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[Assessment of myocardial perfusion with second harmonic imaging--using intravenous injection of Albunex and Levovist].

The objection of this study was to determine whether a method of harmonic imaging could improve the myocardial contrast after injection of Albunex and Levovist. Two dogs were imaged harmonic mode from transdiaphragm approach (transmit at 2.5 MHz and received at 5.0 MHz). Albunex (0.22 ml/kg) and Levovist (400 mg/ml x 2 ml) was injected intravenously for each dog. Venous injection of Albunex coupled with harmonic imaging produced only coronary flow. Venous injection of Levovist coupled with harmonic imaging produced myocardial opacification. It is possible that venous injection of Levovist coupled with harmonic imaging method will also useful in studying myocardial perfusion.

Albumins↗

A quantitative model for the measurement of cerebral vascular extraction fraction in vivo following intravenous injection: simulation studies.

A mathematical method has been developed by which the cerebral vascular extraction fraction of flow- and diffusion-limited tracers injected intravenously can be measured quantitatively. Successive injections of three tracers are required: a test tracer such as 15O-labeled water; a completely diffusible tracer as a reference tracer and also as a flow tracer; and a tracer for cerebral blood volume (CBV). The arterial tracer concentration curves and total integrated head counts of the test and reference tracers, as well as CBF and CBV values, are required to calculate the extraction fraction. No calibration is required between the head counts and arterial curves. No decay correction of the head and arterial activity is required, because isotopic decay is explicitly included in the equation. The effect of nonextracted test tracer can be corrected. Simulation studies have shown that the calculated extraction fraction values are not sensitive to measurement error in CBF, CBV, partition coefficient, change in measurement time, or time shift effect between the arterial and head data. If there is mixing of two different tissues in the brain, the calculated extraction fraction values are close to the weighted mean values of extraction fraction by relative weight of the tissues. It is concluded that it is possible to apply this method to human studies with a positron emission tomograph scanner and to animal studies with external coincidence detectors.

Antipyrine↗

Histamine and tele-methylhistamine in cat plasma after intravenous injection of histamine.

The effects of increased plasma histamine (Hi) on plasma tele-methylhistamine (MeHi) levels and the kinetics of Hi and MeHi elimination from plasma were studied in the cat. Hi (40 or 50 micrograms/kg) was injected intravenously and then Hi and MeHi were assayed by HPLC. Hi injection was followed by a significant increase in plasma MeHi levels, being maximal at 2-4 min. In most animals, maximal MeHi levels exceeded Hi itself. The half-lives (t1/2) of injected Hi were 0.6 and 13.3 min (mean values) in the alpha- and beta-phases, while the corresponding values for MeHi were 1.1 and 15.4 min. The t1/2 of exogenous MeHi (64 micrograms/kg, i.v.) was in the same range. Inhibitors of histamine-N-methyltransferase diminished the elimination rate of both amines studied. Plasma MeHi can thus serve as a marker for increased plasma Hi in the cat particularly because of its noticeable and delayed elevation after the rise in Hi itself.

Animals↗

Body temperature and blood chemistry responses in broiler cockerels given a single intravenous injection of Na+ or Ca++ before an acute heating episode.

Eight-week-old broiler cockerels were injected intravenously with avian saline containing additional Na+ as NaCl or Ca++ as CaCl2. After the injections half of the chickens were heated at 45 degrees C. and the others were maintained at 24 degrees C. Cloacal body temperatures were determined and blood samples were collected before heat exposure and at 30 minute intervals until the chickens had been heated for 120 minutes. Na+ did not affect body temperature of chickens in the 24 degrees C. environment, but Na+-treated chickens in the 45 degrees C. environment had significantly elevated body temperatures compared to the heated controls. Ca++ caused a significant decrease in body temperature of the non-heated chickens, but it was without effect in heated chickens. Neither Na" nor Ca++ altered the responses of plasma glucose, cholesterol, and calcium during the heating episode. However, Ca++ caused a significant rise in plasma inorganic phosphate in non-heated chickens and prevented the rapid decline in the heated chickens. Na+ caused a significant fall in plasma inorganic phosphate in non-heated chickens, but it did not alter the plasma phosphate response to acute heat stress. The present experimental resultn chickens in a moderate temperature environment, and suggests that Ca++ initially exerts a peripheral rather than a central effect in decreasing the body temperature.

Animals↗

Seroconversion of calves following intravenous injection with embryos exposed to bovine viral diarrhea virus (BVDV) in vitro.

