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Biomedical subjects

G Renault

Publications and source records attributed to G Renault.

At least 19 recordsLinked to original sources

Prenatal diagnosis in a subset of trichothiodystrophy patients defective in DNA repair.

Trichothiodystrophy (TTD) is an autosomal recessive disorder characterized by brittle hair with reduced sulphur content, and mental and physical retardation. Numerous additional clinical features may be present, producing a very heterogeneous syndrome. Many cases exhibit ichthyosis and photosensitivity. Cells from photosensitive TTD patients show reduced DNA repair levels similar to those found in xeroderma pigmentosum. TTD patients have a short life expectancy, and no treatment is known or envisaged. We report the prenatal diagnosis of TTD in two French families, based on DNA repair measurements in trophoblasts or amniotic cells, with later confirmation by microscopic analysis of the fetal hairs. Although the DNA repair defect was less marked in the fetal cells when compared with fibroblasts from the index case, measurement of DNA repair by unscheduled DNA synthesis provided unambiguous evidence of defective DNA repair in the fetal cells. This method is therefore a suitable prenatal diagnostic test for those TTD families in which a DNA repair defect has been identified.

Adult

In situ NADH laser fluorimetry during muscle contraction in humans.

The aim of the present study was to use nicotinamide adenine dinucleotide phosphate, reduced (NADH) fluorimetry, to investigate in situ NADH changes during muscle contraction in humans on an isokinetic dynamometer. Thirteen healthy male subjects each performed one maximal voluntary contraction (MVC) with the knee extensor muscle. The NADH muscle fluorescence was monitored by a double beam laser fluorimeter which uses an optical fibre, percutaneously inserted through a needle into the vastus lateral muscle, to guide the light. The NADH fluorescence was continuously measured at a wavelength of 337 nm. To estimate the haemodynamic artefact, blood backscattering was simultaneously determined at a wavelength of 586 nm. The fluorescence signal was recorded before, during and after contractions at 50% of MVC. The fibre was kept out of contact with the muscle during contractions at 100% of MVC and was only put into contact with it at the end of the contraction. At the onset of contractions at 50% of MVC, NADH fluorescence increased rapidly for 3 s and remained stable thereafter until exhaustion. After a muscle measurement had been made, the optical fibre was put successively into solutions of increasing NADH concentration to ascertain the relationship between the muscle fluorescence signal and the muscle NADH level. This procedure yielded estimated mean values for muscle NADH of 0.172 mmol.kg-1, SEM 0.028 and of 0.184 mmol.kg-1, SEM 0.027 after contractions at 50% and 100% of MVC, respectively, from a resting value of 0.087 mmol.kg-1, SEM 0.015. These results indicated that in situ laser fluorimetry could be used to evaluate NADH changes in humans during muscle contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Mutagenic properties of a unique abasic site in mammalian cells.

The mutagenic properties of a true unique abasic site located opposite a guanine residue were studied. An oligonucleotide containing a chemically-produced abasic site was inserted into a shuttle vector able to replicate both in simian cells and in bacteria. Plasmid DNA was rescued from simian cells and screened in bacteria by differential hybridization with a labelled oligonucleotide probe. Mutations were easily detected and sequenced. Results showed that opposite a guanine the abasic site was error free repaired or replicated by mammalian cells with an efficiency of 99%. Point mutations occurred at a frequency of approximately 1% in control host cells and at more than 3% in UV-pre-irradiated host cells. Adenine, cytosine or thymine were found to have been inserted opposite the abasic site. No preferential insertion for a particular base was observed in contrast to that reported in bacteria.

Animals

Mammalian cell processing of a unique uracil residue in simian virus 40 DNA.

