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Fibrinopeptides A and B of baboons (Papio anubis, Papio hamadryas, and Theropithecus gelada): their amino acid sequences and evolutionary rates and a molecular phylogeny for the baboons.

Amino acid sequences of fibrinopeptides A and B from savanna baboons, Papio anubis and Papio hamadryas, and highland baboon, Theropithecus gelada, were established. The sequences of the fibrinopeptides A from the three baboons were identical: (sequence: see text) The fibrinopeptides B were composed of 9 residues and demonstrated the sequence: (sequence see text) where X3 = Arg in P. anubis, His in P. hamadryas, and Gly in Th. gelada. Position-3 of the B peptides was the only replacement site observed among the 25 amino acid residues in both fibrinopeptides from the baboons. Based on these sequences, a molecular phylogeny for the three species of baboons was deduced. The evolutionary rates of the peptides B of the baboons and macaques were also estimated. It was observed that the fibrinopeptides changed at an uneven rate during the evolution of old-world monkeys, i.e., baboons and macaques.

Amino Acid Sequence↗

Prevalence and laparoscopic appearance of spontaneous endometriosis in the baboon (Papio anubis, Papio cynocephalus).

The prevalence of spontaneous endometriosis was investigated by laparoscopy in 52 baboons (Papio anubis and Papio cynocephalus) of proven fertility. Clinical endometriosis was diagnosed in 9 (17%) and 4 (8%) baboons with or without a previous hysterotomy, respectively. Endometriosis was confirmed by histology in 75% of these animals. The 37 endometriotic lesions were classified as typical (13%), subtle (57%), or suspicious (30%); and the percentage of histological confirmation was 100%, 61%, and 50%, respectively. Lesions were found on the uterosacral ligaments and in Douglas' pouch (46%), on the uterine peritoneum and the uterovesical fold (38%), and on uterine-omental adhesions (11%). Only 5% of the lesions were localized on the ovarian ligament, whereas ovarian endometriosis was not found. This study for the first time demonstrates that spontaneous endometriosis occurs in healthy baboons with proven fertility. It also shows that the laparoscopic appearances, the histological aspect, and the localization of the pelvic lesions are comparable to those found in women. We therefore conclude that the baboon is a good animal model for the study of endometriosis.

Animals↗

The effect of pregnancy on endometriosis in baboons (Papio anubis, Papio cynocephalus).

BACKGROUND: This study was performed to test the hypothesis that endometriosis undergoes regression during pregnancy. METHODS: This study was performed on 11 baboons with histologically proven endometriosis, housed at the Institute of Primate Research, Nairobi, Kenya. In each individual baboon paired laparoscopies were performed prior to and during pregnancy (6 during first and 5 during second trimester of gestation) with an interval of 5 +/- 3 months. During each laparoscopy the number, size and type of endometriosis implants were noted in detail on a pelvic map; the endometriosis score and stage were calculated according to the revised American Fertility Society (AFS) classification. In each baboon the observations prior to and during pregnancy were compared and analysed by Wilcoxon signed rank test (two-tailed). RESULTS: No significant change was observed in the AFS score or stage of endometriosis, or in the number, size and type of endometriotic lesions in baboons during gestation when compared to the nonpregnant state. CONCLUSION: In baboons pregnancy had no significant effect on endometriosis during the first or second trimester of gestation.

Animals↗

Disappearance of the ovulation stigma in baboons (Papio anubis, Papio cynocephalus) as determined by serial laparoscopies during the luteal phase.

