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Biomedical subjects

A Novelli

Publications and source records attributed to A Novelli.

At least 73 records · Page 4Linked to original sources

Betalactam therapy and intestinal flora.

Betalactams, mainly when orally administered, may lead to intestinal flora modifications related to their spectrum of activity, rate of absorption and degradation. therefore it is important to investigate the possible influence of recently developed oral cephem derivatives on normal human microflora. We have investigated the impact on normal human intestinal flora in a 10-day course with cefetamet-pivoxil (CET, 500 mg BID) in comparison to cefixime (CFX, 400 mg qD) or cefuroxime axetil (CA, 250 mg BID) in 24 patients suffering from acute exacerbation of chronic bronchitis. Stool specimens were taken before (day 0), at the end (day 10) and 14 days after treatment (day 24) and quali-quantitative microflora composition was determined with a detection limit of 10 CFU/g dry weight. Treatment with CET caused slight and non-significant modifications of normal intestinal flora. On the contrary CFX and CA significantly affect Enterobacteriaceae and clostridia with a concomitant increase in enterococci for CFX. With both CFX and CA there was a new appearance of Salmonella spp. as well as Clostridium difficile in 4 and 2 cases, respectively. Therefore CET seems to affect normal bowel flora minimally in comparison to other oral cephalosporins. This aspect might contribute to the low incidence of GI related side effects in patients treated with CEt for longer than 1 week.

Administration, Oral↗

Two components in neurotoxicity by L-2-amino-3-phosphonopropionate in cultured cerebellar neurons.

Exposure of cultured cerebellar neurons to the putative metabotropic glutamate receptor antagonist L-2-amino-3-phosphonopropionate (L-AP3) for 24 h produced a neurotoxic effect which was prevented by the addition of the NMDA receptor antagonist (+)-10,11-dihydro-5-methyl-5-H-dibenzo-[a,d]-cyclohepten-5,1 0-imine hydrogen maleate (MK-801). MK-801 did also reduce neurotoxicity following 72 h exposure to L-AP3 neurotoxicity in the presence of MK-801 was antagonized by glutamate. Our results suggest that metabotropic glutamate receptors may play an important role in neuronal survival by controlling NMDA receptor-dependent as well as independent pathways.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Specific binding of dl-cloprostenol and d-cloprostenol to PGF2 alpha receptors in bovine corpus luteum and myometrial cell membranes.

Prostaglandin F2 alpha receptors (PGF2 alpha Rs) were measured in bovine corpus luteum and myometrial cell membranes using a radiometric method. The inhibition of labelled PGF2 alpha binding exerted by d-cloprostenol, dl-cloprostenol, PGF2 alpha and PGE1 (10(-11) M to 10(-4) M) was evaluated in vitro. Results strongly suggest that cloprostenol binding to PGF2 alpha Rs is stereospecific. d-Cloprostenol and PGF2 alpha were equipotent, about 150 times more potent than dl-cloprostenol (P < 0.05) and approximately 280 times more potent than PGE1 (P < 0.05) in inhibiting [3H]PGF2 alpha binding to corpus luteum cell membranes. Such differences were less evident in myometrial cell membranes, where d-cloprostenol and PGF2 alpha were about 10 times more potent than dl-cloprostenol (P < 0.05) and approximately 95 times more potent than PGE1 (P < 0.05).

Animals↗

Penetration of cefotetan into suction skin blister fluid and tissue homogenates in patients undergoing abdominal surgery.

The penetration of cefotetan (2-g intravenous bolus) into the suction blister fluid and tissue homogenates of 11 patients was investigated. Mean concentrations in tissue were significantly lower than contemporary suction blister fluid levels. These data show that the determination of beta-lactam concentrations by the tissue homogenate method may seriously underestimate the actual antibiotic levels in extracellular fluid.

Abdomen↗

Basic fibroblast growth factor protects cerebellar neurons in primary culture from NMDA and non-NMDA receptor mediated neurotoxicity.

We have investigated the ability of bFGF to protect cerebellar neurons from neurotoxicity by excitatory amino acids. We have found that preincubation with 1-2.5 nM bFGF for 1-6 days significantly protected neurons from excitotoxic damage via NMDA receptors as well as ionotropic non-NMDA receptors. bFGF neuroprotection appeared not to be dependent upon neuronal differentiation and was not mimicked by other neurotrophins including BDNF, NT-3 and NGF. A greater rise in extracellular calcium-dependent cGMP formation, following either depolarization or excitatory amino acid receptor activation was observed in bFGF-pretreated neurons. We suggest that neuroprotection from excitotoxicity following bFGF treatment may be associated to the modulation of neurochemical pathways dependent upon extracellular calcium influx.

