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The reduction of oxo-acids by human tissue extracts.

The reduction of pyruvate, 2-oxobutyrate, hydroxy-pyruvate and glyoxylate under optimal conditions at 37 degrees by extracts of human heart, kidney, pancreas, skeletal muscle and liver has been examined. The ratios of reduction rates, particularly of glyoxylate and 2-oxobutyrate reveal a capacity to differentiate the isoenzyme composition of the tissue extracts.

Humans↗

More sensitive automated detection of polyamines in physiological fluids and tissue extracts with omicron-phthalaldehyde.

Omicron-Phthalaldehyde reacts with primary amines to form an intensely blue-fluorescing product. Replacing ninhydrin with this compound in our automated high-pressure liquid-chromatographic technique for determination of polyamines, we achieved a 6- to 10-fold increase in sensitivity. Linearity and reproducibility are excellent, and the method is shown to be applicable to analysis of physiological fluids and of tissue extracts.

Aldehydes↗

Characterization of neuromedin U like immunoreactivity in rat, porcine, guinea-pig and human tissue extracts using a specific radioimmunoassay.

Two novel bioactive peptides termed neuromedin U-8 and neuromedin U-25 have recently been isolated from porcine spinal cord but nothing is known of their occurrence and molecular forms in other species. Following gel permeation chromatography, a specific radioimmunoassay detected only a single molecular form of neuromedin U-like immunoreactivity (NmU-LI) in rat, porcine and human central nervous system and gastrointestinal tract. Only guinea pig tissue extracts revealed two molecular forms of NmU-Li. Reverse phase high performance liquid chromatographic (HPLC) analysis demonstrated that porcine NmU-LI co-eluted with synthetic neuromedin U-25 standard. Human and rat NmU-LI however, was more hydrophobic on HPLC thus indicating species differences.

Animals↗

[Plasminogen activator inhibitor type 1 (PAI-1) in blood and tissue extracts of patients with non-small cell lung cancer].

Clinical and experimental studies provide evidence that the plasminogen activation system plays a pivotal role in the pathogenesis of tumor growth and metastatic spread. The aim of the present study was to evaluate plasminogen activator inhibitor type I (PAI-1) in plasma and tumor extracts in patients with non-small cell lung cancer (NSCLC). The study group consisted of 146 patients (18 females, 128 males), aged 33-76 years with squamous cell carcinoma (107), adenocarcinoma (19), and mixed type of lung carcinoma (20) in pTNM stage I (72), stage II (30) and stage III (44) and 50 healthy volunteers as a control group (15 females, 35 males) aged 25-69 years. Blood for analysis was collected in the morning, 1-2 days before operation. Lung cancer and normal lung tissue specimens were obtained during surgery and homogenized in liquid nitrogen. The tissue extracts and plasma were assayed for concentration of PAI-1 with ELISA method. Significantly higher plasma level of PAI-1 was observed in patients with lung cancer than in control group. Concentration of PAI-1 in tumor tissues was significantly higher compared to normal lung tissue and was irrelevant from plasma level. Positive correlation between tumor level of PAI-1 and stage of lung cancer was noticed. Therefore it can be assumed that PAI-1 has an influence on the lung cancer progression.

Adenocarcinoma↗

Radioimmunoassay for ovine, caprine and bovine prolactin in plasma and tissue extracts.

1. A radioimmunoassay for ovine prolactin is described based on the inhibition of the reaction between (131)I-labelled ovine prolactin and guinea-pig or rabbit antiserum to ovine prolactin. The extent of the reaction after a 4-day incubation period is determined by chromatoelectrophoresis or by adsorption of unchanged (131)I-labelled ovine prolactin on charcoal. The sensitivity is equal to 5.9ng. of prolactin/ml. of plasma with chromatoelectrophoresis, or 0.2ng. of prolactin/ml. of tissue extracts with the charcoal separation. 2. A complete cross-reaction demonstrated between ovine prolactin and caprine pituitary extracts allows the assay to be used to measure caprine prolactin. The partial cross-reactions between ovine prolactin and bovine prolactin and between ovine prolactin and bovine pituitary extract differ, and an alteration in the immunological activity of bovine prolactin during its isolation is suggested. Bovine prolactin in plasma may be measured against a bovine pituitary extract as standard. No cross-reactions were demonstrated with pituitary extracts from a number of other species. The extent of the contamination of ovine and bovine growth hormone preparations by their respective prolactins is shown. 3. Dilutions of ovine and caprine plasma inhibit the reaction between (131)I-labelled ovine prolactin and antiserum with the same characteristics as ovine prolactin. 4. The immunoreactive material in plasma fractionates on Sephadex G-200 and in sucrose density gradients as a single peak similar to that shown by freshly dissolved ovine prolactin. There is no evidence that ovine prolactin is bound to a plasma protein. 5. By suppressing prolactin secretion and assaying serial samples of plasma thereafter it is shown that the immunological activity of the surviving hormone becomes progressively altered with time. It is suggested that this alteration is usually not detected but introduces an element of uncertainty into the quantitative but not the qualitative value of the measurements obtained by reference to standard ovine prolactin.

