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[Experimentation of apiarian preparations for the direct and the indirect capping of the dental pulp].

With a view to extend the range of biologically active preparations for the direct and the indirect capping of the dental pulp the authors have used a paste made from an alcoholic solution of propolis and zincoxyde. The study was carried on in 150 teeth with indirect capping of deep cavities, and 50 teeth with direct capping. The evolution of the cappings was followed clinically, radiologically and morphologically. The results obtained showed that the paste with propolis exerts effects similar to those of zinc eugenate. The morphologic study of the indirect capping showed that secondary dentin developed shortly after the application of the paste, and that it was followed by the development of pulpolites and the sclerous transformation of the pulp. In teeth with direct capping a protective film developed at the opening of the dental chamber. With time the pulpal wound undergoes cicatrization by a process of fibrosis and there is a trend to remineralization. No areas of pulpal degenerescence were found the rest of the pulpal tissue, and this suggests that the paste is more histophilic than the pastes based on calcium hydroxide, with which an area of necrosis occurred at the opening of the chamber, and calcium and fibrous degenerescence occurred in the coronal pulp.

Dental Pulp Capping↗

[Obtaining of serum (antibodies) of antitrophozoites of Giardia lamblia and non-specific factors. A practical method].

According to some authors, the nonspecific elements belong to Candida albicans morphologic variables, and according to others, they represent an evolutive stage or are the result of Giardia lamblia. An immunitary methodology is developed in experimental animals combining intramuscular, intravascular and intraperitoneal pathways with soluble substances and extracts which can be absorbed in aluminium hydroxide of Giardia lamblia and nonspecific elements trophocytes. Sera (antibodies) to these organisms are obtained.

Animals↗

[Heat-induced salivary gland hypertrophy: change during chronic heat exposure (34 degrees C). (author's transl)].

1 A slight rise in ambient temperature (34 degrees C) increased saliva secretion in the rat and this was accompanied by licking behavior, thus increasing heat loss by evaporation. 2 The rise in ambient temperature was accompanied by a hypertrophy of the submaxillary glands (Fig.1, 2), arising from activation of seromucous acini (Fig. 4, 5). 3 The hypertrophy reached a maximum after 2 to 4 days of heat exposure (Fig. 2); it was followed by a slow decrease. Normal values were obtained only after at least 3 weeks in the climatic chamber (Fig. 2, 3), which agreed with behavioral observations. Increased secretion of saliva may help to increase heat loss and maintain survival in a hot environment. 4 The absence of morphological changes in the sublingual g and and the evolution of the granular circonvoluted tubules (Fig. 6) contrast greatly with the hypertrophy of the submaxillary acinus. It is possible that heat-induced saliva secretion may be controlled by both sympathetic and parasympathetic systems.

Animals↗

[Development of 3 populations of embryonal bodies in monolayer culture and in suspension].

In the present investigation the "in vitro" behaviour of three morphologically different types of embryoid bodies of the teratocarcinoma OTT 6050, which were isolated by means of a Ficoll's density gradient, was analyzed. The study of the results obtained from the culture in suspension and in monolayer show that these morphologically different types represent three different stages of one evolutional cycle which tends to reproduce them as well as creating a variety of potentially more malign embryoid body.

Animals↗

Microglia-derived macrophages in early multiple sclerosis plaques.

One of the characteristics of ongoing demyelination in multiple sclerosis (MS) is the accumulation of lipid-laden macrophages in active lesions. Little is known about the source of these macrophages in the early stages of plaque evolution as microglial-derived and haematogenous macrophages share morphological characteristics and most cell surface antigens. A key issue in understanding the pathogenesis of MS is the reliable identification of phagocytes capable of degrading myelin and presenting autoantigen to T cells at the onset of demyelination. Using a combination of histochemistry and immunocytochemistry, an average of 60% of EBM11+ phagocytes (EMBII is a pan-macrophage marker) in early active MS plaques, defined as lesions with myelin-containing phagocytes but no obvious parenchymal myelin loss around these cells, were judged to originate from microglia as they exhibited nucleoside diphosphatase activity, a microglial marker. Only 4-15% of EBM11+ phagocytes in these lesions exhibited non-specific esterase activity, an enzyme marker for monocytes and macrophages. In contrast, 30-80% of EBM11+ phagocytes in more advanced active plaques with partial or complete myelin loss in the parenchyma were non-specific esterase+. Lysosomal enzyme acid phosphatase activity was strongly exhibited by 90% of phagocytes in all active plaques and there was a significant correlation between numbers of acid phosphatase+ cells and oil red O+ foamy macrophages. The results indicate that microglia are the main population of phagocytes in the early stages of demyelination and may play an important role in the pathogenesis of MS.

