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At least 199 records · Page 11Linked to original sources

A retinyl ester hydrolase activity intrinsic to the brush border membrane of rat small intestine.

Retinol esterified with long-chain fatty acids is a common dietary source of vitamin A. Hydrolysis of these esters in the lumen of the small intestine is required prior to absorption. Bile salt-stimulated retinyl esterase activity was present with purified rat intestinal brush border membrane, with the maximum rate of ester hydrolysis at approximately pH 8, the physiological luminal pH. Taurocholate, a trihydroxy bile salt, stimulated hydrolysis of short-chain fatty acyl retinyl esters more than hydrolysis of long-chain fatty acyl esters. Deoxycholate, a dihydroxy bile salt, primarily stimulated hydrolysis of long-chain esters. Calculated Kms of 0.74 microM for retinyl palmitate (16:0) hydrolysis and 9.6 microM for retinyl caproate (6:0) hydrolysis suggested the presence of two separate activities. Consistent with that, the activity responsible for retinyl caproate hydrolysis could be inactivated to a greater degree than retinyl palmitate hydrolysis by preincubation of the brush border membrane at 37 degrees C for extended times. Brush border membrane from animals who had undergone common duct ligation 48 h prior to tissue collection showed little ability to hydrolyze retinyl caproate but retained 70% of retinyl palmitate hydrolytic activity, compared to sham-operated controls. Thus, two distinguishable retinyl esterase activities were recovered with purified brush border membranes. One apparently originated from the pancreas, was stimulated by trihydroxy bile salts, and preferentially hydrolyzed short-chain retinyl esters, properties similar to cholesterol ester hydrolase, known to bind to the brush border. The other was intrinsic to the brush border, stimulated by both trihydroxy and dihydroxy bile salts, and preferentially hydrolyzed long-chain retinyl esters, providing the majority of activity of the brush border against dietary retinyl esters.

Animals↗

[Injectable progesterone in hormone replacement therapy in menopause].

PURPOSE: To evaluate activity and tolerability of intramuscular administration of 17-alpha-hydroxyprogesterone caproate (Lentogest-Amsa) in hormone replacement therapy in menopause. PATIENTS AND METHODS: Intramuscular slow releasing 17-alpha-hydroxyprogesterone caproate was given to 30 postmenopausal women. Patients were divided into two groups according to the number of monthly doses (1 or 2). RESULTS: In both groups of patients a regular monthly bleeding was obtained. Echographic assessment did not show abnormal endometrial thickness. CONCLUSIONS: The results of this study have pointed out the efficacy of intramuscular progesterone-caproate administration with a better compliance in the single dose group.

17 alpha-Hydroxyprogesterone Caproate↗

The effect of increased yeast alcohol acetyltransferase and esterase activity on the flavour profiles of wine and distillates.

The fruity odours of wine are largely derived from the synthesis of esters and higher alcohols during yeast fermentation. The ATF1- and ATF2-encoded alcohol acetyltransferases of S. cerevisiae are responsible for the synthesis of ethyl acetate and isoamyl acetate esters, while the EHT1-encoded ethanol hexanoyl transferase is responsible for synthesizing ethyl caproate. However, esters such as these might be degraded by the IAH1-encoded esterase. The objectives of this study were: (a) to overexpress the genes encoding ester-synthesizing and ester-degrading enzymes in wine yeast; (b) to prepare Colombard table wines and base wines for distillation using these modified strains; and (c) to analyse and compare the ester concentrations and aroma profiles of these wines and distillates. The overexpression of ATF1 significantly increased the concentrations of ethyl acetate, isoamyl acetate, 2-phenylethyl acetate and ethyl caproate, while the overexpression of ATF2 affected the concentrations of ethyl acetate and isoamyl acetate to a lesser degree. The overexpression of IAH1 resulted in a significant decrease in ethyl acetate, isoamyl acetate, hexyl acetate and 2-phenylethyl acetate. The overexpression of EHT1 resulted in a marked increase in ethyl caproate, ethyl caprylate and ethyl caprate. The flavour profile of the wines and distillates prepared using the modified strains were also significantly altered as indicated by formal sensory analysis. This study offers prospects for the development of wine yeast starter strains with optimized ester-producing capability that could assist winemakers in their effort to consistently produce wine and distillates such as brandy to definable flavour specifications and styles.

Acetyltransferases↗

A norbergenin derivative inhibits neuronal cell damage induced by tunicamycin.

