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Fermentation of rice straw/chicken manure to carboxylic acids using a mixed culture of marine mesophilic micoorganisms.

Countercurrent fermentation of rice straw and chicken manure to carboxylic acids was performed using a mixed culture of marine mesophilic microorganisms. To increase the digestibility of the biomass, rice straw, and chicken manure were pretreated with 0.1 g Ca(OH)2/g biomass. Fermentation was performed for 80% rice straw and 20% chicken manure at various volatile solid loading rates (VSLR) and liquid residence times (LRT). The highest acid productivity of 1.69 g/(L x d) occurred at a total acid concentration of 32.4 g/L. The highest conversion (0.69 g VS digested/g VS fed) and yield (0.29 g total acids/g VS fed) were at a total acid concentration of 25 g/L. A Continuum Particle Distribution Model of the process predicted the experimental total acid concentration and conversion results with an average error of 6.41% and 6.15%, respectively. Results show how total acid concentrations, conversions, and yields vary with VSLR and LRT in the MixAlco process.

Animals↗

Transmural coupling of fluid flow in microcirculatory network and interstitium in tumors.

The growth of tumors and their response to treatment are determined by delivery of diffusible substances to cancer cells and hence by their blood supply. Relative to most normal tissues, tumor blood flow is highly heterogeneous. Several hypotheses have been postulated to explain this anomalous behavior of tumor microcirculation, but the underlying mechanisms for these heterogeneities are not fully understood. In this study we consider a potential source of nonuniformity in the blood flow: the enhanced fluid exchange between the vascular and interstitial space mediated by the high leakiness of tumor vessels which could lead to a coupling between vascular, transvascular, and interstitial fluid flow. A simple network model is presented to describe the basic features of flow through a network of permeable and compliant vessels embedded in an isotropic porous medium. Two vascular geometries are considered: a regular mesh of identical vessels and a pair of countercurrent vessels of equal diameter. In each case, the flow through each vessel of the network is described by Poiseuille's law; the transmural flow between the vessels and the external porous medium is governed by Starling's law; the fluid movement through the porous medium is described by Darcy's law; and the vessel wall is assumed to be elastic. Our results show that the behavior of microcirculation may be strongly modified as a result of vascular compliance and enhanced vascular leakiness of tumor vessels. We found not only that the vascular pressure generates the well-known, high central interstitial fluid pressure, but also that the elevated interstitial pressure in turn alters the vascular pressure distribution. These changes in vascular pressure distribution result in a modification of the blood flow pattern. As the leakiness and compliance of the vessels increase, the blood is diverted away from the center of the tumor to a more peripheral path. The clinical significance of these results is that drug delivery for chemotherapy and oxygenation needed for radiotherapy may well be hampered in the central region of the tumor, despite the presence of highly permeable vessels in these regions.

Biological Transport↗

Isolation and characterization of an apically sorted 41-kDa protein from the midgut of tobacco hornworm (Manduca sexta).

Immunocytochemical localization and sorting properties of a newly purified 41-kDa protein (MsM41) were investigated in an insect, the tobacco hornworm Manduca sexta. The protein purified from midgut homogenates of feeding fifth-stadium larvae was found exclusively in this tissue on Western blots. Presence of MsM41 protein was indicated in both anterior and posterior regions of the midgut during the whole fifth stadium. However, in the posterior region an additional 39-kDa protein was also detected during the feeding period of the last larval stage. Upon light-microscopic examination immunoreactivity was localized in the columnar cells, while the goblet, endocrine and regenerative cells remained unlabeled. Distribution of the label during the feeding period was different in the anterior and posterior regions. In the anterior region immunoreactivity was localized only to the brush border membrane of columnar cells, while in the posterior region some cytoplasmic structures identified as large trans-Golgi vesicles, endoplasmic reticulum and small secretory vesicles were also labeled. Large, apical extrusions remained immunonegative. In vitro translation confirmed that our protein was expressed only in the posterior region of the midgut. The primary translation product was a 39-kDa protein. Putative post-translational modifications yielded the 41-kDa form, which was then secreted apically. Its presence in the region of the anterior part microvilli was probably due to the countercurrent flux of the ectoperitrophic fluid.

