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Fungi from interior organs of free-living small mammals in Czechoslovakia and Yugoslavia.

A total of 308 fungi was isolated from interior organs (lungs, spleen, liver) of 529 small mammals belonging to 21 species, 7 families and 3 orders (Insectivora, Chiroptera, Rodentia), some of these being potentially pathogenic to vertebrates (e.g. Aspergillus flavus, A. fumigatus, Geotrichum candidum, Mucor pusillus, Rhizopus arrhizus). In one vole (Microtus arvalis) captured in South Moravia, adiaspiromycosis (Emmonsia crescens) was demonstrated. Comparison of mycoflora of hair and that of interior organs of wild small mammals revealed that out of the total number of isolates the following fungi were represented in a higher proportion from visceral organs than from the hair: Aspergillus (A. amstelodami, A. flavus, A. repens), Aureobasidium (A. pullulans), Candida, Cladosporium (C. herbarum), Cryptococcus, Fusarium, Gliocladium (G. deliquescens), Helminthosporium, Kloeckera, Mucor (M. fragilis, M. hiemalis, M. pusillus), Paecilomyces marquandii, Penicillium (P. purpurogenum), Phoma, Rhizopus arrhizus, Scopulariopsis (S. candida, S. koningii) and Torulopsis.

Animals↗

Comparative aspects of the disposition and metabolism of xenobiotics in fish and mammals.

The number of studies in aquatic toxicology has rapidly increased due to the importance of fish as a food source and also because of the increasing awareness of long-term health hazards of aquatic pollution of humans as well as to aquatic flora and fauna. The bioaccumulation and persistence of certain chemicals in fish have been studied for some time but with the characterization of an active hepatic mixed function oxidase system, comparable in many respects to that found in mammals, the role of metabolism in the disposition, toxicity, and persistence of certain chemicals can be studied. The recent observation that rainbow trout and their eggs are very sensitive to aflatoxin B1, a carcinogen that apparently must be activated to a chemically reactive intermediate to exert its effect, has led to the development of fish being considered appropriate animal models for toxicity testing. Since most predictive toxicology in the past has been restricted to nonaquatic species, this review has attempted to describe some of the similarities and dissimilarities between mammals and fish in terms of absorption, distribution, metabolism, and excretion of xenobiotics.

Animals↗

[Arbovirus infections in Spain: serological survey on small mammals].

Sera of 386 small mammals (rodents, insectivora, small carnivora and cheiroptera) trapped in Spain in 1978 and 1979 were studied for antibody against 10 arboviruses. Positive reactions were found against flaviviruses: West Nile (3.1%), dengue type 2 (0.5%), tick-borne encephalitis, European type (0.2%), together with Tahyna (6.5%), Uukuniemi (2%) and Bhanja (1%) viruses. The animal species concerned by positive reactions were essentially Mus spretus and Apodemus sylvaticus which were also the more numerous species trapped during the survey. In addition, in Crocidura russula, an unique reaction against West Nile virus was found. Results of our serosurvey in small mammals correlated well with those of previous reports in men or animals, from Portugal and from north-western Spain.

Animals↗

Functional anatomy of the head-neck movement system of quadrupedal and bipedal mammals.

This biomechanical investigation quantified the range of motion of the different articulations of the head-neck ensemble in man, monkeys, cats, rabbits and guinea pigs. Radiography and dissections were used to establish the degrees of freedom of the system. The erect posture and rigidity of the cervical spine in mammalian vertebrates are possible because the degrees of freedom of the movements of the cervical and upper thoracic vertebrae in passive ranges of motion are asymmetric, and thus significantly restricted, when judged from the resting position. The total range of motion at the atlanto-occipital articulation varies between species. It is approximately 90 degrees-105 degrees in the quadrupedal mammals tested, and only 11 degrees or 13 degrees, respectively, in humans and monkeys. When at rest, bipeds and quadrupeds hold the atlanto-occipital articulation and the upper cervical joints (C1/C2, C2/C3) in a flexed attitude. The total range of motion at the cervicothoracic junction (C6-T2) is approximately 6 degrees-80 degrees in all vertebrates investigated (quadrupeds and bipeds). At rest, the vertebral articulations that form the cervicothoracic junction are held in their extreme extended positions in quadrupeds and monkeys. In man, the vertebrae of the lower cervical spine are kept at a midposition between maximal flexion and maximal extension. This latter observation may be related to the permanent bipedalism of humans. Collectively, our data indicate that biomechanical constraints such as bone structures (e.g. specifically shaped articular processes) and ligaments may maintain the intrinsic configuration and self-supporting structure of the cervical spine. Furthermore, the specialised structures in the cervical joints allow movements more or less in particular planes of space, and thus biomechanical constraints limit the number of possible solutions as to how an animal can perform a given orientating head movement. Although we have not entirely clarified the functional implications for head movement control of the different sagittal-plane ranges of motion in vertebrates, we hypothesise that different mechanical requirements relating to the influence of gravity have caused the observed differences between the investigated bipedal and quadrupedal mammals.