OBJECTIVE: To investigate how long an ovulation stigma remains visible as determined by serial laparoscopies performed during the luteal phase in baboons. SUBJECTS AND SETTING: Sixteen female baboons with a normal pelvis (n = 6) and with endometriosis (n = 10) housed at the Institute of Primate Research, Nairobi, Kenya. INTERVENTIONS: Fifty-six laparoscopies were carried out before ovulation (n = 7) and serially during the luteal phase (n = 49; 3 +/- 1 per baboon): 1 to 2 days (n = 2), 4 to 5 days (n = 15), 8 to 9 days (n = 11), 12 to 13 days (n = 12), and 16 to 17 days (n = 9) after ovulation. MAIN OUTCOME MEASURE: During each laparoscopy the ovaries were screened systematically for the presence and size of an ovulation stigma and/or corpus luteum (CL). RESULTS: When the laparoscopy was done within 5 days after ovulation, a fresh ovulation stigma was observed in all nine baboons with a normal pelvis or minimal endometriosis, but only in four of seven animals with mild to severe disease. If a fresh ovulation stigma had been observed within 5 days after ovulation (n = 13), it gradually became smaller but remained visible 8 to 9 days after ovulation in 91%, at 12 to 13 days after ovulation in 75%, and at 16 to 17 days after ovulation in 50% of the primates. CONCLUSION: If a fresh ovulation stigma was observed in baboons within 5 days after ovulation, it diminished in size but remained visible up to 8, 12, and 16 days after ovulation in 91%, 75%, and 50% of animals, respectively. Therefore, diagnostic laparoscopies for the detection of an ovulation stigma in baboons should be performed in the early luteal phase.

Animals↗

The prevalence of spontaneous endometriosis in the baboon (Papio anubis, Papio cynocephalus) increases with the duration of captivity.

BACKGROUND: It is not known whether stress affects the prevalence of endometriosis in women. Baboons with spontaneous endometriosis may be interesting models to study the human disease. For baboons, living in captivity is a period of chronic stress without continuous exposure to pregnancy. This study was done to compare the prevalence of endometriosis between baboons recently captured in the wild and those living in captivity for several years. METHODS: A diagnostic laparoscopy was performed for screening endometriosis and obtaining biopsies in 104 female baboons including animals that had been captured in the wild less than 1 year ago (n=52, Group I), primates that had been living in captivity for one to two years (n=30, Group II) and animals that had been captured for more than two years (n=22, Group III). RESULTS: The prevalence of clinical and biopsy-proven endometriosis in all baboons was 17% and 12%, respectively. Clinical endometriosis was found more frequently in group III (32%) than in group II (17%) or group I (11%). The prevalence of biopsy-proven endometriosis was also significantly higher in group III (27%) than in groups I and II combined (8%, p=0.03). CONCLUSIONS: The results indicate that the prevalence of endometriosis increases with the time spent in captivity. This trend may be explained by more menstrual cycles uninterrupted by pregnancy in captive than in wild baboons, and possibly also by age-related factors or by captivity-associated stress.

Age Factors↗

Evolution of spontaneous endometriosis in the baboon (Papio anubis, Papio cynocephalus) over a 12-month period.

To document the spontaneous evolution of endometriosis, a repeat laparoscopy was performed in 11 baboons after 10 and/or 12 months. The mean number of endometriotic lesions had increased significantly after 10 months (P less than 0.02) because of a high proportion of new lesions (82%). These implants were mainly subtle (67%) and localized on the uterine peritoneum (58%). Progression of endometriosis did not go beyond revised AFS stage I. Additionally, repeat laparoscopy in 10 baboons with an initially normal pelvis showed an endometriosis incidence of 70% after 10 to 12 months. Remodeling of the lesions was apparent in both groups after 12 months. These results suggest that endometriosis is moderately progressive in the baboon. It is possible that multiple laparoscopies could favor the development of endometriosis.

Animals↗

Serial laparoscopies over 30 months show that endometriosis in captive baboons (Papio anubis, Papio cynocephalus) is a progressive disease.

OBJECTIVE: To test the hypothesis that spontaneous endometriosis is a progressive disease in baboons. DESIGN AND SETTING: Prospective cohort study, Institute of Primate Research, Nairobi, Kenya. PARTICIPANTS: Twelve baboons with histologically proven spontaneous endometriosis. INTERVENTIONS: Fifty-four serial laparoscopies (4.2 +/- 1.9 per animal, range 1 to 7) were performed after 1 to 3 months (n = 2), 4 to 6 months (n = 1), 7 to 9 months (n = 6), 10 to 12 months (n = 17), 13 to 15 months (n = 7), 16 to 18 months (n = 1), 19 to 21 months (n = 8), 22 to 24 months (n = 8), 25 to 27 months (n = 2), and 30 to 32 months (n = 2). MAIN OUTCOME MEASURE: During each laparoscopy the pelvis was examined for the presence of endometriosis. The number, size, and type of endometriotic implants were noted on a pelvic map and both endometriosis score and stage were calculated. Remodeling was defined as a change in laparoscopic appearance (typical, subtle, suspicious) of an individual endometriotic lesion. Data were analyzed by a signed rank test. RESULTS: Endometriosis was progressive as shown by the significant increase in the number and surface of lesions and in endometriosis scores after 24 months. The total number of endometriotic lesions after 24 months consisted of 69% new (and mostly subtle) implants, 10% remodeled lesions, and 21% unchanged implants. CONCLUSIONS: This study demonstrated that endometriosis in captive baboons undergoing repeated laparoscopies is a dynamic and moderately progressive disease with periods of development and regression and active remodeling between different types of lesions.

