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Biomedical subjects

M Chicca

Publications and source records attributed to M Chicca.

11 recordsLinked to original sources

Early development of the pituitary gland in Acipenser naccarii (Chondrostei, Acipenseriformes): an immunocytochemical study.

The distribution and appearance of secretory cells in the pituitary gland were investigated for the first time in a chondrostean species, Acipenser naccarii, from embryos to juveniles, by immunohistochemistry with mammalian and teleost hormone antisera. On 5.5 day post-fertilization (2.5 days pre-hatching), the pituitary of embryos appears as an oval cell mass with a narrow central cavity (hypophysial cleft), close to the ventral border of diencephalon under the third ventricle. At that time no neurohypophysis is observed, the adenohypophysis is not yet structurally divided into pars intermedia (PI) and pars distalis (PD) and only immunoreactive growth hormone cells are detectable. Seven days post-fertilization (1 day pre-hatching) the immunoreactive thyrotropic cells appear in the ventral region and the immunoreactive adrenocorticotropic cells in the posterior dorsal one. At hatching, some immunoreactive melanotropic (ir-MSH) cells are visible in the posterior dorsal region and some immunoreactive prolactin cells in the anterior one. Eight days later the immunoreactive somatolactin cells appear along the posterior dorsal border and the immunoreactive gonadotropic I (ir-GtH I) cells in the ventral region. Here, a few ir-GtH II cells finally appear in 76-86 day old juveniles. The gland elongates after hatching and in 8-day-old larvae two adenohypophysial regions are identified: a posterior (the presumptive PI) and an anterior one (the presumptive PD). In 156-166-day-old juveniles three regions (rostral and proximal pars distalis and pars intermedia) appear and a high number of ir-MSH cells are visible in the rostral region. The first protrusion of neurohypophysis into adenohypophysis is observed in 76-86-day-old juveniles and increases with age, branching into PI. The rostro-caudal distribution of the immunoreactive cells follows the spatial expression of the corresponding hormone gene families observed in zebra fish, suggesting similar differentiating mechanisms in teleosts and chondrosteans.

Adrenocorticotropic Hormone↗

Influence of cyclodextrin complexation on the photodegradation and antioxidant activity of alpha-tocopherol.

The influence of complexation with beta-cyclodextrin (beta-CD), hydroxypropyl-beta-cyclodextrin (HP-beta-CD) or hydroxypropyl-gamma-cyclodextrin (HP-gamma-CD) on the antioxidant activity and light-induced decomposition of vitamin E (alpha-tocopherol) was investigated. The interaction of the vitamin with the cyclodextrins was ascertained by nuclear magnetic resonance spectroscopy. The photodegradation of alpha-tocopherol was examined in emulsion vehicles and was not significantly influenced by complexation with beta-CD (the extent of decomposition was 39.9% for the beta-CD complex compared to 47.2% for the free vitamin) whereas HP-beta-CD and HP-gamma-CD enhanced the light-induced decomposition of alpha-tocopherol (the loss of the vitamin reached 64.6% for the HP-beta-CD complex and 65.8% for the HP-gamma-CD complex). On the other hand, accelerated stability studies indicated that the degradation of non-irradiated alpha-tocopherol was reduced by complexation with HP-beta-CD or HP-gamma-CD. The radical scavenging activity of alpha-tocopherol was evaluated in vitro using the xanthine/xanthine oxidase enzymatic system. No significant differences were observed between the free form of the vitamin and its complexes with beta-CD, HP-beta-CD or HP-gamma-CD. Therefore, complexation of alpha-tocopherol with these cyclodextrins does not interfere with the vitamin antioxidant activity.

Antioxidants↗

Reducing agents inhibit the contractile response of isolated guinea-pig main bronchi.