Adsorption↗

Sensitive enzyme-linked immunosorbent assay for detection of PrP(Sc) in crude tissue extracts from scrapie-affected mice.

An enzyme-linked immunosorbent assay (ELISA) was developed that detects PrP(Sc) in crude extracts from brain and spleen tissue of scrapie-affected mice with high sensitivity and specificity. Brain tissue was homogenized in 8% Zwittergent 3-12 and 0.5% Sarkosyl. The homogenate was treated with collagenase and DNase I and then subjected to proteinase K digestion. Precipitates containing PrP(Sc) were obtained by ultracentrifugation. Spleen tissue was homogenized in 4% Triton X-100 and 0.5% Sarkosyl, and the homogenate was treated firstly with collagenase and DNase I, and secondly with proteinase K. PrP(Sc) was then extracted with 6.25% Sarkosyl and precipitated through salting-out with NaCl and by ultracentrifugation. When PrP(Sc) was dissolved in 3-4 M guanidine thiocyanate and adsorbed to microtiter plates, strong and specific reactions to the formation of antigen-antibody complexes could be detected by ELISA. The sensitivity of PrP(Sc)-detection for this ELISA, as measured by serial dilution of scrapie material in tissue homogenates from uninfected animals, was equal or higher than that attained by Western blot. This ELISA is more rapid than Western blot and seems to be more suitable for screening large numbers of animals. It also has potential application for the diagnosis of the transmissible spongiform encephalopathies.

Animals↗

A new high performance liquid chromatography (HPLC) method for the quantitation of strychnine in urine and tissue extracts.

A high performance liquid chromatography (HPLC) method was developed for the quantitation of strychnine in urine of children with nonketotic hyperglycinaemia and other developmental disorders treated with the alkaloid. Mobile and stationary phases were polar, i.e. methanol-water-330 g/kg ammonia (volumes, 85 ml + 14.2 ml + 0.8 ml) and LiChrosorb Si-60, 7 microns. Brucine was the internal standard. Extraction was performed by the Extrelut technique. At strychnine nitrate concentrations in urine of 21, 126, and 70 micrograms/l, recovery was 92.1 +/- 8.7, 98.1 +/- 2.7, and 102.5 +/- 2.7%. A child with nonketotic hyperglycinaemia under continued strychnine treatment excreted 1 to 13.6% of the daily dose unmetabolized in urine. The method was also suitable for the estimation of unreacted strychnine in tissue extracts. The fast disappearance in vitro of strychnine from a guinea pig liver preparation was confirmed.

Amino Acid Metabolism, Inborn Errors↗

An examination of ciliary neuronotrophic factors from avian and rodent tissue extracts using a blot and culture technique.

We have previously reported a technique for determining the apparent molecular weight (Mr) of ciliary neuronotrophic factors (CNTFs) in crude extracts. This method involves SDS-polyacrylamide gel electrophoresis of the extract. Western blotting and culture of purified ciliary ganglion neurons on the paper containing the blotted lane. Neurons will survive only if in direct contact with the trophic factor band and the surviving neurons, when stained with a vital dye, will outline the CNTF band thereby indicating the Mr of the active polypeptide. Here we have modified this 'blot and culture' technique by including Mr standard proteins in the same electrophoretic lane with the samples, identifying the proteins by staining the nitrocellulose blot with Amido black, marking the standard bands with pinholes and destaining the blot prior to seeding neurons onto it. The active CNTF polypeptides can then be identified by their ability to support the 24-h survival of cultured ciliary neurons. This modified technique was used to determine the Mr of CNTF activities in several chick and rat tissue extracts of selected developmental ages and to ascertain if the two forms of CNTF are exclusive to chick and rat, embryonic and adult, or eye and nerve tissues. We report that the above modifications permitted a more accurate method for Mr determination than the previous method, only two apparent forms of CNTF were recognized, the Mr found for each form is 25 kDa and 28 kDa, both forms can be present in chick and rat tissues and from embryonic and adult sources and the 28 kDa form is predominant in rat while the 25-kDa form is predominant in chicken tissues.

