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Biomedical subjects

S L Klein

Publications and source records attributed to S L Klein.

At least 37 records · Page 2Linked to original sources

Cellular immunity is not compromised by high serum corticosterone concentrations in prairie voles.

Glucocorticoids compromise immune function in glucocorticoid-sensitive species (e.g., mice), but these immunosuppressive effects may be reduced in glucocorticoid-resistant species. Prairie voles (microtus ochrogaster) have been characterized as glucocorticoid-resistant to their high circulating levels of corticosterone. Because glucocorticoid-sensitive species display suppressed lymphocyte proliferation in response to elevated blood glucocorticoid levels, proliferative values were hypothesized to be reduced in house mice (Mus musculus) compared with prairie voles. Prairie voles exhibited significantly higher splenocyte proliferative responses to the T cell mitogen, Concanavalin A, despite having higher basal total and free serum corticosterone levels than mice. Neither total nor free serum corticosterone correlated with proliferative responses from either species. These data provide further evidence for glucocorticoid resistance in prairie voles and suggest that the interactions between the hypothalamic-pituitary-adrenal axis and the immune system in prairie voles may differ from those in mice or other glucocorticoid-sensitive species. Therefore, prairie voles may serve as a valuable animal model for the syndrome of glucocorticoid resistance in humans and the role of glucocorticoids in conditions characterized by a hyperactive immune system.

Animals↗

Nitric oxide-dependent penile erection in mice lacking neuronal nitric oxide synthase.

BACKGROUND: Nitric oxide (NO) has been implicated as a mediator of penile erection, because the neuronal isoform of NO synthase (NOS) is localized to the penile innervation and NOS inhibitors selectively block erections. NO can also be formed by two other NOS isoforms derived from distinct genes, inducible NOS (iNOS) and endothelial NOS (eNOS). To clarify the source of NO in penile function, we have examined mice with targeted deletion of the nNOS gene (nNOS- mice). MATERIALS AND METHODS: Mating behavior, electrophysiologically induced penile erection, isolated erectile tissue isometric tension, and eNOS localization by immunohistochemistry and Western blot were performed on nNOS- mice and wild-type controls. RESULTS: Both intact animal penile erections and isolated erectile tissue function are maintained in nNOS mice, in agreement with demonstrated normal sexual behaviors, but is stereospecifically blocked by the NOS inhibitor, L-nitroarginine methyl ester (L-NAME). eNOS is abundantly present in endothelium of penile vasculature and sinusoidal endothelium within the corpora cavemosa, with levels that are significantly higher in nNOS- mice than in wild-type controls. CONCLUSIONS: eNOS mediates NO-dependent penile erection in nNOS- animals and normal penile erection. These data clarify the role of nitric oxide in penile erection and may have implications for therapeutic agents with selective effects on NOS isoforms.

Animals↗

Prenatal stress alters immune function in the offspring of rats.

Pregnant rats were either exposed to restraint under bright lights for 45 min three times daily (n = 7) or were left undisturbed (n = 8) during Days 14-21 of gestation. Offspring were tested for cellular immune responses as measured by Concanavalin A-stimulated proliferation and Natural Killer (NK) cytotoxicity of splenocytes as juveniles or adults, or were tested for specific humoral immune responses to in vivo challenge with the antigen Keyhole Limpet Hemocyanin (KLH) as adults. Results indicated that: (a) Proliferation did not vary as a function of sex or prenatal treatment in either juvenile or adult offspring; (b) in juveniles NK cytotoxicity was marginally lower in males as compared to females, and was also marginally reduced by prenatal stress in males but not females, whereas in adults, NK cytotoxicity was marginally enhanced by prenatal stress in both sexes; and (c) prenatally stressed offspring of both sexes had higher levels of anti-KLH antibodies as compared to controls.

Aging↗

New burst test method for comparing strengths of blood vessel repairs.

