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L Landi

Publications and source records attributed to L Landi.

At least 37 records · Page 2Linked to original sources

HPLC and light scattering detection allow the determination of phospholipids in biological samples and the assay of phospholipase A2.

Some applications to biological samples of a method for the separation and the quantitative analysis of phospholipids by high performance liquid chromatography (HPLC) and light scattering mass detection are described. Results obtained in the determination of phospholipid classes from rat tissues such as liver, heart and kidney have been compared with data from the literature. The method has been applied to the evaluation of phospholipids in human low-density lipoproteins (LDL), about which little is known. The procedure is also suitable for a rapid and reliable assay of the water-soluble phospholipase A2 activity; the relationship between the aggregation state of substrate phospholipids (mixed micelles, multilamellar and unilamellar vesicles) and the enzyme activity has been studied.

Animals↗

Vitamin B6 deficiency affects antioxidant defences in rat liver and heart.

We have evaluated the effects of a diet containing normal amounts of lipids and a marginal content of vitamin B6 on lipid peroxidation. Pyridoxal phosphate concentrations of plasma and liver indicated that an initial deficiency state was reached. Vitamin B6 deficiency led to peroxidative stress: TBARS production was higher in the liver (+18.6%) and even more in the heart (+61%) of deficient rats as compared with controls. Furthermore, significant stimulation of glutathione-dependent enzymes occurred in both heart and liver of deficient rats: glutathione peroxidase activity increased in heart (+144%) and liver (+505%); glutathione reductase increased in heart (+54.9%) and liver (+15.5%). No difference in the total glutathione content of the organs of the two groups was observed. The reduced glutathione/oxidized glutathione ratio was significantly lower in deficient rats. Although the activity of glutathione-dependent enzymes was significantly greater in deficient rats than in controls, this stimulation was only partially able to counteract the peroxidative damage due to vitamin B6 deficiency.

Animals↗

Ridge augmentation using demineralized freeze-dried bone allograft with barrier membrane and cortical columns.

Ridge augmentation can be achieved with a number of approaches. Demineralized freeze-dried bone allograft (DFDBA) has been extensively used, often with controversial results. This article presents a case in which a combination of DFDBA, cortical columns, and expanded polytetrafluoroethylene membrane is used to expand a deficient ridge. After 8 months of healing, the edentulous ridge was successfully augmented for implant placement. Histologic and histomorphometric analysis of bone cores harvested from the augmented site showed new bone formation around the DFDBA particles and the cortical columns with lamellar bone formation.

Aged↗

[The use of prosthesis material in emergency surgery. Comments on a clinical case].

The authors briefly report the case of a patient in whom a double Mersilene graft was used to repair a strangulated umbilical hernia. This report is interesting for various reasons. Firstly, the fact that surgery was performed under emergency conditions and secondly, the position of the graft, which was certainly not ideal--even if obligatory owing to the circumstances under which the operation was performed--in the abdominal wall. In spite of the successful results obtained, the authors feel that graft should preferably be used in elective surgery in which additional operations are not required which may further contaminate the operating field. In particular, special attention should be paid to graft position in relation to the various layers of the abdominal wall.

Aged↗

The two-electron quinone reductase DT-diaphorase generates and maintains the antioxidant (reduced) form of coenzyme Q in membranes.

The experiments reported here were undertaken to test the hypothesis that the antioxidative, reduced form of hydrophobic phase coenzyme Q (CoQ) may be generated and maintained by the two-electron quinone reductase, DT-diaphorase [NAD(P)H:(quinone-acceptor) oxidoreductase, EC 1.6.99.2] by catalyzing formation of the hydroquinone form of CoQ. This enzyme was isolated and purified from rat liver cytosol and its reduction of several CoQ homologs incorporated into large unilamellar vesicles (LUVETs) was demonstrated. The addition of NADH and DT-diaphorase to LUVETs and to multilamellar vesicles (MLVs) containing CoQ homologs, including CoQ9 and CoQ10, resulted in essentially complete reduction of the CoQ. Incorporation of either CoQ9H2 or CoQ10H2 and the lipophylic radical generator 2,2'-azobis(2,4-dimethylvaleronitrile) (AMVN) into MLVs in the presence of DT-diaphorase and NADH maintained the reduced state of CoQ and inhibited lipid peroxidation. The reaction between DT-diaphorase and CoQ was also demonstrated in isolated rat liver hepatocytes in which incorporation of CoQ10 provided protection from adriamycin (adr)-induced mitochondrial membrane damage. The role of DT-diaphorase in the antioxidant activity of CoQ was demonstrated by the co-incorporation of dicoumarol (dic), a potent inhibitor of DT-diaphorase, resulting in a loss of protection by incorporated CoQ10. These results support the antioxidant function of DT-diaphorase in both artificial and natural membrane systems by acting as a two-electron CoQ reductase which forms and maintains CoQ in the reduced state.

