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Biomedical subjects

L Lucchi

Publications and source records attributed to L Lucchi.

At least 37 records · Page 2Linked to original sources

Cognition stimulating drugs modulate protein kinase C activity in cerebral cortex and hippocampus of adult rats.

The in vivo and in vitro effect of oxiracetam, aniracetam and alpha-glycerylphosphorylcholine (alpha GPC) on protein kinase C (PKC) activity was studied in rat brain cortex and hippocampus. Administration of oxiracetam and alpha GPC in vivo elicited an early increase of particulate histone-directed PKC activity accompanied by a decrease of soluble activity and followed a few hours later by a down regulation of the enzyme. The effect was also observed in vitro when either oxiracetam or alpha GPC were administered at nanomolar concentrations to rat brain cortex slices. Aniracetam had no effect in the cortex but promoted PKC translocation both in vivo and in vitro in the hippocampus. In cortex slices the effect of oxiracetam was antagonized by the addition of AP-5, an NMDA receptor blocker, but not by CNQX and L-AP3, antagonists of AMPA and metabotropic glutamate receptors, respectively. Scopolamine also prevented the increase of particulate PKC elicited by oxiracetam in vitro. In the hippocampus the increase of particulate PKC activity was antagonized by AP-5, CNQX and L-AP3, indicating participation by both ionotropic and metabotropic glutamate receptors in the action of aniracetam. The data support the hypothesis that PKC activation may be a common mechanism amongst cognition stimulating drugs from different chemical classes.

Animals↗

Conjugated diene fatty acids in patients with chronic renal failure: evidence of increased lipid peroxidation?

Conjugated diene fatty acids (CDFA) were evaluated by second derivative spectrophotometry in the plasma and adipose tissue of 42 chronic renal failure (CFR) patients in conservative treatment, 40 patients treated by hemodialysis (HD) with cuprophane, cellulose acetate or hemophan, 29 treated by hemodiafiltration (HDF) with polysulfone, polyacrylonitrile or polyamide, and 28 healthy controls. Plasma CDFA were also evaluated at the beginning, at 30 min and at the end of the dialytic session. CDFA were unchanged in CRF patients with creatinine clearance (Ccr) > 10 ml/min respect to the controls, CRF patients with Ccr < 10 ml/min showed a higher level of CDFA both in plasma and adipose tissue (p < 0.02). HD patients showed values similar to those of the control group. The lowest level of CDFA was found in HDF patients (p < 0.01 for plasma, p < 0.05 for adipose tissue versus both control and any other group). A significant relationship between plasma and adipose tissue CDFA was found in all groups. In the group of CRF patients with Ccr < 10 ml/min, females exhibited a higher level of CDFA both in plasma and adipose tissue. No significant change was found during dialytic session, independently from the membrane used. CDFA are not only primary products of lipid peroxidation, but also have a dietary origin, primarily from dairy products. Taking into account the reduced dietary intake, the increase in end-stage CRF may be due to an enhanced oxidative stress and/or to abnormalities in CDFA metabolism. Uremic patients, particularly in the predialytic stage, should be considered at risk for increased oxidative stress. HDF treatment better corrects the abnormality compared to conventional HD.

Adipose Tissue↗

Removal of limulus reactivity and cytokine-inducing capacity from bicarbonate dialysis fluids by ultrafiltration.

Bicarbonate-based dialysate solutions support the rapid growth of bacteria. The long-term (360-h) efficacy of ultrafiltration by two polysulphone ultrafilters in removing not only endotoxin but also the cytokine(IL-1, TNF)-inducing capacity was evaluated using an experimental circuit contaminated with Pseudomonas aeruginosa filtrates. One of the polysulphone ultrafilters was submitted to a standard sanitization procedure every 12 h (hypochlorite 1.2% solution for 5 min and rinsing for 20 min). Endotoxin was detected by the kinetic quantitative chromogenic limulus amoebocyte lysate (LAL) assay. Immunoreactive IL-1 and TNF were evaluated in the lysates of peripheral blood mononuclear cells containing 5 x 10(5) human monocytes. The results of the present studies show that although LAL-reactive bacterial products were significantly removed in post-ultrafilter samples, they remained detectable, albeit below the upper limit accepted by the present European pharmacopeias (< 0.125 EU/ml). The removal of cytokine-inducing capacity was time-dependent and correlated with time of use in the case of the sanitized ultrafilter. Beyond the time of use, two other factors emerged as possibly capable of reducing the efficacy of the ultrafilter in removing LAL-reactive bacterial components, namely the pressure and the cytokine-inducing activity in pre-ultrafilter samples. Preincubation with polymyxin B, an agent that irreversibly binds lipid A and blocks lipid A-induced biological activities, did not abrogate the cytokine-inducing capacity in all post-ultrafilter samples; this suggests that either low-molecular-weight endotoxin subunits or lipid A-unrelated components may be responsible for the residual biological activity in post-ultrafilter samples.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylmuramyl-Alanyl-Isoglutamine↗

Protein kinase C increase in rat brain cortical membranes may be promoted by cognition enhancing drugs.