The processing of a unique uracil in DNA has been studied in mammalian cells. A synthetic oligodeoxyribonucleotide carrying a potential Bgl II restriction site, where one base has been substituted with a uracil, was inserted in the early intron of SV40 genome. Various heteroduplexes were constructed in such a manner that the restitution of an active Bgl II restriction site corresponds in each case to the specific substitution of the uracil by one of the four bases normally present in the DNA. DNA cuts by this restriction enzyme in one or several constructed heteroduplexes immediately determine the type of base pair substitution produced at the site of the U residue. When the uracil is inserted opposite a purine it is fully repaired; when facing a guanine it is replaced by a cytosine and opposite an adenine it is replaced by a thymine. These results indicate the error-free repair of uracil when it appears in the cell with the usual mechanisms such as cytosine deamination or incorporation of dUTP in place of dTTP during replication. When the uracil is inserted opposite a pyrimidine no error free repair at all is detected for U:C or U:T mismatches. It appears, moreover, that in approximately 18% of the cases U:T mismatch leads to a C:G base pairing. In the majority of the U:pyrimidine mismatches, mutations occur in the vicinity of the uracil, including base substitutions and frameshifts by addition of one or several bases.

Animals

Activated oncogenes in human skin tumors from a repair-deficient syndrome, xeroderma pigmentosum.

The recessive autosomal hereditary disease, xeroderma pigmentosum (XP), is characterized by a high incidence of tumors in sun-exposed skin. The defect in early steps of excision repair of XP cells leads to hypermutability towards UV-mimicking agents. DNA from eight XP tumors were screened for activated transforming genes using 3T3 transfection. In two skin tumors isolated from a XP child, an activated N-ras oncogene was detected. Synthetic oligonucleotide probes were used to characterize the mutation in the ras gene. Both tumors were found to be mutated in the 61st N-ras codon from gln to his. The mutation was accompanied by an increase in the level of N-ras specific mRNA and in one transformant, by the alteration of the p21 protein. In the same tumors, c-myc amplification and over transcription, and Ha-ras gene rearrangement and amplification were also detected. Analysis of other XP tumors with eleven different oncogene probes revealed an amplification of the Ha-ras gene in 6 out of 10 cases. The normal skin fibroblasts from XP patients show normal pattern levels of N-ras, c-myc and Ha-ras sequences. The hypothesis is proposed that the presence of several oncogene alterations in the same tumor could be due to the high amount of UV-induced DNA lesions found in the exposed skin cells, in the absence of efficient repair.

DNA

Enhanced deoxyribonuclease activity in human transformed cells and in Bloom's syndrome cells.

Human hereditary diseases such as xeroderma pigmentosum, Fanconi's anemia, ataxia telangiectasia, and Bloom's syndrome are characterized by a proneness for developing cancer associated with abnormalities in the processing of DNA damage. The molecular defects responsible for predisposing human tissues to cancer are still not well understood, despite the fact that a considerable amount of work has already been done on this problem. In this paper, we show that in human tumor cell lines, in cells transformed by DNA tumor viruses, and in cells derived from certain cancer-prone disorders, the level of activity of a 42-kDa deoxyribonuclease is many times higher than in diploid untransformed control cells. This suggests that this activity is linked to, or may play a role in, malignant transformation.

Animals

Increase of sister chromatid exchanges in excision repair deficient xeroderma pigmentosum.

The distribution of spontaneous sister chromatid exchanges (SCEs) was studied in PHA-stimulated lymphocytes from 15 patients affected by xeroderma pigmentosum (XP). The study of unscheduled DNA synthesis (UDS) in twelve of these patients showed that seven were deficient and five proficient. The number of SCEs in XP patient cells was higher than in those of 19 controls, and the distributions of SCEs per cell were significantly different. However, the results varied when XP patients were considered in relation to their UDS: the group of XP patients with proficient UDS did not differ, whereas the group of XP patients with deficient UDS was very significantly different from controls. The group not tested for UDS was similar to the deficient UDS group. The possible relationship between the increase of SCEs and the type of DNA repair defect is discussed.

Adolescent

In situ NADH laser fluorimetry of rat fast- and slow-twitch muscles during tetanus.

To investigate the variations of oxidation-reduction status of fast- and slow-twitch muscles during intense contractions, we performed in situ NADH laser fluorimetry during 25-s tetanus in extensor digitorum longus (EDL) and in soleus (SOL) muscles of eight Sprague-Dawley rats anesthetized with pentobarbital sodium. At base line the compensated NADH fluorescence (F0) was not significantly different between EDL and SOL. In EDL, tetanic stimulation induced an increase of F0, which rapidly reached a plateau that was 124% over the base-line value and stable until the end of the stimulation. In SOL, after an initial shouldering there was a continuous increase of F0 until the end of tetanus, reaching 275% of the base-line value. After the stimulation the initial rate of recovery was significantly faster in SOL than in EDL. We conclude that during and after intense contraction the variation of NADH content vs. time can be evaluated by in situ NADH laser fluorimetry in different muscle types. This nondestructive method can be helpful to differentiate in situ the various physiological or pathological oxidative capabilities of skeletal muscles.

