Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Carrying Capacity”

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 235 records · Page 13Linked to original sources

Responses of the red blood cells from two high-energy-demand teleosts, yellowfin tuna (Thunnus albacares) and skipjack tuna (Katsuwonus pelamis), to catecholamines.

In fishes, catecholamines increase red blood cell intracellular pH through stimulation of a sodium/proton (Na+/H+) antiporter. This response can counteract potential reductions in blood O2 carrying capacity (due to Bohr and Root effects) when plasma pH and intracellular pH decrease during hypoxia, hypercapnia, or following exhaustive exercise. Tuna physiology and behavior dictate exceptionally high rates of O2 delivery to the tissues often under adverse conditions, but especially during recovery from exhaustive exercise when plasma pH may be reduced by as much as 0.4 pH units. We hypothesize that blood O2 transport during periods of metabolic acidosis could be especially critical in tunas and the response of rbc to catecholamines elevated to an extreme. We therefore investigated the in vitro response of red blood cells from yellowfin tuna (Thunnus albacares) and skipjack tuna (Katsuwonus pelamis) to catecholamines. Tuna red blood cells had a typical response to catecholamines, indicated by a rapid decrease in plasma pH. Amiloride reduced the response, whereas 4,4'diisothiocyanatostilbene-2,2'-disulphonic acid enhanced both the decrease in plasma pH and the increase in intracellular pH. Changes in plasma [Na+], [Cl-], and [K+] were consistent with the hypothesis that tuna red blood cells have a Na+/H+ antiporter similar to that described for other teleost red blood cells. Red blood cells from both tuna species were more responsive to noradrenaline than adrenaline. At identical catecholamine concentrations, the decrease in plasma pH was greater in skipjack tuna blood, the more active of the two tuna species. Based on changes in plasma pH, the response of red blood cells to catecholamines from both tuna species was less than that of rainbow trout (Oncorhynchus mykiss) red blood cells, but greater than that of cod (Gadus morhua) red blood cells. Noradrenaline had no measurable influence on the O2 affinity of skipjack tuna blood and only slightly increased the O2 affinity of yellowfin tuna blood. Our results, therefore, do not support our original hypothesis. The catecholamine response of red blood cells from high-energy-demand teleosts (i.e., tunas) is not enhanced compared to other teleosts. There are data on changes in cardio-respiratory function in tunas caused by acute hypoxia and modest increases in activity, but there are no data on the changes in cardio-respiratory function in tunas accompanying the large increases in metabolic rate seen during recovery from exhaustive exercise. However, we conclude that during those instances where high rates of O2 delivery to the tissues are needed, tunas' ability to increase cardiac output, ventilation volume, blood O2 carrying capacity, and effective respiratory (i.e., gill) surface area are probably more important than are the responses of red blood cells to catecholamines. We also use our data to investigate the extent of the Haldane effect and its relationship to blood O2 and CO2 transport in yellowfin tuna. Yellowfin tuna blood shows a large Haldane effect; intracellular pH increases 0.20 units during oxygenation. The largest change in intracellular pH occurs between 40-100% O2 saturation, indicating that yellowfin tuna, like other teleosts, fully exploit the Haldane effect over the normal physiological range of blood O2 saturation.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Oxygen transport capacity in the air-breathing fish, Megalops cyprinoides: compensations for strenuous exercise.

Tarpon have high resting or routine hematocrits (Hct) (37.6+/-3.4%) and hemoglobin concentrations (120.6+/-7.3 gl(-1)) that increased significantly following bouts of angling-induced exercise (51.9+/-3.7% and 142.8+/-13.5 gl(-1), respectively). Strenuous exercise was accompanied by an approximately tenfold increase in blood lactate and a muscle metabolite profile indicative of a high energy demand teleost. Routine blood values were quickly restored only when this facultative air-breathing fish was given access to atmospheric air. In vitro studies of oxygen transport capacity, a function of carrying capacity and viscosity, revealed that the optimal Hct range corresponded to that observed in fish under routine behaviour. During strenuous exercise however, further increase in viscosity was largely offset by a pronounced reduction in the shear-dependence of blood which conformed closely to an ideal Newtonian fluid. The mechanism for this behaviour of the erythrocytes appears to involve the activation of surface adrenergic receptors because pre-treatment with propranolol abolished the response. High levels of activity in tarpon living in hypoxic habitats are therefore supported by an elevated Hct with adrenergically mediated viscosity reduction, and air-breathing behaviour that enables rapid metabolic recovery.

Adaptation, Physiological↗

Studies on the erythron and the ferrokinetic responses in beagles adapted to hypergravity.

