Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Peripheral tissues”

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 199 records · Page 11Linked to original sources

Oxygen demand-supply relationship in peripheral tissues as a therapeutic indicator in acute myocardial infarction with advanced heart failure.

Oxygen demand-supply relationships in peripheral tissues were studied in 14 patients who had acute myocardial infarction with advanced pump failure. Seven patients with acute myocardial infarction but without pump failure were studied as a control. In all patients, a Swan-Ganz catheter and a radial arterial cannula were inserted for the purpose of hemodynamic monitoring, and arterial and mixed venous blood were sampled. Initially, oxygen delivery (DO2) (p < 0.01) was lower, and oxygen extraction ratio (OER) (p < 0.001) and oxygen tension at 50% saturation (P50) (p < 0.01) were higher in patients with pump failure than in the controls. During the therapeutic course, with an increase in the cardiac index and DO2, oxygen uptake (VO2) did not change but OER (p < 0.001) and P50 (p < 0.01) significantly decreased in 6 survivors with pump failure. In contrast, an increased VO2 (p < 0.01) and no change of OER and P50 were observed in 8 nonsurvivors with pump failure. These results suggest that reversibility of oxygenokinetics might be an important factor for recovery from critical heart failure.

Aged↗

Theophylline kinetics in peripheral tissues in vivo in humans.

Several biochemical and cellular effects have been described for methylxanthines under in vitro conditions. However, it is unknown, whether threshold concentrations required to exert these effects are attained in target tissues in vivo. We therefore employed the microdialysis technique for measuring theophylline concentrations in peripheral tissues under in vivo conditions. Following in vitro and in vivo calibration, microdialysis probes were inserted into the medial vastus muscle and into the periumbilical subcutaneous adipose layer of healthy volunteers. Following single oral dose administration of 300 mg or i.v. infusion of 240 mg theophylline, in vivo time courses of theophylline concentrations were monitored in tissues and plasma. Major pharmacokinetic parameters (cmax, tmax, AUC) were calculated for plasma and tissue time courses. The mean AUCtissue/AUCplasma-ratio was 0.56 (p.o.) and 0.55 (i.v.) for muscle and 0.55 (p.o.) and 0.72 (i.v.) for subcutaneous adipose tissue. We conclude that microdialysis provides important information on the distribution and the tissue pharmacokinetics of theophylline.

Adult↗

The regional distribution of kassinin-like immunoreactivity in central and peripheral tissues of the cat.

The regional distribution of kassinin-like immunoreactivity (KLI) was investigated by radioimmunoassay in central and peripheral tissues of the cat. In the cat brain KLI was found to have a widespread distribution with the highest concentrations present in the substantia nigra followed by the hypothalamus and caudate nucleus. Moderate levels were detected in the spinal cord, brainstem and thalamus but only low levels were found in the frontal cortex and cerebellum. In the periphery KLI was present in moderate amounts in the pituitary but in only low amounts in the dorsal root ganglion. KLI was present throughout the gastrointestinal tract with the highest concentration in the duodenum. The distribution of KLI was found to resemble closely that of substance P-like immunoreactivity (SPLI) although the ratio of SPLI to KLI varied widely throughout the tissues tested. In the frontal cortex and cerebellum the concentration of SPLI was at least 5-fold higher than that of KLI whereas in the pituitary gland, caudate nucleus and terminal ileum the concentrations of SPLI were only 50% higher. High pressure liquid chromatographic analysis of individual tissue extracts was used in order to characterize the KLI. In the caudate nucleus, substantia nigra and hypothalamus the major immunoreactive peak co-eluted with synthetic substance K. In contrast, in the spinal cord and terminal ileum the major peak of KLI co-eluted with synthetic neuromedin K. These results demonstrate that KLI is widely distributed throughout cat tissues and that this distribution closely resembles that of SPLI. However, it also appears that there are important qualitative differences in the KLI between the areas tested.

