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Biomedical subjects

C Boni

Publications and source records attributed to C Boni.

101 records · Page 6Linked to original sources

The main features of central 5-HT1 receptors.

The 5-HT1 receptor family comprises five different pharmacologic subtypes, designated 5-HT1A, 5-HT1B, 5-HT1C, 5-HT1D, and 5-HT1E, whose common property is to bind 5-HT with nanomolar affinity. Recent investigations with molecular biology approaches led to the cloning and sequencing of 5-HT1A receptors in the rat and in the human, and of the 5-HT1C receptor in the rat. Although the 5-HT1A and 5-HT1C protein binding subunits exhibit the same structure with seven hydrophobic transmembrane domains, an extracellular N terminal and an intracellular C tail, their respective amino-acid sequences are markedly different. Indeed, a higher degree of sequence homology is found between the 5-HT1C and 5-HT2 receptors than between the former and 5-HT1A receptors, suggesting that the 5-HT1C subtype in fact belongs to the 5-HT2 class of central 5-HT receptors. All other 5-HT1 receptor subtypes are negatively coupled to adenylyl cyclase, whereas the 5-HT1C subtype, like 5-HT2 receptors, is positively coupled to phospholipase C. The respective regional distributions and regulatory properties, as well as pending questions regarding the ultrastructural localization, synthesis, mutual interactions, and axonal flow of 5-HT1 receptor subtypes, are also discussed.

Animals↗

Behaviour of urinary nickel in low-level occupational exposure.

The study tested the feasibility of using urinary nickel (Ni-U) as a biological indicator to assess exposure to soluble nickel compounds in electroplating departments at concentrations well below the current TLV-TWA. Two groups of workers were studied: Group A, consisting of 13 subjects and Group B consisting of 10 subjects, with an average weekly nickel exposure of nickel in air (Ni-A) greater than or equal to 10 micrograms/m3 (Group A) and less than 10 micrograms/m3 (Group B). Air samples and urine specimens were taken on 4 consecutive days from Monday to Thursday. The mean Ni-U levels in both groups were significantly higher than in the reference group. The Ni-U levels in end-of-shift spot samples showed a tendency to increase over the week; this trend was more marked in Group A. Closer correlations between Ni-A and Ni-U were found using the postshift Ni-U values of Thursday: the test was well correlated both with the Ni-A levels of the same day and with the mean levels of the previous days. The results suggest that Ni-U is a sufficiently sensitive indicator for use in monitoring low-level occupational exposure, especially if Ni-A concentrations are above 10 micrograms/m3.

Adolescent↗