Animals

[Laser fluorimetry of NADH].

Laser fluorimetry of reduced nicotinamide adenine-dinucleotide (NADH) in situ is a new technique used for real-time studies of the degree of reduction of the first link in the mitochondrial respiration chain. We present here the first results obtained in animal experiments and in clinical exploration: In rats, coronary occlusion produces a substantial rise in mitochondrial NADH, followed by a fall below basal level during reperfusion. Tetanic contraction of slow-twitch muscles in rats results in a rise in NADH level higher than that produced by contraction of fast-twitch muscles. During coronary angiography, injection of the contrast medium induces a rise in NADH in patients with a significant degree of coronary stenosis. Intravenous nitroglycerin reduces both left ventricular end-diastolic pressure and NADH fluorescence concomitantly, due to preferential distribution of the coronary blood flow to sub-endocardial layers. Exercise-induced ischaemia results in a decrease of muscular NADH concentration in Mc Ardle syndrome, due to phosphorylase deficiency.

Animals

Sequence effect on alkali-sensitive sites in UV-irradiated SV40 DNA.

Ultraviolet light at 254 nm induces various kinds of DNA damage. We have located and quantified the pyrimidine (6-4) pyrimidone photoproducts along three hundred and forty two nucleotides of SV40 DNA. The level of photoproduct induction varies greatly according to the position on the DNA, but unlike what happens with pyrimidine dimers, the very adjacent nucleotides do not play a major role in the frequency of formation. A new alkali-sensitive site has been found on the ACA sequence after UV irradiation. This complex lesion is insensitive to the T4 endonuclease V and the E. coli photolyase, and may be involved with mutagenesis.

Bacterial Proteins

In vivo exposure to four ellipticine derivatives with topoisomerase inhibitory activity results in chromosome clumping and sister chromatid exchange in murine bone marrow cells.

A single dose of 9-hydroxy-ellipticine, 2-N-methyl-9-hydroxy-ellipticine, 9-fluoro-ellipticine, and 9-amino-ellipticine (5 to 10 mg/kg body wt, ip) resulted in murine bone marrow toxicity as shown by chromosome clumping, chromatid aberrations, and micronuclei formation. An increase in sister chromatid exchanges (SCE) was also observed. These effects are most likely directly related to the topoisomerase inhibitory effect of these drugs since topoisomerase II is involved in the separation of intertwined chromosomal DNA molecules during mitosis as well as being a mediator of DNA exchanges. The two antitumor drugs 2-N-methyl-9-hydroxy-ellipticine and 9-hydroxy-ellipticine were most genotoxic with chromosome abnormalities occurring in 33-95% of the cells and SCE on the order of 12.3 to 19.2 events per cell. Both of these drugs show high topoisomerase II inhibitory activity in vitro. In contrast, 9-amino-ellipticine and 9-fluoro-ellipticine were less genotoxic with chromosomal abnormalities occurring in 14-17% of the cells and SCE on the order of 7.1 to 7.7 events per cell. These two derivatives are both inactive toward experimental tumors and show less topoisomerase II inhibitory activity in vitro. Our results suggest that the ellipticine drugs owe at least some of their cytotoxicity to their genotoxic effects, which seem to be mediated through interaction with topoisomerase II.

Alkaloids

NADH in situ laser fluorimetry: effect of pentobarbital on continuously monitored myocardial redox state.

NADH laser fluorimetry was applied to in situ monitoring of pentobarbital overload effect on myocardial redox state in rats. Experiments were carried out on open-chest rats anesthetized with pentobarbital. Use of very thin optical probes allowed measurements of NADH fluorescence directly within the myocardial wall. Quantitative analysis of fluorescent and backscattered light signals was made possible on-line. In 8 animals, a slow IV infusion of 6% pentobarbital (2 mg.min-1 for 10 min) induced an average twofold increase in NADH fluorescence, with constant return to baseline level prior to injection after a maximum period of 50 min. Thus, pentobarbital overload strongly affects the myocardial energetic state, and this effect was precisely evaluated with NADH fluorescence monitoring. In situ-monitored myocardial redox state variations during pentobarbital infusion can constitute a reference for similar studies on pharmacological agents aimed at protecting tissues against ischemic biochemical damages.

