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Biomedical subjects

C Rodríguez-Fernández

Publications and source records attributed to C Rodríguez-Fernández.

11 recordsLinked to original sources

Biodegradation of phenol in synthetic and industrial wastewater by Rhodococcus erythropolis UPV-1 immobilized in an air-stirred reactor with clarifier.

Phenol biodegradation by suspended and immobilized cells of Rhodococcus erythropolis UPV-1 was studied in discontinuous and continuous mode under optimum culture conditions. Phenol-acclimated cells were adsorbed on diatomaceous earth, where they grew actively forming a biofilm of short filaments. Immobilization protected cells against phenol and resulted in a remarkable enhancement of their respiratory activity and a shorter lag phase preceding active phenol degradation. Under optimum operation conditions in a laboratory-scale air-stirred reactor, the immobilized cells were able to completely degrade phenol in synthetic wastewater at a volumetric productivity of 11.5 kg phenol m(-3) day(-1). Phenol biodegradation was also tested in two different industrial wastewaters (WW1 and WW2) obtained from local resin manufacturing companies, which contained both phenols and formaldehyde. In this case, after wastewater conditioning (i.e., dilution, pH, nitrogen and phosphorous sources and micronutrient amendments) the immobilized cells were able to completely remove the formaldehyde present in both waters. Moreover, they biodegraded phenols completely at a rate of 0.5 kg phenol m(-3) day(-1) in the case of WW1 and partially (but at concentrations lower than 50 mg l(-1)) at 0.1 and 1.0 kg phenol m(-3) day(-1) in the cases of WW2 and WW1, respectively.

Biodegradation, Environmental↗

Triglyceride lipase activities in rat liver.

A kinetic study of neutral and alkaline triglyceride lipase activities from different liver homogenate fractions is reported. Lipase activities are studied with triolein as substrate and are determined by quantification of the released oleic acid liberated. Heparin-releasable, microsomal and mitochondrial lipase activities are studied as a function of time, protein concentration and substrate concentration. The neutral triglyceride lipase associated with mitochondrial membranes is kinetically different from the alkaline lipase, localized on the plasma membrane, which probably contaminates microsomal and soluble fractions.

Animals↗

Uptake of thyroid hormones (L-T3 and L-T4) by isolated rat adipocytes.

3,5,3'-triiodo-L-thyronine is taken up by isolated rat adipocytes under physiological conditions by a saturable sigmoidal process, while L-thyroxine uptake follows Michaelian kinetics. Comparative studies performed with intact adipocytes and derived liposomes suggest that thyroid hormones are taken up into cells via carrier-mediated transport.

Adipose Tissue↗

Kinetic study of hepatic triglyceride lipase from rat liver soluble fraction.

An assay is described for the determination of lipase activity, using as substrate an emulsion of radioactive triolein with cholic acid as emulsifier. Lipase activity is given by determining radioactive triolein disappearance after incubation with the artificial emulsion. The catalytic activity of this enzyme has been studied with respect to time, protein concentration and substrate concentration. Under the experimental conditions, Michaelis constant value was 14.54 mmol/l and maximal hydrolysis rate 0.31 mumol h-1 mg-1.

Animals↗

[The effect of the thyroid hormone triiodothyronine on the incorporation of 32P into brain phospholipids in rat and chicken (author's transl)].

The incorporation of 32P to brain phospholipids has been studied, in chicken as well as in rat. Both animal species were at different stage of brain development, although degrees of psychomotive development were identical. It is observed that the effect of triiodothyronine is more pronounced when the degree of brain myelination is smaller. The radioactive precursor is frequently incorporated to choline and ethanolamine phospholipids, and this incorporation is higher in hyperthyroid animals with a low degree of myelination. The triiodothyronine activates, in both animal species, the salvage pathway of phospholipid biosynthesis. This activation takes place 36 h before hormone action in chicken, while in rat, the most significant differences occur 36 h after hormone action.

Animals↗

[Effect of the thyroid hormone, triiodothyronine on fatty acid chain elongation of mitochondrial phospholipids (author's transl)].

The effect of the Thyroid Hormone Triiodothyronine (T3) on composition of Fatty Acid of Mitochondrial Phospholipids is studied. In animals (Gallus domesticus var. Cornis and White Roc.) treated with an injection of T3 containing 0.04 microgram/g body weight, increase length and insaturation increases of the hydrocarbon chains of fatty acids in mitochondrial phospholipids are observed in relation to the corresponding controls. This elongation is maximum at 14 hours after treatment with the hormone. Animals treated with T3 showed a higher proportion of stearic and eicosatrienoic acids than controls. This increase is accompanied by an equivalent decrease of the palmitic and oleic acids, their respective biosynthetic precursors. The highest proportion of long chain and unsatured fatty acids can be observed in phosphatidylethanolamines and phosphatidylcholines.

Animals↗