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Evaluation of a stroma-free hemoglobin solution for use as a plasma expander.

The preparation of large quantities of a stable, stroma-free hemoglobin solution without coagulant activity is described. Following infusion of this solution into phlebotomized dogs, there is no methemoglobin formation, no adverse effects on vital signs, and no demonstrable activation of blood coagulation. The hemoglobin maintains its oxygen-carrying capacity and liberates oxygen into tissues. Acute and chronic effects on renal function following infusion of this preparation were also studied and no effect on clearance of urea, creatinine, or P.A.H. could be demonstrated. There was no change in urinary output and histological sections revealed no lesions attributable to hemoglobin toxicity. It is concluded that a stroma-free hemoglobin solution may have use as a plasma expander.

Aminohippuric Acids↗

Spatial Scale of Population Synchrony: Environmental Correlation versus Dispersal and Density Regulation.

A stochastic model is developed to analyze the equilibrium spatial pattern of population synchrony, the correlation of temporal fluctuations in population density between localities. The expected population dynamics and the distribution of individual dispersal distance are homogeneous in space. Environmental stochasticity is caused by temporal fluctuations in the intrinsic rate of increase and/or carrying capacity of local populations that are correlated in space (but not time), the environmental correlation decreasing with distance. We analyze a linearized model for small fluctuations. Employing the standard deviation of a function in a given direction as a measure of scale, the spatial scale of population synchrony, lρ, is related to the spatial scales of environmental correlation, le, and individual dispersal, l, by the simple general formula [Formula: see text], where m is the individual dispersal rate and γ is the strength of population density regulation (or rate of return to equilibrium, [Formula: see text] in the logistic model). Relative to environmental correlation (the Moran effect), the contribution of individual dispersal to the spatial scale of synchrony is magnified by the ratio of the individual dispersal rate to the strength of density regulation. Thus, even if the scale of individual dispersal is smaller than that of environmental correlation, dispersal can substantially increase the scale of population synchrony for weakly regulated populations.

Moran effect↗

Effects of Enrichment on Three-Level Food Chains with Omnivory.

Although omnivory (the consumption of resources from more than one trophic level) is widespread, this fundamental limitation to the applicability of food chain theory to real communities has received only limited treatment. We investigated effects of enrichment (increasing carrying capacity, K, of the resource) on a system consisting of a resource (R), an intermediate consumer (N), and an omnivore (P) using a general mathematical model and tested the relevance of some of its predictions to a laboratory system of mixed bacteria (=R) and the ciliates Tetrahymena (=N) and Blepharisma (=P). The model produced six major predictions. First, N may facilitate or inhibit P. Enrichment may revert the net effect of N on P from facilitation to inhibition. Second, along a gradient of K, up to four regions of invasibility and stable coexistence of N and P may exist. At the lowest K, only R is present. At somewhat higher K, N can coexist with R. At intermediate K, either N and P coexist, or either consumer excludes the other depending on initial conditions. At the highest K, N may be excluded through apparent competition and only R and P can coexist. The pattern of persistence of Tetrahymena and Blepharisma along an enrichment gradient conformed fairly well to the scenario allowing coexistence at intermediate K. Third, for stable equilibria of the omnivory system, R always increases and N always decreases with K. The abundances of bacteria and Tetrahymena were suggestive of such a pattern but did not allow a strict test because coexistence occurred at only one level of enrichment. Fourth, an omnivore can invade an R-N system at a lower K than an otherwise identical specialist predator of N. Fifth, an omnivore can always invade a food chain with such a specialist predator. Sixth, over ranges of K where both omnivory systems and otherwise identical three-level food chains are feasible, N is always less abundant in the omnivory system, whereas the relative abundances of R and P in omnivory systems compared to food chains may change with K. It is thus possible that total community biomass at a given K is lower in an omnivory system than in a food chain. Both the model and the experimental results caution that patterns of trophic-level abundances in response to enrichment predicted by food chain theory are not to be expected in systems with significant omnivory.

Blepharisma↗

Evolutionarily Stable Dispersal Rates Do Not Always Increase with Local Extinction Rates.

Earlier models on the evolution of dispersal have suggested that evolutionarily stable dispersal rates should increase with the frequency of local extinctions. Most metapopulation models assume site saturation (i.e., no local population dynamics), yet the majority of species distributed as metapopulations rarely attain carrying capacity in all occupied patches. In this article, we relax this assumption and examine the evolutionarily stable dispersal rate under nonsaturated but still competitive demographic conditions. Contrary to previous predictions, we show that increasing local extinction rates may allow decreasing dispersal rates to evolve.

dispersal↗

Evolution restricts the coexistence of specialists and generalists: the role of trade-off structure.