Animals↗

Excitatory amino acid response in cultured rat striatal neurons results in a developmentally regulated cGMP formation.

Glutamate and its analogues play a central role in excitatory neurotransmission throughout the brain. Their signal in the postsynaptic cells can be transduced by several second messengers. Here we show that in primary cultures of embryonic rat striatum, excitatory amino acid receptor stimulation increases cyclic GMP intracellular concentration and the magnitude of this response depends upon the time in culture. Formation of cyclic GMP appears to be mediated by both N-methyl-D-aspartate (NMDA) and non-NMDA type excitatory amino acid receptors, it is blocked by specific excitatory amino acid antagonists and requires extracellular Ca++. The effect mediated via the NMDA receptor is also regulated by extracellular Mg++. These results show that excitatory amino acids make use of cyclic GMP for signal transduction in striatal neurons in vitro. We suggest that cyclic GMP may be an independent second messenger possibly important in the development of a defined population of striatal neurons.

Amino Acids↗

Chemistry and mode of action of macrolides.

After the discovery of erythromycin and other natural compounds, including oleandomycin, spiramycin, josamycin and midecamycin, much research has been devoted to synthesizing derivatives or analogues with improved chemical, biological and pharmacokinetic properties. These new macrolides are semisynthetic molecules that differ from the original compounds in their substitution pattern of the lactone ring system. The chemical structure of macrolides is characterized by a large lactone ring containing from 12 to 16 atoms to which are attached, via glycosidic bonds, one or more sugars. The lactone ring is substituted by hydroxyl or alkyl groups, one ketone at C7 in 12-membered macrolides and at C9 in 14-membered macrolides, and one aldehyde group in 16-membered macrolides. The only compound with a 15-membered ring contains a tertiary amino group. Although the 12-membered macrolides have never become important in clinical practice, in recent years numerous new 14-membered macrolide derivatives of erythromycin A have shown improved pharmacokinetics due to chemical modifications of a hydroxyl group at C6, a proton at C8, or a ketone at C9. Derivatives, such as dirithromycin, roxithromycin, clarithromycin and flurithromycin, have all been synthesized with the aim of inhibiting their decomposition under acidic conditions to inactive anhydrohemiketal derivatives. A new 15-membered macrolide, azithromycin, with a methylated nitrogen inserted into the lactone ring shows good activity against Gram-negative bacteria. The efforts expended in chemical and biochemical modifications of 16-membered macrolides have been less successful, with only a few new molecules, such as rokitamycin and miocamycin, showing improved bioavailability and activity against some resistant micro-organisms.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Bacterial Agents↗

Pharmacokinetics of azithromycin in patients with impaired hepatic function.

The pharmacokinetics of azithromycin were determined over a 192-h period following oral administration of a single 500-mg dose to six healthy volunteers and to 16 cirrhotic patients (ten class A and six class B; Pugh's classification). Plasma and urinary levels were determined by microbiological assay. The mean Cmax, obtained 2-3 h after administration, was 0.29 mg/L in volunteers, and 0.39 and 0.51 mg/L in class A and class B cirrhosis, respectively. The elimination half-life was 53.5 h in control subjects, and 60.6 and 68.1 h in class A and class B cirrhotic patients, respectively. The mean residence time was significantly higher in class B patients, but AUC, Vd, Cltot and Clr values appeared to be similar in all groups. The mean urinary recovery of azithromycin at 192 h varied from 11-15.7%, and did not differ significantly among groups. These results demonstrate that azithromycin pharmacokinetics do not differ consistently in patients with mild or moderate hepatic impairment in comparison with healthy volunteers. Therefore, no dosage modifications of azithromycin seem to be required for patients with class A or B liver cirrhosis.

Adult↗

Regional and systemic prophylaxis with teicoplanin in monolateral and bilateral total knee replacement procedures: study of pharmacokinetics and tissue penetration.