Animals↗

DT-Diaphorase maintains the reduced state of ubiquinones in lipid vesicles thereby promoting their antioxidant function.

The activity of purified DT-diaphorase in the reduction of ubiquinone homologues of different side-chain length incorporated in uni- and multilamellar vesicles was determined. The direct relationship between the reduced state of ubiquinones and the inhibition of lipid autoxidation induced by thermolabile azocompounds was also demonstrated. Results demonstrate that DT-diaphorase is able to generate and to maintain the reduced, antioxidant form of ubiquinones in both types of vesicles. Furthermore, the results reported herein show that, in the presence of nicotinamide adenine dinucleotide (NADH) and DT-diaphorase, ubiquinol-containing multilamellar vesicles exposed to a lipophilic azocompound did not undergo lipid peroxidation, whereas in vesicles lacking either NADH or DT-diaphorase, thiobarbituric acid reactive substances (TBARS) formation occurred. It is suggested that DT-diaphorase may be responsible for maintaining the reduced state of ubiquinones in various nonmitochondrial cellular membranes.

Antioxidants↗

Antioxidant activity of reduced menadione in solvent solution and in model membranes.

The antioxidant activity of reduced menadione was investigated and compared with that of alpha-tocopherol both in solvent solution and in large unilamellar vesicles by using azocompounds as free radical generators. The results show that: i) reduced menadione behaves as a chain-breaking antioxidant; ii) its inhibition rate constant is similar to that of alpha-tocopherol in homogeneous solution, whereas it is 4 times larger in egg yolk lecithin vesicles; iii) the stoichiometric factor is found lower than 1 in both systems, since a substantial portion of menadiol is consumed by autoxidation and does not contribute to radical trapping; iv) when both alpha-tocopherol and menadiol are present in vesicles, reduced menadione can spare alpha-tocopherol. Data presented here suggest that the reduced form of vitamin K may protect, when present, cellular membranes from free radical damage.

Antioxidants↗

Host mechanisms in the pathogenesis of periodontal disease.

Periodontal diseases present with a wide range of clinical variability and severity. Individual susceptibility seems to be of major importance in determining the manifestation and progression of the disease. A better understanding of the molecular mechanisms of action of the immune system is of paramount importance to our ability to prevent and treat occurrence and recurrence of periodontal diseases. Recent advances in immunobiology are very promising for the identification of special categories of patients at risk for periodontal breakdown. This review discusses the most recent studies in this field and the possible clinical applications of recent advances.

Aggregatibacter actinomycetemcomitans↗

The role of DT-diaphorase in the maintenance of the reduced antioxidant form of coenzyme Q in membrane systems.

The experiments reported here were designed to test the hypothesis that the two-electron quinone reductase DT-diaphorase [NAD(P)H:(quinone-acceptor) oxidoreductase, EC 1.6.99.2] functions to maintain membrane-bound coenzyme Q (CoQ) in its reduced antioxidant state, thereby providing protection from free radical damage. DT-diaphorase was isolated and purified from rat liver cytosol, and its ability to reduce several CoQ homologs incorporated into large unilamellar vesicles was demonstrated. Addition of NADH and DT-diaphorase to either large unilamellar or multilamellar vesicles containing homologs of CoQ, including CoQ9 and CoQ10, resulted in the essentially complete reduction of the CoQ. The ability of DT-diaphorase to maintain the reduced state of CoQ and protect membrane components from free radical damage as lipid peroxidation was tested by incorporating either reduced CoQ9 or CoQ10 and the lipophylic azoinitiator 2,2'-azobis(2,4-dimethylvaleronitrile) into multilamellar vesicles in the presence of NADH and DT-diaphorase. The presence of DT-diaphorase prevented the oxidation of reduced CoQ and inhibited lipid peroxidation. The interaction between DT-diaphorase and CoQ was also demonstrated in an isolated rat liver hepatocyte system. Incubation with adriamycin resulted in mitochondrial membrane damage as measured by membrane potential and the release of hydrogen peroxide. Incorporation of CoQ10 provided protection from adriamycin-induced mitochondrial membrane damage. The incorporation of dicoumarol, a potent inhibitor of DT-diaphorase, interfered with the protection provided by CoQ. The results of these experiments provide support for the hypothesis that DT-diaphorase functions as an antioxidant in both artificial membrane and natural membrane systems by acting as a two-electron CoQ reductase that forms and maintains the antioxidant form of CoQ. The suggestion is offered that DT-diaphorase was selected during evolution to perform this role and that its conversion of xenobiotics and other synthetic molecules is secondary and coincidental.