Environmental variability and adaptive foraging behavior have been shown to favor coexistence of specialists and generalists on an ecological timescale. This leaves unaddressed the question of whether such coexistence can also be expected on an evolutionary timescale. In this article, we study the attainability, through gradual evolution, of specialist-generalist coexistence, as well as the evolutionary stability of such communities when allowing for immigration. Our analysis shows that the potential for specialist-generalist coexistence is much more restricted than originally thought and strongly depends on the trade-off structure assumed. We establish that ecological coexistence is less likely for species facing a trade-off between per capita reproduction in different habitats than when the trade-off acts on carrying capacities alone. We also demonstrate that coexistence is evolutionarily stable whenever it is ecologically stable but that in most cases, such coexistence cannot be reached through gradual evolution. We conclude that an evolutionarily stable community of specialists and generalists may be created only through immigration from elsewhere or through mutations of large effect. Our results highlight that trade-offs in fitness-determining traits can have counterintuitive effects on the evolution of specialization.

Adaptation, Physiological↗

Effects of endurance training in the leopard shark, Triakis semifasciata.

This study is the first to examine the effects of endurance training in an elasmobranch fish. Twenty-four leopard sharks (Triakis semifasciata) were divided randomly into three groups. Eight sharks were killed immediately, eight were forced to swim continuously for 6 wk against a current of 35 cm s-1 (60%-65% of maximal sustainable swimming speed), and eight were held for 6 wk in a tank without induced current. There were no changes due to training in maximal sustainable speed, oxygen consumption rates, percentage of the myotome composed of red and white muscle fibers, blood oxygen-carrying capacity, liver mass, liver lipid, glycogen, and protein concentrations, white muscle protein content, heart ventricle mass, or the specific activities of the enzymes citrate synthase, pyruvate kinase, and lactate dehydrogenase in the heart ventricle. In red myotomal muscle, citrate synthase activity increased 17% as a result of training, but there was no change in muscle fiber diameter. The greatest effects occurred in white myotomal muscle, in which a 34% increase in fiber diameter and a 36% increase in the activities of citrate synthase and lactate dehydrogenase occurred as a result of training. The conditioned fish also had significantly higher growth rates. The observed effects within the myotomal muscle may reflect the higher growth rates of the trained leopard sharks, or they may be a specific response to the increased energetic demands of the training activity, indicating characteristics that limit swimming performance in leopard sharks.

Analysis of Variance↗

Dynamics of the upper urinary tract: I. Peristaltic flow through a distensible tube of limited length.

A theoretical analysis and numerical solutions are presented for viscosity-dominated flow through a uniform, highly distensible tube with a slit-shaped cross section undergoing peristalsis. At flow rates below an intrinsic upper limit to the peristaltic carrying capacity of the tube, provided that there is always at least one peristaltic contraction wave in the tube, two different types of steady peristaltic flow are possible, with well defined boluses separated by regions where the tube is nearly completely occluded (flow with isolated boluses and flow with boluses in contact). Above this limit two other non-steady types of flow are possible, in which the boluses are less well defined and the contraction waves are in general not completely occlusive (flow with leaky boluses and open-tube flow). In flow with isolated boluses, boluses in contact and leaky boluses, the upstream pressure is determined by the mechanical properties (active and passive) of the tube undergoing peristalsis. In open-tube flow it is primarily determined by the resistance of the outlet from the tube.

Animals↗

Dynamics of the upper urinary tract: II. The effect of variations of peristaltic frequency and bladder pressure on pyeloureteral pressure/flow relations.

The dynamics of pyeloureteral flow is described when there is no peristalsis and for peristalsis of high and intermediate frequencies, on the assumption that the ureter is uniform except in the mid-ureter and at the outlet. The possibility of upstream transmission of bladder pressure variations to the renal pelvis is considered. The overall behaviour depends on three principal variables, the maximum tube pressure in the contraction waves, the intrinsic peristaltic carrying capacity and the peristaltic frequency f, expressed in the form fT where T is the time for a peristaltic contraction wave to sweep through the ureter. At intermediate peristaltic frequencies (fT less than but comparable with one) oscillatory flow patterns can occur, in which periods of peristaltically driven flow alternate with extraperistaltic periods of flow through the open ureter. The kidney is better isolated from bladder pressure variations when the peristaltic frequency is high, but high peristaltic frequency can by itself lead to elevated renal pelvic pressure if the flow rate is high. Experimental observations in pigs are presented to support these conclusions.