Animals↗

Recombinant and tissue extract thromboplastins for determination of international normalised ratio in over-anticoagulated patients.

The international normalised ratio (INR)/international sensitivity index (ISI) system is established for calibration of thromboplastins for laboratory monitoring of oral anticoagulant therapy. The calibration procedure employs patients stabilised on oral anticoagulants, and is therefore validated for patients within the therapeutic range. For practical reasons, the system is used for patients at all levels of therapy, including over-anticoagulated patients with particularly low levels of factors II, VII and X. We studied patients within and above the therapeutic range, using a thromboplastin containing recombinant human tissue factor (Innovin) and two tissue extract thromboplastins. In samples with INRs from 2.0 to 4.0, there was good agreement between results obtained with the three systems (mean INRs within 4% of each other). In patients with INRs > 4.0, results with a human placental extract reagent (Thromborel S) were similar to those obtained with a rabbit brain thromboplastin (IL PT Fib Hs Plus); mean INRs were 6.30 and 6.32 respectively (not significant). Results with Innovin (mean INR: 7.67) were significantly (P < 0.001) greater (on average by 22%) than those obtained with the other two materials. The discrepancy between results with different reagents negatively correlated with factor VII levels. Thus, the lower the factor VII level, the greater was the discrepancy between INRs. Unexpectedly, there was a positive correlation between factor V level and the difference between INRs with different reagents. Thus, the higher the factor V level, the greater was the discrepancy between INRs. The effect of these differences at higher INRs on patient management is unknown, but the recently revised UK guidelines recommend that management of these patients should be influenced by clinical factors, reducing the relative importance of discrepancies between results obtained with different systems.

Anticoagulants↗

Determination of metabolites by 1H NMR and GC: analysis for organic osmolytes in crude tissue extracts.

World-wide salinity and drought problems necessitate the understanding of biological adaptation to water deficit. Osmotic adjustment via organic solutes is a common strategy for organisms to deal with water deficit problems. Numerous water-soluble organic metabolites across several chemical classes are commonly utilized as osmolytes, including betaines, sulfonium and sulfonate compounds, amino acids, carbohydrates, and polyols. To deal with the complexity and variability in osmolyte composition, we have devised an analytical approach that combines high-resolution 1H NMR and GLC to provide both structure identification and quantification of a broad spectrum of compounds. This combined approach also facilitated direct analyses of crude tissue extracts without extensive sample preparation, making it well-suited for a convenient screening of potential osmolytes. The structures of known osmolytes were confirmed from two-dimensional total correlation 1H NMR spectra, which also yielded structural information about unknown compounds. Five each terrestrial plant and marine animal species were examined for 41 metabolites, including osmolyte candidates glycinebetaine, dimethylsulfoniopropionate, taurine, proline, glycine, asparagine, alanine, glutamine, glucose, and sucrose. The osmotic function of glycinebetaine, proline, asparagine, glutamine, glucose, and sucrose was also demonstrated in leaves of Distichlis spicata under different salinity treatments.

Amino Acids↗

A modified Schayer procedure for the estimation of histidine decarboxylase activity: its application on tissue extracts from gastric mucosa of various mammals.

The question of whether the gastric mucosa of mammals other than rats, mice and hamsters contains an acid (specific) histidine decarboxylase was re-investigated by using a modification of the classical isotope dilution method of Schayer. Its reliability was tested regarding sensitivity, specificity, precision and accuracy, applying criteria recommended by the International Federation of Clinical Chemistry. The assay is now suitable for measuring rather large series of samples. The suitability of several blanks for detecting histidine decarboxylase activity was investigated as a special problem of accuracy. The semicarbazide blank was found to be as reliable as the heating blank, the blank with tissue extract pretreated with perchloric acid or an incubation mixture without radio-labelled histidine. Reaction kinetics of histamine formation were linear over an incubation period of at least 3 h. Histidine decarboxylase activity as a rather low pH and substrate concentration, which is characteristic for the acid (specific) histidine decarboxylase, was demonstrated inthe gastric mucosa of human subjects, dogs, rabbits and guinea-pigs, always using the same incubation conditions for all species investigated. The highest enzymic activity was present in the oxyntic mucosa, but could be measured also in other parts of the stomach.

Animals↗