Two recent studies demonstrated that a high-affinity isolate of BVDV (SD-1), remained associated with a small percentage of in vivo-derived bovine embryos following artificial exposure to the virus and either washing or trypsin treatment. Further, the embryo-associated virus was infective in an in vitro environment. Therefore, the objective of this study was to determine if the quantity of a high-affinity isolate of BVDV associated with single-washed or trypsin-treated embryos could cause infection in vivo. Twenty zona-pellucida-intact morulae and blastocysts (MB) were collected on day 7 from superovulated cows. After collection, all MB were washed according to International Embryo Transfer Society (IETS) standards, and all but 4 MB (negative controls) were exposed for 2 h to 10(5)-10(6) cell culture infective doses (50% endpoint) per milliliter (CCID(50)/mL) of viral strain SD-1. Following exposure, according to IETS standards, one half of the MB were washed and one half were trypsin treated. All MB were then individually sonicated, and sonicate fluids were injected intravenously into calves on day 0. Blood was drawn to monitor for viremia and(or) seroconversion. Seroconversion of calves injected with sonicate fluids from washed and trypsin-treated embryos occurred 38% and 13% of the time, respectively. Therefore, the quantity of a high-affinity isolate of BVDV associated with single-washed or trypsin-treated embryos was infective in vivo.

Animals↗

Excretion of intravenously injected copper-64 in sheep.

Copper-64 was injected intravenously into three sheep. The total excretion of copper in sheep was low since only 1.4--1.7% of the dose injected was excreted during a period of 60 hrs. following the injection. It was found that the biliary system was not a main excretory pathway for copper; other routes of excretion into the gastrointestinal tract seemed to be more important. The urinary and the biliary excretion were of comparable magnitude. The activity in the bile was found to be lower than in the plasma throughout the sampling period. It is assumed that a low excretion capacity of copper in the bile of sheep may be a possible factor of importance for the high susceptibility of this species to excess of copper.

Animals↗

Activation of antigen-specific suppressor T cells by the intravenous injection of soluble blood-stage malarial antigen.

The regulation of delayed-type hypersensitivity (DTH) to soluble antigens derived from blood-stage parasites was investigated. DTH responses to soluble blood-stage malarial antigen were induced by subcutaneous (sc) sensitization in the flanks and elicited by ear challenge with the same antigen 6 days later. Adoptive transfer studies revealed that T cells of the L3T4+ phenotype were mediating this response. When a high dose of malarial antigen was injected intravenously (iv) prior to sc sensitization, immunosuppression of DTH resulted. The degree of immunosuppression was dependent on the dose of antigen injected iv and the time at which it was administered prior to sc sensitization. Immunosuppression was antigen-specific and mediated by Lyt-2+ splenic T cells.

Animals↗

Comparison between the effects of intraperitoneal injection of LDL and intravenous injection of LDL on arterial endothelial cells apoptosis.

To observe the effect of oxidized low density lipoprotein (OxLDL) on arterial endothelial cells apoptosis in vivo, we established a model in which Sprague-Dawley rats were given intraperitoneal and intravenous injection of unmodified LDL (8 mg/kg every day) via the tail vein. Seven days after the injection, the aortic endothelial cells specimens were prepared by an en face preparation of rat aorta. The apoptotic cells were identified and counted by in situ nick and labelling (TUNEL) method and light microscopy. The numbers of the apoptotic cells were 12.52 +/- 4.71/field in the intraperitoneal injection control group, 11.41 +/- 2.94/field in the intravenous injection control group, 22.98 +/- 8.01/field in the intraperitoneal injection LDL group and 103.8 +/- 11.5/field in the intravenous injection LDL group, respectively. The difference was significant between injection LDL group and control (P < 0.01), and the difference was also significant between two LDL injection groups (P < 0.01). These findings suggest that injection of LDL can induce apoptosis in arterial endothelial cells and the effect is especially significant with intravenous injection LDL. After injection, oxidative modification of LDL may occur in local arteries and causes injury to the endothelial cells.

Adult↗

Labeling of neurons following intravenous injections of fluorescent tracers in mice.

Several fluorescent tracers were injected intravenously in the tail veins of adult mice, and the distribution of these substances in the central nervous system and sensory and autonomic ganglia was investigated. Injections of the blue tracers Granular Blue, True Blue and Fast Blue resulted in labeling of the somatomotor and visceromotor nuclei of the brainstem and spinal cord, the paraventricular, supraoptic and arcuate nuclei of the hypothalamus, the area postrema and the sensory and sympathetic ganglia. Following i.v. injections of Nuclear Yellow, labeling occurred only in the median eminence, the area postrema and the sensory and sympathetic ganglia.

Animals↗

Distribution of 13N following intravenous injection of [13N]ammonia in the rat.