Adrenal Glands↗

Role of the hypothalamus in insulin-independent glucose uptake in peripheral tissues.

To clarify the role of the ventromedial hypothalamus (VMH)-sympathetic nervous system in insulin-independent glucose uptake in peripheral tissues, tissue glucose uptake was assessed in vivo by the 2-[3H]deoxyglucose method during electrical stimulation of the VMH in anesthetized rats. VMH stimulation significantly increased the rate constant of glucose uptake in brown adipose tissue (BAT), heart and skeletal muscles, but not in white adipose tissue and brain. The effect of VMH stimulation on glucose uptake in BAT was abolished by local sympathetic denervation, indicating that the increase in glucose uptake is mediated by the sympathetic nerves. Electrical stimulation of the lateral hypothalamus, on the other hand, had no appreciable effects on 2-[3H]deoxyglucose uptake in any tissues. Changes in glucose transporters after VMH stimulation were also examined by the [3H]cytochalasin B binding method using sarcolemmal membranes isolated from heart muscle. Scatchard analysis of cytochalasin B binding indicated that VMH stimulation did not alter both the number and affinity (dissociation constant) of glucose transporters in the heart sarcolemmal membranes, whereas insulin administration increased the number of transporters in the membranes. These results suggest that the mechanism by which VMH stimulation increases glucose uptake in muscle is different from that of insulin.

Animals↗

Identification and characterization of two neuromedin U receptors differentially expressed in peripheral tissues and the central nervous system.

Two structurally related, G-protein-coupled receptors were identified as receptors for the neuropeptide, neuromedin U. This peptide is found in highest levels in the gut and genitourinary system where it potently contracts smooth muscle but is also expressed in the spinal cord and discrete regions of the brain. Binding sites for neuromedin U have been characterized in rat uterus, however, little is known about the activity of this peptide in the regions of the central nervous system where it is expressed. The receptors characterized in this report are activated by neuromedin U at nanomolar potency in heterologous expression systems and bind radiolabeled neuromedin U with high affinity. Localization of the receptor RNA by quantitative reverse transcription-polymerase chain reaction in a variety of human tissues shows distinct expression patterns for the two receptors. NMU1 is expressed predominantly in peripheral tissues, whereas NMU2 is more highly expressed in the central nervous system. Identification of neuromedin U receptor subtypes will greatly aid in the determination of the physiological roles of this peptide.

Amino Acid Sequence↗

Heterogeneity of oxygen delivery impairs oxygen extraction by peripheral tissues: theory.

The hypothesis that the distribution of oxygen demand in relation to oxygen supply (dO2/qO2) effects oxygen extraction in peripheral tissues was tested. By using a simple theoretical model, realistic biphasic oxygen consumption-delivery relationships were predicted from dO2/qO2 distributions. Increasing width (relative dispersion) of the dO2/qO2 distribution, indicating mismatch between oxygen demand and supply, nonlinearly decreased the critical oxygen extraction ratio (calculated by using dual-line regression). Skewed dO2/qO2 distributions had a lesser effect. Incomplete oxygen uptake, due to diffusion limitation or other causes of physiological arteriovenous shunt, linearly decreased the critical oxygen extraction ratio. Approximate dO2/qO2 distributions were then estimated from previously reported capillary transit-time distributions. Critical oxygen extraction ratios predicted from these estimated dO2/qO2 distributions match reported values. This theoretical approach also predicts the decrease in the critical oxygen extraction ratio in porcine gut after endotoxin infusion in the companion paper (M. F. Humer, P. T. Phang, B. P. Friesen, M. F. Allard, C. M. Goddard, and K. R. Walley. J. Appl. Physiol. 81: 895-904, 1996). Much as pulmonary ventilation-perfusion relationships account for pulmonary gas exchange, dO2/qO2 distributions quantitatively account for measured tissue oxygen extraction and predict novel features of the relationship between heterogeneity and oxygen extraction.