Animals↗

How countercurrent blood flow and uneven perfusion affect the motion of inert gas.

Monte Carlo simulations of the passage of inert gas through muscle tissue reveal that countercurrent gas exchange is more important than heterogeneity of flow in determination of the shape of inert gas washout curves. Semilog plots of inert gas washout are usually curved rather than straight. Two explanations often offered are that countercurrent flow may distort the shape and that uneven perfusion of the tissue gives rise to nonuniform washout. The curvature of the semilog plot may be summarized by the relative dispersion (RD), which is the ratio of the standard deviation of transit times to the mean transit time. For straight semilog plots, RD is 1. Semilog plots of data showing xenon washout from dog tissues are curved and have and RD of approximately 2. We have simulated the transit of gas particles through a vascular bed composed of repeating units of 100 mg of tissue perfused by three small vessels 80 microns in diameter and several levels of branching that direct flow through 190,000 capillaries. Geometric distribution of flow is important. Similar degrees of flow heterogeneity affect the curvature of the washout curve more if regions of heterogeneous flow are widely spaced than if they are close together. Diffusion blunts the effects of heterogeneous flow by mixing particles in high-flow regions with particles in low-flow regions. Because of this mixing, alternating regions of high flow and low flow spaced at intervals of less than 0.5 cm are unlikely explanations for the curved semilog plots.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

An approach for immunodiagnosis of clinical cases of filariasis.

In this communication an immunodiagnostic approach has been adopted for detection of antigen and antibody in amicrofilaeamic Mf(-) patients by countercurrent immuno electrophoresis (CCIE) and immunodiffusion (ID). Using Setaria cervi and Immune Complex (IC) antigens, out of fifteen clinical cases the number of positive patients in CCIE were twelve and ten respectively. Sixty percent of the Mf(-) cases were positive in antigen detection against both the homologous and heterologous antibody. In ID nine Mf(-) cases gave precipitin bands against S. cervi antigen while with IC antigens ten patients were positive. In similar experiments, it was found that out of fifteen Mf(-) cases nine and eleven patients were positive in antigen detection against microfilaraemic Mf(+) sera and S. cervi antibody respectively. All the Mf(+) cases were positive in both antibody and antigen detection. From the standpoint of immunodiagnosis the data were analysed by two-way analysis of variance study and a newly developed system using Binomial distribution. The sera from the control group were negative in all the immunodiagnostic tests.

Adolescent↗

Distribution of neutral organic compounds between n-heptane and methanol or N,N-dimethylformamide.

Partition coefficients for a number of varied compounds were determined for the n-heptane-methanol and n-heptane-DMF partition systems and used to derive a general model for the distribution of neutral compounds in the biphasic systems. The partition coefficient, log Kp, was correlated through the solvation parameter model giving log Kp = -0.056 + 0.164E-0.620S-1.337A-0.957B + 0.507V for the n-heptane-methanol system with a multiple correlation coefficient of 0.986, standard error of the estimate 0.086, and Fischer statistic 413 for 65 compounds. For n-heptane-DMF, the model is log Kp = 0.065 + 0.030E-1.405S-2.039A-0.806B + 0.721V with a multiple correlation coefficient of 0.991, standard error of the estimate 0.080, and Fischer statistic 560 for 59 compounds. In the models the solute descriptors are excess molar refraction E, dipolarity/polarizability S, overall hydrogen bond acidity, and basicity A and B, respectively, and McGowan's characteristic volume V. Either model is expected to be able to estimate further values of the partition coefficient to about 0.08 log units and is applicable to a wide range of compounds. Applications include the choice of partitioning systems for sample clean-up, countercurrent chromatography, and estimation of solute descriptors for water insoluble or unstable compounds.