Animals↗

Injury of rat thymocytes caused by exogenous peroxyl radicals in vitro.

The aim of this study was to investigate oxidative cell injury in rat thymocytes under conditions of radical generation exterior to the cell utilizing the thermolabile azocompound 2,2'-azobis(2-amidinopropane) dihydrochloride to generate peroxyl radicals at a constant and reproducible rate. This initiator, being water-soluble and endowed with a positive charge, is suitable for studies on oxidative damage of biomembranes induced in the external water environment. The relationship between cell viability, lipid and thiol oxidation and chain-breaking antioxidant depletion was studied. During the first hour of treatment cell viability decreased slightly, protein sulfhydryl groups were consumed slowly and no significant production of conjugated dienes occurred. After 90 min of incubation, when thymocyte permeability started to increase, the concentration of alpha-tocopherol decreased gradually, significant changes of polyunsaturated fatty acids occurred and a rapid phase of thio oxidation commenced. It can be concluded that, under conditions of an exogenous oxidant challenge, initially the cell membrane provides a physical barrier to the entrance of radicals to the thymocyte. When peroxyl radicals gain access to the membrane and the molecular barrier begins to disorganize, the oxidizable cellular components become susceptible to massive attack.

Amidines↗

Autoxidation and antioxidant activity of ubiquinol homologues in large unilamellar vesicles.

The antioxidant activity of ubiquinol homologues with different side-chain length such as ubiquinol-3 and ubiquinol-7 was compared with that of alpha-tocopherol when peroxidation was induced by the water-soluble initiator 2,2'-azobis-(2-amidinopropane hydrochloride). In large unilamellar vesicles containing equal amounts of alpha-tocopherol, ubiquinol-3 and ubiquinol-7 the rates of inhibition were very similar but the stoichiometric factor of quinols was approximately 1. To explain this low value, which is one-half of that found when the autoxidation was performed in apolar solvents (Chem. Phys. Lipids (1992) 61, 121-130), the oxidation of alpha-tocopherol and ubiquinol-3 initiated by the azocompound was studied both in methanol and in dimiristoyl-lecithin vesicles. The results obtained show that the ubiquinol homologues undergo a radical chain reaction taking place at the polar interface and suggest that the average preferred location of both quinol headgroups is near to the outer surface of the bilayer.

Antioxidants↗

Peroxidation potential of rat thymus during development and involution.

The thymus of rats of ages between 1 and 7 months was homogenised and subjected to oxidative stress induced by iron salts. Lipid peroxidation, protein thiols and glutathione status were evaluated. The thymus of rats of 1 month of age exhibited lower susceptibility to the radical attack with respect to the thymus of rats between 3 and 7 months of age. This susceptibility was correlated with the content of polyunsaturated fatty acids and of lipophylic chain-breaking antioxidants.

Aging↗

Pattern of iron excretion in relation to haemoglobin level and iron load in 8 haematological patients following the administration of subcutaneous deferrioxamine.

Iron excretion following subcutaneous administration of deferrioxamine (DFO) was measured between two transfusions of packed red cells in 6 patients with beta-thalassaemia major on the high level Hb transfusion regime; and in a single 3-day period in 2 other patients, 1 with transfused beta-thalassaemia major and the other with haemolytic anaemia due to PK deficiency. The pattern of iron excretion did not change significantly during the period between the two transfusions and was found to be related to serum ferritin levels. The proportion of iron excreted in the stools was inversely related to the serum ferritin level. These observations on iron excretion are of practical importance in relation to DFO administration, especially when evaluated in thalassaemics with normal haemoglobin levels and low iron stores.

Adolescent↗

Characterization of large unilamellar vesicles as models for studies of lipid peroxidation initiated by azocompounds.

