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Isolation and activation of inactive renin from human kidney and plasma. Plasma and renal inactive renins have different molecular weights.

Inactive renin and active renin from human kidney and human plasma were prepared in highly purified forms by three steps of chromatography on Octyl-Sepharose, immunoaffinity chromatography, and pepstatin-amino hexyl Sepharose CL-4B. The inactive renin and active renin from human kidney had molecular weights of 51,000 and 44,000 as measured by a calibrated gel filtration column run with internal molecular weight standards. Molecular weights of plasma inactive renin and active renin were 56,000 and 51,000 respectively. Both inactive and active renins were found to be heterogeneous, consisting of several components with different isoelectric points. Renal inactive renin has higher pI values of 6.40, 6.10, 5.90, 5.61, and 5.40. Renal active renin has pI values of 5.73, 5.40, 5.25, and 5.13. The pI values of plasma inactive renin were 6.37, 6.08, 5.77, 5.36, and 5.25; of plasma active renin, 5.68, 5.40, 5.33, and 5.25. Trypsin activation and plasmin activation of plasma inactive renin produced an active enzyme with similar molecular weight but lower pI values. Acid activation of inactive renin did not change the molecular weight and pI values.

Chromatography, Affinity↗

The interaction of human plasma glycosaminoglycans with plasma lipoproteins. II. Hemagglutination studies.

Formalinized, tannic acid-treated sheep erythrocytes coated with low density lipoproteins (LSL) or apoprotein B (apo-B) are are agglutinated by anti-apo-B immunserum. Those coated with high density lipoproteins (HDL) or apoprotein A-I(apo-A-I) are agglutinated by anti-apo-A-I immunserum. These coated formocells have been used to study the interactions of lipoproteins and apoproteins with plasma glycosaminoglycans (GAG). The sulfate-rich species of plasma GAG agglutinates cells coated with LDL, HDL, apo-B, and apo-A-I at ionic concentrations above 0.15 M. The less-sulfated species of plasma GAG does not agglutinate the coated cells but inhibits the agglutination caused by the sulfate-rich species. Treatment of the sulfate-rich GAG with papain causes a reduction in molecular weight by one-half and also causes a loss of its agglutinating activity. These results suggest that the sulfate-rich plasma GAG, consisting of two glycan chains linked to a peptide backbone, cause agglutination by binding to two or more formocells. In contrast, the less-sulfated plasma GAG, consisting of single, short glycan chains, are incapable of causing agglutination but may prevent it by covering specific binding sites present on the coated cells.

Apoproteins↗

Studies on the prekallikrein (kallikreinogen)--kallikrein enzyme system of human plasma. I. Isolation and purification of plasma kallikreins.

By measurement of its arginine esterase activity, plasma kallikrein was purified from fresh frozen ACD plasma. The steps involved alcohol fractionation, isoelectric precipitation, and carboxymethyl (CM) Sephadex and DEAE cellulose chromatography. Three enzymatically active fractions were finally isolated and termed plasma kallikreins I, II, and III; they represented purifications of 970,320- and 590-fold, respectively. All three kallikreins were active biologically; they increased vascular permeability in the guinea pig and released a kinin from human plasma, as measured in the rat uterus bioassay. Bradykinin and/or closely related kinins were identified in the kallikrein I plasma digest by radioimmunoassay. Kallikreins I, II, and III had similar ratios of hydrolytic activity on a variety of arginine and lysine esters and were immunochemically related. However, differences were present on physicochemical characterization: kallikrein I had S(20,[unk]) of 5.7, a mol wt of 99,800, and migrated as a slow gamma globulin; kallikrein II migrated as a fast gamma globulin with a mol wt of 163,000, but the evidence suggested that it was closely related, if not interconvertible, with kallikrein I. Kallikrein III, on the other hand, migrated as an alpha globulin and reacted quite differently with inhibitors.

Animals↗

Increasing plasma neopterin and persistent plasma endothelin during follow-up after acute cerebral ischemia.

