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Biomedical subjects

A Epple

Publications and source records attributed to A Epple.

At least 19 recordsLinked to original sources

The avian allantois: a depot for stress-released catecholamines.

Plasma and amniotic and allantoic fluid of 10- and 14-day-old chicken embryos contain free dopamine (DA), norepinephrine (NE), and epinephrine (E). Compared with postnatal chickens, concentrations of DA and E in the plasma are very high, and they are even higher in the allantoic fluid. In contrast, the allantoic concentration of NE is below the plasma level. In the amniotic fluid, the concentrations of all three catecholamines (CAs) are below the plasma levels. High concentrations of DA and E in the allantoic fluid after opening of the egg shell decline during the following 24 hr, which indicates that they are due to stress. Asphyxia, handling, disturbance of allantoic fluid, and cooling are also perceived as stress and are followed by immediate accumulation of CAs in the allantoic fluid. DA and E respond to stress in like manner, while NE often responds with an opposite trend. It appears that the avian allantois, in addition to its role in respiration and urea disposal, also serves the instant CA removal from the circulation. Both the amniotic and the allantoic membranes of the chicken should be ideal models for the study of CA transport mechanisms.

Allantois

Impact of complete isletectomy on plasma glucose in the southern hemisphere lamprey Geotria australis.

The adult southern hemisphere lamprey Geotria australis is the only known vertebrate in which it is possible to remove all of the pancreatic islet tissue without damaging other organs. In the 24 hr after isletectomy, the plasma glucose of adult G. australis rose sharply from 5.0 to 11.6 mmol.liter-1 and remained at a similar elevated level throughout the subsequent 5 days of the experiment. The marked hyperglycemia that follows complete isletectomy parallels the results obtained after removal of the majority of the islet tissue from northern hemisphere lampreys and after pancreatectomy in mammals, but contrasts with observations recorded for some other groups of vertebrates.

Animals

Impact of cadmium on the mummichog Fundulus heteroclitus and the role of calcium in suppressing heavy metal toxicity.

1. Freshwater adapted mummichogs (Fundulus heteroclitus) were exposed to cadmium. In soft water (less than or equal to 5 mg/l CaCO3), the 4-day safe (TL100) and sublethal (TL50) tolerance limits (TLs) for cadmium were 0.14 microgram/l and 12.2 micrograms/l, respectively. 2. Survival declined with increasing cadmium concentration and the length of exposure. The toxicity of cadmium was reduced in water with high calcium concentration (200 mg/l CaCO3). Pre-exposure to calcium also prolonged the survival in cadmium-containing water. 3. The mummichog appears to be extremely well suited for monitoring environmental cadmium poisoning.

Animals

Trace metal (Cu and Zn) adaptation of organ systems of the American eel, Anguilla rostrata, to external concentrations of cadmium.

1. The impact of external cadmium on the concentrations of cadmium (Cd), copper (Cu) and zinc (Zn) in seven tissues of the American eel, Anguilla rostrata was investigated. Even after a week in freshwater with undetectable levels of Cd, the tissues of eels caught in fresh and/or brackish waters of the United States east coast contained Cd in kidney, liver, gut, and brain. 2. When the eels were exposed up to 16 weeks to low and high sublethal concentrations of Cd (75 and 150 micrograms/l, respectively), the highest tissue concentrations of Cd were found after two weeks of exposure. The accumulation was dose-related in all tissues studied except for the kidney. After 8 weeks of Cd exposure, the tissue levels of Cd were markedly reduced, and they were in a similarly low range after 16 weeks. At this time, the highest Cd concentrations were found in the gills and kidney. 3. After two weeks of Cd exposure, there was a drop of the tissue concentrations of Cu in liver and heart, and of Zn in gut and liver. The low concentrations of the two metals in other organs did not allow an evaluation of the Cd impact. After 16 weeks, the Cu concentrations in all tissues, with the exception of the liver, were similar to, or even higher than control levels. At the same time, Zn concentrations exceeded the control levels in heart and kidney of eels exposed to 75 and 150 micrograms Cd/l, respectively. 4. It is clear that some tissues of the eel are able to maintain or restore normal levels of Cu and Zn, up to 16 weeks, despite concomitant Cd accumulation.

Adaptation, Physiological

Catecholamines, opioid peptides, and true opiates in the chromaffin cells of the eel: immunohistochemical evidence.

An immunohistological analysis of the chromaffin cell system of the American eel revealed the presence of tyrosine hydroxylase (TH) and dopamine-beta-hydroxylase (DBH) in all cells. However, phenylethanolamine-N-methyltransferase (PNMT) was seen only in a fraction of the chromaffin cells. This suggests the presence of both norepinephrine and epinephrine cells and the absence of specific dopamine cells. The chromaffin cells are most numerous in the anterior region of the posterior cardinal vein, where they occupy a subendothelial position. Their number decreases caudally, and a relatively small number are present in the larger veins of the opisthonephric kidney. No PNMT-positive cells were identified in this region, although a radioenzymatic assay had previously shown the presence of epinephrine. Methionine-enkephalin immunoreactivity seems to be restricted to the chromaffin cells. However, particularly large amounts of leucine immunoreactivity occur in the interrenal cells, with smaller quantities in the chromaffin cells. The chromaffin cells of the eel also contain morphine immunoreactivity.

Animals

Catecholamine release by catecholamines in the eel does not require the presence of brain or anterior spinal cord.

The catecholamine-producing chromaffin cells of the American eel are strongly innervated by fibers, which, by ultrastructural criteria, seem to be cholinergic. However, neither removal of the brain nor removal of the brain combined with extirpation of the anterior spinal cord prevents the release of catecholamines into the circulation by catecholamines. It appears that the chromaffin cells are controlled by both nervous and humoral stimuli, and that at least some of the latter do not require the presence of "preganglionic" innervation.

