Histochemical investigations on aminopeptidases in Artemia salina (Phyllopoda) embryos and larvae.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to C Falugi.
Explore the source record for details and available documents.
AIMS: A case-control study was performed to investigate the relationship between cervical cancer and TP53 polymorphism at codon 72 in young black African women from The Gambia. MATERIALS AND METHODS: The TP53 polymorphism at codon 72 was examined by PCR amplification and SSCP analysis in 40 patients with primary cervical cancer and in 20 healthy women of the same age and from the same geographical area. The occurrence of TP53 polymorphism in combination with the HPV-16 E6 genotype (assayed by PCR) was evaluated. RESULTS: The distribution of TP53 genotypes in cervical cancer patients and in the control group was not statistically different (p = 0.45) and homozygosity for argine at residue 72 was not associated with cervical cancer (odds ratio: 1.24; 95% confidence interval 0.21-9.16). Similarly, a different genotype distribution, cervical cancer and presence of HPV-16 E6 were not observed. CONCLUSIONS: These results cannot rule out an association between TP53 polymorphism at codon 72, HPV infection and the etiology of cervical cancer in this population sample.
In recent years, the finding of a complete set of molecules related to the cholinergic neurotransmitter system in male gametes of different invertebrate and vertebrate species has opened the question of the possible involvement of this signaling system in the regulation of intracellular ion change, functional to sperm motility and probably also to interaction with the egg. In this work, we localized molecules immunologically related to muscarinic acetylcholine receptors (mAChRs) in sea urchin (Paracentrotus lividus) eggs and zygotes, by use of the monoclonal antibody M35. The ultrastructural analysis of immunoreactivity revealed that the localization of M35-positive molecules is different between unfertilized and fertilized egg. In the unfertilized eggs, immunoreactive molecules were localized inside and associated to the membrane of vesicles, scattered in a thick zone of the cortical cytoplasm. Following fertilization, the oolemma was decored along the surface, and positive vesicles were seldom seen in the cytoplasm. At the surface of fertilized eggs, evident pinocytotic vesicles, recognized by the surrounding coat, indicate that the positive sites correspond to receptorial activity, able to rescue ligand portions. The presence of a cholinergic signaling pattern was also suggested by the presence of molecules immunologically related to acetylcholinesterase (AChE), performing AChE enzyme activity, detected by both immunofluorescent and histochemical methods in membranous organelles belonging to the cortical region of unfertilized eggs.
The variation of the two main aromatic compounds in Ocimum basilicum cv Genovese Gigante grown in greenhouse and "in vitro" was analyzed. The content of methyleugenol and eugenol was correlated to the plants' height rather than to the plants' age and the growth site. Particularly, methyleugenol was prevalent in plants up to 6.5 cm, as plants grew it was replaced by eugenol that was dominant in taller plants. Analysis of basil 20 cm in height showed that methyleugenol is prevalently localized in the low part while eugenol is prevalent in the upper part of the plant. Moreover, a chronic and acute toxicity of methyleugenol was evidentiated in an assay using chicken embryos.
Cholinergic neurotransmitter system molecules were found to play a role during fertilisation and early cell cycles of a large number of invertebrate and vertebrate organisms. In this study, we investigated the presence and possible function of choline acetyltransferase (ChAT, the biosynthetic enzyme of acetylcholine) in gametes of the sea urchin, Paracentrotus lividus, through localisation and functional studies. ChAT-like molecules were detected in oocytes, mature eggs and zygotes with indirect immunofluorescence methods. Positive immunoreactivity was found in the ovarian egg cytoplasm and surface as well as at the zygote surface. This suggests the eggs' capacity to autonomously synthesise acetylcholine (ACh), the signal molecule of the cholinergic system. Acetylcholinesterase (AChE, the lytic enzyme of acetylcholine) was also found in ovarian eggs, with a similar distribution; however, it disappeared after fertilisation. Ultrastructural ChAT localisation in sperms, which was carried out with the immuno-gold method, showed immunoreactivity in the acrosome of unreacted sperms and at the head surface of reacted sperms. In order to verify a functional role of ACh during fertilization and sea urchin development, in vivo experiments were performed. Exposure of the eggs before fertilisation to 1 mM ACh + 1 microM eserine caused an incomplete membrane depolarisation and consequently enhanced polyspermy, while lower concentrations of ACh caused developmental anomalies. The exposure of zygotes to 0,045 AChE Units/mL of sea water caused developmental anomalies as well, in 50% of the embryos. Altogether, these findings and other previously obtained results, suggest that the cholinergic system may subserve two different tasks during development, according to which particular type of ACh receptor is active during each temporal window. The first function, taking place in the course of fertilisation is a result of autonomously synthesised ACh in sperms, while the second function, taking place after fertilisation, is due to maternal ChAT molecules, assembled on the oolemma along with egg maturation and fertilisation processes.