An in vivo system was developed which allows researchers to determine the intraluminal pressures necessary to burst anastomosed blood vessels. Rat femoral arteries underwent standard microsurgical anastomoses and sham surgeries. After 6 min of leak-free blood flow, the vessels were ligated and cannulated with PE 50 tubing. The catheter was tied into position with 6-0 suture, constructing a water-tight balloon of tissue inclusive of the repair site around the tubing, then attached via a "Y" adapter to a pressure transducer with a digital readout and to a saline filled syringe in an infusion pump. The digital readout from the transducer accurately expressed the pressure on the anastomosis. The highest pressure recorded when the anastomosis ruptured was taken to be the anastomotic burst pressure. Mean burst pressure for 9 suture anastomoses was 326 mm mercury. All vessel burst pressures exceeded rat mean systolic pressure; 90% exceeded rat maximum systolic pressure. All sham surgeries failed to burst, even at pressures exceeding 1,500 mm Hg. The burst pressure test clearly provides researchers with a valid quantitative measure for in vivo comparison of the efficacies of various anastomotic techniques.

Anastomosis, Surgical↗

Prenatal stress attenuates ulceration in the activity stress paradigm.

In the present study, 28 pregnant rats were subjected to either light-restraint stress or no manipulation for days 14-21 of the gestational period. At approx. 50 days of age, both male (n = 16) and female (n = 16) prenatally stressed (PS) and control offspring were subjected to the activity stress (AS) paradigm. During this subsequent stress experience, PS rats developed less ulceration than control rats. PS rats also displayed about half the activity of the control animals during the habituation phase of the AS paradigm, prior to the induction of stress. Given this decrease in baseline activity in PS animals, implications of using activity as a measure of emotionality in PS animals are discussed. Several sex differences were also observed; females differed from males in that they 1) exhibited higher activity levels in both the habituation and experimental phases of the AS procedure, 2) developed heavier relative adrenal weights, and 3) reached criteria for sacrifice in fewer days.

Adrenal Glands↗

The influence of season, photoperiod, and pineal melatonin on immune function.

In addition to the well-documented seasonal cycles of mating and birth, there are also significant seasonal cycles of illness and death among many animal populations. Challenging winter conditions (i.e., low ambient temperature and decreased food availability) can directly induce death via hypothermia, starvation, or shock. Coping with these challenges can also indirectly increase morbidity and mortality by increasing glucocorticoid secretion, which can compromise immune function. Many environmental challenges are recurrent and thus predictable; animals could enhance survival, and presumably increase fitness, if they could anticipate immunologically challenging conditions in order to cope with these seasonal threats to health. The annual cycle of changing photoperiod provides an accurate indicator of time of year and thus allows immunological adjustments prior to the deterioration of conditions. Pineal melatonin codes day length information. Short day lengths enhance several aspects of immune function in laboratory studies, and melatonin appears to mediate many of the enhanced immunological effects of photoperiod. Generally, field studies report compromised immune function during the short days of autumn and winter. The conflict between laboratory and field data is addressed with a multifactor approach. The evidence for seasonal fluctuations in lymphatic tissue size and structure, as well as immune function and disease processes, is reviewed. The role of pineal melatonin and the hormones regulated by melatonin is discussed from an evolutionary and adaptive functional perspective. Finally, the clinically significance of seasonal fluctuations in immune function is presented. Taken together, it appears that seasonal fluctuations in immune parameters, mediated by melatonin, could have profound effects on the etiology and progression of diseases in humans and nonhuman animals. An adaptive functional perspective is critical to gain insights into the interaction among melatonin, immune function, and disease processes.

Androgens↗

Influence of environmental enrichment and sex on predator stress response in rats.

Based on sex, rats were randomly assigned to either an enriched or standard environment for 30 days prior to behavioral testing. The predator stress testing consisted of placing the rat in a cat avoidance apparatus so that the rat's behavioral response to a natural stressor, the cat, could be assessed. The rats were subsequently exposed to a partial predator stimulus (cat urine) that was placed in the home cages for 7 days. Each animal was then sacrificed and the stomach, adrenal glands, and thymus gland were removed and assessed. Results indicated that 1) the enriched rats engaged in less defensive behavior than the standard rats during behavioral testing, 2) female rats demonstrated more defensive behavioral patterns compared to male rats, and 3) the enriched environment affected females more than males, as evidenced by the interaction effects on various recorded behaviors.

Adrenal Glands↗

Effect of ketamine on heterogeneity of cerebral microregional venous O2 saturation in the rat.

