Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Cercopithecidae”

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 829 records · Page 46Linked to original sources

Congenital malformations and twinning in a breeding colony of Old World monkeys.

Clinical and necropsy records of malformations in Old World monkeys were compiled. The numbers of malformations and birth incidence rate for each species were: Rhesus macaque (Macaca mulatta) 3 (1.02%); Cynomolgus macaque (Macaca fascicularis) 11 (1.62%); Stumptail macaque (Macaca arctoides) 3 (1.55%); African green monkey (Cercopithecus aethiops) 4 (1.5%). There was one pair of rhesus twins (twinning rate: 0.34%). Cardiovascular and central nervous system lesions accounted for 55% of all malformations. Only two of the malformations were in inbred infants. Nine of twenty-one colony-born malformed infants lived 24 hours or more.

Animals↗

Monoclonal antibodies recognizing single amino acid substitutions in hemoglobin.

Four monoclonal antibodies (mAb) to non-human primate hemoglobin referred to as Cap-4, Cap-5, Rh-2, and Rh-4, and two mAb to human hemoglobin, referred to as H-1 and H-3 were isolated and were partially characterized. Binding studies with these mAb on a panel of hemoglobins and isolated alpha and beta globin chains revealed a unique reactivity pattern for each mAb. Amino acid sequence analysis of the antigens used to generate the binding data suggests that the specific recognition of certain hemoglobin antigens by each mAb is controlled by the presence of a particular amino acid at a specific position within the epitope. The use of synthetic peptides as antigens confirmed this observation for five of the mAb. No synthetic peptides were tested with the sixth mAb, Rh-2. The amino acids required for binding of mAb Cap-4, Cap-5, Rh-4, and Rh-2 to hemoglobin are alanine at beta 5, threonine at beta 13, glutamine at beta 125, and leucine at alpha 68. The non-human primate hemoglobin antibodies require a specific amino acid that is not present in human hemoglobin. The amino acid required for binding of Cap-4, Cap-5, and Rh-4 could arise by a single base change in the beta globin gene, whereas the amino acid required for Rh-2 binding would only occur if two base changes occurred. Thus these mAb are candidate probes for a somatic cell mutation assay on the basis of the detection of peripheral blood red cells that possess single amino acid substituted hemoglobin as a result of single base substitutions in the globin genes of precursor cells.

Amino Acid Sequence↗

Chemical crosslinking of lipids and proteins within Mason-Pfizer monkey and squirrel monkey type D retroviruses.

Nearest neighborhoods between lipids and proteins were investigated in Mason-Pfizer monkey virus (MPMV) and squirrel monkey retrovirus (SMRV) using the chemical crosslinking reagent dimethyl suberimidate (DMS). Analysis of DMS-induced lipid-protein complexes by sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed that in both viruses the major internal structural protein, p27 (MPMV) and p35 (SMRV), is linked to the lipid bilayer. Additionally, in SMRV a second protein (p20) was found to have a vicinal relationship to the lipid bilayer of the virus. Electron microscopic investigations of MPMV and SMRV particles indicated that, in accord with the crosslinking data, the core shell of these type D retroviruses is in close proximity to the viral membrane.

Animals↗

The perception of vocal signals by blue monkeys and grey-cheeked mangabeys.