Release of inflammatory mediators from leukocytes and endothelial release of vasoactive factors are both important in the pathogenesis of atherosclerosis. To evaluate the concentrations of a specific marker for macrophage activation, neopterin, and the potent endothelial derived vasoconstrictive peptide endothelin-1 (ET-1), during the acute and chronic stages of cerebral ischemia, plasma concentrations of neopterin and ET-1 were measured in 59 patients with acute cerebral infarction or transient ischemic attack (median age 73 years, range 43-93, 27 men) and after a 1-year follow-up in 57/59 (97%) of patients. Plasma neopterin was higher at follow-up (6.3 nmol/L [3.7-21.6] vs 5.6 nmol/L [3.5-17.2]; p < 0.05) than at the acute stage, whereas the plasma ET-1 concentration was unchanged. Plasma concentrations of both neopterin and ET-1 correlated directly with age both in the acute stage (r = 0.42 and r = 0.35, respectively; p < 0.01) and after follow-up (r = 0.34; p < 0.05 and r = 0.27; p = 0.05, respectively). In conclusion, plasma neopterin increased after acute cerebral ischemia, indicating chronic inflammatory activity and continuous macrophage activation in ischemic cerebrovascular diseases.

Acute Disease↗

Associations of plasma aflatoxin B1-albumin adduct level with plasma selenium level and genetic polymorphisms of glutathione S-transferase M1 and T1.

Mortality from hepatocellular carcinoma (HCC) is extraordinarily high in Matzu, an island off the coast of Southeastern China. To investigate factors associated with plasma aflatoxin B1 (AFB1)-albumin adduct level, we studied 304 healthy adult residents from Matzu. AFB1-albumin adducts were determined by competitive enzyme-linked immunosorbent assay, hepatitis B surface antigen status by enzyme immunoassay, genotypes of glutathione S-transferase (GST) M1 and T1 by polymerase chain reaction, plasma selenium by atomic absorption spectrometry, and plasma retinol, alpha-tocopherol, alpha-carotene, and beta-carotene levels by high-performance liquid chromatography. Men had higher AFB1-albumin adduct levels than women. GSTM1-nonnull and GSTT1-null genotypes and low plasma selenium level were significantly associated with an increased level of AFB1-albumin adducts among men, whereas age was significantly correlated with adduct level among women. High intake of fermented beans was associated with an increased adduct level among men and women. The inverse associations between plasma selenium level and AFB1-albumin adducts were statistically significant among those with null genotypes of GSTM1 and GSTT1, but not among the nonnull genotypes. This study provides insight into the dietary and genetic factors influencing AFB1-albumin adduct formation in an isolated population with high liver cancer mortality.

Adult↗

Quantitation of motexafin lutetium in human plasma by liquid chromatography-tandem mass spectrometry and inductively coupled plasma-atomic emission spectroscopy.

Liquid chromatography-tandem mass spectrometry (LC-MS/MS) and inductively coupled plasma-atomic emission spectroscopy (ICP-AES) methods were developed and validated for the evaluation of motexafin lutetium (MLu, lutetium texaphyrin, PCI-0123) pharmacokinetics in human plasma. The LC-MS/MS method was specific for MLu, whereas the ICP-AES method measured total elemental lutetium. Both methods were fast, simple, precise, and accurate. For the LC-MS/MS method, a closely related analogue (PCI-0353) was used as the internal standard (IS). MLu and the IS were extracted from plasma by protein precipitation and injected into an LC-MS/MS system configured with a C18 column and an electrospray interface. The lower limit of quantitation was 0.05 microg MLu mL(-1), with a signal-to-noise ratio of 15:1. The response was linear from 0.05 to 5.0 microg MLu mL(-1). For the ICP-AES method, indium was used as the IS. The sample was digested with nitric acid, diluted, filtered, and then injected into the ICP-AES system. Two standard curve ranges were validated to meet the expected range of sample concentrations: 0.5 to 50, and 0.1 to 10 microg Lu mL(-1). The LC-MS/MS and ICP-AES methods were validated to establish accuracy, precision, analyte stability, and assay robustness. Interday precision and accuracy of quality control samples were < or =6.3% coefficient of variation (CV) and within 2.2% relative error (RE) for the LC-MS/MS method, and < or =8.7% CV and within 4.9% RE for the ICP-AES method. Plasma samples from a subset of patients in a clinical study were analyzed using both methods. For a representative patient, over 90% of the elemental lutetium in plasma could be ascribed to intact MLu at early time points. This percentage decreased to 59% at 48 hours after dosing, suggesting that some degradation and/or metabolism of the drug may have occurred.