Red cell survival, ferrokinetics, and hematologic parameters were investigated in Beagle dogs exposed to chronic hypergravity (2.6 Gx). Ineffective erythropoiesis, red cell mass, plasma volume, and 51 Cr elution were significantly increased; maximum 59Fe incorporation was decreased; and there was no change in the mean erythrocyte life span following autologous injection of 51Cr-labeled red cells and 59Fe-labeled transferrin. Red cell count, Fcells, total body hemoglobin (Hb), susceptability to osmotic lysis, and differential reticulocyte count were increased. White blood cell count, venous blood %Hb, mean cell volume, mean cell Hb, mean cell Hb concentration, and serum iron were decreased. No changes were observed for body mass, mg Fe per g Hb, iron binding capacity, percent saturation of iron carrying capacity, or the electrophoretic mobility of purified Hb. This study indicated that chronic exposure to hypergravity induced changes in red cell size, volume, total mass, and membrane permeability.

Adaptation, Physiological↗

Whither the global population problem.

Growth of the human population has been underway for thousands of years and was never a problem until recently. It is now expanding exponentially, and today global population stands at nearly 6 billion with 97 million being added each year. Currently, overpopulation has led to serious social and environmental problems such as poverty, overcrowded slums, crime, terrorism, pollution of air and water, and depletion of the protective ozone layer. Warnings were sounded, but few listened. The enthusiasm once generated for solving the problem of too many people was short-lived. The press with puzzling abrogation of its responsibility to the public managed to allay all fears of population overgrowth. Two U.S. presidents welcomed such growth as a stimulus to economic development. Although modern contraceptives are safe, effective, and widely available, more are badly needed, but none are in the pipeline. Research is being hampered by hostile attitudes and by the high cost in time and money of bringing a new contraceptive to an uncertain market with the added threat of litigation. At the present rate of growth, the population will double in the next century. This is believed to be beyond the carrying capacity of our planet. Corrective measures by man or nature need to be undertaken.

Birth Rate↗

The demographic transition revisited: lessons for foreign aid and U.S. immigration policy.

"The completed demographic transitions in industrialized countries inspired a model which underlies many well-meant policies affecting the Third World. However, the model's postulate--modernization and prosperity will lower fertility rates--has exacerbated rather than helped control worldwide population growth and the associated environmental degradation. Here we show that perceived economic opportunity leads to raising family size targets and to discarding elements of traditional cultures which formerly held fertility rates in check. Conversely, fertility rates fall when limits are recognized. These observations imply that a liberal immigration policy and large-scale foreign aid are counterproductive for restoring balance between population size and carrying capacity."

Conservation of Natural Resources↗

Isokinetic muscle strength predicts maximum exercise tolerance in renal patients on chronic hemodialysis.

Patients with end-stage renal disease receiving chronic hemodialysis have impaired exercise tolerance. To distinguish between a central cardiorespiratory and a peripheral skeletal muscular origin for this fatigue, we measured exercise performance and peak oxygen consumption during a maximum exercise test in 10 patients receiving chronic hemodialysis. Skeletal muscle function was measured with an isokinetic cycle ergometer and a Cybex II isokinetic dynamometer. Peak rates of oxygen consumption (17.7 +/- 3.6 [mean +/- SD] mL O2/kg/min), blood lactate concentrations (3.4 +/- 0.9 mmol/L), peak heart rates (168 +/- 12 beats/min), and rates of ventilation (37.3 +/- 14.6 L/min) were low, but respiratory exchange ratios (1.1 +/- 0.1) were compatible with maximal effort. There was a significant correlation between isokinetic muscle strength and VO2 peak, exercise duration, peak ventilation, and peak blood lactate concentrations (P less than 0.05 to less than 0.001), but not between hemoglobin concentration, total blood hemoglobin content, or hematocrit and these variables. Therefore, in renal dialysis patients, isokinetic muscle strength is a better predictor of exercise capacity than are variables determining blood oxygen carrying capacity. This suggests that altered skeletal muscle function explains the impaired exercise tolerance of anemic patients with end-stage renal disease receiving chronic hemodialysis.

Adult↗

Effect of Fluosol-DA (20%) on skin flap survival in rats.

This study evaluates the effect of increased oxygen-carrying capacity of blood with the oxygen-carrying blood substitute Fluosol-DA (20%) on skin flap survival in rats. A skin flap model as described by Finseth was used in male Sprague-Dawley rats. We found that Fluosol-DA (20%) alone or in conjunction with O2 does not augment survival of skin flaps in rats, while hemodilution enhances and hemoconcentration deteriorates skin flap survival. Systemic O2 does not enhance survival of skin flaps in rats.