Old World forest primates may need to signal vocally over long distances in noisy habitats. Perceptual experiments focused on the audibility of signals in noise were conducted in the laboratory using standard psychoacoustical methods. Six human listeners, two blue monkeys (Cercopithecus mitis), and two grey-cheeked mangabeys (Cercocebus albigena) served as subjects. Based upon measurements of East African rain forests (Brown and Waser 1984) testing was conducted in the presence of simulated rain forest noise, or in the quiet. Signals consisted of pure tones 2-seconds in duration ranging in frequency from 63 Hz to 32 kHz, or recordings of vocalizations. Test vocal signals for monkey subjects were the blue monkey chirp, pyow, trill, ka, ka-train, grunt and boom calls; the mangabey chorused grunt, soft grunt, gobble and staccato bark calls. Human listeners were tested with the consonant-vowel stop consonants: ba, pa, da, ta, ga, ka; the two-syllable words: baseball, lifeguard, vessel and leisure; and the sentence "Can you hear me?" The results showed that mangabeys exhibit an audibility function nearly indistinguishable from that for blue monkeys (Brown and Waser 1984). Compared to terrestrial open country monkeys, these arboreal rain forest monkeys possess enhanced low-frequency sensitivity which coupled with mechanisms specialized for low-frequency vocal production may function as a long-distance communication system. Testing with vocalizations in the presence of a masking noise revealed that monkey calls were about 10 dB more audible in noise than were human speech sounds. No differences were found between the audibility of graded or discrete calls. Testing for species-specific abilities was conducted with a subsample of six calls. While differences were not found when testing was conducted in the quiet, in the presence of forest noise, monkeys were about 3.4 dB more sensitive to the calls of conspecifics than to the calls of sympatric species. These findings support the idea that differences in the audibility of the vocalizations of related species is principally due to acoustical differences between signals, yet more subtle receptive specializations may have evolved as well. Hence selection may have acted on both receptive and productive mechanisms to promote vocal communication under adverse environmental conditions.

Adult↗

[Dengue 2 in eastern Senegal: serologic survey in simian and human populations. 1974-85].

After the previously reported isolations of dengue 2 virus in eastern Senegal in 1974 and 1981-1982, a retrospective serological study on simian and human populations was carried out in the same area. We investigated 1,095 simian sera collected at regular intervals between 1974 and 1984 from wild caught monkeys and 1,783 human sera from young children less than 11 years old collected during punctual surveys after the rainy season from 1976 to 1985. Sera were tested using HAI test, CF test and for someone's ELISA for specific IgM antibodies. Serological data from monkeys corroborated the virus isolations and demonstrated the existence of two epizootics in 1974-1975 and 1981-1982. No CF antibodies were detected in children sera up to 1981 epizootic when about 11% of tested sera showed a probable infection by dengue 2 virus, no clinical dengue infections were notified by the medical staff. After 1982, serological results showed that the virus maintained in the same area until 1985. The mechanism of the circulation of dengue 2 virus in eastern Senegal is discussed on the basis of these serological results.

Animals↗

[Gestural forms of communication in primates. I. Development of gestural forms of communication in ontogenesis and phylogenesis].

The gestural and tactile forms of communication using arms among the young and adult specimen of lower monkeys of subfamily Cercopithecoidea and higher monkeys of subfamily Hominioidea have been investigated. It has been concluded that gestures are the new form of phylogenesis in comparison with the contact patterns, their development is generally connected with the aggressive behaviour. The growing differentiation of gestures connected with the transition from participation of the whole arm to the leading role of the hand and finger gestures has been determined. The frequency of gestures is closely connected with the species structural organization and ecology.

Animal Communication↗

Leprosy in a mangabey monkey--naturally acquired infection.

Naturally acquired leprosy was detected in an otherwise normal "sooty" mangabey monkey (Cercocebus atys). This animal was imported from West Africa in 1975 and developed clinical symptoms of leprosy in 1979. Histopathologic findings were those of subpolar-lepromatous to borderline-lepromatous leprosy in the Ridley-Jopling classification. The disease was progressive, with crippling neuropathic deformities of the hands and feet. The disease regressed under specific therapy. The etiologic agent was identified as Mycobacterium leprae by the following criteria: invasion of nerves of host, staining properties, electron microscopic findings, noncultivable on mycobacteriologic media, DOPA-oxidase positive, lepromin reactivity, infection patterns in mice and armadillos, sensitivity to sulfone, and DNA homology. We believe the animal acquired the disease from a patient with active leprosy. The mangabey monkey offers promise as a primate model for leprosy, and adds a third reported species to animals with naturally acquired leprosy.