Chromatography, Liquid↗

Dopamine in hypophysial portal plasma and prolactin in systemic plasma of rats treated with 5-hydroxytryptamine.

Intracerebroventricularly administered 5-hydroxytryptamine (5HT) altered the release of dopamine into pituitary stalk blood and of PRL into the systemic circulation of male rats. The concentration of dopamine in pituitary stalk plasma of rats given 0.5 or 5.0 microgram 5HT was 0.32 +/- 0.06 (mean +/- SE) or 0.18 +/- 0.04 ng/ml, respectively, and was significantly less than that in vehicle-treated animals (0.80 +/- 0.04 ng/ml). Relative to the mean level of PRL in animals injected with the solvent vehicle, the mean concentration of PRL in central venous plasma of rats given 0.5 or 5.0 microgram 5HT was increased 4-fold or 13-fold, respectively. Other rats were infused iv with dopamine for 45 min. After 15 min of infusion, the mean concentration of dopamine in arterial plasma was several times that of dopamine in pituitary stalk plasma of rats not infused with dopamine. Even so, this high concentration of dopamine did not prevent the 5HT-induced release of PRL. We conclude that 5HT modulates the secretion of PRL through a stimulatory mechanism that is effective in the presence of a high plasma concentration of dopamine, a PRL-release inhibiting factor, and suggest that 5HT causes the release of a hypothalamic substance(s) that stimulates release of PRL, i.e. a PRL-releasing factor.

Animals↗

Responses of active and inactive plasma renin and changes in urinary kallikrein and plasma prekallikrein to various conditions in normal subjects.

Little is known about changes in inactive plasma renin in various conditions or the in vivo activation mechanism of inactive renin. The effects of various factors known to stimulate or suppress renin release on active and inactive PRA were examined in normal subjects. Inactive PRA was determined as the difference between the total PRA after trypsin activation and active PRA. Concurrent measurements of urinary kallikrein excretion and plasma prekallikrein activity were performed to assess the possible role of renal or plasma kallikrein in in vivo activation of inactive renin. Short term stimulation with iv furosemide and ambulation, infusion of isoproterenol, and administration of captopril increased active PRA, but had little or no effect on inactive PRA. Sodium restriction and sodium loading, each for 4 days, induced parallel changes in active and inactive PRA. The administration of propranolol for 4 days decreased active PRA but did not change inactive PRA. There were no significant correlations between the changes in urinary kallikrein excretion and those in active PRA or in the proportion of active to total PRA after any short term treatments, except furosemide administration. Plasma prekallikrein activity was correlated with the proportion of active renin only during the long term sodium balance study. The present data suggest that the mechanisms ofr the control of inactive and active renin are different. Neither renal nor plasma kallikrein seems to be consistently involved in the in vivo activation of inactive renin.

Adult↗

Acutely raised corticotropin levels in Addison's disease are not associated with increased plasma arginine vasopressin and corticotropin-releasing factor concentrations in peripheral plasma.