Journal Article↗

Angiotensin II receptors in the kidney.

Angiotensin II (AngII) receptors have been localized in rat kidney by using the high-affinity agonist analog 125I-labeled [Sar1]AngII as a probe for in vitro autoradiography. Receptors were associated with four morphologically distinct patterns of distribution. First, a high density of receptors occurs in glomeruli. These are diffusely distributed, consistent with a mesangial localization. AngII receptor density shows a cortical gradient, which is highest in superficial and midcortical glomeruli and lowest in juxtamedullary glomeruli. Receptors associated with both superficial and deep glomeruli show down-regulation during low-sodium intake. Second, low levels of tubular AngII binding were seen in the outer cortex. Third, a very high density of AngII receptors occurs in longitudinal bands in the inner zone of the outer medulla in association with vasa recta bundles. Receptors in this site also show down-regulation during low dietary sodium intake. Fourth, a moderate density of receptors occurs diffusely throughout the inner zone of the outer medulla in the interbundle areas. These results suggest that AngII exerts a number of different intrarenal regulatory actions. In addition to the known vascular, glomerular, and proximal tubular effects of AngII, these findings focus attention on possible actions of AngII in the renal medulla where it could regulate medullary blood flow and thereby modify the function of the countercurrent concentrating system.

Angiotensin II↗

Diffusion permeability of an isolated rete mirabile.

The rete mirabile of the swimbladder of the eeel is a countercurrent exchange organ composed of alternately disposed and venous capillaries. A countercurrent perfusion of these was set up by isolating arterial input and outflow, and venous input and outflow, and perfusing each set of capillaries with oxygenated albumin-containing Krebs-Ringer bicarbonate buffer. Constant arterial infusions containing tracer albumin, inulin, 3-O-methylglucose, urea, and water were begun and tracer concentrations at the outlets of arterial and venous beds were determined. Capillary permeabilities were determined from the resulting steady state values. The method of calculation of permeability values from the data acquired in the rete involves no approximations and appears to yield unequivocal values. For the solutes, the values appear compatible with transcapillary passage by free diffusion. No evidence of increasing restriction (in comparison to the diffuse coefficients) was found over the range of molecular sizes explored. The permeability for labeled water, in relation to the solutes, was too high, and this augmentation was attributed to the larger surface available for its exchange. Despite this larger value, labeled water did not undergo flow-limited exchange. A significant barrier to its distribution is present in this capillary system.

Air Sacs↗

Two fluid compartments in the renal inner medulla: a view through the keyhole of the concentrating process.

Approximately four decades ago, the countercurrent theory became influential in studies on the concentrating process in the mammalian kidney. The theory successfully represented the concentrating process in the outer medulla, but the problem of the concentrating mechanism in the inner medulla, as defined by Homer Smith has remained essentially intractable. In a recent comprehensive review by Knepper and coworkers of various theories and models, attention was refocused on the possible role of hyaluronate (HA) in the inner medullary concentrating process. The authors proposed a hypothesis that HA can convert hydrostatic pressure to concentrating work.Here, we briefly survey the earlier ideas on the role imputed to HA and present a new hypothesis which is different from that of Knepper and coworkers. We estimate that the hydrostatic pressures available in the inner medulla can account only for a very small fraction of the concentrating work. We hypothesize that the role of HA is tied up with extravasated plasma albumin and suggest that owing to the property of HA solutions to exclude other macromolecules, extravasated plasma albumin and HA constitute two fluid compartments in the interstitium in the inner medulla. In this proposed two-compartment model, the Gibbs-Donnan distribution influences the movement of ions and water between the HA and the extravasated albumin compartment. To relate the hypothetical role of HA to the concentrating process, we briefly describe new results obtained by other investigators on the accumulation of urea in the inner medulla. This subject has been critically reviewed recently by Yang & Bankir.Many processes have been identified as contributing to the concentrating process in the mammalian inner medulla. We speculate that among these many processes, the primary responsibility for the final concentration of the excreted urine may be portioned out differently in different mammalian species.