Animals↗

Isolation of characteristic glycolipids possibly included in spherical droplets around M. leprae.

The main purpose of this work was to isolate the components in acetone soluble lipids of lepromas of the nine-banded armadillo by high performance liquid chromatography (HPLC), and then to examine the mass spectrometric characteristics of the two peaks (molecular weights 2000 and 1600) found by HPLC. The armadillo had been inoculated with Mycobacterium leprae isolated from a mangabey monkey with naturally acquired leprosy. According to the results of HPLC, gas liquid chromatographic and mass spectral analyses, the GPC peak I lipid at 2000 D was identified as phenolic glycolipid and the GPC peak II lipid at 1600 D, as phthiocerol dimycocerosate. It was thought that the GPC peak I lipid and the GPC peak II lipid were included in the spherical droplets (peribacillary substance) around M. leprae. It was concluded that the microorganisms causing leprosy-like changes in the mangabey monkey were either M. leprae or a very closely related bacillus.

Animals↗

[The social structure of primates].

A comprehensive comparative study of the social structure of primates revealed: There is no social structure which can be considered typical and discriminative for primates. The varying social structures of the extant primate genera cannot be derived from each other: In contrast it seems that the basic, ancestral condition was that of solitary living animals, loosely aggregated. It can be assumed that the development to a gregarious society took place in two entirely different ways. In terms of primate phylogeny this different development can be shown for the prosimians as well as for the old world and new world monkeys as independently occurring processes. One way of behavioral specialization resulted in close pair bonds or in small family groups, whereas the other led to female groups. The presupposition for the forming of a society based on female groups is the close contact between the individuals and in addition to this, a remarkable social tolerance of females to each other. Social specializations which can be considered transitional from the basic condition are frequently found in prosimians. The kinds of social structures of the particular genera are in close relation to their taxonomic positions in the phylogenetic scala. The number of males in larger social groups of primates is substantially irrelevant as the groups are socially most dependent on the females. The protecting males are socially peripheral. The social units of most of the primate species are matrilocal and endure for several generations. In contrast, the social units of the gibbons and of the pongids are patrilocal and are established anew by the females in each generation. Consequently the social unit disintegrates on the death of the male. In all genera studied, male and female individuals present considerable behavioral differences which can be found even in juveniles. Primates are able to discriminate well known and confident individuals from other less confident; they prefer more confident individuals to less confident ones, and less confident to non-confident. As a consequence of this discriminative ability there is a clear preference for near when compared to distant relatives. The complexity of the social relations is brought about by this ability to discriminate combined with the longevity of primates. This is a characteristic and discriminative feature of the primate order. Dominance relations occur in every social group of primates. Linear hierarchies of dominance have been developed only once in prosimians (Lemur) and also once in simians (Cercopithecinae). Therefore, liner hierarchies are not typical for primates.

Age Factors↗

Comparison of arginase activity in red blood cells of lower mammals, primates, and man: evolution to high activity in primates.

Arginase activity in red blood cells (RBC) of various mammalian species including man was determined. In nonprimate species, the activity generally fell below the level of detectability of the assay: less than 1.0 mumol urea/g hemoglobin per hr. Activities in higher nonhuman primates were equal to or of the same order of magnitude as those in man (approximately 950 mumol/g hemoglobin per hr). RBC arginase deficiency with normal liver arginase activity has been shown to segregate as an autosomal codominant trait in Macaca fascicularis established and bred in captivity. This study confirms the presence of this polymorphism in wild populations trapped in several geographic areas and demonstrates the absence of immunologically cross-reactive material in the RBC of RBC arginase-deficient animals. These data when taken together suggest that the expression of arginase in RBC is the result of a regulatory alteration, has evolved under positive selective pressure, and is not an example of the vestigial persistence of an arcane function. The expression of arginase in the RBC results in a marked drop in the arginine content of these cells.

Animals↗

Experimental leprosy in the mangabey (Cercocebus atys): necropsy findings.