Twenty-four patients undergoing monolateral or bilateral total knee replacement (TKR) procedures were randomized to receive teicoplanin (T) either systemically or regionally. Subjects scheduled for systemic prophylaxis and undergoing monolateral (six patients) or bilateral (five patients) TKR received a single 800-mg dose of T in 100 ml of saline as a 5-min infusion into a forearm vein 2.5 h before surgery. For regional prophylaxis, patients undergoing monolateral surgery (eight subjects) received 400 mg of T in 100 ml of saline as a 5-min infusion into a foot vein of the leg to be operated on immediately after the tourniquet was inflated. For the five patients scheduled for bilateral operation and regional prophylaxis, the administration of T was also repeated for the second knee operation. The tourniquet, as the standard TKR surgical technique, was inflated to 400 mm Hg (c. 50 kPa) in all 24 patients immediately before the beginning of surgery and kept in place for the duration of the operation. Samples of serum, bone, skin, synovia, and subcutaneous tissue were collected at timed intervals during surgery. They were microbiologically assayed for T by using Bacillus subtilis as the test organism. Overall, the mean T concentrations obtained with regional route prophylaxis were found to be 2 to 10 times higher than those achieved following systemic prophylaxis. Moreover, peak levels in different tissues after regional prophylaxis were significantly higher (P < 0.05). None of the patients experienced adverse effects due to regional or systemic T administration; no prosthetic or wound infections were observed in the follow-up period (from 12 to 26 months).

Aged↗

Adverse effects of macrolide antibacterials.

The renewed interest in macrolide antibacterials with expanded indications for clinical use, as well as their markedly increased usage, justifies the continuous search for new compounds designed to offer the patient not only enhanced bioavailability but also a reduced incidence of adverse effects. Macrolides are an old and well established class of antimicrobial agents that account for 10 to 15% of the worldwide oral antibiotic market. Macrolides are considered to be one of the safest anti-infective groups in clinical use, with severe adverse reactions being rare. Newer products with improved features have recently been discovered and developed, maintaining or significantly expanding the role of macrolides in the management of infection. This review deals with the tolerability of the clinically available macrolide antibacterials. With the exception of drug interactions, adverse effects have been analysed during the last 40 years in many thousands of adult and paediatric patients. Recently developed derivatives have been compared with the older compounds, and the expected and well assessed adverse effects have been set apart from those which are unusual, very rare or questionable. Gastrointestinal reactions represent the most frequent disturbance, occurring in 15 to 20% of patients on erythromycins and in 5% or fewer patients treated with some recently developed macrolide derivatives that seldom or never induce endogenous release of motilin, such as roxithromycin, clarithromycin, dirithromycin, azithromycin and rikamycin (rokitamycin). Except for troleandomycin and some erythromycins administered at high dose and for long periods of time, the hepatotoxic potential of macrolides, which rarely or never form nitrosoalkanes, is low for josamycin, midecamycin, miocamycin, flurithromycin, clarithromycin and roxithromycin; it is negligible or absent for spiramycin, rikamycin, dirithromycin and azithromycin. Transient deafness and allergic reactions to macrolide antibacterials are highly unusual and have definitely been shown to be more common following treatment with the erythromycins than with the recently developed 14-, 15- and 16-membered macrolides. There have been case reports in the literature of 51 patients during the last 30 years who experienced uncommon or dubious adverse effects after treatment with older compounds and in which there appears to be strong evidence of a causal relationship with the drug. Only 3 cases had an unfavourable outcome, and these were patients administered erythromycin lactobionate intravenously too rapidly or at high dose. Targets of these occasional reactions are generally the heart, liver and central nervous system. Other unusual organ pathologies are related to immunomediated disorders more than to primary parenchymal toxicity, or to the rarely serious consequences of macrolide-induced alterations in intestinal microflora.(ABSTRACT TRUNCATED AT 400 WORDS)

Anti-Bacterial Agents↗

In vitro brodimoprim activity on nosocomial bacterial strains.

The activity of brodimoprim, a new diaminopyrimidine, against 385 recent clinical isolates of Gram-positive cocci and Gram-negative bacilli was in vitro tested by the disk sensitivity test (DST) of Bauer et al. with disk concentration of 2.5 micrograms and by the agar dilution method. The postantibiotic effect (PAE) and the postantibiotic leukocyte killing enhancement (PALE) were determined on selected pathogens. The MICs were determined with Müller Hinton II agar (BD) and a multipoint inoculator (Denley A 400); thymidine phosphorylase (0.08 U/ml) was added to the test agar. Brodimoprim was very active against S. pyogenes (27), Salmonella sp. (30), methicillin susceptible S. aureus (36) and E. faecalis (34). The geometric means (GM) of MICs ranged from 0.08 to 0.63 and % of resistance from 0.0 to 14.7. Higher MICs (GM from 1.02 to 2.67) were shown against Citrobacter sp. (32), Klebsiella sp. (27), E. coli (36), methicillin-resistant S. aureus (33), Enterobacter sp. (32), Proteus sp. (31) and methicillin-susceptible coagulase negative staphylococci (34); resistant strains ranged from 18.7 to 41.2%. The in vitro activity against methicillin-resistant coagulase-negative staphylococci (33) (72.7% of resistance to brodimoprim) was very low. Regression analysis, obtained correlating the results of MICs with those of agar diffusion, shows that the resistant strains have a diameter less than 11 mm, the intermediate ones a diameter of 11-13 mm and susceptible strains a diameter greater than 13 mm. The PAE was determined using the Abbott AVANTAGE system. Strains were exposed to brodimoprim (1/4 x MIC - 4 x MIC range) for 2 or 6 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Cross Infection↗

