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Biomedical subjects

D Delapierre

Publications and source records attributed to D Delapierre.

9 recordsLinked to original sources

Effect of intermittent and continuous exposure to electromagnetic fields on cultured hippocampal cells.

This study was designed to assess the effect of 50 Hz electromagnetic fields (EMFs) on hippocampal cell cultures in the presence or absence of either sodium nitroprusside (SNP, a NO donor) or Fe2+ induced oxidative stress. One week old cultured rat hippocampal cells were exposed to either intermittent EMFs (IEMFs, 50 Hz, 0-5 mT, 1 min ON/OFF cycles, repeated 10 times every 2 h, 6 times/day during 48 h) or continuous EMFs (CEMFs, 50 Hz, 0-5 mT for 48 h). In a second set of experiments, the effect on such EMFs applied in combination with oxidative stress induced by 0.5 microM Fe2+ or SNP was estimated. At the end of both sets of experiments, cell mortality was assessed by lactate dehydrogenase measurements (LDH). Neither type of exposure to EMFs was observed to modify the basal rate of cell mortality. The exposure to CEMFs in presence of either NO or Fe2+ did not induce any significant increase in cell death. However, when cells were exposed to EMFs in the presence of NO, we observed a significant increase in cell death of 11 and 23% (P<0.001) at 2.5 and 5 mT, respectively. This effect had some specificity because IEMFs did not modify the effect of Fe2+ on cell mortality. Although the effects of IEMFs reported in this study were only observed at very high intensities, our model may prove valuable in trying to identify one cellular target of EMFs.

Cell Death↗

Pirlindole and dehydropirlindole protect rat cultured neuronal cells against oxidative stress-induced cell death through a mechanism unrelated to MAO-A inhibition.

It has been shown that the MAO (monoamine oxidase)-B inhibitor deprenyl (DPR, selegiline) protects some cell types against oxidative stress. By decreasing H(2)O(2) production, MAO-A inhibitors could also reduce oxidative stress. This study reports the effect of the MAO-A inhibitors, pirlindole (PIR), dehydropirlindole (DHP), brofaromine (BRO) and moclobemide (MCL) on primary-cultured brain cells exposed to iron-mediated toxicity. A comparison with trolox (TRO), a hydrosoluble vitamin-E analogue that protects against such an induced stress, was performed. Rat hippocampal or cortical cultured cells were exposed either to 2 microM FeSO(4) alone or in the presence of PIR, DHP, BRO, DPR, MCL or TRO. Cell survival (lactate-dehydrogenase measurements, 16 h incubation), intracellular peroxide production (DCF-fluorescence, 1 h incubation), lipoperoxidation (TBARS-fluorescence, 6 h incubation) and mitochondrial function (MTT-test, 16 h incubation) were assessed. PIR, DHP and TRO significantly protected cultures (P<0.05) against Fe(2+)-induced toxicity in a concentration-dependent manner. The EC(50s) of these compounds were 6, 12 and 19 microM, respectively, in hippocampal cells. For cortical cell cultures incubated in the presence of iron and PIR or DHP, EC(50s) were 5 and 6 microM respectively. All Hill coefficients were close to unity. BRO, MCL and DPR were not protective in any type of culture. The IC(50s) for the inhibition of MAO-A were 2, 2 and 0.2 microM for PIR, DHP and BRO, respectively. PIR, DHP and TRO, but not DPR, induced a significant decrease in both intracellular peroxide production and lipoperoxidation. They also improved mitochondrial function. These experiments show that PIR and DHP can protect hippocampal and cortical neurons against oxidative stress at pharmacologically relevant concentrations. This protective effect seems unrelated to inhibition of MAO-A, but possibly involves free radical scavenging.

Animals↗

Propofol protects cultured brain cells from iron ion-induced death: comparison with trolox.

The anesthetic propofol (PPF) has been shown to be an antioxidant in acellular experiments. This study was designed to assess the ability of PPF to protect primary-cultured brain cells against iron-mediated toxicity. A comparison with trolox (TX), a hydrosoluble vitamin E analogue, was performed. Rat cortical cells were exposed to 10 microM FeSO(4), PPF and/or TX. After a 4-h incubation, PPF and TX improved cell survival (lactate dehydrogenase measurements) in a concentration-dependent manner. The respective EC(50s) of each substance were 4 and 4.6 microM. The maximal effect was obtained at a 25-microM concentration which is similar to concentrations of PPF used clinically. The combination of both drugs at certain concentrations showed a complete protection of the cells, a significant decrease in intracellular peroxide production (dichloro-fluorescein diacetate (DCF-DA) fluorescence, 4-h incubation), in lipoperoxidation (thiobarbituric acid reactive substances fluorescence, PPF 6.25 microM+TX 12.5 microM) and an additive protective effect. This was true after 4- and 16-h incubation. These data suggest that PPF is neuroprotective. Moreover, the combination with a vitamin E analogue confers long duration protection against oxidative stress.

Animals↗

A subtractive hybridization method to isolate tissue-specific transcripts: application to the selection of new brain-specific products.

