Swedish
Albanian
Arabic
Armenian
Azerbaijani
Belarusian
Bengali
Bosnian
Catalan
Czech
Danish
Deutsch
Dutch
English
Estonian
Finnish
Français
Greek
Haitian Creole
Hebrew
Hindi
Hungarian
Icelandic
Indonesian
Irish
Italian
Japanese
Korean
Latvian
Lithuanian
Macedonian
Mongolian
Norwegian
Persian
Polish
Portuguese
Romanian
Russian
Serbian
Slovak
Slovenian
Spanish
Swahili
Swedish
Turkish
Ukrainian
Vietnamese
Български
中文(简体)
中文(繁體)
Biology of the neonate 1984

Modulation of the blood-brain barrier permeability in neonatal cytotoxic brain edema: laboratory and morphological findings obtained on newborn piglets with experimental pneumothorax.

Endast registrerade användare kan översätta artiklar
Logga in Bli medlem
Länken sparas på Urklipp
P Temesvári
P Hencz
F Joó
E Eck
P Szerdahelyi
D Boda

Nyckelord

Abstrakt

Acute, bilateral pneumothorax (PT) was produced in 14 newborn piglets. The clinical status of the operated and 14 control animals was monitored by measuring the arterial blood gases, acid-base balance and mean arterial blood pressure. Different brain regions were processed for electron microscopy and albumin immunohistochemistry; water and electrolyte contents were also determined at the end stage of experimental intervention. Electron microscopy showed more intense pinocytotic activity in the endothelium of brain capillaries from PT animals evaluated by morphometry. Statistically significant (p less than 0.01) differences were found in the distribution of pinocytotic vesicles in different brain areas of PT animals. The blood-brain barrier seemed to be impermeable to albumin in all brain regions both in the controls and in the PT group. Parallel with the changes observed in pinocytosis, the water and sodium contents were also increased in the PT group in the parietal cortex (water content 85.18 +/- SD 0.81% vs. 84.10 +/- SD 0.52%, p less than 0.01; sodium content in wet brain tissue 70.94 +/- SD 8.44 mmol/kg vs. 65.09 +/- SD 4.43 mmol/kg, p less than 0.05, in dry brain tissue 481.70 +/- 75.70 mmol/kg vs. 410.15 +/- SD 35.45 mmol/kg, p less than 0.05) and in the cerebellum (water content 83.95 +/- SD 1.08% vs. 83.02 +/- SD 0.89%, p less than 0.05; sodium content in wet brain tissue 60.67 +/- SD 3.16 mmol/kg vs. 55.90 +/- 6.26 mmol/kg, p less than 0.01). However, in other brain regions--especially in the water-shed area--there was no correlation between the changes of pinocytosis and water-electrolyte contents of the tissues. It is suggested that the type of edema developing in this severe cardiovascular/hypoxic collapse is cytotoxic of origin and this fact should be more seriously taken into account in the treatment of the disease.

Gå med på vår
facebook-sida

Den mest kompletta databasen med medicinska örter som stöds av vetenskapen

  • Fungerar på 55 språk
  • Växtbaserade botemedel som stöds av vetenskap
  • Örter igenkänning av bild
  • Interaktiv GPS-karta - märka örter på plats (kommer snart)
  • Läs vetenskapliga publikationer relaterade till din sökning
  • Sök efter medicinska örter efter deras effekter
  • Organisera dina intressen och håll dig uppdaterad med nyheterna, kliniska prövningar och patent

Skriv ett symptom eller en sjukdom och läs om örter som kan hjälpa, skriv en ört och se sjukdomar och symtom den används mot.
* All information baseras på publicerad vetenskaplig forskning

Google Play badgeApp Store badge