Animals↗

N-methyl-D-aspartate receptors in the cortex and hippocampus of baboon (Papio anubis and Papio papio).

In vitro autoradiography was used to examine the N-methyl-D-aspartate receptor in the brain of a baboon species, Papio anubis, and compared to that of Papio papio which exhibits a photosensitive epilepsy. The epilepsy originates in the frontal cortex and is accompanied by an enhanced sensitivity to N-methyl-D-aspartate. In both Papio anubis and Papio papio, the density of N-methyl-D-aspartate receptors was greatest in the hippocampus, followed by associational areas including frontal cortex, and low in primary sensory areas such as the visual cortex. The receptors were concentrated in the outer cortical layers I-III, very low in layer IV except in primary visual cortex, and of intermediate density in layer V. The density of binding sites was approximately two-fold lower than previously observed in the rodent brain, whereas the affinity of the receptor for [3H]L-glutamate was greater in the primate versus the rodent brain. Glycine potentiated the binding of [3H]L-glutamate in both cortex and hippocampus. No significant differences in the properties of N-methyl-D-aspartate receptors were observed between the two baboon species, suggesting that the photosensitivity of Papio papio is not due to alterations in the binding of L-glutamate to the N-methyl-D-aspartate receptor complex.

Animals↗

Number and distribution of retinal ganglion cells in anubis baboons (Papio anubis).

The number of retinal ganglion cells in Papio anubis was determined from light microscopic observations of wholemounted and vertically sectioned retinal tissue and electron microscopic examination of optic nerve cross sections. The total number of ganglion cells ranged from 1.41 to 1.81 million (mean 1.58 million, n = 6, SD = 169,927) per retina. The distribution of ganglion cells in cresyl violet stained wholemounts was also examined. Isodensity contours were almost circular perifoveally, but became horizontally elongated outside of the central retina, providing strong evidence for a visual streak. Ganglion cell somata within the streak were found to be significantly smaller than those outside of the streak in comparing regions of equal density. Finally, the distribution of blood vessels within the retina formed a watershed pattern with its crux centered on the ridge of this horizontally oriented high-density zone. Combined, these features indicate that anubis baboons possess a visual streak specialization as reported for lagomorphs, felines, and several primate species. Further, the visual streak appears more pronounced in anubis baboons than in any other primate species studied to date, with the possible exception of Homo sapiens, a similarly ground-dwelling/foraging and secondarily terrestrial species.

Animals↗

Effect of menstruation and intrapelvic injection of endometrium on inflammatory parameters of peritoneal fluid in the baboon (Papio anubis and Papio cynocephalus).

OBJECTIVE: Our purpose was to test the hypothesis that menstruation and intrapelvic injection of endometrium for the induction of endometriosis affect inflammatory parameters in peritoneal fluid from baboons. STUDY DESIGN: In the first part of this study, 107 laparoscopies were performed in 62 female baboons with a normal pelvis during menstruation, the follicular phase, and the luteal phase. In the second part of this study, 21 baboons were studied during paired laparoscopies in the follicular phase and the luteal phase of the cycle. In the third part of this study, 11 baboons were studied by paired laparoscopies during menses and during the nonmenstrual phase of the cycle. In the fourth part of this study, paired laparoscopies were performed in 7 baboons before and after intrapelvic injection of endometrium. Peritoneal fluid was aspirated and measured in all laparoscopies and assessed for leukocyte concentration. In the third and fourth parts of the study, peritoneal fluid was analyzed for the concentrations of inflammatory cytokines and for the proportions of cells with immunohistochemical staining positive for these cytokines. RESULTS: During menstruation, in comparison with nonmenstrual phases of the cycle, the leukocyte concentration of the peritoneal fluid was increased significantly, as were the proportions of peritoneal fluid cells with positive staining for tumor necrosis factor alpha, transforming growth factor beta(1), and intercellular adhesion molecule 1 and the peritoneal fluid concentrations of transforming growth factor beta(1) and interleukin 6. After intrapelvic injection of endometrium, the peritoneal fluid leukocyte concentration and the proportions of peritoneal fluid cells with positive staining for tumor necrosis factor alpha, transforming growth factor beta(1), CD3, and human leukocyte antigen (DR locus) significantly increased. CONCLUSION: Subclinical peritoneal inflammation occurs in baboons during menstruation and after intrapelvic injection of endometrium.

