Synoviorthesis with colloidal 32P chromic phosphate for the treatment of hemophilic arthropathy.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to R L Cabrini.
Explore the source record for details and available documents.
BACKGROUND: The value of silver staining of nucleolar organizer regions (AgNOR) counts as a diagnostic aid has been reported for several neoplastic entities. Previous studies have proved the value of the morphometric evaluation of AgNOR in the detection of incipient cellular alterations. METHODS: A morphometric analysis of AgNORs was performed in oral mucosa epithelium adjacent to squamous cell carcinoma compared with normal mucosa epithelium and the carcinomatous parenchyma. RESULTS: Highly statistically significant differences in all 5 AgNOR-related parameters assessed were found between normal mucosa and mucosa adjacent to cancer. Conversely, the corresponding nuclear parameters failed to exhibit significant differences. The parameter AgNOR contour index plotted for individual cases affords a cutoff value that could prove useful in identifying epithelia at early stages of transformation. CONCLUSIONS: AgNOR evidenced significant variations in epithelium adjacent to oral squamous cell carcinoma, which did not exhibit morphologic signs of atypia. Based on this study, AgNOR would be a quantitative, discriminative aid, easy to monitor in a pathology laboratory, in detecting incipient cellular alterations. These findings contribute to the issue of early diagnosis and to the knowledge of tumoral growth.
The processes of uranium extraction, purification, and manufacture involve the risk of chemical intoxication. Acute uranium poisoning elicits renal failure which in turn may lead to death. Great efforts have been put into the search for a protective agent for acute uranium poisoning. Several chelating agents such as EDTA, Tiron, DTPA, or aminosalicylic acid have been experimentally assayed. However, even when these agents are able to reduce the mortality none of them achieve 100% survival. We herein present the use of EHBP to prevent mortality due to uranium poisoning. Rats weighing 14 g were employed in two different experiments: A) The surviving animals were killed on the 60th day; and B) The animals were killed on the 9th day. In both experiments 4 groups were considered: 1. untreated control; 2. one intraperitoneal (IP) injection of uranyl nitrate (2 mg kg-1 of body weight); 3. 1 IP injection of EHBP (10 mg kg-1 of body weight); and 4. treatments 2 and 3 combined. In both experiments 50% of the animals in group 2 died on the eighth day. All the animals of the other groups were alive at the end of the experiment. Histological analysis of the kidneys of the animals of experiment B revealed renal damage in the exposed animals, whereas no structural alterations were detected in the kidneys of the other three groups, including those given uranyl nitrate and treated with EHBP. These results show the efficiency of only one injection of EHBP to avoid renal damage and to counteract the mortality due to uranium poisoning with a success rate of 100%.
Histometric evaluations as a function of time were performed with zirconium implants during the healing period in 10 Wistar rats. The implants (7 mm x 1 mm x 0.1 mm) were placed in the right tibia of the animals. Five rats were killed after 14 days and the remainder were sacrificed 30 days after implantation. The tibiae were resected, radiographed, and embedded in poly(methyl methacrylate). Three cross-sections were obtained transverse to the major axis of each tibia. Osseointegrated tissue thickness, percentage of direct bone-to-implant contact, and osseointegrated tissue volume were evaluated for each specimen. Bone formation was observed on the surface of the implanted strip that was in contact with tibia marrow. This method is proposed for the evaluation of the first stage of healing of bone in contact with different implant materials subjected to various surface treatment.
A portion of consistently gamma-glutamyl transpeptidase-positive epithelium in the normal oral mucosa of rats is described. This is the first normal oral mucosa epithelium reported to express activity of the transpeptidase. This enzyme has been used as a marker of malignant transformation in tissues such as epidermis and oral mucosa epithelium. Complementary studies of the enzyme-positive portion of oral mucosa and a neighbouring negative portion, suggest that, in this model, expression of gamma-glutamyl transpeptidase is linked to a terminally-differentiated epithelium.
The effect of localized x-radiation on the growth of mandibular bone and molar eruption was evaluated by morphometric methods. A dose of 20 Gy of x-radiation was given to the molar zone of growing rats. The animals were then killed in groups at 30 and 60 days postirradiation. Two groups of nonirradiated, age-matched rats were used as controls. Parameters related to molar eruption, mandibular length, and mandibular height were measured on lateral radiographs. The results obtained showed that the values of the biometric parameters were lower in experimental than in control animals. Odontoblastic atrophy, alveolodentary ankylosis, and meager or no root formation were the most conspicuous histologic findings. Osteodentin was found between canaliculary dentin and bone in cases of ankylosis. The morphometric data presented confirm the probability of alterations in mandibular growth and tooth eruption following x-radiation and suggest that this be considered in planning radiotherapy in children.
A morphometric study of nucleolar organizer regions (NOR) was performed to analyze their distribution, volume, number and shape in the different strata of human normal oral mucosa epithelium and papilloma and in squamous cell carcinoma employing microphotographs of silver-stained paraffin sections. The different NOR-related parameters evidenced significant differences between normal mucosa, papilloma and squamous cell carcinoma. The functional polarity of normal mucosa epithelium and of papilloma is also evidenced in terms of NOR-related parameters. The discriminative value of certain NOR parameters was demonstrated.