Animals↗

Double think and double talk.

The public health debate on population growth and child mortality continues, fuelled by the hypothesis that in allowing more children to survive until reproductive age, programmes such as the Diarrhoeal Diseases Control Programme of the World Health Organization contribute to long-term human misery by overburdening the carrying capacity of the planet. A significant part of the solution put forward is to withhold public health services to children in developing countries. This argument is here refuted on socioeconomic, ethical and humanitarian grounds. An alternative approach is offered, which takes into account the economic and social obligations of the industrialized nations.

Child Health Services↗

First do no harm.

Many traditional societies, which have long survived in balance with the carrying capacity of their local environments, have recently experienced rapid rates of population growth that threaten their survival. In examining the reasons for these deleterious trends, the author notes that they have occurred despite international technological assistance, improved health care, increased literacy, democratization, and liberal immigration and refugee policies favoring developing countries. "She argues that well meant programs and policies work at cross purposes with their stated goals when they dispel motivation to exercise caution and restraint. Family size targets stay high or rise when people think that limits which formerly operated have been relieved; so a windfall of resources or emigration opportunity frequently results in a population explosion in the region supposedly being helped."

Conservation of Natural Resources↗

[A mathematical model for the dynamics of primitive biological macromolecules and its evolutionary implications].

A mathematical model, adopted from the logistic equations for population growth and interspecific competition in ecology, was proposed for the dynamics of primitive biological macromolecules: [formula: see text] where Nm is the copy number of a kind of biological macromolecule in primitive environment at time t. rm is the intrinsic replicating capacity (rate) of the macromolecule. Km is the carrying capacity (resource limit) of the primitive environment. dNm/dt is the instantaneous rate of increase of copy number of the primitive biological macromolecule beta 12 and beta 21 are competition coefficients concerning the inhibition of macromolecule 2 on macromolecule 1 (beta 12), and macromolecule 1 on macromolecule 2 (beta 21) other lower indexes in the equations refer to macromolecule 1 or 2. By analysing the possible competition outcomes deduced from the model, a conclusion with evolutionary implications could be drawn that the biological diversity would be very low shortly after the origin of life in the primitive biosphere. In other words, the abundant biological macromolecules capable of replicating in the primitive biosphere would be quite unique in kinds, and this uniqueness would therefore be the initial basis of biological evolution which would then go from low biological diversity to high biological diversity. The model is also helpful for the understanding of the origin of repeated sequences which are widely present in the genomes of modern organisms.

Animals↗

Influence of the 100% w/v perfluorooctyl bromide (PFOB) emulsion dose on tumour radiosensitivity.

The radiosensitizing effect of a 100% w/v emulsion of a fluorocarbon, PFOB, which carries 4 times more oxygen than does Fluosol-DA 20% emulsion, was studied on two human tumour xenografts (HRT18 and HT29) and the murine tumour EMT6. This effect was compared with that obtained with carbogen alone. The fluorocrit (amount of fluorocarbon in the blood) and haematocrit remained unchanged from 7 to 65 min post-injection of the emulsion (8 ml/kg). Tumour-bearing mice were pretreated with 100% w/v PFOB emulsion doses ranging from 2 to 15 ml/kg in the presence of carbogen for 30 min prior to and during irradiation. The fluorocrit increased from 1.5% to 9.5% as the dose of 100% w/v PFOB emulsion increased from 2 to 15 ml/kg. The haematocrit remained the same for all the fluorocarbon emulsion doses used. Tumour radiosensitization varied with the fluorocarbon emulsion dose. Clinically relevant doses (2-4 ml/kg) of the 100% w/v PFOB emulsion plus carbogen produced significantly more radiosensitization than carbogen alone, with sensitizing enhancement ratios of 1.4 for EMT6 and 1.7 for HRT18. The radiosensitivity of HRT18 cells was thus very close to that obtained with normally oxygenated cells. For higher doses (8-15 ml/kg) the radiosensitizing effect of 100% w/v PFOB emulsion plus carbogen becomes comparable to that of carbogen alone. These experiments show that clinically useful doses of 100% w/v PFOB plus carbogen produced tumour radiosensitization only at relatively low fluorocrits. Thus the fluorocrit, and hence the fluorocarbon's oxygen-carrying capacity, is not the only factor involved in radiosensitizing tumour cells by oxygen-carrying fluorocarbon emulsions.

Adenocarcinoma↗

Microvascular pressure and functional capillary density in extreme hemodilution with low- and high-viscosity dextran and a low-viscosity Hb-based O2 carrier.