Animals↗

Counterregulation in peripheral tissues: effect of systemic hypoglycemia on levels of substrates and catecholamines in human skeletal muscle and adipose tissue.

We used microdialysis to distinguish the effects of hyperinsulinemia and hypoglycemia on glucose, gluconeogenic substrate, and catecholamine levels in adipose and muscle extracellular fluid (ECF). Ten lean humans (six males and four females) were studied during baseline and hyperinsulinemic (3 mU x kg-1 x min-1 for 3 h) euglycemia (5.0 mmol/l) and hypoglycemia (2.8 mmol/l). In muscle and adipose, basal ECF glucose was lower (muscle, 3.5 +/- 0.2 mmol/l; adipose tissue, 3.3 +/- 0.2 mmol/l) and lactate was higher (muscle, 2.2 +/- 0.2 mmol/l; adipose, 1.5 +/- 0.3 mmol/l) than respective plasma values (glucose, 4.9 +/- 0.1 mmol/l; lactate, 0.7 +/- 0.1 mmol/l), whereas alanine was higher in muscle ECF (379 +/- 22 micromol/l) than adipose tissue (306 +/- 22 micromol/l) and plasma (273 +/- 33 micromol/l). Plasma catecholamines (unchanged during euglycemia) rose during hypoglycemia with epinephrine, increasing approximately fivefold more than norepinephrine. In contrast, the hypoglycemia-induced increments in muscle dialysate norepinephrine and epinephrine were similar, suggesting local generation of norepinephrine. Compared with euglycemia, hypoglycemia produced a greater increase in lactate and a smaller reduction in alanine in muscle ECF, whereas hypoglycemia caused a greater relative fall in ECF glucose concentrations in muscle (72 +/- 16%) and adipose tissue (69 +/- 9%) than in plasma (42 +/- 3%) (P < 0.05). We conclude that hypoglycemia increases the generation of norepinephrine and gluconeogenic substrates in key target tissues, while increasing the plasma-tissue concentration gradient for glucose. These changes suggest the stimulation of glucose extraction by peripheral tissues, despite systemic counterregulatory hormone release and local sympathetic activation.

Adipose Tissue↗

[Sporadic generalized insensitivity of peripheral tissue receptors to thyroid hormone in a 15 year old boy].

Sporadic generalized form of insensitivity to thyroid hormones of peripheral tissue receptor was proposed as diagnosis in a clinically euthyroid boy 15.5 years old with goiter, having elevated levels of blood serum triiodothyronine (T3) and thyroxine (T4) associated with absence of TSH suppression. Other possible causes of biochemical hyperthyreosis were excluded by differential diagnosis. The results of functional examination of cardiovascular system by the method of Hauffa could be interpreted only as a lack of response of tissue receptors to the administration of triiodothyronine, also when used in pharmacological doses. Lower response of pituitary to the administered triiodothyronine was demonstrated by applying the TRH stimulation test. No antithyroid treatment was applied in accordance with the data from the literature. In long-term observation (above 1.5 year) clinical state of the boy was still good a gradual increase in growth rate and progress in sexual maturation being noted.

Adolescent↗

Leptin treatment increases suppressors of cytokine signaling in central and peripheral tissues.

Leptin concentrations are elevated in the majority of obese individuals raising the possibility that leptin resistance contributes to their obesity. Peripheral leptin administration for 48 h caused a several-fold increase in mRNA encoding the suppressors of cytokine signaling SOCS-3 and CIS in hypothalamus and peripheral tissues. Paradoxically, CIS and SOCS-3 mRNAs are also elevated in the leptin-deficient ob/ob mouse. Forced expression of CIS in insulinoma cells prevented transactivation mediated by leptin. Thus tissues continuously exposed to leptin and/or other factors associated with obesity accumulate excessive amounts of SOCS-3 and CIS which could provide a potential mechanism for leptin resistance.

Animals↗

Mapping of angiotensin II receptor subtypes in peripheral tissues of spontaneously hypertensive rats by in vitro autoradiography.

