PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “SUCCINIC ACID”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 145 records · Page 8Linked to original sources

Identification of 2-(2'-octenyl) succinic acid in urine.

2-(2'-octenyl)succinic acid has been identified in urine samples from children investigated for a possible inherited metabolic disease. Its structural identification has been achieved by gas chromatography/mass spectrometry using both electron ionization and chemical ionization and by tandem mass spectrometry (MS/MS) using fast-atom bombardment and high-resolution electron-ionization analyses of the molecular ion in a complex biological matrix. The localization of the double bond was obtained by interpretation of a unexpected rearrangement reaction occurring after dimethyl disulfide derivatization.

Gas Chromatography-Mass Spectrometry↗

Succinic acid, a metabolic by-product of Bacteroides species, inhibits polymorphonuclear leukocyte function.

Anaerobes, in particular Bacteroides spp., are the predominant bacteria present in mixed intra-abdominal infections, yet their critical importance in the pathogenicity of these infections is not clearly defined. Succinic acid, a major fatty acid by-product of Bacteroides metabolism, was tested for its effect on neutrophil function to determine whether it might play a role in enhancing the virulence of Bacteroides-containing infections. At pH 5.5 but not pH 7.0, succinic acid at concentrations commonly found in clinical abscesses profoundly inhibits in vitro neutrophil function. It virtually obliterates phagocytic killing of Escherichia coli and reduces neutrophil random migration and chemotactic response to formyl-methionyl-leucyl-phenylalanine and C5a. These effects occur in conjunction with a reduced chemiluminescent peak and delayed time to the peak. The effect on neutrophils is only partially reversible by multiple washings. These findings suggest that succinic acid may be an important Bacteroides virulence factor when present in the microenvironment of a mixed intra-abdominal infection in which concentrations are high and the pH of the medium is reduced.

Bacteroides↗

Metabolism of succinic acid methyl esters in myocytes.

The metabolism of the dimethyl ester of succinic acid (SAD) was examined in myocytes. When expressed in terms of CO(2) output, the oxidation of SAD (10 mM) only represented 30-40% of that of an equimolar concentration of D-glucose. Except for a modest decrease in D-[5-(3)H]glucose utilization, SAD failed to affect the catabolism of exogenous D-glucose. SAD also failed, like D-glucose, to augment O(2) consumption by the myocytes. These findings indicate that SAD is less efficiently metabolized in myocytes than in hepatocytes or pancreatic islets. It is nevertheless argued that the methyl esters of succinic acid could be efficiently used as nutrients by myocytes in situations of ATP depletion.

Journal Article↗

X-ray studies on crystalline complexes involving amino acids and peptides. XIX. Effects of change in chirality in the complexes of succinic acid with DL- and L-arginine.

Crystals of DL-arginine hemisuccinate dihydrate (I)(monoclinic; P2(1)/c; a = 5.292, b = 16.296. c = 15.203 A; beta = 92.89 degrees; Z = 4) and L-arginine hemisuccinate hemisuccinic acid monohydrate (II) (triclinic; P1; a = 5.099; b = 10.222, c = 14.626 A; alpha = 77.31, beta = 89.46, gamma = 78.42 degrees; Z = 2) were grown under identical conditions from aqueous solutions of the components in molar proportions. The structures were solved by direct methods and refined to R = 0.068 for 2585 observed reflections in the case of (I) and R = 0.036 for 2154 observed reflections in the case of (II). Two of the three crystallographically independent arginine molecules in the complexes have conformations different from those observed so far in the crystal structures containing arginine. The succinic acid molecules and the succinate ions in the structures are centrosymmetric and planar. The crystal structure of (II) is highly pseudosymmetric. Arginine-succinate interactions in both the complexes involve specific guanidyl-carboxylate interactions. The basic elements of aggregation in both the structures are ribbons made up of alternating arginine dimers and succinate ions. However, the ribbons pack in different ways in the two structures. (II) presents an interesting case in which two ionisation states of the same molecule coexist in a crystal. The two complexes provide a good example of the effect of change in chirality on stoichiometry, conformation, aggregation, and ionisation state in the solid state.

Amino Acids↗

Potentiation of the insulinotropic action of GLP-1 by succinic acid dimethyl ester in fed anaesthetized rats.

The insulinotropic action of GLP-1 is modulated by the nutritional environment of islet B-cells. This study explores whether an ester of succinic acid could be used to potentiate the insulin secretory response to GLP-1 in vivo. Fed anaesthetized male rats received a primed constant infusion (0.5 micromol followed by 0.25 micromol x min(-1) both per g body wt) of succinic acid dimethyl ester (SAD) in saline for 15 min and, at the 5th min of such an infusion, an intravenous injection of GLP-1 (5 pmol/g body wt). The ester provoked a rapid, sustained and reversible increase in plasma insulin concentration. In the SAD-infused rats, the increment in plasma insulin concentration caused by GLP-1 was more pronounced and more sustained than in saline-infused rats. It is proposed, therefore, that suitable succinic acid esters could be used to potentiate the insulinotropic action of GLP-1 in Type II (non-insulin-dependent) diabetes.

