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Biomedical subjects

A Valenzuela

Publications and source records attributed to A Valenzuela.

At least 73 records · Page 4Linked to original sources

HLA-B*0702 antibody epitopes are affected indirectly by distant antigen residues.

We examine the effect of mutations in the HLA-B*0702 alpha 1 domain on the binding of several well-characterized monoclonal antibodies. BB7.1 recognizes the alpha-helix, with a special requirement for residue 67. Combined with an established requirement for the alpha 2 alpha-helix, BB7.1 appears to span the B*0702 peptide-binding groove. Alternatively, BB7.1 epitope conformation may be altered by distant B*0702 sites. ME1 and B27M1 recognize connecting loop residues 41 and 43 and alpha 1 alpha-helical residues 67-71. Instead of contacting residue 67-71 side chains directly, however, ME1 appears to recognizes a B*0702 configuration that depends upon the proper interaction of these and other HLA residues. In addition to solvent-accessible residues 41 and 43, the B27M1 epitope depends on solvent-inaccessible residue 32 at the bottom of the peptide-binding groove. MB40.2, known to require residues 169-182 near the alpha 2-alpha 3 junction, also requires the proper combination of distant residues in the alpha 1 beta-strand and alpha-helix. The effect of mutations near the peptide-binding groove suggests that bound peptides may directly or indirectly affect HLA epitopes. These results illustrate that HLA epitope conformation is very sensitive to changes at distant HLA sites and forecast that epitope models based on sequential amino acid residues will often fail to predict HLA epitopes.

Animals↗

Different glutathione redox status and lipid peroxidation in the cortex and the medulla of the rat kidney subjected to ischemia-reperfusion stress.

When the rat kidney is subjected to ischemia and reperfusion, changes in glutathione content and in lipid peroxidation are produced in the cortex and in the medulla. The cortex shows a decrease in the glutathione content and a higher sensitivity to development of lipid peroxidation, the medulla being less affected. Reperfusion restores the glutathione concentration of the cortex during the first hours of reflow. The lipid peroxidation observed in the cortex and the medulla during reperfusion is higher than in ischemia. The protective role of glutathione and the response of the cortex and the medulla to ischemia-reperfusion injury are discussed.

Animals↗

Bronchial vascular occlusion does not attenuate or accentuate oleic acid lung injury in anesthetized sheep.

To determine if bronchial blood flow affects the consequences of acute pulmonary vascular injury, we studied oleic acid lung injury in 12 anesthetized sheep. In six sheep (group 1), we injected 2 ml of ethanol directly into the bronchoesophageal artery to decrease bronchial blood flow. In the control sheep (group 2), we injected 2 ml of normal saline. One hour later, oleic acid (0.1 ml/kg) was injected into the right ventricle in both groups. We measured hemodynamics and lung mechanics at baseline, 1 h after injection into the bronchoesophageal artery but just before the injection of oleic acid, and 3 h after injection of oleic acid. We measured bronchial blood flow at baseline and 3 h after injection of oleic acid and extravascular lung water at 3 h after injection of oleic acid. One hour after injection of ethanol or saline into the bronchoesophageal artery, hemodynamics and lung mechanics did not change. Three hours after injection of oleic acid, systemic arterial pressure decreased, pulmonary arterial pressure increased, cardiac output decreased, dynamic compliance decreased, pulmonary resistance increased, arterial oxygen tension decreased, and extravascular lung water was greater than normal. There were no differences in these measurements between the two groups. However, bronchial blood flow decreased only in group 1. We conclude that decreasing bronchial blood flow does not attenuate or accentuate the consequences of oleic acid lung injury.

Animals↗

Changes in the antioxidant capacity of blood plasma are produced after the ingestion of high doses of fish oil.

Blood plasma shows antioxidant capacity (AOC) due to a number of molecules possessing antioxidant activity. Plasma AOC of young and aged rats fed high doses of fish oil and fish oil + dl-alpha tocopherol was assayed. It was observed that only young rats fed fish oil (with or without antioxidant) show a significant increase in their plasma AOC when compared with controls and with the aged ones. It is suggested that increased AOC results from an adaptive response of animals to the potential risk of oxidative stress due to the increase of membrane polyunsaturation after fish oil ingestion.

Aging↗

Riboflavin-photosensitized anaerobic modification of rat lens proteins. A correlation with age-related changes.

When rat lens homogenate or its soluble protein fractions are irradiated in the presence of riboflavin, a photo-adduct is obtained between this vitamin and the lens proteins. Irradiation of these proteins in the presence of riboflavin also leads to a modification in the chromatographic elution pattern with an increase in the high-molecular-weight fraction. In an aging study with rats, it was shown that the proportion of the high-molecular-weight protein fraction significantly increased with age, whereas the proportion of the low-molecular-weight protein fraction concomitantly decreased. It is postulated that aging produces an increase in the accessibility of the tryptophan residues of the lens proteins, as established by iodide fluorescence quenching experiments.