1. The regulation of angiotensin II (AII) receptor subtypes was studied in peripheral tissues of 20 week old male spontaneously hypertensive rats (SHR) and age-matched normotensive Wistar-Kyoto (WKY) rats. 2. AII receptor binding was determined by a quantitative in vitro autoradiography using [125I]-[Sar1,Ile8]AII as a ligand on the kidney, adrenal gland, thoracic aorta and heart. CV-11974, a specific AT1 receptor antagonist, and CGP42112B, a specific AT2 antagonist, were used in competition with [125I]-[Sar1,Ile8]AII to differentiate AT1 and AT2 receptor binding. 3. The relative abundance of each subtype was very similar between SHR and WKY rats. In both strains of rats, the adrenal cortex contained predominantly AT1 receptors, while AT2 receptors predominated in the adrenal medulla. The kidney contained exclusively AT1 receptors over glomeruli, proximal tubules and outer medulla. AT1 receptors were predominant in the thoracic aorta and heart. 4. As for relative receptor density, important differences were observed between SHR and WKY rats. In SHR, the adrenal cortex, outer medulla of the kidney, and heart displayed higher AT1 receptor density than WKY rats. 5. These results indicate that the expression of AT1 receptors is differently regulated in some important targets of AII in SHR, and suggest that the altered regulation of AT1 receptor presented in this study should be relevant to the pathophysiological features of SHR.

Adrenal Glands↗

Syndrome of generalized (peripheral tissue and pituitary) resistance to thyroid hormone.

Generalized resistance to thyroid hormone (GRTH), or Refetoff syndrome, is a disease in which peripheral tissues show resistance to thyroid hormone. Three patients with this disease were investigated. Cases 1 and 2 involved identical 7-year-old female twins and case 3, a 5-year-old girl. All three patients had goiters, and cases 1 and 2 had sensorineural deafness. In all three, the blood levels of T4, free T4, and T3 were high, while the blood levels of TSH were normal or slightly elevated. The responses shown by blood levels of the thyroid hormone and TSH to administration of propylthiouracil and T3 suggest that the regulating mechanism in the hypothalamic-pituitary-thyroid system was functional. Upon administration of T3, no sign of hyperthyroidism was observed.

Child↗

Murine CXCL14 is dispensable for dendritic cell function and localization within peripheral tissues.

Dendritic cells (DCs) have long been recognized as key regulators of immune responses. However, the process of their recruitment to peripheral tissues and turnover during homeostasis remains largely unknown. The chemokine CXCL14 (BRAK) is constitutively expressed in skin and other epithelial tissues. Recently, the human chemokine was proposed to play a role in the homeostatic recruitment of macrophage and/or DC precursors toward the periphery, such as skin. Although so far no physiological function could be demonstrated for the murine CXCL14, it shows a remarkable homology to the human chemokine. In order to elucidate the in vivo role of CXCL14, we generated a mouse defective for this chemokine. We studied various components of the immune system with emphasis on monocytes/macrophages and DC/Langerhans cell (LC) populations in different tissues during steady state but did not find a significant difference between knockout (CXCL14(-)(/)(-)) and control mice. Functionally, LCs were able to become activated, to migrate out of skin, and to elicit a delayed type of hypersensitivity reaction. Overall, our data indicate that murine CXCL14 is dispensable for the homeostatic recruitment of antigen-presenting cells toward the periphery and for LC functionality.

Animals↗

Stimulatory effects of cold exposure and cold acclimation on glucose uptake in rat peripheral tissues.