A method based on subtractive hybridization of brain complementary DNAs with peripheral messenger RNAs has enabled us to construct an enriched brain-specific cDNA library. Single-stranded cDNAs (ssc DNAs) were synthesized from brain polyadenylated mRNAs and subsequently hybridized with peripheral mRNAs immobilized on nitrocellulose membrane. Unhybridized sscDNAs were converted into double-stranded cDNAs and cloned into plasmid pUC13. The screening of the resulting library showed that a high percentage of the cloned cDNAs corresponded to mRNAs specifically transcribed in the brain.

Animals↗

Cloning and partial sequencing of a new rat brain specific cDNA.

In order to find brain specific transcripts in a pUC13 cDNA library prepared from rat brain cytoplasmic poly(A)+ RNAs, the following steps were observed: 1. Randomly chosen cDNA clones from the brain library were screened by radiolabelled single stranded cDNAs (sscDNAs) prepared from liver, spleen, kidney and intestine mRNAs. 2. The brain clones containing genetic information shared with the peripheral organs were discarded. 3. After hybridization of the remaining clones with radiolabelled sscDNAs prepared from rat brain poly(A)+ RNAs, 210 possibly brain specific clones were selected. 4. Plasmids containing cDNA of each of these clones were purified and after estimation of their cDNA sizes, clones containing inserts of at least 500 base pairs (bp) were used as radiolabelled probes against rat brain, liver, spleen, kidney and intestine poly(A)+ RNAs spotted onto nitrocellulose filters (dot blot analysis). 5. By using this screening procedure, several brain specific clones were obtained. One of them (clone III 25) is presently subjected to sequencing in M13 phage. 6. A computer analysis of the partial sequence so far obtained gives no significant homology to the 15.000 genes contained in Genebank and EMBL data bank. It seems therefore that we have isolated a new brain specific cDNA coding for a not yet described peptide.

Animals↗

Transmammary passage of cefoxitin: additional results.

It has been shown previously that cefoxitin was not detectable in the milk following an intramuscular injection of 1 Gm to mothers. In the present study, using a more sensitive HPLC method, we have shown in five women that low concentrations of cefoxitin (0.25 to 0.65 micrograms/ml) are measured in the milk after the intramuscular injection of 2 Gm.

Cefoxitin↗

Pharmacokinetics of oral dipyridamole (Persantine) and its effect on platelet adenosine uptake in man.

Two preparations of dipyridamole have been studied by oral administration to 11 normal volunteers. The plasma levels of dipyridamole and its glucuronide were determined simultaneously by high performance liquid chromatography. The instant form (I.F., 100 mg) was administered four times daily and the slow release preparation (SRP, 200 mg) twice daily, for 3 days. Multiple blood samples were collected on Days 1-4 to provide plasma for assay, and simultaneously, platelet rich plasma was prepared for ex vivo study of the effect of dipyridamole on platelet uptake of adenosine. The pharmacokinetics of absorption and distribution of dipyridamole were described using a two compartment model with lag time and prolonged absorption. Strong inhibition of the platelet adenosine uptake was observed at therapeutic plasma levels. The inhibition of platelet adenosine uptake may be related to some of the pharmacological properties of dipyridamole.

Absorption↗

Pharmacokinetics of mexiletine in renal insufficiency.

1 The aim of this study was to evaluate the influence of renal insufficiency on the plasma pharmacokinetics of mexiletine, a new antiarrhythmic agent, in human beings. 2 Mexiletine was administered orally three times daily for 10 days to 15 patients with chronic renal failure (creatinine clearance lower than 30 ml/min) and to 9 subjects with normal renal function. 3 The use of low doses of mexiletine was possible owing to the development of a new fluorescence h.p.l.c. method with a limit of sensitivity lower than 20 gn/ml. 4 Our results clearly indicate that the plasma kinetics of mexiletine are not modified when the renal clearance of creatinine is higher than 10 ml/min.

Aged↗

A study of the transplacental transfer and the mammary excretion of cefoxitin in humans.

Cefoxitin is a new semisynthetic cephamycin derivative with broad bactericidal activities. In order to determine the extent of the transplacental transfer of cefoxitin, 35 pregnant women received 1 Gm cefoxitin intramuscularly 15 to 180 minutes before normal or Caesarean delivery. Cefoxitin was measured microbiologically in maternal blood (multiple-time samples), umbilical blood (one-time sample), and amniotic fluid in the cases of Caesarean sections. The mammary excretion of cefoxitin injected at the same dose was investigated by measuring cefoxitin in the milk of 16 nursing mothers. In the maternal blood, a peak plasma level of approximately 25 microgram/ml was reached 30 minutes after the 1-Gm intramuscular injection. A clear-cut passage of cefoxitin in the umbilical cord blood was demonstrated. In the fetal blood, a peak level of 15 microgram/ml was obtained 45 minutes after the injection. No cefoxitin was detectable in any of the milk samples from 30 minutes to 24 hours after the 1-Gm intramuscular injection.

Adolescent↗