Animals↗

[Communication of gametes at distance. Chemotaxis and chemokinesis in spermatozoa in mammals].

The communication to distance is controlled chemically by the egg and the spermatozoa as part of the fertilization process, it has been studied intensily in invertebrate animals with outside fertilization. However studies with mammals offers a field of great interest. The chemoattractant from mammals spermatozoa include peptides or protein with a molecular weight of 1-20 KDa, hormones like progesterone, oxitocin, adrenalin and receptors on the spermatozoa head which are associated with the Guanylyl cyclase enzyme and G proteins, as well as other as like odorant receptor, rhodoopsin kinases and arresting. Chemotaxis allow us to understand the fertilization in human and also develop program for assisted reproduction. It is very important in the contraception.

Animals↗

Exercise performance of mammals: an allometric perspective.

We have examined aerobic exercise performance among the mammals with particular attention to the constraints that body size places on all aspects of muscle biomechanics, aerobic energetics, tissue oxygen diffusion, cardiovascular oxygen delivery, and pulmonary oxygen uptake. Several body-size-dependent patterns emerge that seemingly govern aerobic performance in mammals, with the caveat that at any given body size there is a range of aerobic capacities, the result of natural selection operating on the size-dependent "default values" of structure and function. Among these default values, the following apparent functional clusters surface: 1. In general, concentrations and pressures (e.g., of proteins and gases) are roughly independent of body size. Inspiratory and expiratory ventilation pressures, blood pressure and the partial pressures of O2 and CO2 in lungs, blood, and tissues do not vary with body size. Likewise, concentrations of hemoglobin, myoglobin, and hematocrit are independent of body size. 2. Most volumes and capacities scale linearly with body size (i.e., as a constant function of body mass). In addition to heart, lung, and total blood volumes, important examples relevant to exercise performance are the diffusing capacities for oxygen in the lung and, apparently, in the tissues. 3. Finally, most time-dependent variables related to oxygen delivery scale allometrically with body mass; they are of shorter duration in small animals than in large ones. Biological rates, for example, Vmax of working muscle, heart and respiratory rates, and transit times of blood through the muscles and lungs, all vary roughly as the -1/5 to -1/4 power of body mass.

Animals↗

Distribution of heat-stable enterotoxin/guanylin receptors in the intestinal tract of man and other mammals.

The human intestinal tract, as well as that of several eutherian and metatherian mammals, was examined for the distribution of heat-stable enterotoxin (ST)/guanylin receptors. These receptors were confined to the intestinal epithelium lining the lumen and forming the intestinal glands throughout the length of both the small intestine and colon of all species examined. In man and most other mammalian species, there appeared to be a decrease in receptor density distally along the longitudinal axis of the small intestine. ST/guanylin receptors were not observed in other strata forming the gut wall. Along the vertical axis of the human small intestine (villus/crypt unit), as well as that of most other mammals, receptor density was greatest in enterocytes located near the base of villi and in those forming the proximal portion of the intestinal glands. ST/guanylin receptors were for the most part confined to the region of the plasmalemma forming the microvillus border. In the colon of man and the other species examined, receptor density was greatest in enterocytes forming the proximal region of the intestinal glands. Receptors were present in the intestinal epithelium lining the lumen of the colon, but generally were fewer in number. The distribution of cellular cGMP accumulation responses to E. coli ST and guanylin in the opossum (Didelphis virginiana) and raccoon (Procyon lotor) revealed that proximal small intestine had greater magnitudes of cGMP responses than did the distal small intestine. Proximal colon had greater cGMP responses than distal colon, which had no significant cGMP responses to either ST or guanylin.

Animals↗

The prevalence of small terrestrial mammals infected with tick-borne encephalitis virus and leptospirae in the foothills of the southern Bavarian forest, Germany.