Animals↗

Anti-endometrial lymphocytotoxicity and natural killer cell activity in baboons (Papio anubis and Papio cynocephalus) with endometriosis.

This study was performed to test the hypothesis that anti-endometrial, lymphocyte-mediated cytotoxicity and natural killer (NK) activity are reduced in baboons with endometriosis when compared to animals with a normal pelvis. Lymphocyte-mediated cytotoxicity was determined in 28 baboons (15 with endometriosis, 13 with normal pelvis) and NK cell activity was evaluated in 42 baboons (31 with endometriosis, 11 with normal pelvis). Anti-endometrial lymphocyte-mediated cytotoxicity was determined by a 20 h assay with effector-target ratios of 50:1 and 25:1. The NK activity (K562 cell line as target) was simultaneously measured in all animals during a 4 h assay with effector:target ratios of 200:1, 100:1, 50:1, 25:1, 12:1, 6:1 and 3:1. Statistical analysis was performed using analysis of variance, paired rank, Mann-Whitney, Kruskal-Wallis and Fisher exact tests where appropriate. Lymphocyte-mediated cytotoxicity was significantly lower (P < 0.025) in baboons with endometriosis (mean 5.9 +/- 8.7%, median 0%, range 0-26%) than in animals with a normal pelvis (mean 22.9 +/- 23.0%, median 7%, range 0-78%). This difference could be explained by the absence of cytotoxicity in baboons with moderate to severe endometriosis, probably due to high spontaneous release of 51Cr from labelled target cells. When stricter criteria were used and only animals with a labelling index (maximal/spontaneous release) of > or = 1.7 were analysed (n = 11), the anti-endometrial cytotoxicity was comparable between baboons with and without endometriosis. NK cell activity was also comparable in primates with and without endometriosis. In conclusion, no difference in lymphocyte-mediated cytotoxicity and NK cell activity was observed between baboons with and without endometriosis.

Animals↗

Morphological characteristics of spontaneous endometriosis in the baboon (Papio anubis and Papio cynocephalus).

The histopathology of spontaneous endometriosis was studied on 20 pelvic implants biopsied at laparoscopy in 15 healthy baboons. Endometriosis was confirmed by histopathology in 10 of these animals (66%). Typical (n = 3) and subtle (n = 13) endometriotic lesions were confirmed by histopathology in 100 and 61%, respectively. Suspected disease-bearing lesions (n = 4) were confirmed in 50%. Implants could be classified as active (n = 5), inactive (n = 3), atrophic (n = 2) or stromal endometriosis (n = 3). The histological findings for typical and subtle implants were similar to those reported in humans.

Animals↗

Muscle function and structure of the esophagus of the baboon (Papio anubis).

A baboon (Papio anubis) was used as a model for the study of the physiology of the esophagus. This model closely resembles the human being phylogenetically and physiologically. Base-line lower esophageal sphincter pressure and peristaltic amplitude are similar to that of man. In addition, the anatomic transition from striated to smooth muscle is identical to that of the human esophagus. The sphincter-depressing effect of ketamine anesthesia was demonstrated.

Anesthesia↗

High intraabdominal pressure: effects on clinical parameters and lung pathology in baboons (Papio cynocephalus and Papio anubis).