Several chemically synthesized compounds were examined for protective effects against the cell damage in tunicamycin-treated human neuroblastoma IMR-32 cells. Among the compounds tested, an antioxidant, Norbergenin-11-caproate (10 microM), exhibited complete protection against the cell growth inhibitory effect of tunicamycin but did not inhibit the induction of Bip/GRP78 mRNA by tunicamycin. Both norbergenin-11-caproate and alpha-tocopherol completely inhibited the production of reactive oxygen species induced by tunicamycin, however, alpha-tocopherol inhibited tunicamycin-induced cell damage only partially, even at 100 microM. These findings suggest the potential of Norbergenin-11-caproate for therapeutic application in endoplasmic reticulum (ER) stress-dependent diseases implicating a specific mechanism other than anti-oxidative one.

Benzopyrans↗

Enhanced in vivo targeting of an asymmetric bivalent hapten to double-antigen-positive mouse B cells with monoclonal antibody conjugate cocktails.

In order to target specifically double-Ag-positive cells in vivo, we synthesized chemically two mAb conjugates with specificities for both an allelic murine B cell-surface Ag and for a synthetic hapten. One conjugate was designed for its specificities for I-Ek and for N-epsilon-(2,4-DNP)-amino-caproate, and the other one for its reactivity to Lyb-8.2 and to indium-diethylenetriamine pentaacetate. A radiolabeled tracer, containing both the N-epsilon-(2,4-DNP)-amino-caproate and the indium-diethylenetriamine pentaacetate haptens, was obtained by reacting diethylenetriamine pentaacetic acid dianhydride with mono-[N-epsilon-(2,4-DNP)-amino-caproyl]-tyrosyl-lysine and labeling with indium-111. Mice from various strains (CBA/N: I-Ek+, Lyb-8.2+; AKR/N: I-Ek+, Lyb-8.2-; BALB/c: I-Ek-, Lyb-8.2+; and DBA/2: I-Ek-, Lyb-8.2-) were given simultaneous i.v. injections of microgram amounts of less than anti-[N-epsilon-(2,4-DNP)-amino-caproate], anti-I-Ek greater than and of [anti-(indium-diethylene-triaminepentaacetate), anti-Lyb-8.2] antibody conjugates and picomole amounts of the tracer. As expected, specific uptake of the tracer by the spleen was observed in strains where spleen cells expressed at least one Ag (CBA/N, AKR/N, and BALB/c). Furthermore, spleen cells from the double-Ag-positive mouse strain (CBA/N), when compared with spleen cells from single-positive mouse strains, exhibited a significantly higher uptake of the bivalent hapten. This specificity for double-Ag-positive cells, it is suggested, occurs through the formation of stable complexes between both cell-surface Ag, both conjugates, and the asymmetric bivalent hapten. The use of such asymmetric bivalent haptens, together with matched (anti-hapten, anti-cell) antibody conjugates, is proposed as a general method for increasing the in vivo specificity of immunoimaging and radioimmunotherapy.

Animals↗

Adaptation of Prostatic-Group-Label Homogeneous Immunoassay to reagent-strip format.

The Prostatic-Group-Label Immunoassay (PGLIA) technique has been incorporated into a reagent-strip format. We report use of flavin N6-(N'-2,4-dinitrophenyl-6-aminohexyl)adenine dinucleotide (DNP-FAD) as the prosthetic group derivative and 6-N-(2,4-dinitrophenyl)aminohexanoic acid (DNP-caproate) as the competing ligand. DNP-FAD not bound by antibody combines with glucose oxidase apoenzyme, which then reacts with glucose and oxygen, and gives color through a peroxidase-linked system. The rate of color generation is thus a function of the DNP-caproate concentration. PGLIA reagent strips are prepared by sequential impregnations of filter paper with an acetone solution of indicator (3,3',5,5'-tetramethylbenzidine); an aqueous solution containing glucose oxidase apoenzyme, the rest of the color generation system, stabilizers, and antibody to DNP; and a solution of DNP-FAD in n-propanol. This preparation permits effective antibody binding, and prevents premature interaction of immunoassay components. A quantitative color response to concentrations of DNP-caproate in the range of 1 to 8 mumol/L was demonstrated with these reagent strips. Prototype PGLIA reagent strips for theophylline and phenytoin have been successfully developed by substituting the appropriate FAD derivative and antibody for the corresponding reagents in the DNP model system.

Aminocaproates↗

Can primary endometrial carcinoma stage I be cured without surgery and radiation therapy?