Pharmacokinetics and blister fluid penetration of brodimoprim in adults.

We investigated the pharmacokinetic properties of brodimoprim (B), a new diaminopyrimidine, including its penetration into suction blister fluid (SBF) after a single or multiple oral dose in 15 patients with a mean age of 61.5 +/- 9.3 yrs, suffering from respiratory tract infections with normal renal and hepatic function. Patients were divided into 3 groups of 5 cases each, according to treatment plan: Group I = B 400 mg single dose day 1; Group II = B 400 mg qD day 1 and 200 mg qD days 2 to 4; Group III = B 200 mg BID day 1 and 200 mg qD days 2 to 4. Concentrations were determined microbiologically using B. subtilis ATCC 6633 as the test organism with a lower limit of sensitivity of 0.37 mg/l. With a single oral dose of 400 mg (Group I) a computed serum Cmax of 2.9 +/- 0.6 mg/l was observed 5.6h after administration, with a elimination half-life (t1/2 beta) of 32.3 +/- 4.1 h. In SBF a mean peak of 1.9 +/- 0.6 mg/l was reached after 6h with a t1/2 beta of 34.7 +/- 5.4 h and a penetration index (Pl), obtained by the AUCSBF/AUCs percent ratio of 61%. With multiple doses serum peak concentrations increased significantly, while the time to reach the peak (Tmax) was shorter (3.7-4.2 h) than after a single dose. Main kinetic parameters, such as t1/2 beta, mean residence time (MRT), elimination rate constant (Kel) and AUC, were significantly higher in Group II and III patients than in Group I cases. Similar differences were observed among the main SBF kinetic parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

In vitro effects of brodimoprim on human polymorphonuclear leukocyte functions. Preliminary results.

The in vitro effects of brodimoprim and trimethoprim on the functions of human polymorphonuclear (PMN) leukocytes have been studied comparatively evaluating chemotaxis, phagocytosis and production of superoxide anion. No significant effects of both diaminopyrimidines on chemotaxis and phagocytic activity of PMNs have been observed while both brodimoprim and trimethoprim enhanced the oxidative burst. A synergistic activity between the host immune system and the direct antimicrobial action of brodimoprim may occur while using this diaminopyrimidine in vivo.

Cells, Cultured↗

Domoic acid-containing toxic mussels produce neurotoxicity in neuronal cultures through a synergism between excitatory amino acids.

In 1987, an intoxication by cultured mussels produced neurological problems, such as headache, confusion, and loss of memory, particularly severe at times. Neuronal damage was found in the hippocampus and amygdala of four patients. The intoxication was attributed to the presence in mussels of domoic acid, a rare excitatory amino acid acting at the non-NMDA receptor. We now report that a domoic acid-containing mussel extract is more neurotoxic for cultured neurons than purified domoic acid. Moreover, we show that this increase in neurotoxicity is selectively due to domoic acid potentiation of the excitotoxic effect of glutamic acid and aspartic acid present in high concentrations in mussel tissue. We also show that subtoxic concentrations of domoic acid are sufficient to potentiate glutamic acid and aspartic acid neurotoxicity, and we present evidence suggesting that the neurotoxic synergism may occur through a reduction of the voltage-dependent Mg2+ block at the NMDA receptor-associated channel, following activation of non-NMDA receptors by domoic acid. Thus, based on our results, we suggest that the contemporary presence in the brain of concentrations of domoic acid insufficient alone to be toxic, together with excitatory amino acids, of endogenous and eventually of diet-related origin, may have been relevant in the occurrence of the neurological problems reported.

Amino Acids↗

Pharmacokinetic drug interactions of macrolides.

