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K-H Stadlbauer

Publications and source records attributed to K-H Stadlbauer.

3 recordsLinked to original sources

Changes of local brain tissue oxygen pressure after vasopressin during spontaneous circulation.

BACKGROUND: Brain tissue oxygen pressure (PbtO2) correlates to cerebral blood flow (CBF) during spontaneous circulation, with one important regulator being nitric oxide (NO). Although it is established that arginine vasopressin (AVP) improves CBF and global cerebral oxygenation during cardiopulmonary resuscitation, it is unknown whether similar beneficial effects are present during spontaneous circulation. The purpose of this study was to investigate the effects of AVP with and without pre-treatment with the NO synthase inhibitor N-omega-nitro-L-arginine methyl ester (L-NAME) on local brain tissue oxygenation in a beating heart model. METHODS: Following approval of the Animal Investigational Committee, nine healthy piglets underwent general anaesthesia, and were instrumented with a probe in the cerebral cortex to measure PbtO2. Each animal was assigned to receive AVP (0.4 U . kg(-1)), and after a wash-out period, L-NAME (25 mg x kg(-1) over 20 min) followed by AVP (0.4 U x kg(-1)). After each AVP administration, nitroglycerine (25 microg x kg(-1) over 1 min) as a NO donor was infused to test the vascular reactivity independently from NOS inhibition. FINDINGS: Three minutes after administration of AVP, PbtO2 increased significantly (P < .05; mean +/- SEM, 31 +/- 11 versus 43 +/- 14 mm Hg, +39%), compared with baseline. After pre-treatment with L-NAME, the changes of PbtO2 after AVP were not significant (32 +/- 11 versus 28 +/- 10, -13%) when compared with the baseline. CONCLUSION: In this beating heart porcine model, local brain tissue oxygenation was improved after AVP alone, but not after inhibition of NO synthesis with L-NAME.

Animals↗

[Stem cell therapy for urinary incontinence].

Experimental and clinical studies investigated whether urinary incontinence can be effectively treated with transurethral ultrasound-guided injections of autologous myoblasts and fibroblasts.This new therapy was performed in eight female pigs. It could be shown that the injected cells survived well and that new muscle tissue was formed. Next, 42 patients (29 women, 13 men) suffering from urinary stress incontinence were treated. The fibroblasts were mixed with a small amount of collagen as carrier material and injected into the urethral submucosa to treat atrophies of the mucosa. The myoblasts were directly injected into the rhabdosphincter to reconstruct the muscle and to heal morphological and functional defects. In 35 patients urinary incontinence could be completely cured. In seven patients who had undergone multiple surgical procedures and radiotherapy urinary incontinence improved. No side effects or complications were encountered postoperatively. The experimental as well as the clinical data clearly demonstrate that urinary incontinence can be treated effectively with autologous stem cells. The present data support the conclusion that this new therapeutic concept may represent a very promising treatment modality in the future.

Adult↗