Ammonia labeled with cyclotron-produced 13N was injected intravenously in rats and the content of 13N in 14 major organs and tissues was determined at eight intervals ranging from 0.2 to 50 min after injection. The distribution of 13N at 12 s was employed to estimate the unidirectional tissue extraction for ammonia. The estimated fractional extraction for most of the tissues studied ranged from 70 to 100%. The 12-s 13N concentrations in a number of tissues (with lungs and brain the principal exceptions) were found to be quite similar to those reported for 42K+ and 86Rb+ in the rat, suggesting a similar mechanism to transcapillary extraction. Most of the injected dose was initially extracted by the musculature, lungs, and kidneys. The lungs and kidneys released the bulk of their extracted ammonia-derived nitrogen within 10 min of injection. The gut, heart, and spleen also recirculated extracted nitrogen, but on a much smaller scale than the lungs and kidneys. The recirculated label was accumulated mainly by muscle, liver, and skin. The results suggest that the lungs and kidneys are important sources of systemically recirculated ammonia metabolites in the rat.

Ammonia↗

The distribution and retention of 89Sr in mice after a single intravenous injection of high and low doses.

Female C3H/He mice, aged 12-17 weeks, were injected intravenously with 89SrCl2 at doses of 0.74kBq g-1 body weight (low dose) or 74.0kBq g-1 (high dose). During the first week after injection, approximately 45% of the injected 89Sr was excreted in the urine and feces in both dose groups. The excretion of 89Sr decreased thereafter. The total excretion up to 56 days after injection was 63.0% and 64.5% of the injected dose in the high and low dose groups, respectively. There was no significant difference in the excretion of 89Sr in the urine between the two groups, while the fecal excretion in the low dose group was slightly higher than in the high dose group. The retention of 89Sr in the right and left femurs was 1.30 and 1.46% of the injected dose on day 7, which decreased to 0.64 and 0.70% on day 56, in the high and low dose groups, respectively. No significant difference was observed in bone retention of 89Sr between the two groups. The amount of 89Sr distributed to the soft tissues was very small and became undetectable by 42 days after injection.

Animals↗

[Roentgen kymographic investigations of gastric peristalsis after intravenous injection of caerulein].

Caerulein is a decapeptide which combines the effects of gastrin and cholecystokinin-pancreozymin. It was injected intravenously in doses of 10 to 40 nanoponds caerulein per kilopond bodyweight in 37 patients and roentgen kymography of the stomach carried out before and after the injection. In 89% of the 36 cases which could be evaluated, it increased antral peristalsis. Amplitude and frequency were increased and the periodicity decreased correspondingly. The effect was more marked than that of pentogastrin, presumably because caerulein dose not affect duodenal acidity. The changes in motility therefore correspond with those produced by serotonin and cholecystokinin-pancreoxymin. Control examinations carried out under identical conditions, but without caerulein, showed no change in antral peristalsis.

Ceruletide↗

Interaction of serum components with poly(methylmethacrylate) nanoparticles and the resulting body distribution after intravenous injection in rats.

Radiolabelled poly(methylmethacrylate) (PMMA) nanoparticles were coated with rat serum albumin (RSA), serum and inactivated serum, to examine the influence of these blood components on the body distribution of a model colloidal drug carrier. The particles were incubated overnight at 37 degrees C either in a 1% solution of RSA in phosphate buffered saline (PBS) or in serum obtained from the rats. A suspension of nanoparticles in PBS was used as a control. Serum complement inactivation was achieved by storage at 56 degrees C for 30 min. The suspensions were then injected intravenously via the tail vein of Wistar rats. The animals were sacrificed at five different time points (30 min, 2 h, 6 h, 24 h, and 7 d after injection) and two samples of each organ and two blood samples were weighed into scintillation vials. The radioactivity of each sample was then measured in a Beckman scintillation counter. Coating with RSA led to no significant change in the body distribution of the particles, whereas incubation in serum, especially with complement inactivation prior to injection, very significantly reduced the uptake of particles into the organs of the reticuloendothelial system (RES), e.g., liver, spleen, and bone marrow. At the same time, much higher concentrations of nanoparticles were observed in the serum and in non-RES organs and peripheral tissues (kidneys, muscles, and intestine). This effect was most pronounced after 30 min, but was still observable after 7 d.

Animals↗

Effect and distribution of intravenously injected 125I-guanylin in rat kidney examined by high-resolution light microscopic radioautography.