The aim of this work was to characterize large unilamellar vesicles (LUVETs) prepared by a hand-driven extrusion device in order to use them for studies of lipid peroxidation and antioxidant activity. Vesicle structure and size were examined by electron microscopy. Lipid and antioxidant content was determined before and after the extrusion procedure. Then LUVETs were subjected to autoxidation initiated by both the lipid-soluble 2,2'-azobis(2,4-dimethylvaleronitrile) and the water-soluble 2,2'-azobis(2-amidinopropane hydrochloride) azocompounds. The results demonstrated that: i) LUVETs prepared with lipid concentrations ranging between 25 and 150 mM were essentially unilamellar and reasonably homogeneous, with an average diameter of 90 nm; ii) the phospholipid, cholesterol and antioxidant amounts retained by filters were about 10-15%; iii) LUVETs were suitable for autoxidation studies initiated by the water-soluble azocompound both in the absence and presence of antioxidants. The lipid-soluble azocompound could be used only at low concentrations and its vesicle content had to be determined since part of the initiator was not incorporated into the lipid bilayer. These data suggest that LUVETs seem to be recommended for studies of lipid peroxidation and antioxidant activity.

Antioxidants↗

Ubiquinol-3 and ubiquinol-7 exhibit similar antioxidant activity in model membranes.

This study was undertaken to compare, on a kinetic basis, the antioxidant efficiency of an ubiquinol homologue having a short isoprenoid side-chain length, such as ubiquinol-3, with that of the long chain ubiquinol-7, by determining their rate constants of inhibition with respect to alpha-tocopherol. To this purpose we incorporated ubiquinol-3, or ubiquinol-7, or alpha-tocopherol into liposomes of egg yolk lecithin, and triggered lipid peroxidation with the thermal decomposition of a lipophilic azocompound. The results show that: i) the rate constants of inhibition for the two quinols are similar and slightly lower than that of alpha-tocopherol; ii) the length of the radical chain obtained in the presence of the two quinols is almost the same. From these data we concluded that the two homologues tested behave as chain-breaking antioxidants with quite similar effectiveness.

Antioxidants↗

Relative susceptibility of the thymus and thymocytes to lipid peroxidation.

Thymus and thymocytes peroxidizability was studied in well defined conditions where lipid hydroperoxide dependent peroxidation occurs. The results show that: (i) lipid peroxidation is very low in thymocytes notwithstanding the higher content of arachidonic acid; (ii) the amounts of lipophilic chain-breaking antioxidants is higher in thymocytes; (iii) the thymus contains more total lipids and phospholipids. Thus the higher sensitivity to peroxidation of the thymus can be due to the replacement of thymus parenchyma by fatty tissue not correlated to an increase of lipophilic antioxidants.

Animals↗

The antioxidant activity of ubiquinol-3 in homogeneous solution and in liposomes.

With a view to determining the antioxidant effectiveness of ubiquinol, the autoxidation of egg phosphatidylcholine initiated by an azocompound was studied both in homogeneous solution and in liposomes, either in the presence or in the absence of ubiquinol-3. The results show that ubiquinol behaves as a chain-breaking antioxidant by trapping lipid peroxyl radicals, its inhibition rate constant being about one half of that of alpha-tocopherol in both systems under investigation. In organic solvents the stoichiometric factor was found approx. 2 and in liposomes approx. 0.5, i.e. one fourth of that of alpha-tocopherol. We suggest that the lower value found in model membranes is due to autoxidation of the quinol itself by a radical chain reaction taking place at the polar interface. Ubiquinol-3 exhibits a sparing effect toward alpha-tocopherol, both in liposomes and in tert-butanol. It is suggested, on a thermodynamic basis, that the regeneration of vitamin E from the corresponding radical is more likely to occur by reaction with the ubisemiquinone rather than with the ubiquinol. Although these results, obtained in in vitro systems, can not be directly extrapolated to an in vivo system, they may be useful to clarify the antioxidant role of ubiquinol in biomembranes.

Antioxidants↗

Extraction of lipids and lipophilic antioxidants from fish tissues: a comparison among different methods.

1. Lipids, phospholipids and lipid soluble antioxidants were extracted from Sparus auratus liver and white muscle by three different methods and the yields obtained were compared. 2. None of the three procedures can recover the above components with the same efficiency. 3. For comparison the methods were also applied to rat liver homogenates. 4. The choice of the extraction procedures depends on the tissue investigated and on specific research requirements.

Animals↗