular visualization of sulfated and nonsulfated acid mucin.

Alcian Blue↗

Tyrosine hydroxylase immunochemistry and quantitative light microscopic studies of the mesolimbic dopamine system in rat brain: effects of chronic methamphetamine administration.

Long-term treatment of rats with methamphetamine (20 mg/kg, IP, every 12 hours for 10 days) resulted in a large decrease in tyrosine hydroxylase staining axons and terminal boutons in the nucleus accumbens and frontal cortex, as well as the ventral tegmental area of the midbrain, when examined 60 days following termination of the drug treatment regimen. Quantitative analysis showed a 71 and 78% decrease in tyrosine hydroxylase staining processes in the nucleus accumbens and frontal cortex, respectively, and a 90% decrease in tyrosine hydroxylase positive material in the ventral tegmental area. Thus, tyrosine hydroxylase enzyme in both the cell bodies of the midbrain ventral tegmental area as well as in the nerve terminals in post-synaptic target regions of the forebrain is depleted by chronic methamphetamine administration.

Animals↗

Mesencephalic arteriolar and neuronal metabolic profiles from fresh and in vitro incubated tissue sections in the mouse: a histochemical approach.

Neuronal perikarya and arterioles of slices of mouse midbrain were examined histochemically to determine their metabolic profiles. No differences in reactivities of key metabolic enzymes were observed between fresh 400-micron tissue sections and sections undergoing in vitro incubation for 4 h at 35 degrees C. Both neurons and arterioles appear capable of aerobic and anaerobic metabolism, while fatty acid utilization is limited. An operative hexose-monophosphate shunt occurs in midbrain neurons and arterioles. These data strongly suggest that electrophysiological and neurochemical studies using the in vitro preparation yield similar data to those obtained from fresh tissue.

Animals↗

A histochemical examination of the metabolic profiles of rat ventral tegmental area and substantia nigra arterioles.

To determine the metabolic profiles of arterioles of the rat ventral tegmental area and zona compacta and zona reticulata of the substantia nigra (SN), the distribution of selected enzymes, or by-products, of key metabolic pathways were examined histologically. Arterioles of all three regions expressed the enzymes required for aerobic and anaerobic metabolism. However, the relative abundance of the enzymes and byproducts suggests a lower metabolic capacity for the SN than the ventral tegmentum, while lipid catabolism in both regions appears non-operative. Moreover, the larger ventral tegmental arterioles possess a greater potential for nucleic acid and protein synthesis. Together, these results suggest the larger ventral tegmental arterioles possess a greater capacity for proliferation and repair.

Animals↗

Zonal analysis of metabolic profiles of articular-epiphyseal cartilage chondrocytes: a histochemical study.

Articular-epiphyseal cartilage from the femur of New Zealand rabbits was subjected to histochemistry for determination of the presence of metabolic enzymes along its zonal stratification. Glycolytic enzymes were strongly reactive in all of the zones. Krebs cycle enzymes, enzymes of the hexose monophosphate shunt and the respiratory chain enzymes showed a progressive increase in reactivity from the tangential zone through the top half of the epiphyseal zone. Indicators of lipid metabolism were fairly high in all regions of the cartilage.

Animals↗

Effects of methamphetamine on arterioles of rat caudate nucleus and midbrain.

No differences in arteriolar metabolic profiles from rat caudate nucleus, ventral tegmental area or substantia nigra were observed between saline-control and methamphetamine HCl-treated (20 mg/kg, i.p. twice daily for 10 consecutive days) animals. Arterioles from the above regions of forebrain and midbrain are metabolically active vessels with a capacity for aerobic and anaerobic metabolism. These results suggest that a high dose of methamphetamine does not alter cerebral arteriolar metabolism in the areas examined.

Animals↗

A metabolic profile of the rat caudate microvasculature: a histochemical study.

Arterioles of the rat caudate nucleus were examined histochemically to determine their metabolic profile. These microvessels appear capable of aerobic and anaerobic metabolism with a potential for nucleic acid and protein synthesis. Little intramural lipid storage occurs and any fatty acids utilized are provided via the blood supply. Likewise, glycogen is not seen in the arteriolar wall and may be rapidly turned over as a substrate for anaerobic metabolism.

Animals↗

Identification of dopamine-containing cell bodies in the dorsal and median raphe nuclei of the rat brain using tyrosine hydroxylase immunochemistry.

Using immunohistochemical methods with antibodies specific to tyrosine hydroxylase, we examined the distribution of dopaminergic cells in the dorsal and median raphe nucleus of the rat brain. Although dopamine-containing cell bodies were previously thought to be almost exclusively confined to the substantia nigra pars compacta, ventral tegmental area, and tuberoinfundibular system, we found numerous cell bodies which stained for tyrosine hydroxylase in the dorsal and median raphe nuclei.

Animals↗

Effects of chronic methamphetamine on the nigral-striatal dopamine system in rat brain: tyrosine hydroxylase immunochemistry and quantitative light microscopic studies.

Chronic administration of methamphetamine (20 mg/kg, IP, every 12 hours for 10 days) produced a large decrease in tyrosine hydroxylase staining axons and terminal boutons in the caudate nucleus in rats when examined 60 days following the final methamphetamine injection. This effect was quantitated using the Leitz Data Acquisition and Display System (DADS) revealing that there was a 74% decrease in tyrosine hydroxylase positive processes in the caudate nucleus. Furthermore, this treatment also produced a large decrease in the number of tyrosine hydroxylase positive staining neuronal perikarya in the pars compacta of the substantia nigra. This effect was also quantitative using the Leitz-(DADS) system, revealing a decrease of 89% in tyrosine hydroxylase positive material. These data demonstrate that chronic administration of methamphetamine produces a long-term loss of tyrosine hydroxylase enzyme in both the cell bodies of the substantia nigra and the nerve terminals in the caudate nucleus. Whether this effect is due to the degeneration of the neurons or some metabolic effect remains to be determined.