Animals↗

[Dependence of Retzius' neuron reaction to succinic acid on its initial functional state].

It has been shown on leech Retzius neuron that the effect of succinic acid on impulse activity, respiration and redox state of flavin nucleotides depends on initial values of these parameters with the exception of membrane potential. In this case independent of its initial value the membrane potential becomes equal to 35 +/- 6 mV. The analysis of the evidence obtained has shown that the higher is the activation of cell respiration under the effect of succinic acid, the less are changes in redox-reaction of flavin nucleotides. At stronger activation of respiration the frequency of impulse activity is increased and the value of membrane potential decreased. At smaller changes of respiration the impulse activity frequency is not changed while the membrane potential increases as a rule.

Animals↗

Production of succinic acid through overexpression of NAD(+)-dependent malic enzyme in an Escherichia coli mutant.

NAD(+)-dependent malic enzyme was cloned from the Escherichia coli genome by PCR based on the published partial sequence of the gene. The enzyme was overexpressed and purified to near homogeneity in two chromatographic steps and was analyzed kinetically in the forward and reverse directions. The Km values determined in the presence of saturating cofactor and manganese ion were 0.26 mM for malate (physiological direction) and 16 mM for pyruvate (reverse direction). When malic enzyme was induced under appropriate culture conditions in a strain of E. coli that was unable to ferment glucose and accumulated pyruvate, fermentative metabolism of glucose was restored. Succinic acid was the major fermentation product formed. When this fermentation was performed in the presence of hydrogen, the yield of succinic acid increased. The constructed pathway represents an alternative metabolic route for the fermentative production of dicarboxylic acids from renewable feedstocks.

Amino Acid Sequence↗

Synergistic insulinotropic effects of succinic acid dimethyl ester and exendin-4 in anaesthetized rats.

It was recently proposed that suitable succinic acid esters could be used to potentiate the insulinotropic action of glucagon-like peptide 1 (GLP-1) in the treatment of type-2 diabetes mellitus. In such a perspective, the present study aimed mainly at investigating whether exendin-4 (Ex-4), a peptide structurally related to GLP-1(7-36)amide, and succinic acid dimethyl ester (SAD) also act synergistically upon insulin secretion in anaesthetized rats. Despite a higher plasma insulin concentration in SAD-infused rats (5.5+/-1.1 ng/ml) than in saline-infused animals (1.9+/-0.7 ng/ml), the intravenous injection of Ex-4 augmented to a greater extent the plasma concentration of insulin in the former rats (+7.4+/-2.5 ng/ml) than in the latter animals (+2.8+/-0.6 ng/ml). These findings document that the insulinotropic actions of Ex-4 and GLP-1 display comparable nutrient dependency, being both potentiated by a non-glucidic nutrient secretagogue such as SAD.

Anesthesia↗

D-lactate production and [14C]succinic acid uptake by adherent and nonadherent Escherichia coli.

Escherichia coli isolates of different adherence phenotypes produced different amounts of D-lactate. Alterations of culture conditions did not influence the amount of D-lactate produced. The observed pH decreases in tissue culture medium corresponded with increases in D-lactate concentration. Very little [14C]succinic acid was incorporated into cells during the in vitro incubation of adherent and nonadherent E. coli with HeLa cells, but the amounts of tracer removed from the culture medium by adherent and nonadherent strains differed. The results are further evidence of a difference in the metabolic behavior of adherent and nonadherent E. coli.

Bacterial Adhesion↗

Enzymatic and secretory activities in pancreatic islets of non-insulin-dependent diabetic rats after short-term infusion of succinic acid monomethyl ester.

The monomethyl ester of succinic acid (SME) was recently proposed as a novel tool for stimulation of proinsulin biosynthesis and insulin release in animal models of non-insulin-dependent diabetes mellitus. In the present study, either saline or SME (14 mmol/day) was infused for 3 days to control rats, animals injected with streptozotocin during the neonatal period, and Goto-Kakizaki rats with inherited diabetes. The infusion of SME failed to correct the anomalies found in the islets of diabetic rats, namely, a decreased activity of the mitochondrial FAD-linked glycerophosphate dehydrogenase, a low insulin content, and an impaired secretory response to various nutrient secretagogues including D-glucose, 2-ketoisocaproate, and the combination of L-leucine and L-glutamine. These findings raise the question of whether a more prolonged administration of SME is required to raise the insulin store and improve the secretory potential of the endocrine pancreas in animals with type 2 diabetes.

