0000000000329093

AUTHOR

Maria Rita Schiavo

0000-0003-0918-7089

showing 11 related works from this author

Inhibition of DNA synthesis in chick embryo retinas, in vitro, by a factor from fetal bovine serum

1989

Fetal bovine serum inhibited deoxyribonucleic acid (DNA) synthesis in chick embryo retina explants. The inhibitory activity was precipitated from fetal bovine serum by 45% saturated ammonium sulfate and isolated by means of Sephadex G-100 and Bio-Gel P-60 columns as a peak with an apparent molecular weight of 7000 Da. DNA-inhibiting activity was heat- and acid-stable and was destroyed by dithiothreitol and alkaline treatment. The purified factor inhibited similarly both DNA synthesis and thymidine kinase activity; 50% inhibitory effect was found with 160 ng, 17 h after the addition into the incubation medium.

DNA ReplicationThymidine kinase activityDNA synthesisEmbryoBlood ProteinsBiologyMolecular biologyGrowth InhibitorsRetinaIn vitroDithiothreitolMolecular Weightchemistry.chemical_compoundOrgan Culture TechniquesDevelopmental NeurosciencechemistryBiochemistrySephadexAnimalsCattlechick embryoFetal bovine serumDNADevelopmental BiologyDevelopmental Brain Research
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Rapid and simultaneous high-performance liquid chromatography assay of polyamines and monoacetylpolyamines in biological specimens

2000

A rapid, resolutive and reproducible reversed-phase high-performance liquid chromatography (RP-HPLC) method was developed for polyamines and acetylpolyamines by adopting pre-column derivatization with benzoyl chloride. In a single run lasting less than 15 min ten polyamines were separated as well as traces of benzoic acid, methylbenzoate and benzoic anhydride. These contaminants, produced during the derivatization reaction, were almost all eliminated by washing steps envisaged in the same procedure. This simple and sensitive method can be applied to routine determination of polyamines in biological samples. A fine application of this procedure to the determination of endogenous content of p…

Chromatographymedicine.diagnostic_testorganic chemicalsBiogenic PolyaminesReproducibility of ResultsGeneral ChemistryReversed-phase chromatographyReference StandardsSensitivity and SpecificityHigh-performance liquid chromatographyBenzoic anhydridechemistry.chemical_compoundBenzoyl chloridechemistrySpectrophotometrymedicineSpectrophotometry UltravioletDerivatizationQuantitative analysis (chemistry)Chromatography High Pressure LiquidBenzoic acidJournal of Chromatography B: Biomedical Sciences and Applications
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Polyamines and ripening of photoreceptor outer segments in chicken embryos.

1995

Abstract Polyamines and their related monoacetyl derivatives were studied in rod outer segment (ROS) and cone outer segment (COS) of photoreceptor cells from chick embryo retina during eye development (7th–18th days). Putrescine was found to be necessary, in the second phase of retinogenesis, to sustain both ROS and COS differentiation and, after acetylation, γ-aminobutyric acid synthesis. On the other hand, spermidine and even more spermine intervene in the third phase of development when photoreceptors mature. Moreover, the presence of N1-acetylspermidine already at the 7th day indicates that in the outer segment of photoreceptor cells too, as in the whole retina, putrescine synthesis com…

genetic structuresSpermineChick EmbryoBiologyOrnithine DecarboxylaseRetinaOrnithine decarboxylasechemistry.chemical_compoundDevelopmental NeuroscienceAcetyltransferasesCadaverinemedicinePutrescineAnimalsPhotoreceptor Cellsgamma-Aminobutyric AcidRetinaBiogenic PolyaminesCell DifferentiationRod Cell Outer SegmentSpermidinemedicine.anatomical_structurechemistryBiochemistrySpermine synthasebiology.proteinPutrescineSperminesense organsSpermidine synthasePolyamine oxidaseDevelopmental BiologyInternational journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
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Micellar electrokinetic chromatography of polyamines and monoacetylpolyamines

2001

A selective procedure for qualitative and quantitative analysis of ten polyamines by micellar electrokinetic chromatography (MEKC) was developed. Benzoylated polyamines and acetylpolyamines in micellar phase of SDS (10 mM) were separated at 25 degrees C by 20 mM borate buffer pH 8.5, containing 8% ethanol, with an applied voltage of 25 kV (5 microA) and then detected at 198 nm. The experimental factors and operational parameters were optimized by performing analysis at different surfactant concentrations, pH, voltage and temperature with and without ethanol. The repeatibility of migration times and peak heights is a peculiarity of the method here described.

EthanolChromatographyOrganic ChemistryAnalytical chemistryReproducibility of ResultsGeneral MedicineHydrogen-Ion ConcentrationBiochemistryMicellar electrokinetic chromatographyAnalytical Chemistrychemistry.chemical_compoundchemistryPulmonary surfactantBORATE BUFFERPhase (matter)PolyaminesSample preparationDerivatizationQuantitative analysis (chemistry)Chromatography Micellar Electrokinetic CapillaryJournal of Chromatography A
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Simple high-performance liquid chromatographic assay for polyamines and their monoacetyl derivatives.