Animals↗

Metabolism of coronary vasculature in euthyroid, hyperthyroid and recovering hyperthyroid rats: a histochemical study.

Coronary arteries and arterioles from normal rats, from rats made hyperthyroid by administration of desiccated thyroid for 10 weeks, and from hyperthyroid rats which were then fed normal control diets for 10 weeks, were examined histochemically to determine the activity of key metabolic pathways. The primary aims of this study were to determine if the alterations in particular enzyme and substrate activities that occur in thyrotoxic rat myocardium, arteries and arterioles were reversible and would return to normal levels following cessation of the hyperthyroid state. Our results suggest that hyperthyroid rats, even after 10 weeks on the normal diet, still show some compromise in arteriolar aerobic metabolism in favor of anaerobic pathways, while coronary arteries still demonstrate little glucose-6-phosphate dehydrogenase activity. Myocardial metabolic activity approximates that of normal control animals by the end of the 10th week on the normal diet.

Animals↗

A rapid histological technique for localizing recording sites in single unit electrophysiological studies in vitro.

Recording sites from single unit electrophysiological studies in vitro can be precisely localized by first marking the recording locus either by depositing Fast Green dye (for micropipette studies) or electrolytic lesioning (for metal electrode studies). The slices are then fixed in paraformaldehyde, placed in sucrose and attached to a coverslip by the surface tension of water. The slices are attached to a base brain in a cryostat so that the sections can be cut at the proper angle. The slices are then stained using a Nissl staining protocol. This procedure provides intact sections from small tissue slices with the recording locus clearly demarcated.

Central Nervous System↗

A histochemical study of the metabolism of rat renal arteries and arterioles.

A histochemical study of the metabolism of rat renal arteries and arterioles. Rat renal arteries and arterioles were examined histochemically to determine their metabolic profiles. Succinate, malate and NAD-isocitrate dehydrogenase, cytochrome oxidase and ubiquinone were assessed to determine aerobic metabolism. Glucose-6-phosphate dehydrogenase and DPN diaphorase were evaluated to determine hexose-monophosphate-shunt activity. Anaerobic metabolism was evaluated via lactate dehydrogenase, and the substrate, glycogen. Gomori's lipase, beta-hydroxybutyrate dehydrogenase and amounts of neutral fat and free fatty acids were assessed as indicators of lipid utilization. Myosin ATPase activity was evaluated as an index of ATP utilization for contraction. Deoxyribonucleic and ribonucleic acids were appraised as indicators of protein synthesis. In general, the oxidative enzymes and myosin ATPase demonstrate considerable activity in renal arteries and arterioles which suggests aerobic metabolism and ATP usage. Renal arteries and arterioles also appear capable of anaerobic metabolism as indicated by strong lactate dehydrogenase reactivity and by the presence of slight to moderate quantities of glycogen, while high levels of glucose-6-phosphate dehydrogenase and moderate amounts of deoxyribonucleic acid suggest a potential for beta-hydroxybutyrate dehydrogenase, minimal lipase activity, and the absence of fatty acids with substantial amounts of neutral fat, indicate limited lipid catabolism.

Adenosine Triphosphate↗

Meldola Blue for the cytochemical demonstration of leukocyte dehydrogenases.

The new electron carrier Meldola Blue was employed in the cytochemical demonstration of succinate, lactate, and glucose-6-phosphate dehydrogenases in leukocytes. A significant increase in dehydrogenase activity, with better localization and less diffusion of the reaction product, was observed when compared to enzyme reactivity carried out without Meldola Blue. Meldola Blue can facilitate the demonstration of both bound and soluble leukocyte dehydrogenases. Current methods which could yield better visualization of leukocyte dehydrogenases, particularly succinate, lactate, and glucose-6-phosphate dehydrogenases in neutrophils, suggest excellent use can be made of Meldola Blue in the clinical laboratory. Reliable histochemical determination of these enzymes can aid in differentiating younger from older neutrophils. In addition, glucose-6-phosphate dehydrogenase might be used in conjunction with the nitroblue tetrazolium (NBT) test in separating persons with bacterial infections from those with nonbacterial illness. Furthermore, histochemical visualization of this enzyme may also prove beneficial in identifying glucose-6-phosphate dehydrogenase-deficient individuals.

Bacterial Infections↗

Intracellular calcium localization in stimulated and non-stimulated extraorbital lacrimal glands of rats.

Acinar cells of extraorbital lacrimal glands from control, pilocarpine-treated, atropine-treated and atropine + pilocarpine-treated rats were studied using a potassium pyroantimonate technique and X-ray microanalysis for calcium localization at the ultrastructural level. This was done in order to identify intracellular compartmentalization of calcium and to elucidate any calcium translocation that might occur during the secretory process. Calcium-pyroantimonate complexes were identified in the mitochondria, plasma membrane and cytoplasmic vesicles of the untreated specimens and in the plasma membrane of atropine-treated specimens, these complexes decreased drastically in the actively-secreting cells. The function of calcium in lacrimal gland secretion and the action of pilocarpine and atropine on membrane calcium are discussed.

Animals↗