Anguilla

Physiological doses of epinephrine in the human: chronotropic but not hyperglycemic or catecholaminotropic.

Single physiological doses of epinephrine did not affect the blood sugar level of human volunteers though they caused a marked tachycardia that was accompanied by a strong transient sensation, typically described as fullness in the chest. Epinephrine did not cause the release of norepinephrine and/or dopamine in man, in contrast to three other vertebrates (lamprey, eel, and rat). In the human, as in the rat and cyclostomes, the glycemic effect of epinephrine occurs only during stress and/or unphysiological conditions, while the chronotropic effects are probably physiological from cyclostomes to man.

Adult

The sources of plasma catecholamines in the American eel, Anguilla rostrata.

The origin of the catecholamines (CAs) in the systemic blood of the American eel, Anguilla rostrata, was studied by three approaches: (1) determination of the CA content of tissues suspected to release large quantities of dopamine, norepinephrine, and/or epinephrine into the circulation; (2) measurement of local CA titers in selected regions of the cardiovascular system; and (3) removal of tissues with high CA concentrations, followed by determination of its impact on stimulated CA release. Large quantities of all three CAs were found in the walls of the posterior cardinal veins, from their caudal origin within the opisthonephric kidney to their termination in the ductus Cuvieri. Near the ductus Cuvieri, the CA concentration was 1-3 orders of magnitude above that in other tissues. In this region, which contains the presumed adrenal medulla equivalent, occur the highest plasma levels of the CAs. Strong CA release also in the opisthonephric kidney region raises the question if these CAs affect locally the kidney functions, and/or via the hepatic portal vein (which originates in this region), the liver. Other organs (especially brain and heart) contain CA concentrations high enough to potentially affect the CA level in the systemic blood, if instantly released. However, neither partial removal of the brain nor hypophysectomy, "adrenomedullectomy," Stanniectomy, or urophysectomy had an appreciable impact on stimulated CA release. Together with previous data, these findings show that in the eel (a) the region of the presumed adrenal medulla equivalent is the most important source of all three CAs in systemic plasma; (b) that strong CA-stimulated CA release also occurs outside this region; and (c) that the pituitary, forebrain, and midbrain are not necessary for the CA-stimulated CA release.

Anguilla

Single doses of catecholamines in the rat: catecholaminotropic, but not hyperglycemic.

1. As in two "lower" vertebrates, the lamprey and the eel, single intravascular injections of physiological doses (2.5 micrograms/kg) of epinephrine (E) into the rat immediately increased levels of plasma dopamine (DA) and norepinephrine (NE). 2. Single doses of DA (5 micrograms/kg) enhanced circulating NE and E, while NE (5 micrograms/kg) had no clear impact on the plasma levels of the other two catecholamines (CAs). 3. These data are at variance with findings in the eel, where all three CAs are mutually stimulatory; and in the lamprey, where only E stimulates release of the other two CAs. 4. It appears that E-stimulated CA release is widespread or ubiquitous among vertebrates, and that complex interactions between circulating CAs must be considered under experimental, physiological, and clinical conditions. 5. None of the injections had a significant hyperglycemic effect.

Anguilla

Plasma catecholamines in the lamprey: intrinsic cardiovascular messengers?

The widely scattered cardiovascular chromaffin cells of Petromyzon marinus appear to form an intrinsic control system of circulatory function. In response to blood-borne stimuli, a checkpoint-like accumulation of epinephrine cells in the heart releases its hormone; epinephrine, in turn, stimulates the release of norepinephrine, and probably also of dopamine, from other cardiovascular chromaffin cells. The myocardium seems to be a major target of norepinephrine. On the other hand, high disappearance rates of epinephrine and dopamine in the gills point to these organs as possible major targets of the latter two secretions. Carbon dioxide and hypovolemia are strong stimuli of catecholamine release.

Animals

Pancreatectomy in a teleost fish, Anguilla rostrata (American eel).

A technique for pancreatectomy was described for the American eel. In this fish, the operation was not followed by the typical signs of diabetes mellitus. Histodensitometric determination of liver glycogen showed no major differences between operated controls and pancreatectomized eels. The absence of a specific hyperglycemia, previously reported with the hexokinase method, was confirmed with the glucose oxidase technique; however, the more specific hexokinase method gave consistently lower values. Breakdown of adipose tissue and hyperlipemia were absent.

Animals

New types of islet cells in a cyclostome, Petromyzon marinus L.

Four types of acidophilic granular cells, in addition to B-cells, are identified in the islet organ of anadromous specimens of two subspecies of Petromyzon marinus by light and electron microscopy. Three of these acidophils (PI, PII and PIV-cells) occur in both the cranial and hepatic islets while a fourth type (PIII-cell) has only been found in the hepatic islet of some animals. The granules of the PI-cells stain with ponceau de xylidine, give a distinct tryptophan reaction and in ultrastructural examination show large, dense granules. The PII-cells contain unusual crystals and appear to be a non-secretory stage of the PI. The PIII-cells stain deep-red and acid fuchsin. They contain very large, dense granules and some lysosomes. PIV-cells stain selectively with phosphotungstic acid-hematoxylin and ultrastructurally, contain small, more or less dense granules. It appears that PI- and PIV-cells develop directly from B-cells, while the PIII-cells derive from PI-cells. despite their direct or indirect origin from B-cells, the PI-, PIII- and PIV-cells show characteristic features of functionally independent endocrine cells. Petromyzon marinus may be an ideal model for the understanding of phylogenetic and pathological interrelationships between islet and gastrointestinal hormones. It is clear that the interpretation of the islet organ of the cyclostomes, which has been generally considered a source of insulin only, requires a revaluation.

Animals