In the district of Grafenau/Freyung (Bavaria, Germany), 266 specimens of small terrestrial mammals of 8 species were captured using live traps. From these mammals, Apodemus flavicollis (42.1%) and Clethrionomys glareolus (39.5%) were prevalent. All animals were tested for neutralizing antibodies to tick-borne encephalitis (TBE) virus and agglutinating antibodies to leptospirae. Seropositivity against TBE virus was 14.0% and against leptospirae 7.9%, respectively. Seropositivity to leptospirae appeared to be primarily to Leptospira grippotyphosa, less to Australis and occasionally to Javanica serovars. Only one A. flavicollis specimen was positive to both pathogens tested. The parasitocoenosis of trapped micromammals with ectoparasites consisted of 69.5% from ticks (mainly Ixodes ricinus, less from I. trianguliceps), 16.1% of mites (primarily Laelaps agilis) and 14.3% of fleas (mostly Ctenophthalmus agyrtes).

Animals↗

The costs of reproduction and dietary restriction: parallels between insects and mammals.

Dietary restriction increases life span in mammals. This essay connects the dietary restriction response to evolutionary life history theory and experiments related to it. Evolutionary biologists have shown mathematically that aging is an inevitable consequence of age-specific natural selection acting on species with somata separate from germ lines. Empirical tests of this prediction currently point to its general validity. Two specific genetic mechanisms are known which could underlie the evolution of aging under these conditions: age-specificity of gene effects and antagonistic pleiotropy between early and late ages. The antagonistic pleiotropy theory assumes that some genes with beneficial effects on early life fitness will have deleterious effects upon fitness in later life. Experimental work in insects, particularly selection experiments in Drosophila melanogaster, has tested these ideas. The negative genetic correlation between longevity and reproductive effort produced by selection has been shown to be paralleled, in some cases, by environmental manipulation. Thus the increase in life span caused by dietary restriction might be explained as an incidental consequence of lower reproductive effort. This response also could have been an adaptation that enhanced fitness in some species that faced uncertain food supplies, a condition that may have evolved independently in a wide variety of taxa. Several schools of research, besides that of the evolutionary biologists concerned with genetic correlations, have produced corroborations of this hypothesis in insects and mammals: the gerontological work on life span extension, reproductive physiologists concerned with factors that affect fertility, and various life history studies.

Aging↗

[Evolutive morphology of the olfactory bulb in man and certain non-human mammals].

Human and comparative anatomy of the olfactory lobe and the anterior floor was studied in 241 patients and 27 specimens (2 human fetuses, 4 specimens from adult humans, 11 non human primates and 10 carnivorous mammals). Macroscopic morphology and imaging data (CT-scan, 3D) reconstruction and magnetic resonance imaging) were obtained at the same time. The results obtained provide radiographic knowledge of the olfactory bulb ontogenesis and a basis for recognizing inborn or acquired pathology of the olfactory bulb. Evidence was also obtained for distinguishing between macrosmatic and microsmatic criteria in mammals.

Adolescent↗

[The biological design of the oxygen transport system in mammals and the law of symmorphism].

In oxygen transport system of mammals the most important are biological constants and peculiarities of system construction, that are only hardly regulated physiologically. Thus, the coefficient of oxygen diffusion in animal tissues determines the construction of lungs and microvessel systems, oxygen capacity of blood, the rates of haemoglobin oxygenation and oxyhaemoglobin desoxygenation. The important parameter of biological construction of oxygen transport system is relatively low heart power (1-1.5 Vt for human). Such low value can be explained by low resistance to blood flow in microvessels because of decrease in blood viscosity. According the law of simmorphism physiological functions have a reserve that allows approximately ten times increase in power of functions. This law should be corrected since the supposed reserves in relatively small mammals are almost completely run off even in the stage of rest for maintenance of temperature homeostasis.

Animals↗

Sucking lice (Anoplura) of mammals of Tennessee.

Twenty-five species of sucking lice are recorded from wild and domestic mammals, including humans, from Tennessee. Collections of 10 of these species (Haematopinus eurysternus, Hoplopleura captiosa, Hoplopleura hirsuta, Hoplopleura oryzomydis, Hoplopleura trispinosa, Linognathus africanus, Linognathus setosus, Linognathus vituli, Neohaematopinus sciuropteri and Polyplax auricularis) represent newly documented state records. Host specificity was exhibited by 22 species of lice with each of these species being recovered from just one mammal species. Louse infestation prevalences are included for large samples of hosts. A host-parasite list for Tennessean sucking lice is included.

Animals↗

Follicular growth and ovarian dynamics in mammals.

