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Biomedical subjects

P T McBride

Publications and source records attributed to P T McBride.

7 recordsLinked to original sources

Gastric mucosal calcinosis. Calcified aluminum phosphate deposits secondary to aluminum-containing antacids or sucralfate therapy in organ transplant patients.

We have noticed calcium deposits (gastric mucosal calcinosis, or GMC) in the superficial gastric mucosa of 28 organ transplant patients (OTPs) (11 liver, seven bone marrow, four kidney, three kidney/pancreas, two heart, and one each of liver and kidney transplant) who underwent endoscopic biopsies. The deposits were tinctorially similar to cytomegalovirus inclusions, ranged from 40 to 250 mu in diameter, and were present just beneath the surface epithelium at the tips of the foveolae. An x-ray microanalysis showed that these mucosal deposits contained the elements aluminum, phosphorus, calcium, and chlorine. Clinical chart review showed that all OTPs with GMC were taking aluminum-containing antacids or sucralfate. Review of biopsies from gastric ulcer patients found GMC in a significantly smaller percentage than in transplant patients (32.7% vs. 5.1%, p < 0.0002). In addition, all three ulcer patients with calcified deposits were chronic renal failure patients on long-term aluminum-containing antacid therapy. Gastric mucosal calcinosis appears to be caused by aluminum phosphate accumulation secondary to antacid or sucralfate therapy in organ transplant patients. The presence of GMC in OTPs and chronic renal failure patients rather than other gastric ulcer patients is most likely due to the longer duration of therapy with aluminum-containing compounds in the former two patient groups. The clinical relevance of GMC remains to be seen. In theory, however, accelerated bone demineralization via loss of phosphates and absorption of aluminum in the gastrointestinal tract may be a consequence of long-term aluminum-containing antacid or sucralfate therapy.

Aluminum↗

Evaluation of triacontanol-containing compounds as anti-inflammatory agents using guinea pig models.

A mixture of the aliphatic alcohol, triacontanol, and other chemically associated naturally occurring alcohols was applied to the denuded dorsal cutaneous surface of guinea pigs to evaluate anti-inflammatory activity. In the setting of a chemical irritation with 2% croton oil and in an allergic dermatitis created with dinitrochlorobenzene sensitization and challenge, the triacontanol-containing preparation was significantly more effective than vehicle alone (DHL skin cream) but not as effective as 0.05% Diprolene ointment. Lymphocyte stimulation was studied by tritiated thymidine uptake and morphologic examination for blast transformation. When triacontanol-containing compounds were solubilized in aqueous media, effects on lymphocytes were insignificant. When solubilized in ethanol, there was a marked effect on thymidine uptake but not on blast transformation when compared to parallel controls.

Animals↗

Brainstem immaturity in sudden infant death syndrome: a quantitative rapid Golgi study of dendritic spines in 95 infants.

Quantitative analysis of reticular dendritic spines was performed on rapid Golgi impregnated neurons in 7 brainstem areas from 61 sudden infant death syndrome (SIDS) and 34 control infants. Throughout the first postnatal year, mean spine density in SIDS was significantly greater than the mean density in controls (P less than 0.0001). There were significantly higher values of spine density in SIDS compared to controls (P less than 0.0001) in both term and preterm infants. Within the SIDS brainstem itself, the density of dendritic spines was significantly different (P less than 0.05) between two medullary regions and between reticular and non-reticular formation areas. Among these brainstem areas in controls, there was no significant difference. Our findings indicate an immature developmental pattern of increased dendritic spine density in the SIDS brainstem which may be responsible for abnormal central respiratory and arousal control. These significant quantitative differences in spine density are considered in the present study to represent an anatomical substrate of brainstem immaturity in the multifactorial pathogenesis of SIDS.

Brain Stem↗

Automated, quantitative cytopathic effect reduction assay for interferon.

A rapid, cytopathic effect reduction assay for human interferon (IFN) is described. Dilutions of IFN were made with an automated diluter in 96-well microtiter plates. Total incubation time was 26 h. IFN titers were calculated from optical density readings of crystal violet-stained monolayers in an automated spectrophotometer, which required less than 1 min to read each plate.

Biological Assay↗