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Paola Poggi

Publications and source records attributed to Paola Poggi.

3 recordsLinked to original sources

Mouthrinses with alcohol: cytotoxic effects on human gingival fibroblasts in vitro.

BACKGROUND: Mouthrinses are widely utilized in daily oral and dental hygiene to control plaque. However, most commercially available mouthrinses contain alcohol as an excipient. Most studies have focused on the clinical side effects related to the alcoholic fraction of mouthrinses, overlooking alcohol metabolism in the mouth. Due to this oral enzymatic process, the well-recognized toxic compound acetaldehyde is emitted in the mouth. Since gingival fibroblasts play a key role in oral connective tissue health maintenance, we investigated the effects of different doses of acetaldehyde on human gingival fibroblasts (HGFs) in order to better define the effects of alcohol-containing mouthrinses on oral tissue. METHODS: Cultured HGFs were exposed to different concentrations of acetaldehyde (10(-4) M to 10(-2) M). The cell adhesion rate was measured after a 3-hour incubation period, and cell viability over a 5-day period. In order to assess the reversibility of the damage produced by acetaldehyde, treatment was interrupted at critical doses (10(-3) M and 3 x 10(-3) M), and cell viability was evaluated on the third and fifth day of incubation. The HGF cytoskeleton was studied by immunocytochemical technique, and internal cell structures were observed with transmission electron microscopy to evaluate the morphological changes due to acetaldehyde. RESULTS: The results showed that acetaldehyde produced a dose- and time-dependent inhibition on cell adhesion and viability, together with disruption of cytoskeletal structures and cytoplasmic organelles. Nevertheless, these quantitative and qualitative damages were reversible when the treatment was interrupted. CONCLUSIONS: Although more knowledge is necessary, our results suggest that these deleterious effects may also occur in vivo. Pending further investigations, clinicians should be alerted to the potentially adverse effect of alcohol-containing mouthrinses and, to promote oral health, patients should be warned about improper use of these products.

Acetaldehyde↗

Lymphatic vessels in the oral cavity: different structures for the same function.

A study using a light and transmission electron microscope was performed on some structural characteristics of the lymphatic capillaries in different regions of the human oral cavity. The lymphatic capillaries of dental pulp, masticatory mucosa (gingiva and peri-implant mucosa) and lining mucosa (cheek) were examined. Our attention was focused on the morphologic characteristics of the endothelial wall in the lymphatic capillaries. In particular, the connections between endothelial cells were investigated. In the lymphatic capillaries of the dental pulp, the endothelial wall was always very complex. It frequently presented protrusions of the endothelial cells that overlapped and formed intercellular channels. These channels were thus contained by the vessel endothelial wall with their extremities opening out towards the surrounding interstitium and the vessel lumen. The endothelial wall of the lymphatic capillaries of the cheek was very smooth and thin without complex intercellular junctions. The endothelial cells were joined by end-to-end junctions and open junctions were frequently observed. Intercellular channels were also found in the endothelial wall of lymphatic capillaries of the gingiva and the peri-implant mucosa. The presence of numerous clefts represented by the open junctions in the lymphatics of the cheek and the existence of complex intercellular adhesions with the formation of intercellular channels in the endothelial wall of the lymphatic capillaries of the dental pulp and gingiva induce us to believe that these may play a role in the various mechanisms used by lymphatic capillaries to absorb interstitial fluids. These mechanisms are based on the different morpho-functional characteristics of the surrounding tissue.

Capillaries↗

An improved method for beta-galactosidase activity detection on muscle tissue. A light and electron microscopic study.

In the present study we describe a method for the histochemical demonstration of bacterial beta-D-galactosidase activity on skeletal muscle tissue processed for light and transmission electron microscopy. Hence allowing this enzyme to be accurately detected, bacterial beta-galactosidase expression was studied in transgenic mouse where the enzyme, with the nuclear localization signal (nlacZ), is under the transcriptional control of the striated muscle-specific promoter MLC3F. The chromogenic substrate, 5-bromo-3-indolyl-beta-D-galactopyranoside (Bluo-Gal), was used both to recognize labelled myofibers, and beta-gal positive organelles inside single myofibers. Moreover, because the preservation of enzyme is highly dependent on tissue fixation, we developed a suitable fixation solution allowing good preservation of both tissue and enzymatic activity. This was achieved by briefly fixing tissue (3 hours) in glutaraldehyde (2.5%) and paraformaldehyde (1%) in combination. This method should be taken into consideration when studying the gene therapy of muscle diseases because it is sensitive, inexpensive and not time consuming.

Animals↗