The effects of cold exposure on the net rates of 2-[3H]deoxy-D-glucose uptake (Ki) in rat peripheral tissues were investigated comparatively in warm- and cold-acclimated animals to determine whether cold acclimation induces regulatory alterations in glucose metabolism. Acute exposure of warm-acclimated (25 degrees C) rats to cold (48 h at 5 degrees C) markedly increased the Ki values in red and white skeletal muscles (2-5 times), in the heart (8 times), in several white adipose tissue (WAT) depots (4-20 times), and in brown adipose tissue (BAT) (110 times). After cold acclimation (3 wk at 5 degrees C), the Ki values further increased in the heart (15 times) and WAT (up to 29 times) but decreased in BAT (36 times). Remarkably, glucose uptake was still increased in muscles of cold-exposed/cold-acclimated animals (that do not shiver), demonstrating that enhanced glucose uptake may occur in muscles in the absence of shivering thermogenesis (or contractile activity). When cold-acclimated rats were returned to the warm for 18 h, the Ki values of all tissues, except WAT, returned to control levels. Cold exposure synergistically potentiated the stimulation of tissue glucose uptake induced by a maximal effective dose of insulin (0.5 U/kg iv) in warm- as well as in cold-acclimated animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Acclimatization↗

Norepinephrine turnover in peripheral tissues of rats with heart failure.

Experiments were performed to determine if there is regional heterogeneity in sympathetic neural activation of peripheral tissues in rats with chronic heart failure (HF; 6-8 wk after coronary artery ligation). Norepinephrine (NE) turnover, an index of sympathetic activation, was determined on the basis of the decline in tissue NE levels that occurs during the 8-h after tyrosine hydroxylase inhibition (alpha-methyl-DL-p-tyrosine, 300 mg/kg ip at 4-h intervals). Compared with sham-operated rats, NE turnover was increased in the cardiac left ventricle, skeletal muscle, duodenum, and kidney of rats with HF, but was unaltered in liver and spleen. The increased renal NE turnover in HF was largely a reflection of increased turnover in the cortex, with no change evident in the medulla. Blockade of sympathetic ganglionic traffic (hexamethonium, 2 mg/kg sc at 2-h intervals) eliminated the tissue-specific effects of HF on tissue NE levels measured 8-h after tyrosine hydroxylase inhibition. These data support the contention that chronic HF evokes a central nervous system-mediated increase in basal sympathetic tone that exhibits regional heterogeneity (both between and within organs), a phenomenon that likely contributes to the functional consequences of this pathophysiological state.

Animals↗

Insufficient effect of total parenteral nutrition to improve protein balance in peripheral tissues of surgical patients.

Previous studies have indicated that unstressed and malnourished patients do not necessarily obtain amino acid balance across peripheral tissues during total parenteral nutrition (TPN) treatment, indicating treatment inefficiency. Therefore, the aim of this study was to evaluate to what extent (prevalence) insufficient therapeutic amino acid balance occurs in surgical patients receiving TPN for standard medical reasons. Thirty-two patients treated in an ordinary surgical ward (n = 17) or in the intensive care unit (ICU) (n = 15) were examined. The arteriovenous balance across the leg of amino acids, glucose, glycerol, lactate, and oxygen was measured in relationship to plasma levels of insulin. All patients had been receiving TPN for at least 7 days before the investigation. All measurements were performed when amino acids had been infused for at least 4 hours and thus expected to support the resynthesis of lean body mass. Patients treated in the ICU and the surgical ward were in positive whole-body energy balance (+1127 +/- 121 and +917 +/- 123 kcal, respectively). Glucose uptake and oxygen consumption across the leg were similar in both patient groups. Glycerol release was not different from zero balance, indicating that inhibition of lipolysis across the leg during feeding and lactate was normally released in both groups. However, approximately 50% of the patients treated in the ordinary ward and 80% to 100% of the patients in the ICU remained in negative amino acid balance across the leg as judged from significant release of either methionine, tyrosine, or phenylalanine despite concomitant infusion of amino acids (approximately 0.3 g of N per kilogram per day) and nonprotein calories.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Deanol affects choline metabolism in peripheral tissues of mice.