Animals↗

An ethical assessment of anti-aging medicine.

This assessment presents and evaluates various ethical arguments for and against anti-aging medicine. After briefly defining human aging and how it could be viewed as a medical problem, the paper reviews scientific evidence that indicates that medical intervention could substantially change the rate of human aging in the foreseeable future. This evidence includes research in biochemistry, cell, and molecular biology (including research on mitochondrial DNA and oxidative stress as well as research on cellular and molecular replacement interventions), non-human animal studies, and human studies. The following six ethical arguments against anti-aging medicine are presented and evaluated: 1) inequity: the poor die young by the millions, while the rich refuse to age; 2) denying aging's immutability; 3) dominating nature, altering and commodifying ourselves; 4) overpopulation: carrying capacity concerns and the rights of future people to be born; 5) ennui: with no natural deadline, life itself outlives its value; 6) ageism: prejudice against the old and the young. The paper then evaluates four ethical arguments in favor of anti-aging medicine: 1) beneficence: duties to maintain health and prevent disease and death; 2) efficiency: slowing down aging would reduce the rates for all of the most common causes of death in developed societies; 3) limited autonomy: freedom to purchase anti-aging medicines that may or may not work, so long as they are not harmful; 4) improved quality of life: more active, healthier, and wiser (two propositions supporting this argument - that anti-aging medicine would allow for a longer, more active, healthier, and fuller life and that wisdom comes from experience, not senescence - are also presented and evaluated). The arguments in favor of anti-aging medicine are found to be more compelling than the arguments against it. The paper concludes with the recommendation that anti-aging medicine should be funded and regulated in ways that facilitate its potential both to reduce the incidence and prevalence of many diseases and to allow for longer, fuller, and more meaningful lives.

Aged↗

Trans-splicing adeno-associated viral vector-mediated gene therapy is limited by the accumulation of spliced mRNA but not by dual vector coinfection efficiency.

Therapeutic application of recombinant adeno-associated virus (AAV) has been limited by its small carrying capacity. To overcome this limitation trans-splicing vectors were developed recently. However, the transduction efficiency of trans-splicing vectors is considerably lower than that of a single intact vector in skeletal muscle. To improve trans-splicing vectors for skeletal muscle gene therapy, we examined whether coinfection efficiency is a rate-limiting factor in the mdx mouse, a model for Duchenne muscular dystrophy. Two different AAV viruses were delivered to the mdx muscle. Similar to previous reports in normal muscle, coinfection efficiency reached approximately 90% in the diseased muscle. This result suggests that coinfection is not a hurdle in dystrophic muscle. Another critical step in the trans-splicing method is the transcription and splicing across the inverted terminal repeat (ITR) junction in the reconstituted genome. To test whether this represented a significant obstacle, we systematically evaluated the transcription, pre-mRNA stability and splicing, and translation in a synthetic lacZ construct that mimicked the reconstituted genome. Although inserting an intron in the lacZ gene had no effect on its expression, inclusion of the ITR junction in the intron reduced expression by 50%. In construct containing the ITR junction, the mRNA transcript level was significantly reduced. This mRNA level reduction was associated with decreased pre-mRNA stability. These data suggest that the accumulation of mRNA is a rate-limiting factor in trans-splicing vector-mediated gene therapy.

Animals↗

Effects of artificial blood (FC-43 emulsion) on myocardial energy metabolism in the rat heart-lung preparation.

We have assessed the effects of artificial blood (FC-43 emulsion) on myocardial energy metabolism in the rat heart-lung preparation. Animals were allocated to four groups (n = 8 each group) according to the ratio of perfusion blood and FC-43 as follows: group 1 = control, perfusion blood only; group 2 = 50% FC-43; group 3 = 75% FC-43; and group 4 = 100% FC-43. Hearts were perfused initially to a cardiac output of 30 ml min-1 and mean arterial pressure of 50 mm Hg. Thirty minutes after perfusion, the hearts were freeze-dried for 6 days. Myocardial high energy phosphates (ATP, ADP and AMP) were measured by high pressure liquid chromatography. Myocardial lactate and glycogen concentrations were measured by enzymatic methods. There were almost no significant differences in cardiac output, systolic pressure, right atrial pressure and heart rate among the groups. Oxygen contents of the perfusate in all FC-43 groups were significantly lower than those in the control group. Myocardial ATP concentrations in rats receiving 50%, 75% and 100% FC-43 were significantly lower than those in the control group. In addition, myocardial ADP and AMP concentrations in rats receiving 75% and 100% FC-43 were significantly higher than those in the control group. Although there is adequate oxygen-carrying capacity in FC-43 to maintain cardiac function during perfusion, the energy levels in the hearts perfused with FC-43 were lower than those in normal hearts.

