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Updated: Jun 15, 2026

Measurement of Tissue Oxygenation Using Near-Infrared Spectroscopy in Patients Undergoing Hemodialysis
Published on: October 2, 2020
The effects of L-carnitine therapy on respiratory function tests in chronic hemodialysis patients
Nuket Bavbek1, Hatice Akay, Burak Uz
1Fatih University Medical School, Department of Nephrology, Ankara, Turkey. ntbavbek@yahoo.com
Background:
Respiratory functions are affected during hemodialysis. The strength of respiratory muscles, ultrafiltration rate, and acid-base balance have been suggested as important factors. L-carnitine is crucial for energy producing, utilization of fatty acid, and possible amino acids. A lack of carnitine in hemodialysis patients is caused by insufficient carnitine synthesis and especially by its loss during dialysis. This study was performed to investigate the chronic effects of L-carnitine treatment on respiratory functions in adults receiving chronic hemodialysis therapy.
Methods:
A total of 20 hemodialysis patients were scheduled to take L-carnitine supplementation (20 mg/kg three times/week) (group 1), and the rest of 20 hemodialysis patients served as the control group and were observed without supplementation with L-carnitine (group 2). Pre- and post-dialytic L-carnitine levels and post-dialytic respiratory functions tests were performed in both groups at baseline and after six months.
Results:
The average concentration of free and total carnitine levels increased significantly after six months of supplementation (p < 0.01). While a statistically significant increase between postdialytic forced expiratory volume in one second/forced vital capacity values after treatment period (77.10 +/- 12.15 and 83.00 +/- 14.49, before and after treatment, respectively, p < 0.05) was observed, the increase of vital capacity, forced expiratory volume in one second, and forced expiratory flow between 25-75% of expired vital capacity were not significant in the treatment group (p > 0.05).
Conclusion:
Intravenous L-carnitine supplementation could contribute to the management of respiratory dysfunction in chronic hemodialysis patients by improving FEV1/FVC. The mechanism by which LC causes these effects merits further investigation.
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