Acid Phosphatase↗

Evolution of ecological differences in the Old World leaf warblers.

Sympatric species that belong to the same ecological guild usually differ in their behaviour and morphology, and these differences are often interpreted as adaptations to having to make use of different resources. Evidence supporting this interpretation comes from association between ecology and morphology among species, in which an a priori functional relationship is reasonable. But one problem with such comparisons is that members of a guild may be closely related, so the more closely related species can share a greater similarity in their morphology and ecology simply as a result of the lingering legacy of a common ancestor. In principle, the importance of historical legacy can be evaluated from phylogenetic relationships and times since divergence for all species, but this is rarely possible because these data are not available. Here we use a phylogeny for eight sympatric species of warbler in the genus Phylloscopus, based on their mitochondrial DNA sequences, to remove the effects of historical legacy. Without these effects, we find strong support for adaptive interpretations of among-species variation in habitat selection, prey-size choice and feeding method. Ecological variation along any of these three niche axes is associated with predictable morphological variation. We also find evidence for historical legacy in that more closely related species are often more similar behaviourally and morphologically. This paradoxical result can be reconciled because the most closely related species tend to differ along only one niche axis, habitat choice. In contrast, the evolution of prey-size choice and feeding method occurred rapidly and early in the diversification of this group. Once a new ecological zone was occupied, subsequent morphological change along these niche axes was limited, accounting for the similarity of closely related species.

Amino Acid Sequence↗

Thyroid rhythm phenotypes and hominid evolution: a new paradigm implicates pulsatile hormone secretion in speciation and adaptation changes.

Thyroid hormones (THs, T(3)/T(4)) are essential central regulators that link many biological tasks, including embryonic and post-natal growth, reproductive function, and the behavioral and physiological responses to stress. Recently I proposed a novel theory to explain the role of THs in vertebrate evolution. Here I review the concept and discuss its ability to explain changes over time in hominid morphology, behavior and life history. THs are produced in a distinctly pulsatile manner and appear to generate species-specific TH rhythms with distinct ontogenic shifts. Individual variations in genetically controlled TH rhythms (TR phenotypes) must generate coordinated individual variation in morphology, reproduction and behavior within populations. Selection for any manifestation of a particular TR phenotype in an ancestral population selects all traits under thyroid control, resulting in rapid and well-coordinated changes in descendants. The concept provides the first really plausible explanation for a number of phenomena, including the convergent evolution of bipedalism in early hominids, species-specific sexual dimorphism, coordinated changes in morphology, brain function and gut length over time in hominids, cold adaptation in Homo neanderthalensis, the possible independent evolution of H. sapiens in Asia, and regional adaptation of hominid populations. This new paradigm provides a unique theoretical framework for explaining human origins that has important implications for human health.

Adaptation, Biological↗

Archaeobatrachian paraphyly and pangaean diversification of crown-group frogs.

Current models for the early diversification of living frogs inferred from morphological, ontogenetic, or DNA sequence data invoke very different scenarios of character evolution and biogeography. To explore central controversies on the phylogeny of Anura, we analyzed nearly 4000 base pairs of mitochondrial and nuclear DNA for the major frog lineages. Likelihood-based analyses of this data set are congruent with morphological evidence in supporting a paraphyletic arrangement of archaeobatrachian frogs, with an (Ascaphus + Leiopelma) clade as the sister-group of all other living anurans. The stability of this outcome is reinforced by screening for phylogenetic bias resulting from site-specific rate variation, homoplasy, or the obligatory use of distantly related outgroups. Twenty-one alternative branching and rooting hypotheses were evaluated using a nonparametric multicomparison test and parametric bootstrapping. Relaxed molecular clock estimates situate the emergence of crown-group anurans in the Triassic, approximately 55 million years prior to their first appearance in the fossil record. The existence of at least four extant frog lineages on the supercontinent Pangaea before its breakup gains support from the estimation that three early splits between Laurasia- and Gondwana-associated families coincide with the initial rifting of these landmasses. This observation outlines the potential significance of this breakup event in the formation of separate Mesozoic faunal assemblages in both hemispheres.