BACKGROUND: Oxidants are involved in many respiratory disorders, including asthma and chronic obstructive pulmonary diseases. Reduced glutathione (GSH), one of the most important antioxidant compounds against oxidant free radicals, is particularly abundant in the respiratory epithelial lining fluid, where its concentration is increased in inflammatory disorders. OBJECTIVE: We hypothesized that reducing agents may have a direct effect on airway smooth muscle. Therefore, we studied the effects of GSH on airway smooth muscle contractility in guinea-pig main bronchi. In parallel, we evaluated superoxide anion generation associated with in vitro bronchial smooth muscle contraction. METHODS: Guinea-pig main bronchi were mounted in organ baths filled with Krebs-Henseleit solution. Concentration-response curves to acetylcholine (Ach) (10(-9)-10(-3) M), carbachol (10(-9)-10(-4) M), or histamine (10(-9)-10(-3) M) were performed in the presence or absence of either reduced or oxidized glutathione (GSSG) (10(-5)-10(-3) M). We also evaluated the effects of GSH and GSSG on allergen-induced contraction in main bronchi obtained from ovalbumin-sensitized guinea-pig. Superoxide dismutase (SOD)-inhibited cytochrome c reduction kinetics was performed to evaluate superoxide anion (O2-) production during Ach-induced contraction. RESULTS: Reduced but not oxidized glutathione significantly decreased smooth muscle contraction induced by Ach, carbachol, and histamine. Similarly, only the reduced form of glutathione attenuated the bronchoconstriction induced by allergen exposure in bronchi from sensitized animals. Finally, SOD-inhibited cytochrome c reduction kinetics demonstrated increased O2- production following bronchial smooth muscle contraction. This production was not affected by epithelium removal. CONCLUSION: Our findings show that GSH decreases bronchial smooth muscle contraction to different stimuli and that oxidant free radicals are produced during bronchial smooth muscle contraction. We suggest that oxidants are involved in the mechanisms of bronchoconstriction and that reducing agents could be a possible therapeutic option for airway obstruction sustained by bronchospasm.

Animals↗

Chromosomal location and evolution of a satellite DNA family in seven sturgeon species.

The Hind III satellite DNA family, isolated from the Acipenser naccarii genome, was used as a probe for fluorescent in-situ hybridization (FISH) on the karyotype of seven sturgeon species, six belonging to the genus Acipenser and one to Huso. All species except one (A. sturio) exhibit from 8 to 80 chromosome hybridization signals, mainly localized at the pericentromeric regions. Eight chromosomes with weak hybridization signals are present in H. huso and A. ruthenus, which are characterized by a karyotype with about 120 chromosomes. The species with 240-260 chromosomes, A. transmontanus, A. naccarii, A. gueldenstaedtii, and A. baerii, show from 50 to 80 signals, prevalently localized around centromeres. Moreover, A. transmontanus and A. gueldenstaedtii show from 4 to 8 chromosomes with a double signal. The phylogenetic and evolutionary relationships among sturgeon species are discussed on the basis of number and morphology of signal-bearing chromosomes and on the localization of signals.

Animals↗

Antioxidant activity of carbocysteine lysine salt monohydrate.

BACKGROUND: Reactive oxygen radicals are involved in many respiratory diseases, including chronic obstructive pulmonary disease (COPD). Carbocysteine lysine salt monohydrate (CLS) is a mucoactive drug effective in the treatment of bronchopulmonary diseases characterized by mucus alterations, including COPD. In the present study, the antioxidant activity of CLS was studied in vitro in three different oxygen radical producing systems, i.e. bronchoalveolar lavages (BAL) from patients affected by COPD, ultrasound treated human serum and cultured human lung endothelial cells challenged with elastase. METHODS: BAL, exposed or not to different concentrations of CLS (1.5-30 mM), was assayed for free radical content by fluorometric analysis of DNA unwinding (FADU) or by cytochrome c reduction kinetics. Human serum was treated with ultrasound in the presence or absence of CLS (1.5, 2.5 mM) or N-acetyl cysteine (NAC; 4, 5 mM) and assayed for free radical content by FADU. Human endothelial cells cultured in vitro from pulmonary artery were incubated with elastase (0.3 IU/mL), in the presence or absence of glutathione (GSH; 0.65 mM) or CLS (0.16 mM). The supernatant was tested for cytochrome c reduction kinetics whereas cell homogenates were assessed for xanthine oxidase (XO) content by SDS-PAGE. RESULTS: Results showed that CLS is more effective as an in vitro scavenger in comparison to GSH and NAC. CLS reduced the damage of DNA from healthy donors exposed to COPD-BAL and was able to quench clastogenic activity induced in human serum by exposure to ultrasound at concentrations as low as 2.5 mM. NAC protect DNA from radical damage, starting from 5 mM. In human lung endothelial cells cultured in presence of elastase, CLS (0.16 mM) decreased xanthine oxidase activity. CONCLUSIONS: These results suggest that CLS could act by interfering with the conversion of xanthine dehydrogenase into superoxide-producing xanthine oxidase. The antioxidant activity of CLS could contribute to its therapeutic activity by reducing radical damage to different lung structures.

Aged↗

Effects of chronic dietary cadmium on hepatic glutathione levels and glutathione peroxidase activity in starlings (Sturnus vulgaris).