Animals↗

Adaptation of the rat kidney to altered water intake and urine concentration.

Previous experiments in Brattleboro rats with hereditary diabetes insipidus revealed that absence of ADH led to several alterations in kidney anatomy, which could be reversed by chronic ADH treatment. Present experiments were undertaken to determine if similar alterations were observable in normal Wistar rats when endogenous ADH level was varied by manipulating water intake or when exogenous ADH was infused. Water intake was increased by giving food with a high water content ad libitum and offering 5% glucose solution to drink (HWI rats), or decreased by reducing water intake to 1/3 of spontaneous intake (RWI rats). An additional group received chronic ADH infusion with Alzet osmotic minipumps (ADH rats). Results were compared to those obtained in control rats (CON) drinking ad libitum. RWI, CON, and ADH rats ate dry pellets ad libitum. After 6 weeks on these regimens kidneys were perfusion fixed and serial sections were cut for morphometric measurements by light microscopy. Results in the four groups showed that kidney weight relative to body weight was influenced by the operation of urinary concentrating mechanism, with HWI less than CON less than RWI less than ADH. The increase in kidney weight in rats with high urine concentration was not homogeneously distributed throughout the different kidney zones and the different nephron segments. The inner stripe of the outer medulla (IS) increased more in relative height and volume than other kidney zones and, within this zone, the volume of epithelium of thick ascending limb of Henle's loops (TAL) increased more than expected from the whole kidney weight increase. In outer stripe of outer medulla (OS) and in cortex (C), TAL hypertrophy was equal to or lower than expected from whole kidney weight increase. Collecting duct epithelium in C, OS, and IS increased in proportion to whole kidney weight. The MTAL hypertrophy in IS was due to an increase in size of preexisting cells, except in the ADH group where an increase in cell number was also observed. Internephron heterogeneity with regard to glomerular size was greater in RWI and ADH than in CON and HWI rats. The marked hypertrophy of the deep TAL in the IS of rats in which urine concentration was stimulated could be related to an increase in salt transport in this nephron segment, triggered both by a direct stimulation by ADH, and by an increased salt recycling. The elongation of the inner stripe provides a greater length for the operation of the countercurrent multiplier system responsible for building up of the osmotic pressure gradient in the medulla.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Extravascular CBG-like sites in rat kidney and mineralocorticoid receptor specificity.

To determine the intrarenal distribution of extravascular corticosteroid-binding globulin- (CBG) like sites, we measured the specific binding of [3H]corticosterone to supernatants prepared from papilla-inner medulla, outer medulla, and cortex from adrenalectomized rats. Renal papilla-inner medulla of exhaustively perfused kidneys contained 8-20 times higher concentrations of such sites than cortex or outer medulla. The ontogeny and steroid specificities of such sites were identical to those of plasma CBG; their molar concentration in the inner medulla-papilla was 4 times that of plasma CBG, consistent with local accumulation of CBG. Cytosols from all three zones bound [3H]aldosterone in the presence of RU-26988, a highly specific synthetic glucocorticoid, with high affinity (Kd 4 degrees C, 0.3-0.4 X 10(-9) M) and limited capacity (papilla-inner medulla, 23-34; outer medulla, 15-16; cortex, 12-17 fmol/mg). In papilla-inner medulla the apparent specificity of such [3H]aldosterone binding sites was aldosterone greater than corticosterone greater than dexamethasone, in contrast to aldosterone = corticosterone greater than dexamethasone in outer medulla and cortex. We propose that extravascular CBG confers mineralocorticoid specificity on the papilla-inner medulla [3H]aldosterone binding sites. In addition, given the higher levels of extravascular than intravascular CBG and the recurrent vascular architecture of the renal medulla-papilla, a countercurrent exchange model is proposed for renewable sequestration of corticosterone in the region.

Aldosterone↗

A physiologically based toxicokinetic model for the uptake and disposition of waterborne organic chemicals in fish.