The data on 19 cases of primary endometrial carcinoma, stage I (mean age 28.0 years), cured by the administration of hydroxyprogesterone caproate without surgery and radiation therapy are presented. Clinical recovery in 15 cases was confirmed by repeated cytological and histological examinations of the endometrium. Hydroxyprogesterone caproate dose per course ranged within 25.0-83.0 g. In 4 patients with moderately differentiated cancer (G2), hormonal treatment was carried out in combination with chemotherapy. When tumor regression was confirmed histologically, steroid contraceptives were administered to induce an artificial menstrual cycle. At the closing stage of therapy clomiphene citrates were given in succession to restore the ovulatory cycle. Perspectives of administration of progestogens in young women with stage I endometrial carcinoma as a separate method of therapy are discussed.

17 alpha-Hydroxyprogesterone Caproate↗

Depth-dependent microbial succession and interspecies hydrogen transfer drive pit mud maturation in Chinese strong-flavor baijiu fermentation.

Microbial communities in fermentation pit mud play a key role in determining the quality of Chinese strong-flavor baijiu (CSFB). However, the ecological processes underlying pit mud maturation across spatial and temporal scales remain unclear. In this study, amplicon sequencing and metagenomic analyses were employed to investigate the taxonomic succession, community assembly, and metabolic functions of bacterial and archaeal communities during the transition from fresh pit mud (FPM) to new pit mud (NPM) and old pit mud (OPM). A pronounced depth-dependent succession pattern was observed, with 4 cm representing a critical ecological boundary separating distinct community structures and maturation trajectories. During surface-layer maturation, community assembly shifted from stochastic to deterministic processes, accompanied by homogeneous selection and increasing network complexity. In contrast, stochastic processes remained dominant throughout deep-layer maturation. Metagenomic analyses revealed a functional transition from lactate and acetate production, primarily associated with Lactobacillus in FPM and NPM, to butyrate and caproate production associated with Clostridium and Caproiciproducens in OPM. This functional transition was accompanied by enhanced amino acid metabolism, which was associated with the enrichment of Proteiniphilum and Aminobacterium. Notably, methanogen-mediated interspecies hydrogen transfer (IHT) emerged as a key ecological feature during pit mud maturation. In OPM, IHT networks primarily involving Methanobacterium and Methanosarcina linked methanogenesis with reverse β-oxidation through diverse hydrogen-transfer pathways, reinforcing metabolic interactions underlying caproate production. These findings provide new insights into the ecological mechanisms underlying pit mud maturation and offer a theoretical basis for the directed cultivation of high-quality pit mud in CSFB production.

Hydrogen↗

Dietary effects of the esters of butyric, caproic, caprylic, capric, lauric, myristic, palmitic, and stearic acids on food intake, weight gain, plasma glucose, and tissue lipid in the male white rat.

Eight saturated fatty acid esters were fed to male white rats for 30 days in a 1/81 fractional factorial experiment in which diets contained 12-38% of their total energy as lipid. Marked increases in food intake, feed efficiency, and weight gain were achieved when lipid provided 36% of diet energy, and when that lipid was more than half caproate, caprate, myristate, and/or stearate. Caproate was the only saturated fatty acid to increase plasma glucose levels. The feeding of stearate or caprylate decreased plasma and liver cholesterol. Caprate increased liver fat. The short-chain fatty acids (butyrate to myristate) increased the concentration of fat in the carcass.

Animal Nutritional Physiological Phenomena↗

Progestogen administration in pregnancy may prevent preterm delivery.

Two recently published meta-analyses of controlled trials of a wide variety of progestational agents, used in pregnancy (Daya 1989; Goldstein et al. 1989), prompted this third meta-analysis of placebo-controlled trials involving the prophylactic use of a single agent, 17 alpha-hydroxyprogesterone caproate. Of seven relevant published reports of controlled trials, six had involved women considered to be a high risk of miscarriage or preterm birth. This analysis provides no support for the view that 17 alpha-hydroxyprogesterone caproate protects against miscarriage, but suggests that it does reduce the occurrence of preterm birth. The latter effect was reflected in a reduced rate of low birthweight babies, but not in a statistically significant reduction in perinatal mortality and morbidity. The difference between this meta-analysis and the two earlier meta-analyses illustrates the problems both of selective sub-grouping and of comprehensive pooling of data from small trials.

17 alpha-Hydroxyprogesterone Caproate↗

Pilot study with adjuvant hormone therapy in FIGO stage I endometrial carcinoma with myometrial invasion.