The macrolide antibiotics include natural members, prodrugs and semisynthetic derivatives. These drugs are indicated in a variety of infections and are often combined with other drug therapies, thus creating the potential for pharmacokinetic interactions. Macrolides can both inhibit drug metabolism in the liver by complex formation and inactivation of microsomal drug oxidising enzymes and also interfere with microorganisms of the enteric flora through their antibiotic effects. Over the past 20 years, a number of reports have incriminated macrolides as a potential source of clinically severe drug interactions. However, differences have been found between the various macrolides in this regard and not all macrolides are responsible for drug interactions. With the recent advent of many semisynthetic macrolide antibiotics it is now evident that they may be classified into 3 different groups in causing drug interactions. The first group (e.g. troleandomycin, erythromycins) are those prone to forming nitrosoalkanes and the consequent formation of inactive cytochrome P450-metabolite complexes. The second group (e.g. josamycin, flurithromycin, roxithromycin, clarithromycin, miocamycin and midecamycin) form complexes to a lesser extent and rarely produce drug interactions. The last group (e.g. spiramycin, rokitamycin, dirithromycin and azithromycin) do not inactivate cytochrome P450 and are unable to modify the pharmacokinetics of other compounds. It appears that 2 structural factors are important for a macrolide antibiotic to lead to the induction of cytochrome P450 and the formation in vivo or in vitro of an inhibitory cytochrome P450-iron-nitrosoalkane metabolite complex: the presence in the macrolide molecules of a non-hindered readily accessible N-dimethylamino group and the hydrophobic character of the drug. Troleandomycin ranks first as a potent inhibitor of microsomal liver enzymes, causing a significant decrease of the metabolism of methylprednisolone, theophylline, carbamazepine, phenazone (antipyrine) and triazolam. Troleandomycin can cause ergotism in patients receiving ergot alkaloids and cholestatic jaundice in those taking oral contraceptives. Erythromycin and its different prodrugs appear to be less potent inhibitors of drug metabolism. Case reports and controlled studies have, however, shown that erythromycins may interact with theophylline, carbamazepine, methylprednisolone, warfarin, cyclosporin, triazolam, midazolam, alfentanil, disopyramide and bromocriptine, decreasing drug clearance. The bioavailability of digoxin appears also to be increased by erythromycin in patients excreting high amounts of reduced digoxin metabolites, probably due to destruction of enteric flora responsible for the formation of these compounds. These incriminated macrolide antibiotics should not be administered concomitantly with other drugs known to be affected metabolically by them, or at the very least, combined administration should be carried out only with careful patient monitoring.(ABSTRACT TRUNCATED AT 400 WORDS)

Anti-Bacterial Agents↗

Teicoplanin--its role as systemic therapy of burn infections and as prophylaxis for orthopaedic surgery. Italian Study Groups for Antimicrobial Prophylaxis in Orthopaedic Surgery and Burns.

Two randomized studies have been initiated to establish the role of teicoplanin as systemic therapy for infections in burns patients and as short-term prophylaxis for orthopaedic implant surgery. Opportunistic micro-organisms causing infections in burn patients are often acquired in hospital. These infections commonly involve Gram-positive organisms which may be resistant to several antibiotics. Teicoplanin, alone and in combination with additional antibacterial drugs, is effective in the treatment of Gram-positive infections of various types. In addition, teicoplanin has proved useful as prophylaxis against infection in orthopaedic surgery. Deep prosthetic infections are very difficult to cure without removing the infected device; the outcome can be devastating, such as total loss of joint function, amputation, and, occasionally, death. Preliminary results from the two studies are encouraging and show that teicoplanin has a role to play both in treatment of infection and as prophylaxis against hospital-acquired infection.

Adult↗

Assembly of adenovirus type 2 fiber synthesized in cell-free translation system.

Physicochemical and functional analyses of the translation products of fiber mRNA in rabbit reticulocyte lysate suggested that fiber polypeptide chains (monomers) were capable of self-assembling in vitro, forming trimeric fibers (trimers) without direct intervention of any other adenovirus-coded protein or cell nuclear matrix component. Kinetic studies showed that trimer formation occurred at a rate six times lower than that of fiber polypeptide synthesis. Fiber assembly was found to be relatively inefficient in vitro, with only 25-30% fiber polypeptides trimerized after 4-h translation reaction. The rate constant for fiber subunit assembly, extrapolated from the kinetic curves of trimer formation, was found to be in the order of magnitude of 10(5) M-1 s-1, with a t 1/2 of 1.3 h at 30 degrees C. A latence phase of approximately 40 min in the appearance of the first detectable trimers indicated that fiber assembly did not occur co-translationally, suggesting the existence of rate-limiting intermediate step(s) during assembly.

Adenoviruses, Human↗