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Biomedical subjects

M Frydrychová

Publications and source records attributed to M Frydrychová.

12 recordsLinked to original sources

Hydrogen peroxide in the breath of rats: the effects of hypoxia and paraquat.

The hypothesis that oxidative stress can be induced by hypoxia was tested by measuring the concentration of hydrogen peroxide by a luminometric technique in the breath samples of rats exposed to hypoxia and paraquat. The group of animals (n=15) exposed to normobaric hypoxia (10% O2) for three days had an increased amount of H2O2 (200%, P<0.001) in their breath in comparison to control animals. After 7 days of recovery in air, the exposed animals still produced significantly increased levels of H2O2 (152%, P<0.001). Paraquat administration was used as a positive control, since it is a redox cycling compound producing free radicals. In the animals treated with a toxic dose of paraquat, the peak H2O2 production was observed 5 h after i.p. injection (156%, P<0.02). Within the next 2 h it decreased to the control level and stayed constant for 48 h, when the animals began to die. It is suggested that H2O2, observed in the breath samples, is a product of a metabolic pathway that could itself be sensitive to oxidative damage.

Animals↗

Production of hydrogen peroxide by peritoneal macrophages from rats exposed to subacute and chronic hypoxia.

Hydrogen peroxide production was measured in non-elicited rat peritoneal macrophages using luminol-dependent chemiluminescence (LDCL). Isolated cells were activated by a chemotactic peptide (FMLP) or by a phorbol ester (PMA) or by the combination of both. A hundred-fold higher LDCL intensity was achieved with PMA relative to FMLP. However, when FMLP was added subsequently to PMA it produced approximately the same response as did PMA. These measurements were carried out with cells isolated from controls and from animals exposed to normobaric hypoxia (10% O2) for 3 hours, 3 days, or 21 days. Hypoxia had a dual effect. Acutely (within 3 hours) it attenuated the production of hydrogen peroxide triggered by PMA, whilst during longer exposure (3 or 21 days) it increased the response induced by FMLP. Hypoxia can thus modulate the capacity of respiratory burst in peritoneal macrophages.

Animals↗

Dynamics of eye fundus changes in two types of experimental brain oedema.

During the experimentally induced cerebral oedema and intracranial hypertension the eye fundus changes have been evaluated in generally anaesthetized rats. Cerebral oedema was caused either by means of an osmotic or cryogenic method. Dynamics of the observed ocular changes were indirectly correlated with the origin, development and regression of the cerebral oedema caused by both different etiologic factors.

Animals↗

The role of vagal nerves in changes of functional residual lung capacity during acute hypoxia.

Functional residual capacity of the lungs (FRC) was measured by a plethysmographic method in anaesthetized, intubated rats breathing air or a hypoxic mixture (10% O2 in N2), before and after bilateral cervical vagotomy. Inhalation of the with intact vagi, the drop in Pao2 was accompanied by a significant rise of FRC; after hypoxic mixture led to the same decrease in Pao2 before and after vagotomy. In rats vagotomy, hypoxia did not affect the FRC. The vagal nerves are thus apparently necessary for the increase of FRC during hypoxia in the rat.

Acute Disease↗

[Angiosarkoma].

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