Animals↗

Validation of plaster endocast morphology through 3D CT image analysis.

A crucial component of research on brain evolution has been the comparison of fossil endocranial surfaces with modern human and primate endocrania. The latter have generally been obtained by creating endocasts out of rubber latex shells filled with plaster. The extent to which the method of production introduces errors in endocast replicas is unknown. We demonstrate a powerful method of comparing complex shapes in 3-dimensions (3D) that is broadly applicable to a wide range of paleoanthropological questions. Pairs of virtual endocasts (VEs) created from high-resolution CT scans of corresponding latex/plaster endocasts and their associated crania were rigidly registered (aligned) in 3D space for two Homo sapiens and two Pan troglodytes specimens. Distances between each cranial VE and its corresponding latex/plaster VE were then mapped on a voxel-by-voxel basis. The results show that between 79.7% and 91.0% of the voxels in the four latex/plaster VEs are within 2 mm of their corresponding cranial VEs surfaces. The average error is relatively small, and variation in the pattern of error across the surfaces appears to be generally random overall. However, inferior areas around the cranial base and the temporal poles were somewhat overestimated in both human and chimpanzee specimens, and the area overlaying Broca's area in humans was somewhat underestimated. This study gives an idea of the size of possible error inherent in latex/plaster endocasts, indicating the level of confidence we can have with studies relying on comparisons between them and, e.g., hominid fossil endocasts.

Animals↗

Geomorphological evolution and environmental reclamation of Fusaro Lagoon (Campania Province, southern Italy).

Analysis of morphological, geological and environmental characteristics of the Fusaro Lagoon has shown the present degraded condition of the lagoon and the perilagoon area. The lagoon developed during the mid-Holocene within a wide marine bay confined between the coastal volcanic structures of Mt. Cuma to the north and Torregaveta to the south in the western part of the Phlegrean Fields. Subsequently, the bay was gradually filled with pyroclastic materials from phlegrean eruptive vents and sediments carried by the rivers Volturno and Clanis, thus, creating an open lagoon. It then evolved into a partially closed lagoon due to the formation of a continuous littoral spit during the late Holocene, probably wider than the present-day one and surrounded by marshlands. Finally, the total closure of the lagoon took place in the Graeco-Roman period, following the stabilization of the dune ridge, and it assumed a shape similar to present-day one only towards the end of the 18th century. Between the Roman period and 1941, three lagoon channels were opened in order to avoid the frequent environmental crises which continue to affect, although for different reasons, this salt-water basin. The basin has been exploited for more than 2000 years not only for mollusc culture and pisciculture, but also for the maceration of hemp and flax. In the 1980s, in order to reduce the effects of the environmental crises, dredging of the lagoon bottom has been carried out, altering the hydrogeological equilibrium and that of the ecosystem. Over the past 30 years, the supply of raw sewage of domestic, agricultural and industrial origin has ensured the presence of a high concentration of pollutants, including heavy metals. On the basis of the data obtained and in order to restore this sensitive transitional environment, eco-compatible interventions are proposed which aim at morphological and hydrologic resettlement, abatement of pollutants on the bottom of the basin, reintroduction of endemic molluscs, together with monitoring the quality of sediments and both sea-lagoon waters and groundwater.

Agriculture↗

[The relationship between ontogenesis and phylogeny in the light of genetics: the problem of macro mutations (morphological and molecular aspects)].

An original hypothesis of the molecular genetic basis of evolution is considered. Evolutionary events were assumed to result from a temporal discordance in the interaction between tissue anlages in the course of individual development. The discordance may be caused by satellite DNA rearrangement by macromutations associated with mobile element insertion in the genome.

Animals↗

[Clinical evaluation, evolution and intensive care treatment of severe acute pancreatitis].

