1. The efflux of labelled phosphate was measured in desheathed rabbit vagus nerve at rest and during activity.2. In solutions with 2 mM-phosphate and 1 mM-K the rate constant of the resting efflux was 2.7 x 10(-3) min(-1); stimulation caused an extra fractional loss of 2.8 x 10(-6) impulse(-1).3. Lowering the phosphate concentration decreased the resting and the stimulated efflux; with 0.2 mM-phosphate the corresponding values were 1.9 x 10(-3) min(-1) and 1.8 x 10(-6) impulse(-1), respectively.4. Increasing the K to 5.6 mM decreased both resting and stimulated efflux.5. Lowering the temperature decreased the resting efflux with a Q(10) of 2.9 and the stimulated efflux with a Q(10) of 8.1.6. Chromatography of the effluent showed that at rest and during activity at least 96% of the radiophosphate was in the orthophosphate fraction.7. Replacing the Na of the solution by Li lowered the rate constant of the resting efflux to 0.8 x 10(-3) min(-1) and abolished the extra release during activity, without reduction of the action potential.8. The presence of ouabain did not affect the resting efflux, except at 100 muM, when a transient reduction was found. The extra fractional loss was not affected with 0.001 muM; with 0.01-0.5 muM, it was reduced without much change in the action potential, and abolished at higher concentrations.9. The results agree with the hypothesis that the extra release results from an increase in internal inorganic phosphate caused by increased break-down of ATP during recovery.10. Comparison with the O(2) consumption shows that about 1% of the inorganic phosphate liberated at the inside of the axons escapes to the outside.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1282921 | PMC |
http://dx.doi.org/10.1113/jphysiol.1980.sp013315 | DOI Listing |
STAR Protoc
December 2024
Department of Immunology, Army Medical University, Chongqing 400038, P.R. China. Electronic address:
The trabecular meshwork (TM) regulates intraocular pressure (IOP) by converting biochemical and biomechanical stimuli into intracellular signals. Recent electrophysiological studies demonstrated that this process is mediated by pressure sensing ion channels in the TM plasma membrane while the molecular and functional properties of channels that underpin ionic homeostasis in resting cells remain largely unknown. Here, we demonstrate that the TM resting potential is subserved by a powerful cationic conductance that disappears following Na removal and substitution with choline or NMDG.
View Article and Find Full Text PDFJ Mol Cell Cardiol
August 2024
Department of Physiology, Faculty of Medicine, Masaryk University, Brno, Czech Republic.
The sarcolemmal Ca efflux pathways, Na-Ca-exchanger (NCX) and Ca-ATPase (PMCA), play a crucial role in the regulation of intracellular Ca load and Ca transient in cardiomyocytes. The distribution of these pathways between the t-tubular and surface membrane of ventricular cardiomyocytes varies between species and is not clear in human. Moreover, several studies suggest that this distribution changes during the development and heart diseases.
View Article and Find Full Text PDFPharmaceutics
May 2024
Institute of Science, Nirma University, Ahmedabad 382481, India.
Antibiotic-resistant strains of are being viewed as a serious threat by various public health agencies. Identifying novel targets in this important pathogen is crucial to the development of new effective antibacterial formulations. We investigated the antibacterial effect of a colloidal nanosilver formulation, Silversol, against an antibiotic-resistant strain of using appropriate in vitro assays.
View Article and Find Full Text PDFBlood
September 2024
Division of Digestive Diseases, Department of Medicine, Emory University School of Medicine, Atlanta, GA.
Ferroportin (Fpn) is the only iron exporter, playing a crucial role in systemic iron homeostasis. Fpn is negatively regulated by its ligand hepcidin, but other potential regulators in physiological and disease conditions remain poorly understood. Diabetes is a metabolic disorder that develops body iron loading with unknown mechanisms.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!