Protein Kinase C (PKC) activity was measured in soluble and particulate fractions of rat individual brain cortices after in vivo treatment with two cognition enhancers: oxiracetam and alpha-glicerylphosphorylcholine. Both drugs induced an increase (+40-50%) of PKC particulate activity at 1 hr after the treatment. The effect was transient; at 5 hours PKC activity was lower than in controls. The dose response curve to oxiracetam was bell shaped, the increase of PKC being significant at 100 mg/kg. At higher doses the drug induced a decrease in enzyme activity. The increased PKC activity may be related to the cortical effects of these compounds.

Animals↗

Improved biocompatibility by modified cellulosic membranes: the case of hemophan.

The rising problem of biocompatibility is encouraging the development of new dialysis membranes, but the high cost of synthetic ones precludes their wide use. The authors compared the biocompatibility of cuprophan (CU), cellulose acetate (CA), and hemophan (HE), evaluating both in vitro and in vivo polymorphonuclear leukocyte (PMN) oxidative metabolism activation by resting chemiluminescence and complement activation by C3a; in vivo PMN counts during dialysis were also performed. The lowest increase in in vitro PMN resting chemiluminescence using HE was + 71.3% with CA, +49.3% with CU, and + 21.4% with HE (p less than 0.001 versus CA and CU); furthermore, HE did not significantly stimulate PMN resting chemiluminescence during in vivo hemodialysis: + 56.6% with CA, + 38.8% with CU, and + 3.7% with HE (p less than 0.01 versus CU and p less than 0.001 versus CA). C3a concentration increased with all membranes both in vitro and in vivo, but HE (in both experimental conditions) showed the lowest increase at any time (p less than 0.001 versus CA and CU). After 15 min of dialysis, PMN count dropped to 20.3% of basal values with CU, to 49.8% with CA, and to 76.5% with HE (p less than 0.001 versus CU and CA). Among cellulosic membranes, HE is the most biocompatible and appears to be an important step in preventing blood-membrane interactions and related complications.

Biocompatible Materials↗

Polymorphonuclear oxygen free radical production and complement activation induced by dialysis membranes as assayed in an experimental model.

Activation of polymorphonuclear leukocytes with subsequent production of reactive oxygen metabolites has been reported to occur during hemodialysis related to a membrane bioincompatibility. We used an experimental dialysis model to evaluate, by chemiluminescence, the production of reactive oxygen metabolites and, by C3a, complement activation induced by cuprophan, cellulose acetate, hemophan, polysulfone, polyacrylonitrile, polymethylmethacrylate or polyvinyl chloride blood lines alone. No differences were obtained in the system, at time 30 min compared to initial values, as far as zymosan-activated chemiluminescence is concerned; resting chemiluminescence increased markedly with cellulose acetate (+71%), cuprophan (+49%), polymethylmethacrylate (+22%), hemophan (+21%) but had no variation with polysulfone, polyacrylonitrile and blood line. The time course of C3a levels up to 120 min showed a marked rise with cuprophan and cellulose acetate, a moderate increase with hemophan, polysulfone and blood line, and a decrease with polymethylmethacrylate and polyacrylonitrile. The results obtained documented a different behavior of the production of reactive oxygen metabolites compared to complement activation and support the hypothesis that the production of reactive oxygen metabolites by polymorphonuclear leukocytes is stimulated not only by complement activation but also by a direct dialysis membrane interaction.

Biocompatible Materials↗

Oxidative metabolism of polymorphonuclear leukocytes and serum opsonic activity in chronic renal failure.

Luminol-amplified chemiluminescence was used to study the oxidative metabolism of polymorphonuclear leukocytes (PMN), in resting state and in response to opsonized zymosan, in 65 patients with different degrees of chronic renal failure (CRF) or on regular dialysis treatment (RDT). Every patient was compared on the same day with a normal subject. Furthermore, the serum opsonic activity was evaluated, cross-matching zymosan opsonized by serum from CRF-RDT patients and normals with PMN from CRF-RDT patients and normals. PMN resting chemiluminescence showed a progressive increase inversely related to the glomerular filtration rate, and it remained high in patients on RDT. Zymosan-activated chemiluminescence indicated a deficit in phagocytosis for PMN of patients with a glomerular filtration rate lower than 10 ml/min, persisting in RDT patients. The serum opsonic activity was always significantly lower in CRF and in RDT patients than in the control group; this defect was already present in patients with mild renal impairment. Our findings suggest that PMN from CRF or RDT patients have an increased reactive oxygen metabolite production in the resting state that may cause cell and tissue damage; the opsonization impairment and the decreased PMN phagocytic activity contribute to increased vulnerability to infection in these patients.

