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Biomedical subjects

M A Cabrerizo

Publications and source records attributed to M A Cabrerizo.

3 recordsLinked to original sources

Acid-etching and hydration influence on dentin roughness and wettability.

Adhesion of restorative and protective materials to dentin is an important requirement for operative and preventive dentistry. Wettability and roughness are dentin substrate conditions that are critical to establishing good adhesion. This study examined superficial and deep dentin for variations in water contact angle measurements and roughness for polished, etched, dehydrated, and rehydrated states. Superficial and deep dentin disks from 6 non-carious third molars were prepared for AFM (Atomic Force Microscope) observation, roughness measurement, and contact angle measurements following specific treatments: hydrated and polished, etched (10% H3PO4), dehydrated (desiccator for 24 hrs); and rehydrated (in water for 24 hrs). Contact angles were measured by means of the ADSA (Axisymmetric Drop Shape Analysis) technique with filtered and purified water of surface tension 72.79 ergs/cm2. The AFM was used to quantify the intertubular roughness. Mean and SD of roughness and contact angle were calculated for each dentin state, and two-way Repeated Measures ANOVA with Tukey's HSD multiple comparisons were performed at p < 0.05. Wetting and roughness both increased after etching, with roughness tending to increase further while wettability dramatically decreased after desiccation. After rehydration, water contact angle values were equivalent to those of the etched condition. Although intertubular roughness did not depend on depth, lower water contact angles were found for deep dentin. Depth and dehydration resulted in altered dentin substrates with exposed hydrophobic moieties that could interfere with bonding to hydrophilic primer coats.

Acid Etching, Dental↗

Gastric and intestinal absorption of monofluorophosphate and fluoride in the rat.

This paper reports data indicating that, in the rat, sodium monofluorophosphate (MFP, CAS 10163-15-2) is absorbed without hydrolysis through the stomach. This phenomenon and the fact that MFP binds to plasma globulins produce a prompt increase in protein-bound MFP concentration, significantly greater than the increase in plasma ultrafilterable fluoride. Intestinal absorption of MFP was investigated with the isolated duodenal loop in situ. The drug was hydrolyzed to fluoride at the intestinal lumen with a rate of approx. 3 times greater than that for fluoride absorption. After filling the duodenal loop with a MFP solution, ultrafiltrable fluoride accounts for the increase in plasma fluoride concentration, with no evidence of protein-bound MFP. This report also includes analytical techniques for the measurement of MFP in test solutions and in plasma.

Animals↗

An improved topical formulation for urea.

The solubility of urea in different polar solvents was studied by means of determination of their dielectric constants. The most appropriate solvents turned out to be water and a water/propylene glycol (1:1 in volume) mixture. The best solvents were then used in the study of different semisolid vehicles for topical use (cetylic excipient, Beeler's base and Carbopol gel), which show different physicochemical characteristics. The final formulation contained a 40% (w/w) concentration in urea, since this value is most often used in Dermatology and, at the same time, it is the most problematic from a technological point of view. The stability of the different preparations was investigated by conductimetric and rheological determinations. The results are discussed in terms of both the solubility and stability of the active principles and the organoleptic and rheological characteristics of the final preparations.

Acrylic Resins↗