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Biomedical subjects

M Lemire

Publications and source records attributed to M Lemire.

At least 19 recordsLinked to original sources

Association study between the CX3CR1 gene and asthma.

CX3CR1, a fractalkine receptor, mediates cell-adhesive and migratory functions in inflammation. Based on CX3CR1 expression observed in bronchial tissues of asthmatic subjects, we hypothesized that genetic variation at this locus may affect susceptibility to asthma. We carried out an association study and a haplotypic analysis with selected polymorphisms of the CX3CR1 in a familial asthmatic sample from a founder population. Genetic analyses performed by FBAT software showed five CX3CR1 single nucleotide polymorphisms (rs938203, rs2669849, rs1050592, T280M and V249I) with significant associations between their common alleles and asthma (P<0.004) in a dominant model. A haplotype formed with common alleles of rs1050592, T280M and V249I is also overtransmitted in asthmatic subjects (P=0.005) under a dominant model. The associations of V249I and rs2669849 have been validated in an independent case-control sample. For V249I, odds ratios (OR) are 2.16 (common homozygous) and 2.11 (heterozygous) in dominant model (P=0.031). For rs2669849, OR are 2.75 (common homozygous) and 1.86 (heterozygous) in additive model (P=0.007) and dominant model (P=0.059). These results suggest an asthma protective effect of the minor alleles in healthy control carriers. Further functional studies of CX3CR1 are needed to document its role in the pathophysiology of asthma.

Adolescent↗

NRAMP1 is not associated with asthma, atopy, and serum immunoglobulin E levels in the French Canadian population.

Reduced infection by mycobacteria, including Mycobacterium tuberculosis, may be partly responsible for increased prevalence of allergic and autoimmune diseases in developed countries. In a murine model of innate resistance to mycobacteria, the Nramp1 gene has been shown to affect asthma susceptibility. From this observation, it was proposed that human NRAMP1 may be a modulator of asthma risk in human populations. To experimentally test the candidacy of NRAMP1 in asthma susceptibility, we characterized five genetic variants of NRAMP1 (5'CAn, 274C>T, 469+14G>C, D543N, and 1729+del4) in an asthma family-based cohort from northeastern Quebec. We did not observe any significant association between NRAMP1 variants (either allele or haplotype specific) with asthma, atopy, or serum immunoglobulin E levels. These results demonstrate that, in spite of direct involvement of Nramp1 in a murine asthma model, in human populations NRAMP1 is not likely to be a major contributor to the genetic etiology of asthma and asthma-related phenotypes.

Asthma↗

Equilibrium structure and stability in a frequency-dependent, two-population diploid model.

We investigate the equilibrium structure for an evolutionary genetic model in discrete time involving two monoecious populations subject to intraspecific and interspecific random pairwise interactions. A characterization for local stability of an equilibrium is found, related to the proximity of this equilibrium with evolutionarily stable strategies (ESS). This extends to a multi-population framework a principle initially proposed for single populations, which states that the mean population strategy at a locally stable equilibrium is as close as possible to an ESS.

Animals↗

Evolutionarily stable strategy in a sex- and frequency-dependent selection model.

In this paper, a sex-dependent matrix game haploid model is investigated. For this model, since the phenotypes of female and male individuals are determined by alleles located at a single locus and are sex dependent, any given genotype corresponds to a strategy pair. Thus, a strategy pair is an ESS if and only if the allele corresponding to this strategy pair cannot be invaded by any mutant allele. We show that an ESS equilibrium must be locally asymptotically stable if it exists.

Alleles↗

On the non-existence of an optimal migration rate.

We show that an optimal migration rate may not exist in a population distributed over an infinite number of individual living sites if empty sites occur. This is the case when the mean number of offspring per individual mu is finite. We make the assumption of uniform migration to other sites whose rate is determined by the parent's genotype or the offspring's genotype at a single locus in a diploid hermaphrodite population undergoing random mating. In both cases, for mu small enough, any population at fixation would go to extinction. Moreover, in the latter case, for intermediate values of mu, the only fixation state that could resist the invasion of any mutant would lead the population to extinction. These are the two conditions for the non-existence of an optimal migration rate. They become less stringent as the cost for migration expressed by a coefficient of selection 1-beta becomes larger, that is closer to 1. The results are obtained assuming that the allele at fixation is either nondominant or dominant. Although the optimal migration rate is the same in both cases when it exists, the optimality properties may differ.

Alleles↗

Ipsilateral visual projections in non-eutherian species: random variation in the central nervous system?

The published descriptions of ipsilateral visual pathways in non-eutherian species are reviewed. Such pathways exist in members of all vertebrate classes; since they exist in agnathans, it is suggested that the presence of ipsilateral visual projections is the ancestral condition. None of the published attempts to explain the considerable interspecific variation of these pathways can be generalised to all vertebrate species: in particular, this variation is not generally related to the degree of overlap of the visual fields, to a particular mode of life, nor to taxonomic position within a given vertebrate category and cannot consistently be explained by variation at the albino locus. It is suggested that this variation is the result of purely random variation of unidentified elements of the genetic material or of epigenetic mechanisms and hence that ipsilateral visual projections are functionally neutral. This conclusion is supported by some extremely fragmentary behavioral data indicating that the information they provide is redundant.