Humans↗

Mechanisms of the effect of lead on brain neurotransmission: a calcium mediated action.

Data on the effect of chronic lead ingestion on brain neurochemistry in laboratory rodents show the involvement of several neurotransmitters including catecholamines. In the case of dopamine (DA), the action of lead is not uniform in all the DA-innervated areas. The reason for the regional susceptibility to the effect of lead is at present unknown, but points to the existence of specific neuronal mechanisms. Results obtained from animals exposed from birth to lead show that calcium channels are differentially modified in various brain areas. In particular, calcium antagonists display regional sensitivity both after in vivo lead treatment and after in vitro lead addition. These data support the concept that the area selective effects of the metal on neurotransmission may depend on the mechanisms controlling nerve terminal activity in different neuronal populations.

Animals↗

Effect of chronic ethanol treatment on dopamine receptor subtypes in rat striatum.

Chronic exposure to ethanol (6% in the drinking water, 25 days) reduces the responsiveness of both the dopamine-stimulated and of the dopamine-inhibited adenylate cyclase in rat striatum. The changes in the adenylate cyclase activity are paralleled by alterations in dopamine recognition sites, in fact binding studies using selective ligands indicate that the number of both D1- and D2-receptors is reduced in striatal membranes of treated rats.

Adenylyl Cyclases↗

The central dopaminergic system: susceptibility to risk factors for accelerated aging.

The synaptic deficit of brain dopaminergic activity involves a complex pattern of changes both at presynaptic and at postsynaptic level. The aged dopaminergic nuclei present a reduced number of dopamine terminals, a decreased ability to synthesize and reuptake dopamine and defective recognition sites both in terms of absolute number of D2 receptors and of transducing mechanisms linked to D1 receptors. These changes suggest that the dopaminergic system may be particularly sensitive during aging to environmental, iatrogenic and toxic factors, which may easily make the elderly develop symptoms of central dopamine deficiency.

Aging↗

In vitro and in vivo effect of ethanol on cyclic AMP dependent protein phosphorylation.

The in vitro addition of ethanol reduces the cyclic AMP dependent protein phosphorylation of several protein bands both in particulate and in cytosolic fractions of rat striatum. The cytosolic 32 Kd band associated to D-1 dopamine receptor is particularly sensible to the inhibitory action of ethanol. In vivo data indicate that chronic ethanol treatment exerts also an inhibitory effect on protein phosphorylation in striatal fractions reducing the 32P incorporation in protein bands linked to the synaptic vescicular traffic and to dopaminergic transmission. This study provides direct evidence that long term ethanol consumption alters dopaminergic transduction processes.

Animals↗

Release of met-enkephalin from rat striatal slices: effect of amphetamine and fipexide.

The release of Met-enkephalin immunoreactive material (ME-IR) from rat striatal slices is affected by exposure to amphetamine and fipexide (chloro-4-phenoxy)-2-acetyl-1-(methylene-dioxy 3, 4-benzyl-4-piperazine) a psychostimulant drug with mild dopaminomimetic activity. Both amphetamine and fipexide inhibited in vitro the release of ME-IR. The same effect was observed after in vivo acute administration and is also maintained after chronic treatment. The action of fipexide and amphetamine is still present after reserpine pretreatment. The results indicate that fipexide may facilitate dopamine neurotransmission by inhibition of an enkephalinergic inhibitory feed-back circuit.

Amphetamines↗

Effect of lead exposure on dopaminergic receptors in rat striatum and nucleus accumbens.

Haloperidol- and sulpiride-displaceable [3H]spiroperidol binding and the dopamine-inhibited adenylate cyclase were measured in rats chronically exposed to lead acetate. Haloperidol-displaceable [3H]spiroperidol binding was unmodified while sulpiride-displaceable binding was increased in striatum and decreased in nucleus accumbens. In addition, the decrease of sulpiride-displaceable binding in nucleus accumbens was paralleled by a reduced ability of bromocriptine to inhibit cAMP formation in presence of the D1 receptor antagonist SCH 23390. The results support the concept that in vivo lead treatment affects dopaminergic receptors and that the binding sites labelled by [3H]spiroperidol displaced by haloperidol may be different from those which recognize sulpiride.

Adenylyl Cyclases↗

Chronic lead exposure alters dopaminergic mechanisms in rat pituitary.

The effect of chronic lead treatment on pituitary dopamine (DA) D2 receptors was studied by measuring (-)sulpiride-displaceable [3H]spiroperidol-binding and DA-inhibited adenylate cyclase. Receptor number was reduced in lead-exposed animals and bromocriptine was less able to inhibit cyclase activity in pituitary homogenates. In addition, the capacity of DA to inhibit the VIP-stimulated cAMP formation was decreased.

Adenylyl Cyclase Inhibitors↗