A mangabey monkey (Cercocebus atys) was inoculated intravenously and intracutaneously with acid-fast bacilli (AFB) from a mangabey with spontaneously acquired leprosy. It developed generalized lepromatous leprosy and died 46 months after inoculation. Necropsy revealed severe lepromatous infiltrates in the skin, nasal mucosa, peripheral nerves, and testicles. Internal organs were only minimally involved. The lesions seen at necropsy were very similar to those seen in untreated cases of human lepromatous leprosy. These findings further substantiate the mangabey monkey as a suitable animal model for the study of lepromatous leprosy.

Animals↗

Naturally occurring Yersinia enterocolitica septicemia in patas monkeys (Erythrocebus patas).

Two cases of Yersinia enterocolitica septicemia occurred in a breeding group of 22 adult patas monkeys (Erythrocebus patas). Affected animals had acute clinical signs of depression, weakness, dehydration, hypothermia, hepatomegaly and pronounced leukopenia. Both animals died a few hours after treatment was initiated. Gross necropsy findings included jaundice, fluid in body cavities, hepatomegaly, splenomegaly, multiple white foci within the liver and spleen, generalized lymph node enlargement and numerous mucosal ulcerations in the colon. Primary histopathological lesions were multifocal hepatic necrosis, splenic necrosis, chronic ulcerative enteritis and diaphragmatic myositis with necrosis and edema. Yersinia enterocolitica was cultured from the liver, spleen, lung, jejunum and rectum. Wild rodents, particularly mice, may have been a source of infection for these animals, as the monkeys were housed in a rural, indoor-outdoor facility. A preliminary culture survey showed that some clinically normal patas monkeys harbored the organism in their intestinal tracts.

Animals↗

Evidence of possible natural infections of man with Brugia pahangi in South Kalimantan (Borneo), Indonesia.

Blood from 9 humans, 6 domestic cats (Felis domesticus), and 5 silvered leaf monkeys (Presbytis cristatus) from South Kalimantan (Borneo), Indonesia, with known filarial infections was examined for determination ofacid phosphatase activity of the microfilarae (mff). The findings suggest 1) that Brugia parasites from domestic cats and silvered leaf monkeys can be speciated by acid phosphatase activity and that speciation by acid phosphatase assay corresponds to that based upon adult worm morphology and 2) that Brugia mff from humans have acid phosphatase activity characteristic of that of B. pahangi microfilariae from cat and monkey. Thus B. pahangi may infect man in South Kalimantan.

Acid Phosphatase↗

[Immediate and late effects of 17-beta-estradiol on prolactin in the mangabey].

Thirty seven mature Mangabeys (Cercocebus atys lunulatus), 33 females (5-6 kg) and 4 males (6-7 kg) received large doses of 17-beta-oestradiol by intravenous tracts (continued perfusion and single dose injection) and by subcutaneous implantation in a silastic tube. The CB 154 and TRH tests under oestrogenic treatment were the object of an integrated study. All these experiments began 5 days after menstruation in the case of the females. The experiments were preceded, for each monkey, by a control period that rarely exceeded 5 days. Prolactin and oestradiol were measured by radioimmunoassay. Single intravenous injection and perfusion of 17-beta-oestradiol were followed by an inconstant effect on the immediate secretion of prolactin (+30 to +60 minutes). However, after 4 to 6 hours, serum prolactin rose by about 50% of the basic ratios. This is followed by a more notable elevation of the blood ratios of PRL during the 24 to 72 hours which succeed the end of the oestradiol treatment. The subcutaneous placing of a silastic tube containing oestradiol is followed by a Systematic fall in the Serum PRL for 9 hours (day 0). During the following 3 weeks, the ratios rise but are situated at a normal level (F = 0.2 p greater than 0.5) in spite of a liberation and maintenance of the serum oestrogen at a very high level. Nevertheless, the peak of PRL following a TRH test under oestrogenic treatment is greater (F = 4.7 p less than 0.05) than the peak obtained during the control period with the same dose of TRH.

Animals↗