The toxic effect of uranium (U) on bone modeling and remodeling was studied by performing histomorphometric measurements in the periodontal cortical bone of rats. Two different single intraperitoneal doses of uranyl nitrate (238U) were administered to two sets of rats respectively (2 and 0.8 mg/kg body wt). Rats treated with the first dose were killed 14 days postinjection (PI) and those treated with the second were killed 14, 30, and 60 days PI. The results revealed a decrease in bone formation in rats treated with uranium. On the remodeling side the decrease in bone formation was coupled to an increase in bone resorption on the 14th day PI. On the modeling side no bone resorption was observed and the decrease in bone formation was linked to an increase in resting bone zones. Bone formation depression as a key event in U intoxication is stressed.
Explore the source record for details and available documents.
Silicone tubes containing a freshly mixed experimental Sealapex, in which titanium dioxide was removed from the original formula, were implanted in the dorsal subcutaneous connective tissue of the rat. Solid silicone rods of the same size as the tubes were also implanted and used as inert controls. The tissue reaction to both these materials was histometrically and quantitatively studied under light microscopy and by elemental electron microprobe analysis. After 7, 30 and 90 d of implantation, different grades of tissue reaction to the tested materials were recorded. A granulomatous tissue containing numerous foreign-body giant cells and macrophages with engulfed particles in their cytoplasms was initially detected in contact with the test material. In addition, many fibroblasts and newly formed vessels were also observed at these areas. The results of this study revealed that these reactions increased progressively at the 30- and 90-d observations. The electron microprobe analysis of the granulomatous tissues showed the presence of heavy components of the experimental material.
Short-term X-ray damage to the microvasculature of the skin of newborn rats has been quantitated using Horseradish Peroxidase as a tracer. Image analysis of thick sections on which peroxidase was demonstrated histochemically revealed a radioinduced increase in vascular volume coupled with a decrease in vascular length and an altered frequency distribution of blood vessel calibers which resulted in early telangiectasia. The results afforded by direct counting of peroxidase positive macrophagic cells and microphotometric evaluation of peroxidase present in the connective tissue indicate a progressive increase in capillary permeability as a function of dose and time post-irradiation. The accuracy with which the affected region of blood vessels coincided with the area exposed to the beam favours the hypothesis of direct damage to the vessel wall as a major cause of radioinduced lesion.
Silicone tubes filled with CRCS, a calcium hydroxide-based cement, were implanted at two different localizations in the right tibias of white male Wistar rats. A similar number of solid silicone rods were implanted in the left tibias of the same animals and were used as inert controls. Fifteen days after implantation the bone tissue reactions to these materials were evaluated by means of radiographic, histological, and histometric methods. The radiographic and histometric analysis of the tissues around the deep end of the implants showed that the amount of reactional bone formation in contact with CRCS was significantly lower than that observed in contact with the controls (p less than 0.01). Also, the cell counts obtained from the tissues in contact with CRCS were significantly less than those obtained from the controls (p less than 0.01). This methodology appears to be a refined procedure for analyzing the possible toxic effects of endodontic materials in bone tissues. However, we feel that more extensive experiments will be necessary before predicting the long-term results which could be obtained from this experimental model.
In acute intoxication, uranium (U) not only inhibits bone formation but its excretion in urine also causes renal damage. The former effect is ameliorated by tetracycline (TC), probably due to its chelation property, which might also prevent U deposition in bone. Chemical determination of U incorporated in bone and a histological study of the kidneys were performed on animals injected with U and then treated with TC. The results showed that TC was unable to prevent the binding of U to bone while it exacerbated U-induced renal damage.
In this study we performed an in vitro assay of the effects of two gutta-percha formulations and one zinc oxide-eugenol and Canada balsam-based endodontic material on the behavior of a mixed cell population of human monocytes and lymphocytes. Cells were cultured either in direct contact with or near experimental samples of Ultrafil, standard gutta-percha cones or Endoseal and the inhibitory effects of these materials upon cell attachment and spreading on test surfaces were analyzed. Ultrafil and the standard gutta-percha cones showed little or no adverse effects, whereas the inhibitory effects of Endoseal appeared to be severe. There were statistically significant differences between the results obtained from both Ultrafil and gutta-percha cones and those obtained from Endoseal. Differences between all tested materials and their respective controls were also statistically significant.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The dry mass of reaction products in ultrathin sections was determined using electron micrographs of polystyrene spheres of known weight deposited on Formvar membranes and evaluating the negatives photometrically. This method was applied to the quantification of the final reaction product of the acid phosphatase reaction in a model system in which enzyme was incorporated in gelatin. The enzyme activity was demonstrated by the lead precipitation method and quantified by direct microphotometry at the light microscope level. Models were then embedded and sectioned for electron microscopy. Microphotometric values afforded by the electron negatives were in linear correlation with incubation times and enzyme concentration. Section thickness and its possible variations due to deformation or contamination under the electron beam were also evaluated. Measurements of lysosomal acid phosphatase activity in rat kidney sections served to illustrate the application of the technique.