Severe acute pancreatitis is morphologically characterized by an intense and necrotizing inflammatory process responsible for early remote organ dysfunctions and late regional complications. Retroperitoneal necrosis has to be identified early by several biological markers and abdominal CT study. A better understanding of the pathophysiological mechanisms underlying the natural history of severe acute pancreatitis, progress in intensive care support and the emergence of new conservative or surgical strategies aimed at removing the necrotic areas and their toxic by-products have led to a dramatic reduction in early and overall mortality for the patient with this disease.

Acute Disease↗

Temporal relationship of blood-nerve barrier breakdown to the metabolic and morphologic alterations of tellurium neuropathy.

The appearance of endoneurial edema early in the evolution of tellurium neuropathy raises the possibility that a breakdown of the blood-nerve barrier (BNB) plays a role in the pathogenesis of the tellurium-induced demyelination. To investigate this possibility, we correlated the temporal onset of breakdown of the BNB with inhibition of cholesterol synthesis and ultrastructural abnormalities in sciatic nerve of weanling Long-Evans rats fed a diet containing 1.1% elemental tellurium. Permeability of the BNB was assessed with [125I]-albumin and horseradish peroxidase (HRP); cholesterol synthesis was assessed by incubating segments of sciatic nerve in vitro with [1-14C]acetate. Cholesterol synthesis was severely inhibited and labeled squalene was accumulating in sciatic nerve at 12 hr of tellurium exposure. The permeability of the BNB progressively increased between 24 hr and 72 hr of tellurium exposure. Membrane-delimited vacuoles, lipid droplets and cytoplasmic excrescences appeared in myelinating Schwann cells at 24 hr; demyelinating axons appeared at 48 hr of tellurium exposure. These observations suggest that factors other than BNB breakdown and vasogenic endoneurial edema are responsible for the initial Schwann-cell injury in tellurium neuropathy. However, the early onset of BNB breakdown may have a synergistic role in the pathogenesis of tellurium-induced demyelination.

Animals↗

Differentiation within the genus Leptocarabus (excl. L. kurilensis) in the Japanese Islands as deduced from mitochondrial ND5 gene sequences (Coleoptera, Carabidae).

The phylogenetic trees have been constructed for the mitochondrial ND5 gene sequences from the Japanese Leptocarabus ground beetles, which contain 101 specimens collected from nearly the complete distribution ranges of them consisting of five morphological species, i.e., Leptocarabus procerulus, L. kumagaii, L. hiurai, L. kyushuensis and L. arboreus. On the trees, there are recognized two major lineages, each of which is further divided into two or more sublineages. The phylogenetic lines are geographically linked. Two or more species occur in a single lineage, and the same species appear in different lines. We suggest that transformation from one type of morphology to another took place in parallel in various periods of evolution of the Japanese Leptocarabus. From the phylogenetic tree and the dating from the nucleotide substitution rate and the geohistorical data it is inferred that the ancestry of all the Japanese Leptocarabus species was derived from a protoform of L. kyushuensis inhabited the ancient Japan area, followed by separation into two lineages after split of the Japanese Islands from the Eurasian Continent. They then propagated distribution to occupy their own habitat ranges, during which the morphological transformation took place in some lineages.

Animals↗

[Sudden idiopathic hearing loss. Case reports in the course of ten years].

The authors present a retrospective case study of 132 subjects with sudden-onset hearing loss who had been observed during the course of 10 years. The results were compared with those available in the literature. These patients were divided into two subgroups based on age: over or under 40. The hearing loss was divided into 4 subgroups according to audiogram morphology. Then the presence, and entity, of any recovery in hearing was evaluated. There was no preference for sex while the greatest incidence was found in the VI and VII decade of life. The audiohistograms obtained when the patients were admitted to the hospital and 2 months later indicated an improvement in the hearing threshold localized above-all in the medium-low frequencies. This confirms a better evolution in those forms localized in the apex of the cochlea. The threshold of 60 dB HL is the dividing line between a totally favorable prognosis and a partially or totally unfavorable prognosis. This indirectly confirms that the intensity of the initial hearing damage is an important prognostic factor. From the morphological point of view the forms with the best evolution appear to be those with a flat or rising morphology. The forms with descending morphology do not present a favorable evolution although those with a threshold around 8000 Hz are worse than those with a threshold of 4000 Hz. As regards age no significant differences were found in the evolution of hearing loss between subjects under and over 40. In conclusion, the essential characteristics of sudden-onset hearing loss are as yet poorly defined. There are so many variables affecting the onset and evolution of hearing loss that it proves impossible to perform any statistically valid analysis which includes them all. To date the elements able to provide some degree of prognostic prediction are the audiogram morphology and the entity of the initial hearing loss.