General characteristics of female reproductive activity, such as seasonality, cyclicity and triggering of ovulation differ widely among mammals, but common mechanisms underlie ovarian function. In all mammals, follicles begin to grow from a pool of primordial follicles constituted early in life, continuously throughout the life of the female. Follicular development involves two phases. In a first phase (basal follicular growth), follicles grow slowly and follicular growth rate is tightly related to proliferation of granulosa cells. Basal follicular growth is mainly under the control of growth factors of paracrine origin. In these follicles, FSH may exert an indirect mitogenic effect on granulosa cells by enhancing expression of growth factors or growth factor receptors. In a second phase (terminal follicular growth), follicular growth is rapid and occurs by enlargement of the antrum. In addition, it is accompanied by important changes in differentiation of follicular cells. Terminal follicular development is strictly dependent on gonadotrophins. FSH plays determinant roles in enhancing granulosa cell differentiation and survival. These actions are mediated or modulated in an important way by paracrine factors, particularly steroids and growth factors. LH stimulates steroidogenesis in theca cells and sustains terminal maturation of granulosa cells in preovulatory follicles. Follicular growth, atresia and ovulation are accompanied by important tissue remodelling processes, which are under the fine control of proteinases and inhibitors of proteinases. In particular matrix metalloproteinases and their inhibitors are probably involved in the control of rapid terminal follicular growth and regression of atretic follicles as well as in follicular rupture at ovulation.

Animals↗

Enzymology of ethanol and acetaldehyde metabolism in mammals.

Ethanol or ethyl alcohol is a molecule that, in mammals, is naturally present at low concentrations due to its production by gastrointestinal flora fermentation activity. However, it is remarkable that this metabolite, with a clearly minor role in regular vertebrate metabolism, can be oxidized into acetaldehyde through several enzymatic and non-enzymatic mechanisms, which comprise the activity of more than ten enzymes and isozymes, many of them broadly distributed in different species and tissues. In correspondence, acetaldehyde can also be oxidized into acetate through several enzymatic pathways that involve about ten enzymes and isozymes which also have a broad distribution. In this article, a complete review of the aforementioned metabolic pathways is elaborated. From this group, the participation and wide distribution of alcohol dehydrogenase and aldehyde dehydrogenase systems are emphasized. The mechanisms of reaction, kinetic characteristics and physiological relevance are described, and finally, the possible physiological role of these enzymatic systems as responsible to synthesize or catabolize several endogenous metabolites that regulate growth, metabolism, differentiation and neuroendocrine function in mammals are discussed.

Acetaldehyde↗

The morphogenesis of the arteries of the pelvic extremity. A comparative study of mammals with special reference to the tree shrew Tupaia belangeri (Tupaiidae, Scandentia, Mammalia).

The ontogeny of the arteries of the pelvic extremity of Tupaia belangeri was investigated by light microscopy on the basis of serial sections of 30 embryos, dating from day 17 to day 42 post-copulation. In Tupaia, the gestational period takes approximately 43 days. Additionally, a 3-D reconstruction of the pelvic region and the right leg of a 22-day embryo was prepared. The arteries of an adult Tupaia were studied on the basis of a corrosion cast. The results were compared with the ontogeny of the arterial system of other mammals. In the 17-day embryo, the anlage of the pelvic extremity is penetrated by a capillary plexus. In the 18-day embryo, the a. ischiadica reaches the pelvic limb bud, representing the primary axial artery. On day 19, its r. perforans tarsi extends from the plantar to the dorsal aspect of the foot plate. The a. ischiadica is the main artery of the leg until the stage of the 22-day embryo. Afterwards, the peripheral arteries supplied by it are taken over by the a. iliaca externa and its extension, the a. femoralis. The a. iliaca externa springs from the a. iliaca communis in the 19-day embryo. From day 21 to day 22, the capillary plexus, which is nourished by the a. femoralis, closely approaches the a. ischiadica, and finally, a connecting branch joins the a. ischiadica. The a. ischiadica is then reduced to the a. glutea caudalis, and the aa. femoralis, poplitea profunda (at the cranial aspect of the m. popliteus), and interossea become the main arteries of the pelvic extremity. The a. poplitea superficialis, lying at the caudal aspect of the m. popliteus, and its continuation in the crural region, the a. peronea, develop until the 25-day embryo. The a. peronea gives rise to an r. perforans which penetrates the membrana interossea towards the dorsum of the foot. As a result of a shift of the origin of the a. iliaca externa in the proximal direction, the length of the a. iliaca communis gradually decreases until, on day 24, the a. iliaca externa springs directly from the lateral wall of the aorta. In the 20-day embryo, the a. iliaca externa gives rise to an a. circumflexa ilium profunda towards the lateral pelvic wall, and in 23-day embryos, to the a. profunda femoris. The main branches of the a. profunda femoris develop until day 24. At the same time, the aa. circumflexa femoris lateralis and nutricia ossis femoris arise from the a. femoralis. The a. saphena, which is already recognizable in the 23-day embryo, gives rise to the a. genus descendens, and as an a. plantaris medialis, to four aa. digitales plantares communes (I-IV) at the planta pedis. The development of the a. tibialis cranialis on day 25 takes place independently and without any topographic relation to the a. saphena, which functionally replaces the a. tibialis cranialis in some other mammals. In the 26-day embryo, the aa. peronea and tibialis cranialis extend to the dorsum of the foot where they continue as the aa. dorsales pedis profunda and superficialis. The fourth main artery of the lower leg, the a. caudalis femoris, which is first observed in the 20-day embryo, reaches the lateral aspect of the foot on day 24. Its r. calcaneus runs to the planta pedis. In 30-day embryos, the aa. digitales plantares propriae have differentiated. The corresponding dorsal arteries and the superficial plantar vascular are develop until day 35, so that all important arteries of the pelvic extremity, which are seen in the corrosion cast of the adult, are recognizable. Among the embryos and the adult Tupaia studied, individual variation is minimal. The developmental stage at which the arteries of the leg acquired a secondary vascular wall was ascertained. Only a vessel with a primary vascular wall can dissolve into a capillary plexus later on (e.g., a. interossea). In contrast, the course of an artery which has acquired a secondary vascular wall is determined, because modifications of the course of a vessel often need a capillary plexus as an intermediate st