Animals↗

Interspecific variation in the chelonian primary visual system.

The primary visual system of 21 species of turtles, distributed among nine of the existing 12 families, were studied by autoradiography. In all species, contralateral visual projections exist to 15 targets: two hypothalamic structures (nucleus suprachiasmaticus and n. periventricularis), three major thalamic visual centres (nucleus ovalis, n. geniculatus lateralis ventralis and n. geniculatus lateralis dorsalis) and two minor thalamic targets (nucleus dorsolateralis anterior and n. ventrolateralis), five pretectal sites (nucleus geniculatus pretectalis, n. opticus pretectalis ventrolateralis, n. lentiformis mesencephali, n. posterodorsalis and n. griseus tectalis), two strata of the optic tectum (stratum opticum and s. fibrosum et griseum superficiale), and a single tegmental target (nucleus opticus tegmenti). In contrast to the stability of contralateral visual projections, their ipsilateral counterparts varied considerably between species, being limited to the hypothalamus in some species, and involving the majority of the primary visual centres in others. This variation is not readily explainable in terms of taxonomic position or of differences in mode of life.

Animals↗

The primary visual system of flatfish: an evolutionary perspective.

The retinal projections of two species of flatfish (Scophthalmus maximus, Scophthalmidae; Platichthys flesus, Pleuronectidae) were investigated by autoradiography and by a HRP technique. Contralateral projections to five hypothalamic centres (area optica preoptica ventralis, nucleus opticus preopticus parvocellularis posterior pars lateralis, n. suprachiasmaticus, n. opticus hypothalami ventromedialis and area optica hypothalami posterior), thirteen thalamo-pretectal centres (nucleus opticus dorsolateralis (partes medialis, ventralis and lateralis), n. opticus ventrolateralis, n. opticus commissurae posterioris (partes dorsalis and ventralis), n. opticus accessorius, n. geniculatus lateralis mesencephali, nn. opticus pretectalis dorsalis, medialis and ventralis and n. corticalis), three layers of the optic tectum (stratum opticum pars externa, stratum fibrosum et griseum superficiale, stratum album centrale), and a single target in the tegmentum (n. opticus tegmenti mesencephali dorsalis), were identified in both species. Interspecific variation of the contralateral visual projections is relatively small. Ipsilateral visual projections of fibres which recross the midline in the minor and transverse commissures were also identified; in S. maximus this ipsilateral contingent is poorly developed and concerns principally hypothalamic structures, while in P. flesus the ipsilateral projections are considerably more extensive and involve both hypothalamic and thalamo-pretectal primary visual centres. No differences in the projections from the fixed and from the migrated eye were observed in either species. The findings are discussed in the general context of the existing literature on the visual projections of teleosts, in an attempt to characterize the primary visual system of the Pleuronectiformes in an evolutionary context.

Animals↗

The embryological development of primary visual centres in the turtle Emys orbicularis.

The development of the primary visual centres was studied in a series of embryos of the turtle, Emys orbicularis, incubated at 25 degrees C. The differentiation of both visual and nonvisual diencephalic and mesencephalic structures takes place entirely within the 2nd quarter of the period of incubation; this finding appears to be consistent with previous descriptions of the embryology of 2 other chelonian species, Lepidochelys and Chelydra. Two successive waves of migration, each dividing into internal and external sheaves, are involved in the formation of the structures of the diencephalon and mesencephalon. The primary visual centres, which comprise 2 hypothalamic, 5 thalamic and 5 pretectal zones of retinal projections, together with the 2 superficial layers of the tectum and a single tegmental projection zone, all have their origin in the external sheaf of the 1st wave of migration. The finding that the adult nucleus geniculatus lateralis dorsalis, pars ventralis arises from one of the migrations of the dorsal thalamus is discussed in the context of the debate over the possible homologues of the mammalian geniculostriate visual pathway.

Animals↗

A reconsideration of the primary visual system of the turtle Emys orbicularis.

The retinocerebral projections of Emys orbicularis were investigated by means of [3H]-proline or HRP, administered by intraocular injection. Two newly-hatched, two juvenile and seven adult specimens were examined. The results reveal contralateral retinal projections to fifteen sites: two in the hypothalamus (the nuclei suprachiasmaticus and periventricularis), five in the thalamus (the nuclei ovalis, geniculatus lateralis ventralis, geniculatus laleralis dorsalis, dorsolateralis anterior and ventrolateralis), five in the pretectal region (the nuclei geniculatus pretectalis, opticus pretectalis ventrolateralis, lentiformis mesencephali, posterodorsalis and griseus tectalis), two in the optic tectum (the stratum opticum and the stratum fibrosum et griseum superficiale), and one in the tegmentum (the nucleus opticus tegmenti). Ipsilateral projections to nine of these sites at thalamic, pretectal, tectal and tegmental levels, while weak, could be clearly demonstrated. These results differ considerably from those obtained in a previous investigation using a Nauta-paraffin technique; it is suggested that the differences are due to limitations of the latter technique. A review of the existing literature on the Chelonian primary visual system reveals considerable terminological diversity, and a standard nomenclature for the primary visual centres of turtles is proposed.

