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Biomedical subjects

A Stratone

Publications and source records attributed to A Stratone.

At least 19 recordsLinked to original sources

Evidence for the involvement of cerebral renin-angiotensin system (RAS) in stress analgesia.

Studies concerning variations of the central renin-angiotensin system (RAS) during immobilization stress in rats have shown a significant increase in renin-like activity in the hypothalamus and fronto-parietal cortex, together with a definite decrease in the hypophysis and pineal gland. The resultant stress analgesia is blocked by the previous administration of naloxone and saralasin (angiotensin II antagonist). The intracerebral administration of renin and angiotensin II produces an increase in latencies to thermoalgesic stimuli; this is reduced, as is immobilization stress, by naloxone and saralasin. Both chemical hypophysectomy obtained by dexamethasone pretreatment as well as surgical epiphysectomy block the stress-induced analgesia. The experimental data obtained argue in favour of the participation of the cerebral RAS in stress analgesia through the indirect mechanism of release of opioid peptides.

Analgesia↗

Possible hormonal role of the angiotensin-like peptides in mammals' pineal gland.

An isorenin is synthetized in the pineal gland cells. The amount of isorenin as well as the synthesis of angiotensin I and II in the pineal gland depends on the circadian rhythm, osmotic stimuli and stimulation of the cervical sympathetic postganglionar fibres. Pineal angiotensin is released both into the blood and in the cerebrospinal fluid (CFS). The major site of the pineal angiotensin action are the circumventricular organs, the preiventricular receptors of the anterior hypothalamus and the epiphysis cerebri itself. Except its participation in regulating arterial pressure and the hydroelectrolytic metabolism, through its central effects on the brain, pineal angiotensin-like peptides also participate in the pool of circulating angiotensin and it may represent Farrell's pineal glomerulotropic factor.

Angiotensin I↗

A renin-like activity in pineal gland and hypophysis.

The presence and distribution of renin-like activity in hypophysis, pineal gland and some neural tissues were studies in both normal and salt-loaded rats. The Boucher micromethod was used to detect enzymatic activity. In normal rats both the pituitary and pineal glands contained significantly higher values of renin-like activity than did the other tissues examined. In salt-loaded animals there was a significant decrease of the renin-like activity of the glandular tissue while in the other brain areas the activity increased. The results are discussed in terms of the possible physiological role of the central renin-angiotensin system in the regulation of fluid and electrolyte balance.

Animals↗

[Cerebral renin-like activity in different functional conditions (author's transl)].

Using the Boucher micromethod of determining renin activity in the frontoparietal cortex, brain stem, hypothalamus, hypophysis, and epiphysis rat tissue in different functional conditions, we have observed the following: 1 In rats previously treated with an I. V., injection of 1-1.5 ml 10% NaCl, an increase of renin-like activity was found in the cerebral cortex, brain stem and hypothalamus, whereas in the grandular tissue there was a significant decrease...

Angiotensin II↗

A renin-like activity in pineal gland and hypophysis.

Using Boucher micromethod for determining renin activity in the rat pineal gland and hypophysis tissues, before and after NaCl 10% i.v. administration, the normal rats showed an average value of 96.8 +/- 21 ng Ang/g/h at the hypophysis level, and 325 +/- 66 ng Ang/g/h in epiphysis. In rats previously treated with 1--1.5 ml. NaCl 10% i.v., a more reduced renin-like activity was found both in hypophysis and epiphysis, that is 36.5 +/- 13 ng Ang/g/h and 144.5 +/- 38 Ang/g/h, respectively. In keeping with the previous data regarding the drinking and ADH-releasing effects of angiotensin, the obtained results plead for a possible participation of the cerebral glandular tissue renin in the self-regulating of the hydroelectrolytic balance.

Animals↗

[The role of paraclinical studies in the diagnosis of hypomagnesemia spasmophilia].

Assuming that Ca+2 and Mg+2 play an important role in the cell (especially the neuronal and muscular ones) membrane excitability, this paper presents the place that the paraclinical specific investigations have in the proper diagnose of normal calcium serum level hypo-magnesium spasmophilia. A number of 52 patients presenting significant clinical spasmophilia, of age between 21 and 55 years old, from different professions and social classes, were selected for this study. Paraclinical investigations (spectrophotometry) showed a normal serum calcium level (an average of 9.22 mg%); also, a decrease of Mg+2 serum level (an average of 1.41 mg%) and normal levels for Na+ (3.04 g/l) and K+ (0.21 g/l). The electrophysiological investigations (EMG, EEG, VCN m, EKG) performed showed, on the EMG recordings, in 85% of the cases the presence of the typical spasmophilic repetitive discharges, increased when using compression ischemia and 3 minutes hyperventilation, while on the EEG recordings, most patients demonstrated the presence of diffuse or mainly frontal lobe cortical bioelectrical activity alteration, either in spontaneous conditions or after specific stimulation (3 minutes hyperventilation or SLI). The muscle bioelectrical activity was analyzed by mean of EMG recordings--a decrease of VCN m was detected on the SPE nerve (34.4 m/s) and also on the SPI nerve (34.2 m/s) The EKG recordings performed showed in 5% of the cases the presence of the ventricular repolarization disturbances (flat T waves). After receiving a proper treatment which included oral administration of calcium and magnesium gluconolactate, magnesium gluconolactate with B6 vitamin or Trimagant, there were important changes of all the studied parameters and so, as a specific therapy, we recommend the use of Mg+2 compounds, because it demonstrates a significant improvement of the clinical symptoms in spasmophilia and has no danger to precipitate in the body as Ca+2 exceeding does.

Adult↗

[The electroencephalographic aspects in stress epistaxis].

The nasal haemorrhage is a symptom whose significance is seldom completely investigated. In this paper we present the results that we have obtained in two groups of patients: a pediatric population who presented for repeated episodes of nasal haemorrhage and a group of first trimester pregnant women who also have noticed the appearance of this symptom. Beside the clinical examination, a paraclinical assessment has been performed, which included a laboratory profile (hematology and biochemistry) and electroencephalography (EEG), in which we found significant changes. We conclude that EEG is a valuable investigation technique for diagnosis and monitoring purposes in nasal hemorrhage. Also, the clinical management of the stress-related nasal hemorrhage must address multiple issues for becoming efficient.

Adolescent↗