Heterogeneity of microregional O2 supply and consumption balance exists in the brain. Previous studies have shown that anesthetics such as pentobarbital and isoflurane, decrease the heterogeneity of O2 saturation in the small veins of the brain. This study was performed to determine whether ketamine, an anesthetic, would alter this heterogeneity. Rats were anesthetized with isoflurane for the cannulation of the femoral artery and vein. Ninety minutes after discontinuation of isoflurane, they either received injections with ketamine 100 mg/kg intraperitoneally (IP) (n = 7) or were used as conscious controls (n = 7). In each rat, regional cerebral blood flow (rCBF) was determined by 14C-iodoantipyrine autoradiography, and microregional arterial and venous (diameter 20-100 microns) O2 saturation was measured by microspectrophotometry in the anterior cortex, posterior cortex, and pons. The average rCBF and O2 consumption were similar between the two groups in each brain region except in the anterior cortex, where the O2 consumption of the ketamine group was slightly higher than that of the conscious animals. The average regional O2 supply-to-consumption ratios were similar in the three brain regions in both of the groups. However, there was heterogeneity of the O2 saturation in small veins in all the brain regions that we studied. The coefficient of variation [CV = (SD/mean X 100] of venous O2 saturation of the ketamine group in the anterior cortex (19.8 +/- 7.2), in the posterior cortex (18.8 +/- 9.4), and in the pons (16.7 +/- 6.5) was not significantly different from that in the conscious animals (22.8 +/- 6.4, 23.1 +/- 5.3, and 15.7 +/- 6.4, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of isoflurane on transport across the blood-brain barrier.

The blood-brain barrier (BBB) plays an important role in regulating and restricting transfer of molecules into the interstitial space of the brain. Anesthetic agents may affect the permeability of the BBB. In this investigation, the effect of isoflurane on the transport of small hydrophilic molecules across the BBB was studied in rats by measuring the blood-brain transfer coefficient (Ki) and the regional cerebral blood flow (rCBF) and by calculating the capillary permeability-surface area (PS) product. In the control group, after a femoral artery and vein were catheterized under isoflurane anesthesia, rats were allowed to remain awake for 2 h before measuring Ki (n = 6) or rCBF (n = 11). In the two experimental groups, rats were anesthetized with 1% and 2% isoflurane respectively, and their lungs were mechanically ventilated through a tracheal tube. Ki was measured (1% n = 6, 2% n = 7) using 14C-alpha-aminoisobutyric acid, and rCBF was measured (2% n = 7) using 14C-iodoantipyrine. Two percent isoflurane did not affect rCBF in 9 of 13 brain regions. Blood flow was less in the lateral and posterior cortex and greater in the medulla and pons when compared with the control group. Ki was less in 11 of 13 brain regions in both the 1% and 2% isoflurane groups than in the control group. There was no significant difference between 1 and 2% isoflurane in any brain region.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminoisobutyric Acids↗

Effects of fentanyl on alpha-aminoisobutyric acid transfer across the blood-brain barrier.

The effect of fentanyl on the transfer of small hydrophilic molecules across the blood-brain barrier was studied in rats by measuring the blood-brain transfer coefficient (Ki) and the regional cerebral blood flow (rCBF) and by calculating the capillary permeability-surface area product. In the control group (n = 14), after a femoral artery and vein were catheterized under isoflurane anesthesia, the rats were allowed to remain awake for 1.5 h before measuring Ki (n = 8) using intravenous 14C-alpha-aminoisobutyric acid or rCBF (n = 6) using 14C-iodoantipyrine. In the fentanyl groups, rats were injected with 25 micrograms/kg (low (n = 6) or 100 micrograms/kg (high dose) of fentanyl (n = 14), followed by a continuous infusion at a rate of 50 or 200 micrograms.kg-1.h-1, respectively. Their lungs were mechanically ventilated. The Ki (low dose, n = 6; high dose, n = 8) and rCBF (high dose, n = 6) were measured 1 h after fentanyl infusion. The Ki was lower in 9 of 13 brain regions in the low-dose fentanyl group and in 7 of 13 brain regions in the high-dose fentanyl group than in the control animals. The average value of Ki in all the brain regions was 8.6 +/- 4.6 microL.g-1.min-1 in the control group, 5.2 +/- 2.9 microL.g-1.min-1 in the low-dose fentanyl group, and 5.7 +/- 2.9 microL.g-1.min-1 in the high-dose fentanyl group. High-dose fentanyl did not significantly affect rCBF in any brain region studied. The value of the regional permeability-surface area product was similar to the corresponding regional Ki in the groups studied. In conclusion, fentanyl decreased the transfer of small hydrophilic molecules across the blood-brain barrier, as demonstrated by a decreased Ki and permeability-surface area product, without significant changes in rCBF.