Afferent Pathways↗

The optic nerve of the viper, Vipera aspis.

A quantitative investigation of the optic nerves of eight adult vipers was carried out, both at the level of resolution of the light microscope by stereological methods, and at the level of resolution of the electron microscope. The majority (87%) of axons are myelinated, and the fibers are organized in fascicles; each bundle of axons is disposed around a central column of glial cells of which the greater proportion (62%) are oligodendrocytes, 33% are astrocytes and the remaining 5% are microglial cells. Estimations of the total number of fibers varied, from 5.37 X 10(4) to 6.96 X 10(4), among the eight specimens. The distribution of diameters of myelinated fibers is well characterized (chi 2 = 16.84, df = 22, 0.9 greater than p greater than 0.5) by a three-parameter lognormal distribution with a mean of 0.735 micron, standard deviation of 0.239 micron, and origin of 0.21 micron. Axon diameter is linearly related (r = 0.60) to the number of electron-dense layers in the myelin sheath. The diameters of unmyelinated fibers are distributed (chi 2 = 1.95, df = 4, 0.9 greater than p greater than 0.5) as a two-parameter lognormal distribution with mean of 0.25 micron and standard deviation of 0.067 micron. A surprisingly large number of myelinated fibers, apparently dispersed at random throughout the nerve, showed anomalies of myelination; two possible explanations, between which it is impossible to discriminate on the basis of the available data, are offered for this state of affairs.

Animals↗

[Demonstration of a retino-thalamo-hippocampal pathway in the rat].

Investigations using double labeling by axonal transport of tracers have shown that in the rat, four nuclei of the anterior thalamus (anterior dorsal, anterior ventral, lateral anterior, bed nucleus of the stria terminalis) that project to the CA1 region of the hippocampus also receive a discrete input from the contralateral eye. The significance of this telencephalic visual pathway is discussed in a phylogenetic context.

Afferent Pathways↗

[Embryogenesis of the styloglossus muscle in the human embryo. Its relationship with neighboring structures].

Histogenesis of the muscles of the human tongue has been studied from the 15th week in utero onward: however their intrinsic or extrinsic origin is uncertain. The intrinsic musculature has sometimes be questioned (Saban, 1971). The embryogenesis of the styloglossus muscle has been studied in ten 39 to 58 day old human embryos. Its differentiation beyond the first lingual swellings in contact with a branch of the hypoglossus nerve allows its development to be followed outside the territories of the branchial arches. This study showed its progressive development, from day 42 onward, along bundles of the ceratoglossus and basioglossus muscles. The styloglossus muscle penetrates slowly on day 45 in the transverse fibres located behind the tongue. These latter differentiate earlier, independently and at the same time as the geniohyoid and genioglossus muscles, near the neural extensions of the hypoglossus nerve: they are very rapidly intermixed with the fibres of the genioglossus muscle: the other muscular fibres and those of the styloglossus muscle penetrate only later and progressively. In the current state of knowledge of axial neural organization, it can be concluded that the lingual muscles differentiate from the same type of cells recognized and innervated by the neurons of the hypoglossus nerve. The epigenesis of the different muscles is related to the appearance of their various functions.

Cell Differentiation↗

Aldosterone and the control of secretion by the nasal salt gland of the north African desert lizard, Uromastix acanthinurus.

The secretory response of the nasal salt gland of the north African agamid lizard Uromastix acanthinurus to injections of 1 M KCl and NaCl is correlated with changes in circulating levels of the corticosteroids aldosterone and corticosterone. KCl loading led to a progressive rise in plasma aldosterone levels, and NaCl loading was associated with a fall. Neither treatment significantly altered plasma corticosterone concentrations which remained at levels characteristic of unstressed animals. Rates of potassium excretion were positively correlated with circulating levels of aldosterone whereas sodium excretion showed a negative correlation. As in previous studies, injections of exogenous aldosterone or dexamethasone into KCl-loaded animals failed to further stimulate potassium excretion, but did depress sodium excretion by the gland. Spironolactone, an aldosterone antagonist in mammals, was without effect on the rate of potassium excretion in KCl-injected animals. These data suggest that aldosterone functions as a mineralocorticoid on the nasal gland of U. acanthinurus (i.e., natriferic and kaliuretic) but direct evidence of this will require the use of adrenalectomized animals.

Aldosterone↗