A pilot study with adjuvant hormone therapy in FIGO stage I endometrial carcinoma with myometrial invasion was carried out. All patients received total abdominal hysterectomy and bilateral salpingo-oophorectomy plus complementary radium therapy on the vaginal stump. After the conventional treatment, patients were randomly allocated to adjuvant hormone therapy or no further treatment. Hormone therapy consisted of gestonorone caproate (17 alpha-hydroxy-19-norpregn-4-en 3, 20 dione caproate) administered i.m. at the dose of 200 mg/week for 1 year. Of the 62 patients who entered the study, 51 were considered evaluable (24 with adjuvant hormone therapy and 27 with no further treatment). Five patients had a relapse: four of these were in the group with no further treatment. Actuarial relapse-free survival analysis at 5 years was 95.7% in the group of adjuvant-treated patients and 82.8% in the control group. Although there is no statistical significance, adjuvant therapy appears to result in an increase in relapse-free survival in the group of patients with deep myometrial invasion and undifferentiated carcinoma. Further studies are necessary to assess the effectiveness of hormone adjuvant treatment in FIGO stage I endometrial carcinoma with myometrial invasion.

Adenocarcinoma↗

Interactions between gluconeogenesis and fatty acid oxidation in isolated sheep hepatocytes.

The interaction of gluconeogenesis and fatty acid oxidation in isolated sheep hepatocytes was studied. Addition of tetradecylglycidic acid, an inhibitor of carnitine palmitoyltransferase I (EC 2.3.1.21), to isolated hepatocytes inhibited gluconeogenesis from a mixture of pyruvate plus lactate and from propionate alone. Inhibition constants for tetradecylglycidic acid on gluconeogenesis were 4.77 +/- 1.00 microM and 7.25 +/- 1.52 microM, respectively, for pyruvate plus lactate and for propionate as gluconeogenic substrates. The inhibition constants were not different. At the highest substrate concentrations examined, gluconeogenesis from pyruvate plus lactate and from propionate in the presence of 10 microM tetradecylglycidic acid was 47.3 and 41.4% of their respective controls. Similar to previous observations with butyrate, caproate addition inhibited gluconeogenesis from propionate by isolated hepatocytes and was unable to prevent inhibition of gluconeogenesis induced by tetradecylglycidic acid. Carnitine palmitoyltransferase I activity was lower in mitochondria isolated from hepatocytes preincubated with insulin than in control hepatocytes. The data suggest 1) that maximum rates of gluconeogenesis in isolated sheep hepatocytes from either pyruvate plus lactate or from propionate as gluconeogenic substrates require beta-oxidation, 2) that intermediates common to the metabolism of butyrate and caproate may be involved in the inhibition of propionate conversion to glucose by isolated sheep hepatocytes, and 3) that carnitine palmitoyltransferase I activity in isolated sheep hepatocytes can be modulated by insulin treatment.

Animals↗

[Isolation and identification of cynanester A from Cynanchum chinense R. Br].

Cynanester A (I) a new triterpenoid ester was isolated, together with lupeol acetate, lignoceric acid and beta-sitosterol, from Cynanchum chinense R. Br. (Asclepiadaceae). The mass spectrum suggested the presence of caproyl group and lupane skeleton with isopropenyl group in the molecule. Alkaline hydrolysis of I with 5% methanolic potassium hydroxide yielded lupeol Ia and n-caproic acid. The acid was esterified with MeOH-H2SO4 to afford methyl caproate, by GLC comparison with authentic sample. The acid was also identified by IR comparison. As above, the structure of cynanester A was established as lupeol caproate.

Caproates↗

[Study on shelf-life prediction of drugs under indoor natural light irradiation].

The photodegradation of drugs under natural light and various lamp light irradiation was studied and the shelf-life of drugs under indoor natural light irradiation was predicted with hydroxyprogesterone caproate injection as an example. The equivalent influences of different light sources on the photostability of the above drug were obtained. Therefore, the natural light photostability and the shelf-life of drugs under indoor natural light irradiation can be studied with lamp light exposure experiment. The photodegradation of hydroxyprogesterone caproate injection obeys zero order kinetics: C = C0-kEt, and its shelf-life under indoor natural light irradiation is about 1.9 years.

17 alpha-Hydroxyprogesterone Caproate↗

Thermodynamic analysis of product formation in mesophilic acidogenesis of lactose.