Animals

[Study of myocardial metabolism of NADH by laser fluorimetry during cardiac catheterization].

Laser fluorimetry of reduced nicotinamide-adenine-dinucleotide (NADH) p6 a new technique used for in situ and real-time study of myocardial metabolism. We have evaluated its applicability to clinical situations in 5 patients undergoing haemodynamic exploration. An optic fibre was inserted in a catheter the end of which was positioned in the postero-diaphragmatic part of the left ventricle. The optic fibre was connected to a Cilas-Alcatel fluorimeter. Variations in fluorescence were studied during variations in left ventricular end-diastolic pressure (LVEDP) and during coronary arteriography. An increase in LVEDP resulted in a slight increase in NADH, but when the LVEDP was reduced by a nitroglycerin infusion, NADH fell significantly below baseline values in patients with coronary disease. This effect was most probably due to redistribution of the coronary blood flow from healthy territories to ischaemic territories. In patients without significant coronary stenosis, NADH was not modified by an injection of 10 ml of contrast medium into the right coronary artery. In contrast, in patients with severe stenosis NADH fluorescence significantly increased during the injection, reflecting the ischaemia or myocardial anoxia induced by the contrast medium. NADH laser fluorimetry therefore seems to be promising as a means of exploring myocardial metabolism during cardiac catheterization.

Cardiac Catheterization

[The use of laser fluorometry of NADH in cardiology].

In this paper the first results of experimental studies of myocardial energy metabolism conducted in situ by laser fluorimetry are described. With this method the myocardial oxygen uptake is determined by measuring the fluorescence of NADH (reduced nicotinamide adenine dinucleotide). The equipment required consists of pulsed laser beams in the ultraviolet (337 nm) and visible (586 nm) spectra, very thin catheters with a single optic fibre, and an original digital data processing technique. The first applications envisaged concern: 1. pharmacological studies, notably evaluation of the protective effect of drugs against ischaemia; 2. evaluation of revascularization procedures in emergency surgery, notably assessment of reversibility of the ischaemic lesions; 3. monitoring of myocardial protection during cardiac surgery.

Cardiovascular Agents

[Diagnosis of cellular respiratory arrest by NADH laser fluorimetry. Applications in heart surgery and in experimental pharmacology].

The continuous measurement of intratissular NADH concentration allows early detection of cellular respiration arrest during clinical situations, i.e. allows a non-destructive, in situ, continuous measurement of ATP formation. This detection enables the physician or surgeon to intervene during a phase of cellular respiration arrest, before structural cellular alterations occur, thereby preventing potential tissular necrosis. The method has now been validated in experimental cardiac surgery for the monitoring of myocardial preservation techniques during cardiopulmonary by-pass, and in cardiac pharmacology, for analysis of drugs' effects on myocardial energetic metabolism. Its industrial development is currently under way. Preliminary investigation strongly suggests the vast potential of this diagnostic method in both clinical and experimental fields.

Adenosine Triphosphate

In situ monitoring of myocardial metabolism by laser fluorimetry: relevance of a test of local ischemia.

We have developed a hypoxia test by local ischemia, to be performed with a special probe adapted to an in situ NADH laser fluorimeter. Local ischemia is produced by pressurization on the organ surface in an area of approximately 0.2 mm2. In order to assess the method on open-chest rat hearts (ten), we used the following protocol: local ischemia tests (three), global anoxia (100% N2 ventilation), superimposition of local ischemia to global anoxia, and local ischemia tests during the period just prior to death and immediately thereafter. Three different responses were observed: large amplitude of compensated fluorescence (Fo) increase, medium amplitude of Fo increase, and no Fo increase. These responses were related to the metabolic state prior to the test (States 3, 4, and 5 of Chance's nomenclature). We have thus demonstrated the possibility of very rapidly determining the in situ NADH degree of reduction, without a destructive assay. Such a parameter may be of great relevance in heart surgery, as it might allow detection of potentially harmful situations, thereby enabling early and appropriate treatment.

Animals