1993

A rapid reversed-phase high-performance liquid chromatographic method, using pre-column derivatization with benzoyl chloride and ultraviolet detection at 254 nm, was developed for the simultaneous measurement of polyamines and their monoacetyl derivatives. Calibration curves were linear for concentrations from 1.25 to 25 nmol/ml. The method was employed to assay these compounds in chick embryo retina explants using organic solvent extraction and 1,7-diaminoheptane as an internal standard. This simple and sensitive method can be applied to routine determinations of these compounds in various biological samples.

ChromatographyCalibration curveOrganic solventExtraction (chemistry)Reproducibility of ResultsAcetylationGeneral ChemistryChick EmbryoDiaminesHigh-performance liquid chromatographyRetinachemistry.chemical_compoundBenzoyl chloridechemistryPolyaminesAnimalsSpectrophotometry UltravioletDerivatizationQuantitative analysis (chemistry)Chromatography High Pressure LiquidJournal of chromatography
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Biochemical Aspects of Chick Embryo Retina Development: The Effects of Glucocorticoids

1989

In chick embryo retina during development, DNA synthesis and the activities of DNA polymerase, thymidine kinase, thymidylate synthetase, and ornithine decarboxylase (ODC) declined in parallel from day 7 to 12. The administration in ovo of hydrocortisone reduced significantly, particularly at 8-10 days of incubation, both DNA synthesis and the four enzyme activities tested. The effect was dose dependent, reaching the maximum with 50-100 nmol of hydrocortisone, 8-16 h after treatment. The highest inhibition was found for ODC activity (70%), followed by thymidine kinase activity (62%) and DNA synthesis (45%), whereas activities of DNA polymerase and thymidylate synthetase were reduced only by …

medicine.medical_specialtyThymidine kinase activityTime FactorsHydrocortisoneDNA polymeraseChick EmbryoDNA-Directed DNA PolymeraseOrnithine DecarboxylaseIn ovoThymidine KinaseBiochemistryThymidylate synthaseDexamethasoneRetinaOrnithine decarboxylaseCellular and Molecular NeuroscienceInternal medicineBiochemical aspectsmedicineAnimalsGlucocorticoidsDose-Response Relationship DrugbiologyDNA synthesisProteinsEmbryoDNAOrgan SizeThymidylate SynthaseKineticsEndocrinologyRNA RibosomalThymidine kinasebiology.proteinJournal of Neurochemistry
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Pattern of polyamines and related monoacetyl derivatives in chick embryo retina during development.

1994

Polyamines and related monoacetyl derivatives were studied in chick embryo retina during development (6th-19th day). Putrescine, which is high in the first phase of retinogenesis, is necessary to sustain both tissue proliferation and via N-acetylputrescine, gamma-aminobutyric acid synthesis. A later increase in spermidine and particularly spermine may play a role in the last phase of development when the retina reaches maturation. The presence of N1-acetylspermidine already at the 8th day indicates that in chick embryo retina, putrescine synthesis can depend on two separate pathways. The first involves ornithine decarboxylase activity; the second, spermidine/spermine N1-acetyltransferase an…

biologySpermidineBiogenic PolyaminesSpermineEmbryoCell DifferentiationChick EmbryoRetinaSpermidinechemistry.chemical_compoundDevelopmental NeuroscienceBiochemistrychemistrySpermine synthasePutrescinebiology.proteinPutrescineAnimalsSpermineSpermidine synthasePolyaminePolyamine oxidaseCell Divisiongamma-Aminobutyric AcidDevelopmental BiologyInternational journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
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A simple HPLC assay for polyamines and their monoacetylderivatives

1993

polyamineSpermidineSettore BIO/10 - BiochimicaPutrescineSpermineN-acetyl-derivatives
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Polyamines and ripening of photoreceptor outer-segment in chicken embryo.

1995

Polyamines and their related monoacetyl derivatives were studied in rod outer segment (ROS) and cone outer segment (COS) of photoreceptor cells from chick embryo retina during eye development (7th-18th days). Putrescine was found to be necessary, in the second phase of retinogenesis, to sustain both ROS and COS differentiation and, after acetylation, gamma-aminobutyric acid synthesis. On the Other hand, spermidine and even more spermine intervene in the third phase of development when photoreceptors mature. Moreover, the presence of Nl-acetylspermidine already at the 7th day indicates that in the outer segment of photoreceptor cells too, as in the whole retina, putrescine synthesis comes ab…

Settore BIO/10 - Biochimicapolyamines monoacetylpolyamines GABA chick embryo retina outer segment photoreceptors retina differentiation
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The pattern of polyamine and GABA in chicken embryo retina photoreceptor membranes

1997

PolyamineChicken embryo retinaSettore BIO/10 - BiochimicaPhotoreceptor membranes
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Pattern of polyamines and related monoacetyl-derivatives in chick embryo retina during development

1994

PolyamineChick embryo retinaSettore BIO/10 - Biochimicapolyamine acetylation
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