Adenosine Diphosphate↗

Cerebral effects and blood sparing efficiency of sodium nitroprusside-induced hypotension alone and in combination with acute normovolaemic haemodilution.

The combined reduction of oxygen-carrying capacity and perfusion pressure during the combination of acute normovolaemic haemodilution (ANH) and controlled hypotension (CH) raises concerns of hypoperfusion and ischaemic injury to the brain. Forty-two patients undergoing radical prostatectomy were prospectively allocated to receive CH induced by sodium nitroprusside (mean arterial pressure (MAP) 50 mm Hg), a combination of CH+ANH (post-ANH haematocrit 29%; intraoperative MAP 50 mm Hg), or standard anaesthesia (control). Serum levels of the brain-originated proteins neuron-specific enolase (NSE) and protein S-100, blood loss, transfusion requirements, adverse effects, and postoperative recovery profile were compared among the three groups. Intraoperative blood loss in the CH group (mean (SD)) (788 (193) ml) and CH+ANH group (861 (184) ml) was significantly less than in the control group (1335 (460) ml). Significantly fewer total units of allogeneic packed red blood cells (PRBC) were transfused in the patients receiving hypotensive anaesthesia (CH, 3 units; CH+ANH, 2 units; control, 17 units). There was no difference in immediate postoperative recovery profile among the three groups as determined by the emergence from anaesthesia and time to discharge from the postanaesthesia care unit. Serum S-100 protein concentrations increased significantly in all groups from baseline to peak concentrations 2 h postoperatively (CH 0.25 (0.11) microg litre(-1); CH+ANH 0.31 (0.12) microg litre(-1); control 0.31 (0.10) microg litre(-1)). A return to baseline values was seen within 24 h postoperatively in all patients. No changes in NSE concentrations were seen. Our observations suggest that CH and CH+ANH were effective in reducing blood loss and transfusion requirements in patients undergoing radical prostatectomy. Increased serum S-100 protein concentrations imply a disturbance in astroglial cell membrane integrity and an increased endothelial permeability of the blood-brain barrier. There were no associations between serum S-100 protein or NSE and adverse cognitive effects. Further work needs to be done to determine the prognostic importance of S-100 protein and NSE as surrogate variables of postoperative cerebral complications.

Aged↗

Methodologies for detection of hemoglobin-based oxygen carriers.

Blood substitutes based on hemoglobin or hemoglobin-based oxygen carriers (HBOCs) are oxygen-carrying therapeutic agents developed for use in operations and emergencies in place of donated blood. Increased oxygen-carrying capacity through the use of blood substitutes could help elite athletes to lengthen endurance capacity and improve their performance. As blood substitutes become more readily available, it is essential that a qualitative detection method for their abuse in sport is available. Ideally, such a method would be simple and inexpensive. This study investigates methods that could be used as screening procedures to easily detect HBOCs in plasma and develops tests that can unequivocally confirm their presence. The investigation into the screening method indicates that the direct visual screening of plasma discoloration is the most appropriate with detection limits of less than 1% HBOC in plasma. Two methods are shown to confirm the presence of exogenous hemoglobin in plasma samples, size-exclusion chromatography with photodiode array detection and high-performance liquid chromatography analysis of enzymatic digests with detection by electrospray mass spectrometry. This work emphasizes the need for cooperation between drug developers and sports testing laboratories to ensure that methods for the detection of putative doping agents are available prior to product release.

Amino Acid Sequence↗

Planning for rabies control in Ontario.

