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1.
Ann Agric Environ Med ; 21(4): 804-9, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-25528924

RESUMEN

INTRODUCTION AND OBJECTIVE: Caffeine is one of the world's most commonly ingested alkaloids which easily permeates the placenta. The teratogenic and embryotoxic influence of large doses of caffeine has been established in many experimental studies on animals. The objective of this work was to assess the influence of caffeine, administered at 45 °C, on the development of the bone tissue of rats, with particular reference to elemental bone composition using an X-ray microprobe. MATERIALS AND METHODS: The research was conducted on white rats of the Wistar strain. The fertilized females were divided into two groups: an Experimental Group (Group E) and a Control Group (Group C). The females in Group E were given caffeine orally (at 45 °C) in 30 mg/day doses from the 8th to the 21st day of pregnancy. The females in Group C were given water at the same temperature. The fetuses were used to assess the growth and mineralization of the skeleton. A qualitative analysis of the morphology and mineralization of bones was conducted using the alcian-alizarin method. For calcium and potassium analysis, an X-ray microprobe was used. RESULTS: By staining the skeleton using the alcian-alizarin method, changes in 52 of Group E fetuses were observed. The frequency of the development variants in the Group E rats was statistically higher, compared with Group C. CONCLUSIONS: Receiving caffeine at a higher temperature may result in different pharmacodynamics and significantly change tolerance to it. In Group E, a significant decrease in the calcium level, as well as an increase in the potassium level, was observed. The X-ray microprobe can be a perfect complement to the methods which enable determination of the mineralization of osseous tissue.


Asunto(s)
Desarrollo Óseo/efectos de los fármacos , Cafeína/farmacología , Calor , Animales , Huesos/química , Cafeína/administración & dosificación , Calcio/análisis , Femenino , Desarrollo Fetal , Potasio/análisis , Embarazo , Ratas , Ratas Wistar
2.
Folia Histochem Cytobiol ; 50(3): 436-43, 2012 Oct 08.
Artículo en Inglés | MEDLINE | ID: mdl-23042276

RESUMEN

Caffeine is a methylxanthine which permeates the placenta. In studies on animals, it has been shown to produce teratogenic and embryotoxic effects in large doses. The objective of this study was to assess the influence of caffeine on the development of bone tissue, with particular reference to elemental bone composition using an X-ray microprobe. The research was conducted on rats. The fertilized females were randomly divided into an experimental and a control group. The experimental group was given caffeine orally in 30 mg/day doses from the 8th to the 21st day of pregnancy, while the control group was given water. The fetuses were used to assess the growth and mineralization of the skeleton. On the basis of double dyeing, a qualitative analysis of the bone morphology and mineralization was conducted. For calcium and potassium analysis, an X-ray microprobe was used. In 67 fetuses from the experimental group, changes in skeleton staining with the alcian-alizarin method were noticed. The frequency of the development of variants in the experimental group was statistically higher. In the experimental group,a significant decrease in the calcium level, as well as an increase in the potassium level, was observed. The X-ray microprobe's undoubted advantage is that is offers a quick qualitative and quantitative analysis of the elemental composition of the examined samples. Employing this new technique may furnish us with new capabilities when investigating the essence of the pathology process.


Asunto(s)
Desmineralización Ósea Patológica/diagnóstico por imagen , Huesos/diagnóstico por imagen , Huesos/patología , Cafeína/administración & dosificación , Cafeína/efectos adversos , Animales , Enfermedades del Desarrollo Óseo/patología , Huesos/efectos de los fármacos , Huesos/embriología , Calcio/metabolismo , Femenino , Potasio/metabolismo , Radiografía , Ratas , Ratas Wistar , Rayos X
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