Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Primates”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 973 records · Page 54Linked to original sources

Non-human primate models for investigating fear and anxiety.

Non-human primates exhibit similar physiological and behavioral responses to anxiety-inducing situations as humans and have, in fact, been successfully employed in both conditioned (i.e. conflict paradigms) and ethologically based tests of fear/anxiety (i.e. involuntary isolation, social interaction, human threat, predator confrontation). In the last decade, a renewed and growing interest in non-human primate models has resulted from the use of the small callitrichid species in behavioral pharmacology and neuroscience. This review focuses on the available non-human primate models for investigating fear/anxiety, addressing their advantages, shortcomings, and conceptual framework on which they are based. Lastly, a new ethologically based model to study anxiety and fear-induced avoidance in callitrichids--the marmoset predator confrontation test--is discussed.

Animals↗

Brain system size and adult-adult play in primates: a comparative analysis of the roles of the non-visual neocortex and the amygdala.

Recent studies have shown that contrary to expectation, larger-brained species within mammalian orders are not more likely to engage in play. This is true for juvenile rodents, juvenile marsupials and adult primates. Neither does the relative size of the neocortex predict the prevalence of play in species of marsupials and primates. Two methodological limitations may account for the lack of such relationships. Firstly, play may only vary systematically with specific brain areas, not overall size increases in brain tissue. Secondly, the play indices used to measure the variation in play across species may be insufficiently sensitive to the effects of changes in brain size. In this study, we attempt to deal with the first methodological problem. The adult-adult play fighting among species of primates was correlated with the relative size of the non-visual cortex and the amygdala. The statistical analyses used took into account the problems of scaling and corrected for degree of phylogenetic relatedness among the species. The size of the non-visual cortex failed to predict the prevalence of play fighting occurring in either sexual or non-sexual contexts. In contrast, the size of the amygdala significantly predicted the prevalence of sexual play, but not non-sexual play. That is, species with larger sized amygdala are more likely to engage in sexual play. These findings provide new insights into the role of different brain systems in the regulation of play behavior.

Amygdala↗

Enzymatic methylation of arsenic compounds. IX. Liver arsenite methyltransferase and arsenate reductase activities in primates.

Inorganic arsenic is an important environmental toxicant of both natural and anthropogenic sources. It is a human carcinogen for which appropriate animal models of most arsenic-induced cancers are missing. Although methylation of inorganic arsenic has been considered its primary mechanism for detoxification, the results of recent investigations disagree. We have investigated 17 species of non-human primates, including great apes, New and Old World monkeys and prosimians, and have found that thirteen of them lacked hepatic arsenite methyltransferase activity in vitro. Four primate species, three from the Old World genus Macaca, and one of three animals from the New World genus Saimiri, had arsenite methyltransferase activity. That all the tissues examined were viable was demonstrated by their all having arsenate reductase activity. These data suggest that methylation of inorganic arsenic is not a detoxification mechanism for many non-human primates. Thus, alternative methods of detoxifying inorganic arsenic in mammals need to be considered and investigated. In addition, there appears to be a phylogenetic component to having arsenite methyltransferase activity, as evidenced by the result of our study of the Macaca species.

Adenosine Triphosphatases↗

Ontogeny of the primate fovea: a central issue in retinal development.

The formation of the primate fovea has fascinated a substantial number of histologists, pathologists, ophthalmologists and physiologists for more than a century. In this article, using data from the literature as well as our own observations, we identify events which we believe are crucial in this process and present a developmental neurobiologist's view of the formation of the primate fovea. The fovea is a region of the retina specialized for diurnal, high acuity functions which require a high spatial density of cone photoreceptors as well as a large number of inner retinal cells in order to establish the distinct retinofugal pathways (ganglion cell axons) receiving from individual cones in the foveal cone mosaic. A unique feature of the fovea is the displacement of cells connected to the foveal cones onto the rim of the fovea. It is generally believed that this displacement counteracts the problems caused by the scattering of the incoming light by cells and blood vessels of the inner retina. We believe that one of the crucial events in the formation of the primate fovea is the early centripetal migration of photoreceptors towards the central area (centripetal displacement). This process, initiated early in development, continues throughout intrauterine life until some months or years postnatal. We propose that the displacement of cells from the inner layers is related to the earlier developmental accumulation of photoreceptors and inner retinal cells centrally. This, we propose, leads to metabolic "starvation" of the inner retina, resulting from the complete absence of retinal vessels from the vicinity of the incipient fovea. It is suggested that these factors in turn trigger centrifugal displacement of inner retinal cells towards the encroaching perifoveal capillary network and lead to the formation of the foveal depression.