Blood losses are usually corrected initially by the restitution of volume with plasma expanders and subsequently by the restoration of oxygen-carrying capacity using either a blood transfusion or possibly, in the near future, oxygen-carrying plasma expanders. The present study was carried out to test the hypothesis that high-plasma viscosity hemodilution maintains perfused functional capillary density (FCD) by preserving capillary pressure. Microvascular pressure responses to extreme hemodilution with low- (LV) and high-viscosity (HV) plasma expanders and an exchange transfusion with a polymerized bovine cell-free Hb (PBH) solution were analyzed in the awake hamster window chamber model (n = 26). Systemic hematocrit was reduced from 50% to 11%. PBH produced a greater mean arterial blood pressure than the nonoxygen carriers. FCD was higher after a HV plasma expander (70 +/- 15%) vs. PBH (47 +/- 12%). Microvascular pressure spanning the capillary network was higher after a HV plasma expander (16-19 mmHg) compared with PBH (12-16 mmHg) and a LV plasma expander (11-14 mmHg) but lower than control (22-26 mmHg). FCD was found to be directly proportional to capillary pressure. The use of a HV plasma expander in extreme hemodilution maintained the number of perfused capillaries and tissue perfusion by comparison with a LV plasma expander due to increased mean arterial blood pressure and capillary pressure. The use of PBH increased mean arterial pressure but reduced capillary pressure due to vasoconstriction and did not maintain FCD.

Animals↗

A perspective on acetaldehyde concentrations and toxicity in man and animals.

Acetaldehyde (AcH) at a concentration of 593 mM lowers the natural fluorescence of commercial human serum by 12%. It also lowers the fluorescence of a beta-naphthylamine standard curve (recovery) in serum by 17%. These results contrast with earlier reports showing that 447 mM AcH had no effect upon fluorescence of serum or a beta-naphthylamine standard curve in serum. Because 447 mM AcH and 593 mM AcH represent 2.5% and 3.3% AcH, it is apparent that there is a narrow window between which AcH may affect fluorescence by adduct formation with blood components and exogenous fluorophores. Nonetheless, serum has the capacity to bind > 2.5% (> 447 mM) AcH without alteration in fluorescence, suggesting that serum has a great carrying capacity for AcH, undoubtedly in the form of adducts to nucleophiles. These results are discussed in the light of toxicity of AcH and ethanol, the probable significance of the approximately 30 microM free AcH that is reported in chronic alcoholics and the planning of in vitro and in vivo studies with AcH.

2-Naphthylamine↗

Erythrocytic system under the influence of physical exercise and training.

It is obvious that physical performance, endurance capacity and resistance to fatigue in humans are dependent upon many different factors. One factor, the oxygen carrying capacity of blood, seems to be of particular importance. This factor is mainly determined by haemoglobin concentration, number of circulating erythrocytes and the efficiency of their functions. A single bout of physical effort and, even more, repeated exercise may change the morphological indices of blood and influence the erythropoietic processes in the bone marrow. That is why there is so great an interest now attached to the effects of physical exercise on the erythrocytic system. Although in recent years many papers have been published on the subjects their findings pertaining to the effects of single bouts of exercise and systematic training on the erythrocytic system are often contradictory. The haematological parameters in some top-class athletes, particularly those performing in endurance disciplines are lowered at rest. Anaemia has been described in sportsmen, even among the members of Olympic teams. This type of anaemia has been called 'sports anaemia', 'athletes' anaemia' or 'postexercise anaemia' in order to emphasise its character. Among many possible causes which may bring about the development of sports anaemia the most commonly recognised are: postexercise plasma expansion, intensified haemolysis during physical efforts, iron deficiency, losses of erythrocytes by the way of bleeding into the digestive and urinary systems and also some disturbances in erythropoiesis. However, there is evidence of the intensification of erythropoiesis by many factors occurring during physical exercise.

Erythrocytes↗

Preliminary characterization of novel amino acid based polymeric vesicles as gene and drug delivery agents.