A physiologically based toxicokinetic model was developed to predict the uptake and disposition of waterborne organic chemicals in fish. The model consists of a set of mass-balance differential equations which describe the time course of chemical concentration within each of five tissue compartments: liver, kidney, fat, and richly perfused and poorly perfused tissue. Model compartmentalization and blood perfusion relationships were designed to reflect the physiology of fishes. Chemical uptake and elimination at the gills were modeled as countercurrent exchange processes, limited by the chemical capacity of blood and water flows. The model was evaluated by exposing rainbow trout (Oncorhynchus mykiss) to pentachloroethane (PCE) in water in fish respirometer-metabolism chambers. Exposure to 1500, 150, or 15 micrograms PCE/liter for 48 hr resulted in corresponding changes in the magnitude of blood concentrations without any change in uptake kinetics. The extraction efficiency for the chemical from water decreased throughout each exposure, declining from 65 to 20% in 48 hr. Extraction efficiency was close to 0% in fish exposed to PCE to near steady state (264 hr), suggesting that very little PCE was eliminated by metabolism or other extrabranchial routes. Parameterized for trout with physiological information from the literature and chemical partitioning estimates obtained in vitro, the model accurately predicted the accumulation of PCE in blood and tissues, and its extraction from inspired water. These results demonstrate the potential utility of this model for use in aquatic toxicology and environmental risk assessment.

Animals↗

Role of countercurrent multiplication in renal ammonium handling: regulation of medullary ammonium accumulation.

Ammonium (NH3 plus NH4+), produced predominantly in the proximal tubule, is transferred to the final urine by a process involving countercurrent multiplication of ammonium which generates an ammonium concentration gradient in the renal medulla. It was hypothesized that if urinary ammonium excretion rates are controlled in part by the medullary ammonium gradient, changes in hydration and acid-base state should cause changes in the medullary ammonium gradient consistent with expected changes in urinary ammonium concentrations. To test that hypothesis, rats were subjected to water diuresis, water deprivation, water deprivation plus furosemide, and dietary acid and base loads and corticomedullary ammonium gradients in their kidneys were then measured. Sections were cut along the corticomedullary axis to yield slices of cortex, outer stripe of outer medulla, inner stripe of outer medulla, and three levels of the inner medulla. The total ammonia content of homogenized slices was measured by either a membrane ammonia electrode or an enzymatic technique. Kidneys from water-deprived animals showed a distinct ammonium gradient along the corticomedullary axis, with the highest contents found at the tip of the papilla. The gradient was attenuated by water diuresis and abolished by furosemide. Acid loading enhanced the gradient, and base loading abolished it. These results indicate that the corticomedullary ammonium gradient is regulated in response to changes in hydration and acid-base state.

Acid-Base Equilibrium↗

Localization of Charcot-Leyden crystal protein in individual morphological phenotypes of human basophils stimulated by f-Met peptide.