Animals↗

The presence of Cryptosporidium oocysts in stools of clinically diarrhoeic and normal nonhuman primates in Kenya.

A total of 114 nonhuman primates comprising 51 vervet monkeys (Cercopithecus aethiops) and 63 olive baboons (Papio anubis) were examined for Cryptosporidium oocysts using the modified Kinyoun's acid-fast staining technique. About 51.7% (59/114) of all the specimens examined, representing 78.4% (40/51) of the vervet monkeys and 30.1% (19/63) of the olive baboons were positive. Bright red, refractile Cryptosporidium oocysts were observed in the stained faecal smears against a blue background. Up to 4/6 (66.7%) of the diarrhoeic vervets and 2/3 (66.7%) baboons, respectively, were positive while the rest were negative. To the best of our knowledge, this report is the first on cryptosporidiosis in old world nonhuman primates in Kenya and probably the first report of the infection in olive baboons. Given the high frequency of oocysts in diarrhoeal specimens, the parasite may have been associated with clinical diarrhoea in the sampled animals. Cryptosporidium, which has been reported in humans in Kenya, is also suspected to occur in livestock. Its isolation from clinically ill, normal colony-borne and newly caught feral nonhuman primates has significant implications for both public health and animal agriculture in Kenya.

Animals↗

Amino acid replacement is rapid in primates for the mature polypeptides of COX subunits, but not for their targeting presequences.

We examined inferred amino acid replacements for 16 genes that encode the proteins of the cytochrome c oxidase (COX) holoenzyme in eight vertebrate species. Phylogeny-based analysis revealed that the human lineage (primates) has had an unusually large, statistically significant, number of amino acid replacements in the mature protein coding region of these genes. This finding is similar to earlier observations of an accelerated non-synonymous substitution rate for some lineages of primates for COX1, COX2, COX4, and COX7AH. In contrast, the mitochondrial targeting presequences of these same proteins have not undergone a concomitant rate change. This more comprehensive analysis suggests that COX5A, COX6B, COX6C, COX7C, and COX8L have also undergone an acceleration in amino acid replacement rates in anthropoid primates. Some of these rate accelerations (e.g. in COX5A and COX7C) are so pronounced that non-human mammalian sequences are more similar to sequences from Xenopus or zebrafish than they are to human. Since the functions of the targeting and mature proteins of these polypeptides are different, the mature portions of these genes are likely to have undergone a functionally significant change that is adaptive in nature.

Amino Acid Sequence↗

Conservation of Y chromosome-specific sequences immediately 5' to the testis determining gene in primates.

Sex is determined in mammals by the SRY gene, which is located on the non-recombining region of the Y chromosome. Although the presence of mutations in SRY associated with male to female sex reversal clearly indicates that this gene is essential for testis formation, little is known concerning other genes in this process or how the expression of SRY itself is controlled. This is mainly due to the absence of an appropriate in vitro cellular model. Previous studies have indicated that SRY coding sequences are undergoing rapid evolution in mammals. In this study, we cloned and compared a Y chromosome-specific region immediately 5' to the SRY open reading frame in several primate species. The divergence of the region 5' to SRY between primates was found to be comparable with that described for autosomal sequences. An alignment of sequences within the primate lineage, together with sequences from the cow and pig, revealed the presence of several highly conserved motifs. These domains may have a function in the control of SRY expression during fetal development.