Using an intensive sampling protocol we have examined the associations of peripheral plasma arginine vasopressin (AVP) and CRF with nocturnal ACTH hypersecretion in patients with Addison's disease. Six subjects were studied during a phase of cortisol withdrawal (36 h) and after cortisol substitution, and the findings were compared to those in four normal control subjects. The pulse properties of ACTH hypersecretion at a 10-min sampling interval have also been examined in these settings, using Cluster analysis. In the period before cortisol replacement, the Addison's patients showed significantly greater ACTH peak maxima and peak increments than the control subjects [107 +/- 44 vs. 5.5 +/- 1.3 pmol/L (P = 0.009) and 57 +/- 23 pmol/L vs. 3.7 +/- 0.9 pmol/L (P < 0.05), respectively]. After cortisol replacement, a significant decrease in mean peak increment (57 +/- 24 vs. 15 +/- 5 pmol/L; P = 0.021) occurred. The mean interpulse intervals did not differ significantly between the Addison's and control subjects (59 +/- 5 vs. 59 +/- 4 min overall). Although not significant, the trend for the pulse interval to increase after oral cortisol (60 +/- 6 vs. 72 +/- 9 min) is probably a result of the extremely low levels of ACTH after oral cortisol administration, making peak detection difficult. Despite the ACTH hypersecretion in the Addison's subjects, plasma AVP levels were at no time different from those in the control subjects. Plasma CRF levels tended to be lower in the Addison's patients than in the control subjects. We conclude that in states of cortisol deficiency, such as Addison's disease, ACTH hypersecretion results from enhanced ACTH peak amplitude, without a change in the frequency of ACTH secretory pulses. The marked increase in plasma ACTH that follows acute cortisol deprivation is independent of detectable changes in peripheral plasma levels of CRF or AVP.

Addison Disease↗

Interrelation between plasma sex hormone-binding globulin and plasma insulin in healthy adult women: the telecom study.

In order to study the relationship between plasma sex-hormone-binding globulin (SHBG) and insulin levels in healthy women, we investigated the association between plasma SHBG and insulin in an occupational sample of 786 nonhormone-using women. Levels of plasma SHBG showed a stepwise decrease with increasing fasting plasma insulin in premenopausal as well as in postmenopausal women. In these cross-sectional data, this significant negative relationship between SHBG and insulin was shown to be independent of age, body mass index, subscapular skinfold, fasting and 2-h plasma glucose in both groups. The etiology and the consequences of this inverse association between SHBG and insulin are unclear. Prospective and clinical studies in women will be necessary to determine the direction and causal nature of the association between SHBG and insulin, as well as its mechanism and its physiological and/or pathophysiological consequences.

Adult↗

A new drug delivery system using plasma-irradiated pharmaceutical aids. V. Controlled release of theophylline from plasma-irradiated double-compressed tablet composed of a wall material containing polybenzylmethacrylate.

A controlled-release tablet was obtained by oxygen plasma irradiation on the outer layer of double-compressed tablets prepared from theophylline as a core material and a copolymer of methylmethacrylate (MMA) and benzylmethacrylate (BzMA) as a single wall material, making this possible that polybenzylmethacrylate (PBzMA) has dual intramolecular functions, a plasma degradable main chain and a plasma-cross-linkable benzyl group in the side chain as an effect of plasma irradiation. It was shown that the dissolution profiles can be varied so as to cause release of theophylline at different rates, depending on the set of conditions chosen for tablet manufacture and for plasma operation.

Bronchodilator Agents↗

Evaluation of plasma erythropoietin levels in normal adult dogs by in vivo bioassay using concentrated plasma.

Measurement of plasma erythropoietin level in normal dogs by in vivo bioassay has been considered to be impossible so far. In the present study, we successfully determined it by using concentrated plasma 60 times which allowed the lower limit to 2.7 mU/ml. This normal plasma erythropoietin level was the first to be determined as an in vivo bioactivity and was 9.14 +/- 7.81 mU/ml in 75 normal adult dogs. This value was sufficiently reliable in terms of accuracy of determination and considered to be meaningful as the low level in vivo bioactivity that hasn't been known to date. Furthermore, erythropoietin levels in normal plasma were within a certain lower range and showed neither difference in plasma erythropoietin level between males and females or among breeds nor correlation between erythropoietin and hemoglobin level.