Thermodynamic analysis on the acidogenesis of lactose was performed to evaluate the different acidogenic patterns and mechanisms by using Gibbs free energy calculation. Batch acidogenesis of lactose was investigated by using an enriched culture at 37 degrees C, pH 5.5 and varied substrate levels. In addition to usual acidogenic products, i-butyrate, valerate, i-valerate, caproate, and propanol were also produced at a significant level. Thermodynamic analysis shows that valerate might be formed through the reaction requiring hydrogen as electron donor and consuming of propionate and carbon dioxide. Caproate was most likely produced directly from butyrate, hydrogen, and carbon dioxide. The minimum amount of Gibbs free energies needed to sustain isomerization of butyrate and valerate were approximately 5.7-5.8 and 4.5-4.6 kJ/mol, respectively. Propanol was produced from acetate, hydrogen, and carbon dioxide with a minimum amount of Gibbs free energy of 41.8-42.0 kJ/mol. Formation of butanol was controlled more by substrate level or population dynamics than by thermodynamics.

Alcohols↗

Biological hydrogen production in a UASB reactor with granules. II: Reactor performance in 3-year operation.

The experiment was conducted to evaluate the performance of an upflow anaerobic sludge blanket (UASB) with granules for H(2) production from a sucrose-rich synthetic wastewater at various substrate concentrations (5.33-28.07 g-COD/L) and hydraulic retention times (HRTs) (3-30 h) for over 3 years. The kinetics of H(2) production was evaluated, and the sludge yield and endogenous decay coefficient of the H(2)-producing granules were estimated to be 0.334 g-VSS/g-COD and 0.004/h, respectively. Based on Gibbs free energy calculations, the formation thermodynamics of caproate, an important aqueous product, were analyzed. Experimental results show that the H(2) partial pressure in biogas decreased with increasing substrate concentration, but was not sensitive to the variation of HRT in a range of 6-22 h. The H(2) production rate increased with increasing substrate concentration, but decreased with increasing HRT. The H(2) yield was in the range of 0.49-1.44 mol-H(2)/mol-glucose. Acetate, butyrate, caporate, and ethanol were the main aqueous products in the reactor, and their concentrations were dependent on both substrate concentration and HRT. An elevated substrate concentration resulted in a shift of fermentation from butyrate- to caporate-type in the reactor and the formation of caproate was dependent on the H(2) partial pressure. The 3-year experimental results demonstrate that H(2) could be produced continuously and stably from the acidogenic-granule-based UASB reactor.

Bacteria, Anaerobic↗

Fatty acyl-CoAs as feedback regulators of hexose monophosphate shunt in rat adipocytes.

The high basal glucose utilization through hexose monophosphate shunt found in our experimental conditions were almost completely inhibited by oleate, octanoate and caproate. However, the inhibition of glucose oxidation due to butyrate was about 50% whereas ketone bodies and acetate did not inhibit. The rate of triacylglycerol formation was not significantly modified with the above organic acids except oleate that presented a 5-fold increase on labeling incorporation into lipids. Oleate inhibition of glucose oxidation was completely prevented by the NADPH oxidant menadione. There was no inhibition by octanoate, caproate, butyrate or ketone bodies of glucose-6-phosphate dehydrogenase, 6-phosphogluconate dehydrogenase or malic enzyme in adipose tissue homogenates. In contrast, specifically glucose-6-phosphate dehydrogenase was inhibited by oleoyl-CoA. The oleoyl-CoA inhibition was prevented by enzyme preincubation with low NADP concentration. The data lend further support for the hypothesis that fatty acids and NADP fulfill an important role in the modulation of the hexose monophosphate shunt activity.

Acyl Coenzyme A↗

Energy state in HT-29 cells is linked to differentiation.

The relationship between the energy source used by HT-29 cells and their state of differentiation was determined. Short chain fatty acids and acetoacetate were applied to the cells for 9 d, after which the medium was replaced with conventional culture medium for a further 9 d so that the permanence of the changes could be assessed (18 d). Glucose utilization and lactic acid, acetoacetate, and beta-hydroxybutyrate production by the cells were determined. Differentiation was assessed by the presence of the enzymes sucrase-isomaltase and carbonic anhydrase 1, as well as morphological changes of the cells. By tracing carbon from acetate, propionate, and butyrate through the cells, it was found that the carbon from the short-chain fatty acids was fluxed into acetoacetate. Significant amounts of acetoacetate were released by the propionate-treated culture after 9 d and the acetate-, propionate-, valerate-, and caproate-treated cultures after 18 d. A significant positive correlation was found between acetoacetate synthesis and differentiation. Acetoacetate applied to HT-29 cells also induced their differentiation. The acetate-, butyrate-, valerate-, isovalerate-, and caproate-treated cells underwent terminal differentiation, while the propionate- and isocaproate-treated cultures underwent programming events. We, therefore, conclude that HT-29 cells utilize short chain fatty acids in preference to glucose, metabolize these to ketones, thereby raising the energy state and effecting the observed morphological and functional changes in the cells.

Acetoacetates↗