Administration of 2-dimethylaminoethanol (deanol) to mice induced an increase in both the concentration and the rate of turnover of free choline in blood. Treatment with deanol also caused an increase in the concentration of choline in kidneys, and markedly inhibited the rates of oxidation and phosphorylation of intravenously administered [3H-methyl]choline. In the liver, deanol inhibited the rate of phosphorylation of [3H-methyl]choline, but did not inhibit its rate of oxidation or cause an increase in the level of free choline. These findings suggest that deanol increases the choline concentration in blood by inhibition of its metabolism in tissues. Deanol may ultimately produce its central cholinergic effects by inhibition of choline metabolism in peripheral tissues, causing free choline choline to accumulate in blood, enter the brain, and stimulate cholinergic receptors.

Animals↗

Presence of endothelin-1 and endothelin-3 in peripheral tissues and central nervous system of the pig.

The distribution of endothelin (ET) peptides in the pig was studied in a variety of tissues using selective radioimmunoassays combined with reverse-phase high performance liquid chromatography (HPLC). The levels of ET-like immunoreactivity (LI) were overall relatively low. The highest levels of ET-LI were found in blood vessels, cerebral and coronary arteries containing 3190 +/- 910 and 1330 +/- 450 fmol/g, respectively. Veins generally contained higher levels of ET-LI per tissue weight than corresponding arteries. Peripheral sympathetic and sensory ganglia contained a higher concentration of ET-LI than the studied central nervous system (CNS) areas. In the CNS the highest concentration of ET-LI was found in a non-neuronal structure, the choroid plexus. The levels of ET-LI were also relatively high in the respiratory tract (100-400 fmol/g). In the heart, the endocardium contained the highest levels (190 +/- 44 fmol/g). In the kidney, the concentration of ET-LI was 3-fold higher in the medulla than in the cortex. In the gastrointestinal tract all levels were below 100 fmol/g, except for the colon which contained 120 +/- 50 fmol/g. The characterization of ET-LI in extracts of some of these tissues revealed that ET-1 dominated in the lung, spleen and hypothalamus while ET-3 and ET-1 were present in approximately equal amounts in renal medulla and thoracic spinal cord. The HPLC analysis provided no clear-cut evidence for significant presence of vasoactive intestinal contractor, ET-2 or big ET-1(1-39) in the lung, spleen, kidney, spinal cord or hypothalamus. It is concluded that mature ET-1 and ET-3 are the predominant ET peptides in peripheral tissues and CNS.

Animals↗

sigma recognition sites in brain and peripheral tissues. Characterization and effects of cytochrome P450 inhibitors.

Binding to sigma sites in subcellular fractions of brain and in crude homogenates from peripheral tissues of the guinea pig was characterized with the [3H]ligands (+)pentazocine and di(2-tolyl)guanidine (DTG). The inhibitory effects of representative sigma compounds and cytochrome P450 inhibitors were evaluated in guinea pig tissues, and the effects of cytochrome P450 induction on sigma binding in the rat were investigated. For both ligands, the majority of sites were localized to the microsomal fractions. The KD values for [3H](+)pentazocine- or [3H]DTG-labeled sigma sites in guinea pig liver and testes were 2-fold lower than those in brain and heart. The number of sites labeled by [3H](+)pentazocine varied, with an order of liver > testes > brain > heart. In contrast, the Bmax values for [3H]DTG-defined sigma sites were greatest in testes, followed by liver, brain and heart. The rank order of potency for representative sigma and P450 compounds was similar in brain, liver and testes for both [3H]ligands, and the potency of selective compounds to displace sigma binding in guinea pig liver failed to correlate with their abilities to inhibit cytochrome P450IID1 activity in human liver. Following induction of cytochrome P450IIB1 with phenobarbital or cytochrome P450IA1 with beta-naphthoflavone, neither the affinity nor the number of sigma sites was altered in rat brain or liver. These results suggest that sigma sites in the periphery are similar to those in the brain, and that the sigma binding site is not identical with cytochrome P450IIB1, P450IA1 or P450IID1.

Animals↗