Aminoisobutyric Acids↗

Pediatric spinal epidural metastases.

A total of 2259 children with solid malignant tumors were treated at St. Jude Children's Research Hospital between the years 1962 and 1987. Of these, 112 (5%) developed spinal epidural metastasis with spinal cord compression during the course of their disease process. Metastatic epidural spinal cord compression was caused most commonly by Ewing's sarcoma and neuroblastoma, followed by osteogenic sarcoma, rhabdomyosarcoma, Hodgkin's disease, soft-tissue sarcoma, germ-cell tumor, Wilm's tumor, and (rarely) hepatoma. There was no significant difference in outcome between patients with small-cell tumors (neuroblastoma, Hodgkin's disease, and germ-cell tumors) who received only chemotherapy and/or radiation therapy and the patients with similar lesions who received a decompressive laminectomy alone or prior to chemotherapy and/or radiation therapy. Patients with spinal cord compression from metastatic sarcoma (Ewing's sarcoma, soft-tissue sarcoma, osteogenic sarcoma, and rhabdomyosarcoma) showed a significant improvement with decompressive laminectomy alone or before medical therapy, compared to those who received radiation therapy and/or chemotherapy without posterior decompression. Pediatric tumors invade the spinal canal via the neural foramen, compressing the spinal cord in a circumferential manner, allowing decompressive laminectomy (posterior approach) to be an effective surgical approach. Sixty-six percent of children who had no evidence of motor or sensory function below the level of the compression became ambulatory after surgical decompression and medical treatment, regardless of tumor type.

Adolescent↗

Lithium changes the ectodermal fate of individual frog blastomeres because it causes ectopic neural plate formation.

Amphibian blastulae that are treated with lithium (Li) develop into embryos that consist almost exclusively of head structures. This dramatic change in embryogenesis may occur either because Li selectively kills trunk progenitors or because Li causes trunk progenitors to become head progenitors. To distinguish between these possibilities, we compared the fates of individual frog blastomeres between Li-treated embryos and normal embryos using lineage tracers. The results demonstrate that Li causes ventral midline cells, which normally populate large amounts of trunk, to produce many head structures, including the brain. Examination of fluorescently labeled clones in living Li-treated gastrulae shows that: (1) the ectodermal members of the clones migrate normally, and chordamesodermal involution begins normally; (2) the chordamesoderm's later involution is altered such that it is confined to the vegetal hemisphere; (3) accordingly, the neural plate forms in the vegetal hemisphere, circumscribing the blastopore, which normally gives rise to the cloaca; and (4) the ectodermal progeny of the ventral midline blastomeres that are near the blastopore populate the brain because they are induced by the stalled chordamesoderm to form part of the ectopic neural plate. These results demonstrate that Li, administered during a short developmental window at early cleavage stages, ultimately alters ectodermal fate because it changes the pattern of chordamesodermal involution during gastrulation, which in turn changes the site of neural plate formation.

Animals↗

The first cleavage furrow demarcates the dorsal-ventral axis in Xenopus embryos.

To determine the relationship between the first cleavage furrow and the dorsal-ventral axis of the Xenopus embryo, a heritable intracellular marker was injected into one blastomere at the two-cell stage. Embryos were selected in which the cleavage furrow bisected the crescent-shaped region of pale pigmentation or in which it formed 45-90 degrees from this region. This region, which is located in the animal hemisphere of the Xenopus embryo, meets the criteria of the grey crescent as defined in other amphibian species. At tailbud stages the interface between the labeled and unlabeled halves was always coincident with the midsagittal plane. This correlation shows that the first cleavage furrow demarcates the dorsal-ventral axis. The labeling pattern was the same whether the first cleavage furrow bisected the region of pale pigmentation or whether it formed 90 degrees from it. However, when this region was bisected (70% of embryos) it always was located on the dorsal side of the embryo. Thus the region of pale pigmentation indicates the dorsal side of the embryo only when it is bisected by the first cleavage furrow.

Animals↗

Electroencephalographic monitoring during general anesthesia.

This paper presents a concise review of the recent advances in the field of electroencephalographic monitoring during administration of general anesthetics. It presents the history and background of this technique and describes the principles of electroencephalographic monitoring and its mathematical analysis. It concludes with a discussion of the techniques currently available for the display of the electroencephalogram as a monitoring tool and describes current clinical applications.

Anesthesia, Dental↗