Animals↗

Mars analysis by laser-induced breakdown spectroscopy (MALIS): influence of mars atmosphere on plasma emission and study of factors influencing plasma emission with the use of doehlert designs.

A project called MALIS (Mars Analysis by Laser-Induced breakdown Spectroscopy) is under progress to perform in situ analysis of Mars soils and rocks. This paper reports on the behavior of plasma in Martian conditions, i.e., in a CO2 atmosphere at pressures between 5 and 12 mbar. Plasma expansion and lifetime have been studied in order to compare plasma evolution under standard conditions (air at atmospheric pressure) and in a Mars atmosphere. We have shown that the Mars environment favors plasma expansion and lifetime. The second part of the study concerns optimization of the emission signal from the plasma. An original approach has been chosen, as we used a Doehlert design for the first time in laser-induced breakdown spectroscopy (LIBS). The best conditions obtained are for a laser wavelength of 1064 nm with the maximum energy available due to space limitations, which is 40 mJ at 15 Hz. The other factors studied are delay, angle of incidence, and CO2 pressure. We have shown that these factors do not have the same influence depending on which spectroscopic line is used, i.e., the atomic line or the ionic line.

Atmosphere↗

[Studies on the measurement of vitamin D derivatives in human plasma. I. A competitive protein binding assay for 25-hydroxyvitamin D in plasma (author's transl)].

A simple and precise method has been developed for the determination of 25-hydroxyvitamin D in 1 ml of human plasma. The method consists of methanol/chloroform extraction, purification by high pressure liquid chromatography and a competitive protein binding assay using vitamin D deficient rat serum. The ethanol extract from vitamin D deficient chick serum was added to the sample before CPBA to eliminate the non-specific interference in the CPBA system as a vitamin D free serum extract. The assay was sensitive to 0.72 ng/ml of plasma. Satisfactory results were obtained in the dilution and recovery tests. The coefficients of variation were 5.8 approximately 9.1% for the within-assay, and 7.4 approximately 10.3% for the between-assay. Plasma concentrations of 25-hydroxyvitamin D in 46 samples of normal human plasma were 21 +/- 10.5 ng/ml (mean +/- SD), and the seasonal variation was demonstrated. Plasma levels for 25-hydroxyvitamin D were high in patients receiving vitamin D2 and low in patients suffering from liver cirrhosis.

25-Hydroxyvitamin D 2↗

Preparation of a stable liquid material for calibration and quality control for lysosomal enzymes in plasma. Assay of enzymes of lysosomal origin in plasma, I.

Several lysosomal enzymes present in human plasma (N-acetyl-beta-glucosaminidase, beta-glucuronidase, beta-galactosidase, alpha-galactosidase, alpha-L-fucosidase, alpha-mannosidase, beta-glucosidase) were maintained in a fully active state for at least 8 months by the addition of ethylene glycol (300 milligrams final concentration) to freshly prepared plasma and storage at -20 degrees C. Pools of human plasma from healthy humans, stabilized and stored as above, and containing a low, medium or high content of the above enzymes, were used to establish the analytical imprecision (within-run, day-to-day and total imprecision) of the fluorimetric assay. Ten replicates in ten different analytical series, covering a period of two months, were performed. The total imprecision (expressed as coefficient of variation) was in general lower than 10%; in a few cases, particularly plasma samples with a low enzyme content, the total imprecision was 18%. The isozymes A, B, I1, and I2 of N-acetyl-beta-glucosaminidase displayed the same stability upon storage as the unfractionated enzyme. It is concluded that pools of human plasma containing known amounts of lysosomal enzymes, stabilized by the addition of 300 micrograms ethylene glycol and stored at -20 degrees C, are suitable liquid materials for calibration and quality control for the assay of the same enzymes.