Animals↗

Convergent evolution in primates and an insectivore.

The cardiovascular risk factor LPA has a puzzling distribution among mammals, its presence being limited to a subset of primates and a member of the insectivore lineage, the hedgehog. To explore the evolutionary history of LPA, we performed extensive genomic sequence comparisons of multiple species with and without an LPA gene product, such as human, baboon, hedgehog, lemur, and mouse. This analysis indicated that LPA arose independently in a subset of primates, including baboon and human, and an insectivore, the hedgehog, and was not simply lost by species lacking it. The similar structural domains shared by the hedgehog and primate LPA indicate that they were formed by a unique molecular mechanism involving the convergent evolution of paralogous genes in these distant species.

Animals↗

Ionotropic and metabotropic GABA and glutamate receptors in primate basal ganglia.

The functions of glutamate and GABA in the CNS are mediated by ionotropic and metabotropic, G protein-coupled, receptors. Both receptor families are widely expressed in basal ganglia structures in primates and nonprimates. The recent development of highly specific antibodies and/or cDNA probes allowed the better characterization of the cellular localization of various GABA and glutamate receptor subtypes in the primate basal ganglia. Furthermore, the use of high resolution immunogold techniques at the electron microscopic level led to major breakthroughs in our understanding of the subsynaptic and subcellular localization of these receptors in primates. In this review, we will provide a detailed account of the current knowledge of the localization of these receptors in the basal ganglia of humans and monkeys.

Animals↗

The intermetatarsal articular facet of the first metatarsal bone in humans: a derived trait unique within primates.

The occurrence and morphology of an intermetatarsal facet of the first metatarsal bone have been investigated in a series of 306 nonhuman primates representative of 40 genera, and in a series of 412 human metatarsal bones (dried bones) (215 left, 197 right). In nonhuman primates, no case of intermetatarsal facet was observed in the 306 first metatarsal bones studied. In humans, a well-defined intermetatarsal facet was observed in 127 out of the 412 bones (30.8%); no significant difference was observed between the left and right sides. The shape of the facet was elliptical, more or less elongated; it had a mean major axis (height) of 10.7 mm, and a mean minor axis (width) of 6.1 mm (extremes: 5 x 3 mm and 17 x 10 mm). The facet was located in the dorsal third of the lateral side of the first metatarsal in 103 out of 127 cases (81.1%), and in the middle third in 24 out of 127 cases (18.9%); it was never observed in the plantar third. The intermetatarsal facet was in connection with the proximal articular facet for the medial cuneiform in 68 out of 127 cases (53.5%), and it was separated from the proximal facet by a small nonarticular area or groove in 59 out of 127 cases (46.5%). The present observations suggest that the human first intermetatarsal facet is a derived trait unique within primates (autapomorphy) which is present in approximately one third of individuals. The appearance of this new articular facet in human evolution seems clearly related to the morphological modifications of the foot due to the acquisition of bipedalism, and more particularly to the loss of abductability of the hallux and its permanent adduction.

Animals↗

The functional organization of somatosensory cortex in primates.

Our understanding of the functional organization of somatosensory cortex and thalamus in primates and other mammals has greatly increased over the last few years. It is now clear that higher primates have four strip-like representations of skin and muscle receptors corresponding to areas 3 a, 3b, 1 and 2 of anterior parietal cortex. Areas 3b and 1 receive cutaneous information from the ventroposterior nucleus, while a ventroposterior superior nucleus provides areas 3a and 2 with information from muscle receptors. Area 3b is the homolog of S-I in prosimians and non-primates and it provides most of the activating cutaneous inputs to areas 1 and 2. Most of the further processing that allows tactile recognition of objects involves somatosensory areas of the lateral sulcus, where both S-II and the parietal ventral area (PV) receive activating inputs from areas 3a, 3b, 1 and 2. S-II also projects to PV and to a parietal rostral area where further connections with the amygdala and hippocampus may occur to allow the formation of tactile memories. Areas of anterior parietal cortex also project to posterior parietal cortex, where regions of cortex are largely somatosensory, but the functional subdivisions remain uncertain. All of the somatosensory fields have access to motor areas of the frontal lobe, but the magnitude and targets of the projections differ.