Animals↗

Gas-liquid chromatographic analysis of synovial fluid. Succinic acid and lactic acid as markers for septic arthritis.

Nonvolatile short-chain fatty acids from 80 synovial fluids were quantified by gas-liquid chromatography. Succinic acid was detectable in all 23 septic synovial fluids infected with either gram-positive or gram-negative organisms and in only 5 of 57 nonseptic synovial fluids. Lactic acid was present in all of the effusions but was correlated with septic arthritis only when present in concentrations greater than 250 mg%. Neither short-chain fatty acid was more sensitive than high white blood cell counts (greater than 50,000 mm3) or depressed glucose concentration (less than 40 mg/dl) in diagnosing septic arthritis before antibiotic therapy; however, the detection of succinic acid was helpful in identifying patients with septic arthritis who had been given antibiotic treatment before arthrocentesis. Thus, gas-liquid chromatography, a rapid and sensitive method for the detection of short-chain fatty acids, may complement the currently available methods used to diagnose septic arthritis.

Arthritis, Infectious↗

Severity of promotion by sodium salts of succinic acid in rat urinary bladder carcinogenesis correlates with sodium ion concentration under conditions of equal urinary pH.

Elevation of urinary pH and Na ion concentration induced by feeding high doses of sodium salts plays a crucial role in promotion of urinary bladder carcinogenesis in male rats initially treated with N-butyl-N-(4-hydroxybutyl)nitrosamine (BBN). In the present study, urinary bladder carcinogenesis in male F344 rats was promoted by feeding the mono- and di-sodium salts of succinic acid, and the activity was enhanced by varying urinary sodium ion concentration under conditions of equally high pH. In Experiment 1, the rats were given 0.05% BBN in their drinking water for 4 weeks and then fed basal diet containing 5% succinic acid, 5% sodium succinate (Na-Suc) or 5% di-sodium succinate (2Na-Suc) for 32 weeks. The development of carcinomas in the urinary bladder was enhanced by treatment with Na-Suc and with 2Na-Suc. 2Na-Suc induced larger urinary bladder tumors than the Na-Suc. In Experiment 2, 5% Na-Suc and/or 5% 2Na-Suc were fed to the rats for 8 weeks without prior BBN treatment. Induction of simple hyperplasia as observed by light microscopy, was greater in rats fed 2Na-Suc than Na-Suc. Increased 5-bromo-2'-deoxyuridine labeling index and alterations of the urothelial surface observed by scanning electron microscopy of the urinary bladder were similarly greater in rats fed 2Na-Suc compared to Na-Suc. In addition, there was a tendency toward increased spermidine/spermine N1-acetyltransferase activity in the urinary bladder epithelium of rats fed 5% 2Na-Suc. The results of Experiment 2 corresponded to differences in promoting activity for the different chemicals in Experiment 1. Thus, tumor growth was associated with sodium ion concentration level under conditions of equal increase of urinary pH.

Animals↗

[Effect of methylguanidine and guanidine succinic acid on methemoglobin reductase activity in human red cells].

Activity of methemoglobin reductase was studied in human red cells treated with methylguanidine and guanidinosuccinic acid in concentrations similar to those in plasma of patients with chronic renal failure. Enzyme activity was measured with Richterich technique following an incubation at 37 degrees C for three hours. Results have shown that methylguanidine in concentration of 5.4 x 10(-5) mol/l decreases activity of methemoglobin reductase in human red cells on average by 13.9%. Higher concentrations potentiate this effect. Similar changes in methemoglobin reductase activity were noted after introduction of guanidine-succinic acid into the mixture. This agent in concentration 5.6 x 10(-5) mol/l inhibited activity of the tested enzyme by 34.2% on average. Combined methylguanidine in concentration of 5.4 x 10(-5) mol/l and guanidine-succinic acid in concentration of 2.8 x 10(-5) mol/l inhibited methemoglobin reductase activity by 33.0% on average. It may be suggested, that methylguanidine and guanidine-succinic acid being low molecular uremic toxins may significantly decrease methemoglobin reductase activity in red cells of patients with chronic renal failure.

Adult↗

Lactic and succinic acid levels and refractive indices in the determinations of the age of eggs.

The increase in the concentration of lactic and succinic acid during storage was measured in an attempt to determine the age of eggs. The increase in succinic acid alone is not sufficient to indicate egg age. Although lactic acid concentrations increase more rapidly, the levels are still very low, the increase is not linear, and concentrations in fresh eggs vary widely. On the other hand, refractive indices showed a nearly linear correlation with age and very little variation between eggs. These measurements are reproducible and easy to perform and, with further study, should provide an alternative to the AOAC method.

Eggs↗