Ten geographic cells of rabies cases were identified within southern Ontario. Some had regular 3-year peaks, whereas others had weak cycles with mean periods of up to 9 years. Incidence of rabies was related to soil types (highest on sandy and clay loams), land use (abundant where hay and pasture were dominant), and drainage (poor drainage supported only low levels of rabies). A spatial stochastic simulation model is being used to evaluate risks and tactics associated with reduction of rabies by use of vaccine baits. The model indicated that persistence of rabies is unlikely in areas with less than 4,000 km2 of contiguous fox habitat. In sensitivity tests the model was most affected by the values of four input parameters: rate of contact among foxes, incubation period of rabies, fox density, and a density-dependent feedback that reduces fox recruitment when density approaches or exceeds a predetermined "carrying capacity." In a majority of model experiments, a single vaccination of 60% of a fox population eradicated rabies, but only if vaccination took place just after a rabies outbreak, when the number of both foxes and rabid animals was reduced. Rabies control will probably be applied to individual cells or clusters of cells rather than to the entire 98,000 km2 enzootic zone, at least at first. If rabies is eradicated the fox populations may increase, but modestly. Skunks were more important than foxes as vectors of rabies in urban Ontario. Since there is no effective oral rabies vaccine for skunks, skunks were trapped alive and vaccinated by injection.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Exchange transfusion as an adjunct to the treatment of severe falciparum malaria: case report and review.

Malaria associated with complications or a fatal outcome is almost always caused by Plasmodium falciparum. The mortality due to this disease parallels the degree of parasitemia. Successful use of exchange blood transfusion as a therapeutic adjunct for this infection was first reported in 1974, although the efficacy of this procedure has not been established by randomized, controlled trials. The rationale for this form of therapy is based on: (1) rapid reduction in the parasite load by direct removal; (2) decreased risk of severe intravascular hemolysis and its consequences (disseminated intravascular coagulation and renal dysfunction); (3) improved rheology with transfused blood and reduced microcirculatory sludging; and (4) improved oxygen-carrying capacity with transfused erythrocytes. We describe a case of severe falciparum malaria and review the literature describing the use of exchange transfusion for treatment of this infection.

Adult↗

Genome-wide high-resolution mapping by recurrent intermating using Arabidopsis thaliana as a model.

We demonstrate a method for developing populations suitable for genome-wide high-resolution genetic linkage mapping, by recurrent intermating among F2 individuals derived from crosses between homozygous parents. Comparison of intermated progenies to F2 and "recombinant inbred" (RI) populations from the same pedigree corroborate theoretical expectations that progenies intermated for four generations harbor about threefold more information for estimating recombination fraction between closely linked markers than either RI-selfed or F2 individuals (which are, in fact, equivalent in this regard). Although intermated populations are heterozygous, homozygous "intermated recombinant inbred" (IRI) populations can readily be generated, combining additional information afforded by intermating with the permanence of RI populations. Intermated populations permit fine-mapping of genetic markers throughout a genome, helping to bridge the gap between genetic map resolution and the DNA-carrying capacity of modern cloning vectors, thus facilitating merger of genetic and physical maps. Intermating can also facilitate high-resolution mapping of genes and QTLs, accelerating mapbased cloning. Finally, intermated populations will facilitate investigation of other fundamental genetic questions requiring a genome-wide high-resolution analysis, such as comparative mapping of distantly related species, and the genetic basis of heterosis.

Arabidopsis↗

The effective size of a subdivided population.

This paper derives the long-term effective size, Ne, for a general model of population subdivision, allowing for differential deme fitness, variable emigration and immigration rates, extinction, colonization, and correlations across generations in these processes. We show that various long-term measures of Ne are equivalent. The effective size of a metapopulation can be expressed in a variety of ways. At a demographic equilibrium, Ne can be derived from the demography by combining information about the ultimate contribution of each deme to the future genetic make-up of the population and Wright's FST's. The effective size is given by Ne = 1/(1 + var (upsilon) ((1 - FST)/Nin), where n is the number of demes, theta i is the eventual contribution of individuals in deme i to the whole population (scaled such that sigma theta i = n), and < > denotes an average weighted by theta i. This formula is applied to a catastrophic extinction model (where sites are either empty or at carrying capacity) and to a metapopulation model with explicit dynamics, where extinction is caused by demographic stochasticity and by chaos. Contrary to the expectation from the standard island model, the usual effect of population subdivision is to decrease the effective size relative to a panmictic population living on the same resource.

Models, Genetic↗

Fitness and density-dependent population growth in Drosophila melanogaster.

The density-dependent rates of population growth were determined for 26 populations of Drosophila melanogaster maintained in the serial transfer system. Twenty-five populations were homozygous for an entire chromosome 2 sampled from nature; the other was a random heterozygous population. Rates of population growth around the carrying capacity cannot explain the large fitness depression of these lines. However, the homozygous lines show large differences in rates of population growth at low densities relative to the random heterozygous standard. The average relative fitness of the homozygous lines, as determined from the growth rates at the lowest density, is 0.51.

Animals↗