Animals↗

The chimpanzee and other non-human-primate models in HIV-1 vaccine research.

Animal models are of great importance for the study of disease pathogenesis, particularly non-human-primate models of infectious diseases. The role of non-human primates in HIV-1 research is continually discussed and debated. Here, we examine three primate models: chimpanzee-HIV-1, rhesus macaque-simian immunodeficiency virus and rhesus macaque-SHIV, and discuss immunological similarities and differences, safety and monetary issues, and ethical concerns.

AIDS Vaccines↗

Evolutionary relationships between 15 Plasmodium species from new and old world primates (including humans): an 18S rDNA cladistic analysis.

We present a new phylogenetic analysis of 15 primate Plasmodium species based on 18S rDNA sequences including new sequences of Plasmodium coatneyi, P. fieldi, P. gonderi, P. hylobati and P. simium. The results are discussed in the context of the parasite host species and their geographical distribution. Contrary to other phylogenies constructed with this 18S rDNA molecule, we observed that the topology of phylogenetic trees was not affected either by the quality of the nucleotide matrices, or by the species present in the outgroup. This analysis showed the following. (1) The polyphyly of human Plasmodium is confirmed. (2) The monophyly of Plasmodium from Old World monkeys is confirmed by the new added sequences and P. gonderi, an African species, possibly could be at the root of this group. (3) The most parsimonious biogeographical hypothesis is that P. vivax originated in Asia; thus, its related species P. simium appears to be derived through a transfer from the human P. vivax to New World monkey species in South America. (4) Sampling efforts of non-human primate Plasmodium could permit improvement of the knowledge of primate Plasmodium phylogeny and also consideration of the risks of malaria emergence from monkey reservoirs.

Animals↗

Definition of genetic markers in nuclear ribosomal DNA for a neglected parasite of primates, Ternidens deminutus (Nematoda: Strongylida)--diagnostic and epidemiological implications.

Ternidens deminutus (Strongylida) is a parasitic nematode infecting non-human and human primates in parts of Africa, Asia and the Pacific islands. The present study genetically characterized T. deminutus and defined genetic markers in nuclear ribosomal DNA (rDNA) as a basis for developing molecular-diagnostic tools. The sequences of the second internal transcribed spacer (ITS-2) of rDNA were determined for adult specimens of T. deminutus (Nematoda: Strongylida: Oesophagostominae) from the Olive baboon and the Mona monkey. The length and G+C content of the ITS-2 sequences was 216 bp and approximately 43%, respectively. While there was no sequence variation among individual T. deminutus specimens from the baboon, 6 (2.8%) nucleotide differences were detected in the ITS-2 between the parasite from baboon and that of the Mona monkey, which is similar to the difference (3.2%) between 2 other species of Oesophagostominae (Oesophagostomum bifurcum and O. stephanostomum) from non-human primates, suggesting significant population variation or the existence of cryptic (i.e. hidden) species within T. deminutus . Pairwise comparisons of the ITS-2 sequences of the 2 operational taxonomic units of T. deminutus with previously published ITS-2 sequences for selected members of the subfamilies Oesophagostominae and Chabertiinae indicated that species from primates (including those representing the subgenera Conoweberia and Ihleia) are closely related, in accordance with previous morphological studies. The sequence differences (27-48.3%) in the ITS-2 between the 2 taxonomic units of T. deminutus and hookworms (superfamily Ancylostomatoidea) enabled their identification and delineation by polymerase chain reaction (PCR)-based mutation scanning. The genetic markers in the ITS-2 provide a foundation for improved, PCR-based diagnosis of T. deminutus infections and for investigating the life-cycle, transmission patterns and ecology of this parasite.

Animals↗

Phototransduction: modeling the primate cone flash response.