Adolescent↗

Spermicide, cryptic female choice and the evolution of sperm form and function.

Sperm competition and cryptic female choice profoundly affect sperm morphology, producing diversity within both species and individuals. One type of within-individual sperm variation is sperm heteromorphism, in which each male produces two or more distinct types of sperm simultaneously, only one of which is typically fertile (the "eusperm"). The adaptive significance of nonfertile "parasperm" types is poorly understood, although numerous sperm-heteromorphic species are known from many disparate taxa. This paper examines in detail two female-centred hypotheses for the evolution and maintenance of this unconventional sperm production strategy. First, we use game theoretical models to establish that parasperm may function to protect eusperm from female-generated spermicide, and to elucidate the predictions of this idea. Second, we expand on the relatively undeveloped idea that parasperm are used by females as a criterion for cryptic female choice, and discuss the predictions generated by this idea compared to other hypotheses proposed to explain sperm heteromorphism. We critically evaluate both hypotheses, suggest ways in which they could be tested, and propose taxa in which they could be important.

Adaptation, Physiological↗

Pattern of phylogenetic diversification of the Cychrini ground beetles in the world as deduced mainly from sequence comparisons of the mitochondrial genes.

The phylogenetic position of the tribe Cychrini within the subfamily Carabinae (the family Carabidae) was estimated by comparing the nucleotide sequences of the mitochondrial NADH dehydrogenase subunit 5 (ND5) gene and the nuclear 28S ribosomal DNA (rDNA). The phylogenetic trees suggest that the Cychrini would most probably be the oldest line within the Carabinae. Phylogenetic trees were constructed by comparing the mitochondrial cytochrome C oxidase subunit I (COI) gene sequences from 33 species of the Cychrini from various localities that include the whole distribution ranges of the representative species within all the known genera in the world. The trees suggest that the Cychrini members radiated into a number of phylogenetic lineages within a short period, starting about 44 million years ago (MYA). Most of the phylogenetic lineages or sublineages are geographically linked, each consisting of a single or only a few species without scarce morphological differentiation in spite of their long evolutionary histories (silent or near-silent evolution [see Adv. Biophys. 36 (1999) 65; J. Mol. Evol. 53 (2001) 517]). The fact suggests that the geographic isolation per se did not bring about conspicuous morphological differentiation. The phylogenetic lineages of the Cychrini well correspond to the taxonomically defined genera and the subgenera.

Animals↗

Phylogenetic relationships of three species of crows (Corvidae, Aves) based on the restriction site variation of nuclear ribosomal RNA gene.

Southern blot analysis of nuclear ribosomal DNA (rDNA) was carried out to examine phylogenetic relationships between three species of crows: Corvus cornix, C. corone and C. macrorhynchos. In this purpose DNA samples of birds were digested by 12 restriction enzymes (EcoRI, HindIII, PstI, BamHI, DraI, PvuII, KpnI, XbaI, BglII, BclI, SacI and AatI) and hybridized with the clones of mouse rDNA probes (18S, 28S and INT). Based on the data obtained and Gallus gallus restriction map as a standard the restriction site maps of the main rDNA repeating unit types (repetypes) were constructed. The length of crow rDNA genes was estimated to be 22.5 kb for Jungle and 22.0 kb for Hooded and Carrion crows. C. corone and C. cornix shared a common repetype which differed, by presence of two restriction sites (XbaI and PvuII) in the spacer region, from that of C. macrorhynchos with the estimated sequence divergence of 0.26%. Restriction-size variation was revealed between individuals of C. corone and C. cornix, although the substantial meanings of this variation remain unclear yet. These data suggest that the crow species evolve with slower rate of molecular evolution, as generally observed in other avian species, compared with the higher extent in external morphology, ecological features and behavior.

Animals↗