The effects of chronic exposure to dietary cadmium on the levels of hepatic glutathione (GSH) and on the activity of the glutathione peroxidase enzymes (GSH-Px) were studied for the first time in starlings (Sturnus vulgaris). Thirty-three individuals (17 females and 16 males) were divided into three groups: One represented the untreated control and two were respectively fed with diets containing 10 and 50 ppm cadmium chloride (CdCl(2)). The total duration of treatment was 22 weeks. The three groups respectively accumulated mean hepatic Cd residues of 2.29, 75.71, and 208.49 ppm. Hepatic GSH increased in the treated groups respectively 24% and 52% in comparison to controls. Total GSH-Px activity in the liver was inhibited in the group fed with 50 ppm, due to inhibition of the selenium-dependent fraction of the enzyme, while the selenium-independent fraction did not change significantly. During the treatment, after 14 weeks of exposure to cadmium, the 50 ppm-treated group showed a 47% decrease of the activity of the selenium-dependent GSH-Px and a 50% increase of the somatic liver index in comparison with controls.

Animals↗

The use of random amplified polymorphic DNA (RAPD) markers to identify strawberry varieties: a forensic application.

The random amplified polymorphic DNA (RAPD) technique was applied to settle a lawsuit involving unauthorized commercialization of a patented strawberry variety of high economical relevance ('Marmolada'). Because of economical involvements, the molecular approach was added to the more traditional morphological examination in a double-blind test. All plants belonging to the patented variety were unambiguously identified (13 plants among a total of 31 plants examined). The results were accepted as evidence in the court. This study confirms that the RAPD technique is especially suitable for identification of asexually reproduced plant varieties for forensic or agricultural purposes.

Fruit↗

Molecular cytogenetic analysis of the karyotype of the European Atlantic sturgeon, Acipenser sturio.

A karyotype analysis was carried out on the European Atlantic sturgeon, Acipenser sturio (2n=121 +/- 3). The telomeric sequence repeat (TTAGGG)n detected by fluorescent in situ hybridization (FISH) was mostly localized at the telomeres of all chromosomes. Ribosomal DNA (rDNA) genes were detected by silver staining techniques and by FISH with digoxigenin-labelled probe for 28S rDNA. Silver staining detected active NORs in the telomeric regions of six chromosomes, and by FISH one or two additional minor sites were detected. The 5S rDNA was found in the interstitial region of a small metacentric pair. The 5S rRNA gene was completely sequenced for the first time in a sturgeon species. The A. sturio karyotype organization is discussed in relation to phylogenesis of the species within the Acipenseridae and to polyploidization events characterizing sturgeon evolution.

Animals↗

Localization of the repetitive telomeric sequence (TTAGGG)n in four sturgeon species.

We analysed the localization of the telomeric sequence (TTAGGG)n in four species of the genus Acipenser, namely A. naccarii (2n = 246 +/- 6), A. ruthenus (2n = 118 +/- 4), A. gueldenstaedti (2n = 256 +/- 6) and A. baeri (2n = 246 +/- 8). The hybridization signal was localized at the telomeres of all chromosomes in A. naccarii, A. ruthenus and A. baeri. In A. gueldenstaedti, two chromosomes were entirely marked with blocks of telomeric repeating sequences. The results are discussed in the light of their evolutionary inference.

Animals↗

Phylogeny inferred from codon usage pattern in 31 organisms.

We employed the Codonusage database to analyze the codon usage pattern in 31 organisms from all the main biological taxa. We tested the similarity in codon usage pattern between each organism and all the others by the Pearson linear correlation coefficient. The 465 values obtained were located in a 31 x 31 triangular matrix from which a correlation distance matrix was calculated. An evolutionary dendrogram was then constructed from these distances. The results showed a fair correlation between codon usage patterns and phylogenetic relationships, at least for organisms which diverged in rather recent times (end of Jurassic--beginning of Cretaceous).

Animals↗

In vitro production of free oxygen radicals induced by pulsed ultrasounds in whole blood exposed to diagnostical frequencies and intensities.

DNA alkalinization experiments on lymphocytes from sonicated whole blood and on in vitro cultured lymphocytes in presence of free radical scavengers (superoxide dismutase, catalase and mannitol) showed that lesions inflicted upon DNA by pulsed ultrasounds could be ascribed to production of free radicals (O2-, OH.) and H2O2, which could mediate the production of still unidentified organic radicals, likely to be responsible for DNA damage.

Blood↗