OBJECTIVE: The risks of a high intraabdominal pressure during laparoscopy are poorly documented. These aspects were studied in a relevant nonhuman primate model, the baboon (Papio anubis, Papio cynocephalus). STUDY DESIGN: The animals used were to be killed at the completion of a vaccine project. They were anesthetized and intubated but allowed to breathe spontaneously. In group 1 (n = 10) a fixed intraabdominal pressure (between 10 and 35 cm H2O [7 and 26 mm Hg]) was applied over 30 minutes. In group 2 (n = 7) the intraabdominal pressure was increased up to a maximum of 105 cm H2O (77 mm Hg). Blood vessels of the parietal peritoneum and omentum were systematically opened from 30 cm H2O (22 mm Hg) onward. Respiration and pulse rate were measured regularly, and the degree of respiratory distress was assessed. After death of the baboons a necropsy was carried out immediately to study the degree of lung atelectasis. RESULTS: In group 1 the respiration rate increased and the heart rate decreased. At an intraabdominal pressure of > or = 30 cm H2O (22 mm Hg) moderate respiratory distress was seen after 20 minutes. In group 2 one animal had a bilateral pneumothorax at a pressure of 60 cm H2O (44 mm Hg) and died at 90 cm H2O (66 mm Hg). Severe respiratory distress was observed in the other six animals. Severe lung atelectasis was present in only one of the five primates with moderate respiratory distress of group 1 and in all baboons of group 2. CONCLUSION: An increase of intraabdominal pressure up to 105 cm H2O (77 mm Hg) combined with intraabdominal blood vessel injury is not lethal in most baboons.

Abdomen↗

The topography of the superficial veins of the hind leg in the baboon Papio anubis in comparison with the superficial veins of the lower limb in humans.

Our studies were carried out on 8 male and 2 female baboons Papio anubis cadavers. We examined a total of 20 hind legs. The vessels of the hind leg were filled with coloured latex. Afterwards we prepared the superficial and deep veins and accompanying arteries. We paid attention to the location, diameter and the course of the long and short saphenous veins. We found many differences between the system of superficial veins in the baboon hind leg and that in the human lower limb. First of all, the long saphenous vein in the baboon Papio anubis presented as two similar trunks that ran together with a concomitant artery. The saphenofemoral junction was also duplicated. The distance between these outlets was about 4 mm and their location was different from that in humans. Neither trunk exceeded 2.5 m in diameter. Some human-like features were noticed in the system of the short saphenous vein in Papio anubis. The diameter of the short saphenous vein and its course and the location of the saphenopopliteal junction were very similar to those in humans. On the other hand, the short saphenous vein was the main superficial venous channel of the hind limb of Papio anubis.

Animals↗

[States of wakefulness and ponto-geniculo-cortical activities (PGC) in Papio anubis (author's transl)].

EEG, sleep-waking organization and phasic sleep activities (PGC) were studied in 6 adult female Papio anubis with chronically implanted electrodes and partially constrained. Papio anubis shows a well characterized sleep (besides an individuality peculiar to each baboon): short sleep latency (18 +/- 14 min), very brief REM latency (5 +/- 5 min), stable stage 1 (86 +/- 11 min), REM duration with little variation (70 +/- 15 min) and abundant deep sleep (stage 4 = 79 +/- 44 min). Geniculate spikes, in general biphasic, occur in great number in this species: 34,778 +/- 7355 per night (44.6% of them in REM). The frequency of spike discharges per minute in REM reaches a mean of 218 +/- 10. In true slow sleep (SS 1), 4--5 spikes per group prevail; in slow sleep followed by a REM episode (SS 2), 6--10 spikes per group are the most numerous. REM is characterized by groups of 6--10 or more spikes. Several specific features are seen: (1) alternation and/or asymmetry of the bursts from the 2 lateral geniculate (LG) nuclei during SS 2 and REM, tendency towards symmetry in SS 1; (2) inversion of spike polarity in the lowest LG layers; (3) variation in spike form from one instant to another and from one LG to the other; (4) presence of spikes in the optic tract. At the cortical level, PGC phasic activities resemble the 'saw tooth waves' described in man. The PGC activities of various primates, and particularly of Papio anubis, seem, by their complexity, to reflect a more elaborated evolution of this particular phenomenon of sleep and differ from those of cat. The monkey lends itself, hence, as a better model for any extrapolation to man. Finally these results raise the question of species within a single genus.

Animals↗