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Biomedical subjects

D Natali

Publications and source records attributed to D Natali.

5 recordsLinked to original sources

Synthesis of a versatile constrained analogue of dipeptide DG (Asp-Gly).

The synthesis of an orthogonally protected constrained analogue of dipeptide DG (Asp-Gly) is reported exploiting alkylation of a chiral lactam. The versatility of this analogue was proven by removal of t-Boc protecting group, followed by coupling under homogeneous conditions with t-Boc-Arg(Z(2))-Gly, to give a conformationally restricted analogue of RGDG tetrapeptide.

Biomimetics↗

Resin-based dentin restorative materials under accelerated ageing: bio-functional behavior.

OBJECT: The aim of the present study was the evaluation of the effect of different polishing and finishing procedures on Filtek Z250 FZ ESPE restorative material. Particularly, the consequence of artificial aging (UV-irradiation) on this resin-based dental material was investigated determining also its outcome on cell behavior. METHODS: 96 specimens of restorative material were prepared using a light emitting diode curing unit and randomly divided into four finishing and polishing groups: (I) No treatment (FZ); (II) Identoflex rubbers (ID); (III) Enhance System (EN) and (IV) Sof-Lex Pop-on XT discs (SF). The surface morphology of native and artificially aged materials was assessed with Atomic Force Microscopy (AFM) and Scanning Electron Microscopy (SEM). FTIR and biological (biocompatibility and bacterial adhesion) analyses were also performed. RESULTS: Among all, the ID procedure represented an acceptable compromise for efficiency of polymerization and biocompatibility both before and after artificial ageing. SF and EN techniques showed better interactions with the biological environment. CONCLUSION: UV artificial ageing of the tested specimens has shown an acceleration of the surface degrading processes, favoring a possible decrease in the mechanical properties and the release of toxic free radicals. Finishing and polishing procedure seemed to affect the photodegrading pathways, even though no differences among the techniques were observed. As the cytotoxicity of materials undergoing accelerated aging is relevant, further improvement of dental restorative materials are required to limit the long-term biological damage.

Animals↗

In vitro evaluation of bio-functional performances of Ghimas titanium implants.

Titanium is the most widely used material for dental implants. The natural formation, in presence of oxygen, of different oxide films (passivation films) is correlated to titanium implant biocompatibility, resistance to corrosion and is responsible for implant bacteriostatic action. Surface roughness is another surface property of Ti-implants that, affecting implant-to-bone contact, improves integration. In the present study data concerning composition, surface roughness and biocompatibility of Ghimas implants and mini-implants undergoing sandblasting with Calcium Magnesium Carbonate (CaMg(CO3)2) are reported. AFM, SEM/EDX, XRD analyses and morpho-functional tests (MTT and ALP) were performed. Cell actin cytoskeletal modification (fluorescence phalloidin staining) was also observed with confocal laser microscopy (CLSM). Data related to surface geometry and chemical properties, associated with evidence of high purity of all the tested materials (XRD and EDX), highlighted the elevated biocompatibility of tested implants and mini-implants. CLSM investigation confirmed osteoblast features of an active cell behavior able to fit cell to chemico-mechanical stimuli present at the bone/implant interface and suggests an effective implant/alveolar bone integration in vivo.

Biocompatible Materials↗

Prognostic role of Fuhrman grade and vascular endothelial growth factor in pT1a clear cell carcinoma in partial nephrectomy specimens.

PURPOSE: Conventional renal cell carcinoma (RCC) is characterized by rich neovascularization and shows a fine vascular network around tumor cells. Nephron sparing surgery has been established as a method of choice or necessity for localized tumors. We investigated the importance of microvessel density (MVD), vascular endothelial growth factor (VEGF) and vascular endothelial growth factor receptor (Flk-1) immunohistochemical expression in a large series of small conventional clear cell renal carcinomas treated with partial nephrectomy and assessed the prognostic value of their expression in terms of patients survival at long-term followup. MATERIALS AND METHODS: A total of 48 patients with a mean age +/- SD of 58.2 +/- 9.5 years who had conventional single RCC were considered. Median tumor diameter was 2.92 +/- 0.82 cm (range 1.3 to 5). Disease was grades 1 to 4 in 15, 29, 2 and 2 patients, respectively. Median followup was 92.9 months (range 17 to 186). RESULTS: Four patients (3.9%) had died of metastatic renal cancer at a median followup of 23.5 months, of whom 1 had a grade 2, 1 had a grade 3 and 2 had grade 4 RCC. Patients with MVD expression higher than the median (44.4 vessels per mm) did not show a significant difference in survival compared to patients with MVD expression lower than the median. Patients with VEGF expression higher than 25% in the histological specimen showed worse survival than patients with VEGF expression lower than 25%. Different Flk-1 expression did not determine a significant difference in survival. On univariate analysis of patient survival in relation to the different considered factors Fuhrman grading was the most important factor for survival. CONCLUSIONS: Our study shows that recurrence and death are possible even in patients with small renal tumors. MVD, VEGF and Flk-1 expression do not depend on tumor size in pT1a RCC. Therefore, to date Fuhrman grading appears to be the only factor predictive of survival even in small RCC. Thus, Fuhrman grading is predictive of mortality. While VEGF is not predictive of survival as a single parameter, based on its percent of expression (lower or higher than 25%) it can determine 2 groups that are different from the prognostic point of view.

Adenocarcinoma, Clear Cell↗

Tailoring biomaterial compatibility: in vivo tissue response versus in vitro cell behavior.

Biocompatibility relies essentially on surface phenomena, represented by cell-cell, cell-material and material (polymer)-protein interactions. An in vivo and in vitro experimental investigation was carried out on the biomaterials of two different classes with a good potential for in situ utilisation. Non-resorbable (Polypyrrole, Polyaniline, Polyimide) and resorbable (PLLA-PDXO-PLLA) materials for tissue engineering were studied for their overall tissue tolerance and cellular interactions. These non-resorbable polymers conceived for biosensor applications and implantable drug-delivery systems are intrinsically conductive. The PLLA-PDXO-PLLA triblock copolymer showed interesting tensile properties for bone and cartilage tissue engineering due to the presence of 1,5-dioxepan-2-one. In vitro and in vivo parallel studies showed an interesting correspondence: a) the cells in contact with the resorbable material that appeared to be capable of migratory-regenerative aspects in vitro exhibited good compatibility in vivo; whereas b) the non-resorbable materials, which are designed to remain in situ in vivo, were seen to have the potential to represent an adverse factor (inflammation, fibrotic reactions) that correlated with some aspects of cell behaviour in vitro.

Absorbable Implants↗