Acetylglucosaminidase↗

A radioimmunoassay of oestrone in plasma. Plasma levels of oestrone and oestradiol in oophorectomized Rhesus monkeys during treatment with subcutaneous implants containing oestrone.

A highly specific antiserum to oestrone was used to develop a sensitive radioimmunoassay. Plasma was generally analysed without prior separation of the oestrogens. A small amount of plasma (0.1-0.2 ml) was extracted once with diethyl ether. The above and previously described radioimmunoassays were used to estimate plasma levels of oestrogens in oophorectomized monkeys treated with subcutaneous oestrone implants. Three monkeys received a rod containing 40 mg of oestrone. The rods were kept in place for about one year. The release rates from the rods were calculated. The oestrone plasma levels were initially high (370-500 pg/ml). In about 3 months they had fallen to a level of 50-100 pg/ml which was maintained till the removal of the rods. A rise in the oestradiol plasma levels was also observed. It is concluded that rods are suitable for administration of oestrone.

Animals↗

Plasma cyclic nucleotides and plasma catecholamines before and after prolonged treatment with clonidine in hypertensive patients.

The effect of standing and physical exercise and catecholamines and cyclic nucleotides in plasma was measured in 8 patients with essential hypertension under standardized conditions before and after prolonged treatment with clonidine. Before clonidine medication noradrenaline, adrenaline and cyclic AMP (cAMP) increased in response to standing and bicycling for 20 min. No significant correlation was found between their absolute levels nor was the increase in cAMP following exercise correlated to the increase in noradrenaline. Standing and physical exercise were without effect on cyclic GMP (cGMP). Clonidine reduced the plasma noradrenaline concentration in supine position and the noradrenaline and the adrenaline response to standing and exercise. Plasma cAMP was uneffected by clonidine under basal conditions but the response to exercise was slightly reduced initially. During clonidine there was a positive correlation between the plasma levels of cAMP and noradrenaline following work. Clonidine produced an increase in plasma cGMP in supine position, immediately prior to bicycling and after 5 min of exercise.

Adult↗

Plasma renin activity and plasma concentrations of aldosterone, cortisol, adrenocorticotropic hormone, and alpha-melanocyte-stimulating hormone in healthy cats.

A pathogenetic role of the renin-angiotensin-aldosterone system has been implicated in cats in both systemic arterial hypertension and hypokalemic myopathy. Yet, measurement of plasma aldosterone concentrations (PACs) and plasma renin activity (PRA) has not unequivocally pointed to hyperaldosteronism as a cause of these conditions. To obtain appropriate reference ranges, this study included a large number (130) of healthy house cats of different breeds without a history of recent illness and plasma concentrations of urea and creatinine below the upper limit of the respective reference ranges. In addition, the pituitary-adrenocortical axis was studied by measuring plasma concentrations of adrenocorticotropic hormone (ACTH), alpha-melanocyte-stimulating hormone (alpha-MSH), and cortisol. Reference ranges for PACs (110-540 pmol/L; 40-195 pg/mL), PRA (60-630 fmol/L/s; 0.3-3 ng/mL/h), and the aldosterone to renin ratio (ARR) (0.3-3.8) were very similar to those established in the same laboratory for humans in a supine position. No breed differences were found. The ARRs in neutered cats were significantly higher than in intact cats, primarily because of low PRA in neutered cats. The ARRs of cats > or = 5 years of age were significantly higher than those of cats < 5 years of age. The plasma concentrations of ACTH, alpha-MSH, and cortisol did not correlate significantly with PAC. Thus, although blood sampling was performed in cats in nonstandardized positions and was associated with a wide variation of stress responses, the references ranges of PAC, PRA, and ARR were similar to the relatively narrow limits established for humans under standardized conditions. The effects of neutering and aging on PRA and ARR warrant further investigation.

Adrenocorticotropic Hormone↗