Aging↗

Sudden cardiac death: a comparative study of morphological, histochemical and biochemical methods.

The study deals with the comparison of morphological, histochemical and biochemical methods applied to the detection of myocardial infarction in 150 medico-legal autopsies performed at the Institute of Forensic Pathology in Copenhagen. The study also included an NBT (formazan) test of cardiac cross-sections, and light microscopy and fluorescence microscopy of acridine orange-stained specimens from four different sites of the cardiac musculature. Specimens of myocardium from the same four sites and pericardial fluid were analysed biochemically at the Institute of Legal Medicine in Granada. The K+/Na+ ratio was determined in the myocardial tissue and total creatine phosphokinase activity, creatine phosphokinase isoenzymes (MM, MB and BB) and myoglobin were assayed in pericardial fluid. When the results from Copenhagen and Granada were compared, there was absolute concordance in 96 cases, discrepancy in 53 and one case was inconclusive. After studying the circumstances of death, the number of discrepancies were reduced to 20, so that concordance was reached in 86% of all the cases. The results show that the combination of different methods leads to a diagnosis of myocardial infarction in far more cases than with morphological or biochemical methods alone.

Acridine Orange↗

Marine oils as a source of omega-3 fatty acids in the diet: how to optimize the health benefits.

Marine oils are receiving increasing attention as a source of C 20 and C 22 carbon omega-3 polyenoic fatty acids. The provision of preformed EPA and DHA from marine oils has profound implications for health and disease. Their role as precursors for the synthesis of eicosanoids and docosanoids explains many of the multisystemic effects observed when they are administered. Furthermore under some physiologic conditions such as preterm birth the evidence suggests that C 18 omega-3 fatty acids are not sufficiently converted to DHA to allow for biochemical and functional normalcy, thus DHA may be considered a conditionally essential nutrient for normal eye and brain development. Under disease conditions EPA plays a major role in modifying the balance between omega-6 and omega-3 derived eicosanoids thus modulating related functions. The use of marine oils has some potential risks that can be circumvented by careful processing, storing and preserving the unsaturated fatty acids. Technological procedures based on chemical and physical separation of the unsaturated fatty acids has permitted the elaboration of concentrated EPA and DHA for clinical testing. The development of structured lipids has allowed the synthesis of novel forms of EPA and DHA delivery. Further uses of marine oil to optimize health and prevent disease are predicted based on recent knowledge and technological developments.

Dietary Fats, Unsaturated↗

The effect of calcium on disodium monofluorophosphate absorption from the gastrointestinal tract of rats.

The absorption of fluoride from disodium monofluorophosphate with or without added calcium has been studied in ligated stomachs and duodena of rats, in vivo. Measurements of fluoride absorption from sodium fluoride were also carried out for comparative purposes. The formation constant of the soluble, neutral calcium monofluorophosphate complex has been determined at 20 degrees, 25 degrees and 37 degrees C. Its value at 37 degrees C being 315 +/- 10 (molar units). The influence of increasing concentrations of calcium on alkaline phosphatase (E.C.3.1.3.1) activity with disodium monofluorophosphate as substrate has been also studied. Gastric absorption of 2 mM disodium monofluorophosphate in the presence of 50 mM calcium was much slower than that of 2 mM disodium monofluorophosphate alone. The latter was slower than that of 2 mM sodium fluoride. The opposite situation has been found for the duodenal fluoride absorption. Results obtained are interpreted in terms of the occurrence of an intestinal monofluorophosphate hydrolysis prior to its absorption as fluoride. In addition, data presented suggest an independent and parallel pathway of fluoride absorption in the form of the liposoluble calcium monofluorophosphate complex.

Absorption↗

Changes in the xanthine dehydrogenase/xanthine oxidase ratio in the rat kidney subjected to ischemia-reperfusion stress: preventive effect of some flavonoids.

The enzyme xanthine oxidase has been implicated in the tissue oxidative injury after ischemia-reperfusion. This enzyme, which is a source of oxygen free radicals, is formed from a dehydrogenase form during ischemia. The ratio dehydrogenase/oxidase of rat kidney homogenates decreases during the ischemia and the reperfusion. Two flavonoids, quercetin and silybin, characterized as free radical scavengers, exert a protective effect preventing the decrease in the dehydrogenase/oxidase ratio observed during ischemia-reperfusion. The mechanism of this effect and the role of flavonoids in the ischemia-reperfusion tissue damage is discussed.

Animals↗

The biological significance of malondialdehyde determination in the assessment of tissue oxidative stress.