The amino acid homopolymers, poly-L-lysine and poly-L-ornithine, have been modified by the covalent attachment of palmitoyl and methoxypoly(ethylene glycol) (mPEG) residues to produce a new class of amphiphilic polymers-PLP and POP, respectively. These amphiphilic amino acid based polymers have been found to assemble into polymeric vesicles in the presence of cholesterol. Representatives of this new class of polymeric vesicles have been evaluated in vitro as nonviral gene delivery systems with a view to finding delivery systems that combine effective gene expression with low toxicity in vivo. In addition, the drug-carrying capacity of these polymeric vesicles was evaluated with the model drug doxorubicin. Chemical characterization of the modified polymers was carried out using (1)H NMR spectroscopy and the trinitrobenzene sulfonic acid (TNBS) assay for amino groups. The amphiphilic polymers were found to have an unreacted amino acid, palmitoyl, mPEG ratio of 11:5:1, and polymeric vesicle formation was confirmed by freeze-fracture electron microscopy and drug encapsulation studies. The resulting polymeric vesicles, by virtue of the mPEG groups, bear a near neutral zeta-potential. In vitro biological testing revealed that POP and PLP vesicle-DNA complexes are about one to 2 orders of magnitude less cytotoxic than the parent polymer-DNA complexes although more haemolytic than the parent polymer-DNA complexes. The polymeric vesicles condense DNA at a polymer:DNA weight ratio of 5:1 or greater and the polymeric vesicle-DNA complexes improved gene transfer to human tumor cell lines in comparison to the parent homopolymers despite the absence of receptor specific ligands and lysosomotropic agents such as chloroquine.

Amino Acids↗

Detection of a vasoconstrictor factor in stroma-free haemoglobin solutions.

Polymerised pyridoxylated haemoglobin solution (PPSFH) is a modified haemoglobin solution which has a normal oxygen carrying capacity, long half-life, and reasonable oxygen affinity, and is a leading candidate for use as an oxygen carrying blood substitute. Previous work has given indications that vasoactive factors may be present. A bioassay sensitive to vasoconstrictors was constructed. PPSFH prepared by chloroform extraction produced a mean pressure rise of 24.3 mm Hg. PPSFH prepared by a crystallisation method showed a mean rise of 2 mm Hg (p = 0.0004). Unmodified stroma-free haemoglobin (SFH) prepared from platelet- and white cell-free red blood cells showed a mean rise of 32.5 mm Hg. These data indicate that both PPSFH and SFH contain a vasoconstrictor factor which is of low molecular weight, is hydrophilic, and is derived from red blood cells.

Animals↗

[Hematologic changes in female athletes].

Iron deficiency is the most common cause of anemia throughout the world. Physical performance, endurance capacity and resistance to fatigue in human are dependent upon many different factors. One of them is the oxygen carrying capacity of blood, mainly determined by hemoglobin concentration. We used questionnaires, physical examination and laboratory investigation to study the hematologic patterns in 18 volley-ball athletes. Their average intake of iron was 13.99 +/- 6.26 mg/day; the average serum iron concentration was 108.61 +/- 29.13 micrograms/dl; the hemoglobin concentration was 12.94 +/- 1.10 g/dl. Four athletes had less than 12 g of hemoglobin/dl and a serum iron concentration of 99.25 +/- 39.73 micrograms/dl. The maximal aerobic exercise capacity measured by exercise electrocardiography showed no important differences between the athletes with hemoglobin values higher or lower than 12 g/dl. These data support the idea that in São Paulo among young female athletes overt anemia is uncommon.

Adolescent↗

A new salutary resuscitative fluid: liposome encapsulated hemoglobin/hypertonic saline solution.

Low-volume resuscitation with hypertonic (7.5%) saline (HTS) is an evolving therapeutic modality for patients with hemorrhagic shock. This solution has been shown to exert protective hemodynamic effects in models of controlled hemorrhagic shock and in several clinical trials. However, HTS has no oxygen-carrying capacity and therefore does not improve oxygen delivery directly. One of the leading strategies in developing an oxygen-carrying resuscitative fluid is the encapsulation of hemoglobin within phospholipid vesicles (LEH). This preparation has the advantage of being blood type and antigen free, easily adaptable to scale-up production, and remarkably stable with a long shelf life. We therefore tested the hypothesis that lyophilized LEH reconstituted with HTS will improve tissue oxygenation and survival in rats exposed to a lethal controlled hemorrhagic shock. Shock was induced by withdrawal of 70% of blood volume and therapy (n = 10-16) with HTS (5 mL/kg), LEH (5 mL/kg), lactated Ringer's solution (vol:vol = 1:3), LEH-HTS (5 mL/kg), or oxygen (100%) was initiated 15 minutes later. The LEH-HTS improved skeletal muscle oxygen tension directly measured using a thin-film chamber oxygen sensor (PO2 87 +/- 13 mm Hg vs. 40-50 mm Hg in other groups, p < 0.05). This was associated with improved blood pressure, reduced acidosis, and increased survival at 24 hours (75% vs. 6%-25% in other groups, p < 0.05). In conclusion, the study demonstrates a remarkably salutary effect of LEH reconstituted with HTS as a blood substitute in the treatment of hemorrhagic shock.

Animals↗