We have developed a new model of phototransduction that accounts for the dynamics of primate and human cone flash responses in both their linear and saturating range. The model incorporates many of the known elements of the phototransduction cascade in vertebrate photoreceptors. The input stage is a new analytic expression for the activation and inactivation of cGMP-phosphodiesterase (PDE). Although the Lamb and Pugh (1992) model (of a delayed ramp for the rising phase of the PDE response in amphibian rods) provided a good fit for the first 2 log units of stimulus intensity without parameter adjustments, the remaining 4 log units of the data required nonlinear modifications of both delay and gain (slope). We show that this nonlinear behavior is a consequence of the delay approximation and develop a completely linear model to account for the rising phase of amphibian rod photocurrent responses over the full intensity range (approximately 6 log units). We use the same dynamic model to account for primate cone responses by decreasing the time constants of PDE activation and introducing an enhanced inactivation process. This PDE response activates a nonlinear calcium feedback stage that modulates guanylate cyclase synthesis of cyclic GMP. By adjustment of the throughput and feedback parameters, the full model successfully captures most of the features of the primate and human cone flash responses throughout their dynamic range. Our analysis suggests that initial processes in the transduction cascade may be qualitatively different from comparable processes in rods.

3',5'-Cyclic-GMP Phosphodiesterases↗

Bovine herpesvirus type 2 is closely related to the primate alphaherpesviruses.

Bovine herpesvirus type 2 (BoHV-2), also known as bovine mammillitis virus, is classified in the Family Herpesviridae, Subfamily Alphaherpesvirinae, and Genus Simplexvirus along with herpes simplex viruses type 1 and 2 (HSV-1 and HSV-2) and other primate simplexviruses on the basis of similarities in 4 genes within the 15 kb U(L) 23-29 cluster. This could be explained either by a global similarity or a recombination event that brought primate herpesviral sequences into a bovine virus. Our sequences for DNA polymerase (U(L)30), a large gene adjacent to the previously identified conserved cluster, and glycoprotein G (U(S)4), a gene as distant from the cluster as possible on the circularized genome, confirm the close relationship between BoHV-2 and the primate simplexviruses, and argue for a global similarity and probably a close evolutionary relationship. Thus one can speculate that BoHV-2 may represent a greater hazard to humans than has been appreciated previously.

Alphaherpesvirinae↗

Species-specific evolution of MHC class I genes in the higher primates.

Humans express three highly polymorphic 'classical' (HLA-A,B and C) and three conserved 'non-classical' (HLA-E, F and G) MHC class I genes. Their comparison with the MHC class I genes of apes and monkeys reveals the differential extent to which MHC class I genes have been preserved during primate evolution. African apes have orthologues of all six human genes, and although allelic lineages of the A and C loci are shared, these species share none of the human alleles. In Asian apes, several MHC class I genes show significant differences from the human genes, a trend which continues with the Old World monkeys, and even more so in the New World monkeys, where E and F are the only human gene orthologues. The C locus is confined to humans and apes. Multiple A-related and B-related loci have been identified in apes and Old World monkeys showing that duplication of these loci has been a common event during primate evolution. Certain of the daughter loci exhibit low polymorphism, suggesting they have adopted a non-classical function. The differing rates at which MHC class I genes have evolved during primate evolution likely reflects their differing functions in the immune response.

Animals↗

Genetic management of nonhuman primates.

Genetic management is widely recognized as a critical component of the overall management of captive nonhuman primate colonies which produce animals for biomedical research. In this paper, we review the roles of conservation-oriented genetic management, research-oriented genetic management, genetic management at the level of taxomomic class, genetic management at the level of the population, and quantitative genetic analysis in comprehensive genetic management programs for nonhuman primate colonies. We conclude that genetic management is crucial for maintaining nonhuman primate populations suitable for genetic research on normal and disease-related phenotypes. In addition, for research programs that do not have specific genetic objectives, genetic management is essential to facilitate the selection of samples of well-matched unrelated animals for experimental purposes.

Animals↗