125I-guanylin was injected intravenously into rats, and their kidney and intestinal tract were processed for light microscopic radioautography using semithin sections to examine the binding sites. Various doses of unlabeled guanylin were also injected to examine the morphological effects of guanylin on the kidney. Dense labeling of silver grains due to 125I-guanylin were observed only in the kidney. In the cortex, silver grains were localized on the luminal side of the proximal tubules at 5-30 min. In the medulla, silver grains appeared at the basal side of the collecting ducts, capillaries and loops of Henle after 5 min. Silver grains then accumulated in the cytoplasm of the collecting ducts after 10 min, and disappeared after 30 min. The cell height of the inner medullary collecting ducts (IMCD) decreased and their luminal spaces increased dose-dependently 5 min after the injection of both labeled and unlabeled guanylin. These structural changes returned to control levels within 30 min. These results indicate a high density localization of guanylin receptors on the luminal surface of proximal tubules in the renal cortex and also rapid excretion of guanylin through the IMCD. The morphological changes of the IMCD suggest a diuretic effect of guanylin.

Animals↗

Effects of intravenous injection of diatrizoate, iohexol or ioxilan on renal size, urine profiles and blood profiles in the rabbit.

Diatrizoate, iohexol or ioxilan were injected intravenously in 18 rabbits. The contrast medium passage through the kidneys was recorded on digital subtraction images for the first 50 s followed by 100 mm exposures up to 15 min after injection. The renal area was measured planimetrically. Urine profiles (glucose, phosphate, LDH, GGT, NAG), blood profiles (potassium, urea) and the relative clearance of albumin and sodium were followed for 5 days and compared with a control group injected with saline. All kidneys were examined by light and immunofluorescence microscopy. All three contrast media produced excellent arteriograms and urograms. The three different contrast media caused a rapid increase of the kidney area within the first minute, reaching an average maximum of 10 to 12 per cent after 5 min, followed by a gradual decline. Contrary to expectations the increase in renal area was similar for all three contrast media, so hyperosmolality is no likely explanation of this phenomenon. None of the contrast agents caused significant changes in any of the profile components with one exception: the GGT excretion was significantly elevated during the first 24 h after diatrizoate administration as compared with the effect of saline. Light and immunofluorescence microscopy revealed no differences.

Animals↗

Proteinuria and structural alterations in rat glomerular basement membranes induced by intravenously injected anti-laminin immunoglobulin G.

Antibodies against laminin, which is a defined glycoprotein of basement membranes, were produced in sheep and affinity purified by immunoadsorption on laminin-Sepharose (S alpha L). When injected intravenously into rats, S alpha L rapidly bound in a linear pattern to the glomerular basement membrane (GBM) in the peripheral and mesangial regions of all glomeruli, and, when greater than 0.5 mg S alpha L was injected, to some tubular BM as well. 1-2 h after the injection of conjugates of horseradish peroxidase (HRP) and S alpha L, HRP reaction product was present throughout the full thickness of the GBM and mesangial matrix. [125I]S alpha L binding to the kidney in vivo increased linearly over the dose range of 40-950 micrograms of IgG and accounted for approximately 2% of the injected dose/g kidney. When 4 mg of [125I]S alpha L was injected, 1.5% or 62 micrograms/g kidney was bound. Proteinuria did not develop within 7 wk of injection in rats that received 0.5-1.6 mg of S alpha L. In contrast, all animals that received injections of 4 mg of S alpha L gradually became proteinuric within 3-6 wk. Thickening, reduplication, and flocculent subendothelial deposits were observed in the GBM of these animals. In addition, mononuclear cells adhered to the GBM and infiltrated beneath the endothelium. However, the deposition of rat C3 was infrequently observed, and rat IgG was not seen in the glomeruli of any rat that received S alpha L. 10 wk after injection, much greater amounts of S alpha L appeared within the mesangium than the peripheral GBM. These results demonstrate that the interaction of S alpha L with the GBM, possibly in concert with infiltrating mononuclear cells, gradually altered the structure and permeability characteristics of the glomerulus independent of a host anti-S alpha L humoral response.

Animals↗

Antibody synthesis in the rat liver: an association between antibody-forming cells in the liver and biliary antibodies following intravenous injection of horse erythrocytes.

The transient appearance of IgM in the bile of rats injected intravenously with horse erythrocytes (HRBC) correlated with the occurrence of anti-HRBC IgM-secreting cells in the liver. Both responses were reduced in animals splenectomised at the time of immunisation. When rats were given 2 injections of HRBC spaced by 28 days, IgG, IgA and IgM antibody-forming cells (AFC) were detected in the liver along with IgM and non-IgM anti-HRBC antibody in bile. There was a 10-fold increase in the total numbers of mononuclear cells (MNC) retrievable from the liver at the height of the biliary antibody response, the majority of which were not AFC. These results suggest that antigen entering the spleen stimulates the release of a population of MNC which may localise in the liver and that a minor portion of these produces specific antibody which is secreted into bile.

Animals↗