Animals↗

[Physiological and sensorial determinism of maternal behavior in mammals].

In mammals, the development of maternal behaviour is generally controlled by neuroendocrine factors followed by sensory factors. Whereas the dynamics of the steroid balance at parturition are of primary importance in non-human mammals, stimulation of the uterine tract during the expulsion of the foetus is the key-factor in ungulates. This induces a cascade of physiological events and particularly the activation of the oxytocinergic system. The increase in prolactin release appears to be important only in rodents. Activation of the opiate system induces inhibitory effects in rodents and facilitatory effects in ungulates and, in rodents, the medial preoptic area is the central key structure of hormonal action. In women, no correlation exists between hormonal levels and maternal attitudes either during pregnancy or in the post-partum period. Physiological factors enhance receptivity to stimuli coming from the neonate and this allows the female to display maternal behaviour beyond this critical period. Odours facilitate the organisation of both maternal and infantile behaviour and are involved in individual recognition for both. Olfaction may also participate in the regulation of mother-young interactions in humans.

Animals↗

Movement of the epiglottis in mammals.

In contrast to adult humans, the epiglottis of other mammals and infant humans is situated close to the soft palate. It has been argued that this posture is maintained during swallowing, with food passing laterally around an intact airway. To test this supposition, the movement of the epiglottis in two contrasting mammalian species, pigs and ferrets, was studied by placing radiopaque markers on the epiglottis and soft palate. Swallowing was observed with videofluoroscopy while the animals were feeding on hard and soft foods, liquids, and food mixed with barium sulfate. Analysis of the images showed that bolus formation and downward movement of the epiglottis away from the soft palate were unvarying phenomena in both animals for all tested foods. The duration of the epiglottic movement was approximately 0.3 S for liquids and slightly longer for solids. Because swallowing never occurred past an upright epiglottis, the results of this study do not support the hypothesis that adult animals maintain a patent airway during swallowing. Instead, the epiglottis in nonhuman mammals downfolds similarly to that of adult humans during swallowing.

Animals↗

Mechanism of Ca2+ release at fertilization in mammals.

At fertilization in mammals the sperm triggers a series of oscillations in intracellular Ca2+ within the egg. These Ca2+ oscillations activate the development of the egg into an embryo. It is not known how the sperm triggers these Ca2+ oscillations. There are currently three different theories for Ca2+ signaling in eggs at fertilization. One idea is that the sperm acts as a conduit for Ca2+ entry into the egg after membrane fusion. Another idea is that the sperm acts upon plasma membrane receptors to stimulate a phospholipase C (PLC) within the egg which generates inositol 1,4, 5-trisphosphate (InsP(3)). We present a third idea that the sperm causes Ca2+ release by introducing a soluble protein factor into the egg after gamete membrane fusion. In mammals this sperm factor is also referred to as an oscillogen because, after microinjection, the factor causes sustained Ca2+ oscillations in eggs. Our recent data in sea urchin egg homogenates and intact eggs suggests that this sperm factor has phospholipase C activity that leads to the generation of InsP(3). We then present a new version of the soluble sperm factor theory of signaling at fertilization. J. Exp. Zool. (Mol. Dev. Evol.) 285:267-275, 1999.

Animals↗