Although lipid peroxidation of biological samples may be assessed by different chemical and physical methods, those based on the measurement of malondialdehyde formed from the breakdown of endoperoxides during the last stages of the oxidation of a polyunsaturated fatty acid, appear as the most widely used. Among the various methods to evaluate malondialdehyde, which include direct spectrophotometry or high pressure liquid chromatography, the reaction with thiobarbituric acid to form a colored adduct appears as a more rapid, inexpensive and sensitive technique. This method, however, is subject to some interferences which, if not considered, may lead to erroneous results. The present review emphasizes the significance of malondialdehyde measurement in biological samples, the chemical conditions of its reaction with thiobarbituric acid and the different procedures to isolate and determine the malondialdehyde-thiobarbituric acid adduct.

Animals↗

Acetaminophen does not induce oxidative stress in isolated rat hepatocytes: its probable antioxidant effect is potentiated by the flavonoid silybin.

Acetaminophen hepatotoxicity is characterized by glutathione depletion and the formation of the reactive electrophilic metabolite N-acetyl-p-benzoquinone imine. The induction of oxidative stress, expressed as lipid peroxidation, is controversial in acute acetaminophen intoxication. Isolated rat hepatocytes develop spontaneously or when incubated with buthionine sulfoximide, a progressive lipid peroxidation which may be inhibited by the antioxidant flavonoid silybin. When cells are incubated with acetaminophen, lipid peroxidation is not observed, this antilipoperoxidative effect being potentiated by silybin. It is proposed that when hepatocytes are incubated with a high concentration of acetaminophen, the drug may accumulate in the cells due to saturation and/or inhibition of detoxification pathways (as in the case of silybin). Under these conditions the development of hepatocyte oxidative stress may be inhibited due to the antioxidant behaviour of acetaminophen.

Acetaminophen↗

[Biological and nutritional role of taurine and its derivatives on cellular and organic physiology].

Several aspects about the biological role of taurine and its derivatives has been described in this work, especially in relation to humans. Some aspects related to the structure and function of the molecule in respect to its capacity as an osmoregulator and as an antioxidant are also analyzed. Moreover, the distribution changes on the biosynthesis phenomenon in some development stages as well as changes at the transport level, especially in some tissues where the concentration is increased several times with respect to plasmatic concentrations, are discussed. Some evidences exist as to the possibilities that taurine may be considered as a conditionally essential nutrient, particularly in some cases where it has been demonstrated that taurine and its derivatives have certain clinical and nutritional implications.

Humans↗

Sulfur-containing amino acids that increase renal glutathione protect the kidney against papillary necrosis induced by 2-bromoethylamine.

Papillary necrosis was observed in the kidneys of rats, 72 h after receiving a single injection of bromoethylamine (BEA). This effect was associated with renal glutathione (GSH) depletion 1 h after the administration of BEA. Stimulation of renal GSH synthesis by pretreatment of the animals either with glutamine + glycine + cystine or N-acetyl-L-cysteine was attempted. Low doses of these precursors administered previously to BEA, respectively, decreased or abolished the GSH depletion. Nevertheless, both pretreatments failed to modify the magnitude of renal papillary necrosis. High doses of these precursors did not modify the BEA-induced GSH depletion, but they significantly increased GSH levels 24 h after BEA administration. At this time, although a smaller intensity of renal papillary necrosis was observed with the amino acid mixture pretreatment, N-acetyl-L-cysteine pretreated rats showed no papillary necrosis. It is suggested that the observed protective effects against BEA-induced renal papillary injury may be ascribed in some measure, to a mechanism independent of GSH.

Amino Acids, Sulfur↗

Increased resistance against oxidative stress is observed during a short period of renal reperfusion after a temporal ischaemia.

Reperfusion of rat kidney submitted to temporal ischaemia induces a decrease in glutathione content. Lipid peroxidation is not detected in kidney homogenates but microsomes obtained after periods of reperfusion longer than 60 minutes show increased malondialdehyde values correlated with high oxygen consumption and superoxide free radical generation. Microsomes obtained from kidneys submitted to 15 or 60 minutes of reperfusion are resistant to NADPH-induced lipid peroxidation but after 120 minutes of reperfusion an increased lipid peroxidative response is observed. Although the mechanism of the protection found in microsomes against the induction of oxidative stress in the first 60 minutes of reperfusion is unknown, it is postulated that this subcellular fraction plays an important role in the oxidative stress observed after longer periods of reperfusion.

Animals↗

[Metabolic activation: a biological mechanism that augments the toxicity of xenobiotics].

Metabolic changes sustained by foreign substances (biotransformation), xenobiotics, may not always lead to a decreased toxicity from these substances. Metabolic activation, a process that may increase toxicity and chemical reactivity of these substances, may occur at the first or second phase of biotransformation. Electrophiles of nucleophiles may be formed. Lipoperoxidation by free oxygen radicals may thus follow. Details of these processes are discussed in the paper.

Biotransformation↗