BACKGROUND: Human basophils undergo anaphylactic degranulation, characterized by extrusion of membrane-free granules, and piecemeal degranulation, characterized by progressive removal of granule contents in the absence of granule extrusion. F-Met peptide stimulates a degranulation continuum in human basophils that includes both forms of secretion. Charcot-Leyden crystal protein is stored in the granules of unstimulated human basophils. OBJECTIVE: The objective of this study was to determine the subcellular localization of the Charcot-Leyden crystal protein in individual morphological basophil phenotypes that are stimulated by f-Met peptide and are associated with secretion. METHODS: A post-embedding immunogold analysis was used to detect changes in the subcellular sites of Charcot-Leyden crystal protein in human basophils stimulated with f-Met peptide. Human basophils from normal donors were purified by countercurrent centrifugal elutriation and Percoll density gradients, stimulated to degranulate with 1 micron f-Met peptide (or incubated in buffer controls), and recovered for histamine assay, electron microscopy and immunogold labelling. Specificity controls included omission of the primary antibody and substitution of the primary antibody with non-immune normal rabbit IgG or with Charcot-Leyden crystal protein-Sepharose-absorbed primary antibody. RESULTS: The results showed new sites of labelling and different densities of labelling for Charcot-Leyden crystal protein in distinctive basophil phenotypes stimulated by f-Met peptide. New sites for Charcot-Leyden crystal protein included nucleus, cytoplasm, degranulation channel, degranulation channel membrane, plasma membrane, and a newly recognized granule population similar to primary granules in eosinophils. These new sites, as well as previously documented sites of Charcot-Leyden crystal protein (granules, intragranular Charcot-Leyden crystals, cytoplasmic vesicles) showed variable labelling when analysed by phenotype. Other sites (besides intragranular Charcot-Leyden crystals) of formed Charcot-Leyden crystals included cytoplasm, degranulation channel, extracellular space and, rarely, nucleus. Analysis of cytoplasmic vesicles, total granules and altered granules, and gold particles in subcellular compartments in seven identifiable phenotypes revealed that f-Met peptide stimulated human basophils to empty their granules by transporting Charcot-Leyden crystal protein in vesicles to the plasma membrane in the absence of granule extrusion in cells exhibiting piecemeal degranulation. In cells exhibiting anaphylactic degranulation, gold-labelled Charcot-Leyden crystals were extruded to the cells' exterior in concert with granule particles and concentric dense membranes contained within granules. Completely degranulated cells had a high density of plasma membrane gold label that was associated with numerous gold-laden endocytotic cytoplasmic vesicles. Basophils reconstituted their main granule population, within which Charcot-Leyden crystals resided, in part by endocytosis of previously released plasma membrane-bound Charcot-Leyden crystal protein. Completely recovered cells displayed decreased Charcot-Leyden crystal protein labelling of the plasma membrane and vesicle compartments, the presence of a highly labelled new granule subset that resembled Charcot-Leyden crystal protein-containing primary granules in eosinophils, and the highest density of granule and intragranular Charcot-Leyden crystal gold labelling of all phenotypes that developed after stimulation. CONCLUSION: Seven individual f-Met peptide-activated human basophil phenotypes labelled by an ultrastructural immunogold method to detect subcellular sites of Charcot-Leyden crystal protein showed changing distributions of this protein which document the capability of human basophils to undergo complex release and recovery reactions that may be pertinent to the functions of Charcot-Leyden crystal protein and the capabilit

Anaphylaxis↗

Countercurrent diffusion in the renal cortex of the rabbit.

Evidence was obtained for countercurrent diffusion of 14C-n-butanol in the rabbit renal cortex. After injection into the renal artery of perfused, isolated rabbit kidneys, concentrations of both 14C-butanol and tritiated water in the initial samples collected from the renal venous outflow exceeded those of 125I-albumin when the rate of perfusion was low. When flow was increased, the 125I-albumin curve was shifted to earlier times relative to the other labels. These observations confirm the existence of arteriovenous diffusion of 14C-butanol and tritiated water in the kidney. In a second set of experiments, 14C-butanol and tritiated water were infused for 10 or 60 seconds into the renal arteries of anesthetized rabbits, and the kidneys were then removed and frozen in liquid nitrogen. Cores were cut from the kidney surface and sectioned in a cryostat, and the ratio of 14C-butanol to tritiated water was calculated at increasing depths in the cortex. This ratio rose from 0.54 +/- 0.03 (SEM) at the surface to 0.98 +/- 0.07 at 3 mm beneath the surface in kidneys perfused for 10 seconds. This gradient was less steep after 60 seconds of perfusion. The early appearance of 14C-butanol relative to tritiated water in the renal venous outflow and delayed equilibration of 14C-butanol in the outer renal cortical tissue are consistent with counter-current diffusion. It is suggested that this exchange may occur between adjoining interlobular arteries and veins in the cortex and may contribute to high carbon dioxide tensions found near the renal surface.

1-Butanol↗