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D M Diffley

Publications and source records attributed to D M Diffley.

3 recordsLinked to original sources

Creatine kinase of heart mitochondria. Control of oxidative phosphorylation by the extramitochondrial concentrations of creatine and phosphocreatine.

Defining how extramitochondrial high-energy phosphate acceptors influence the rates of heart oxidative phosphorylation is essential for understanding the control of myocardial respiration. When the production of phosphocreatine is coupled to electron transport via mitochondrial creatine kinase, the net reaction can be expressed by the balanced equation: creatine + Pi----phosphocreatine + H2O. This suggests that rates of oxygen consumption could be regulated by changes in [creatine], [Pi], or [phosphocreatine], alone or in combination. The effects of altering these metabolites upon mitochondrial rates of respiration were examined in vitro. Rat heart mitochondria were incubated in succinate-containing oxygraph medium (pH 7.2, 37 degrees C) supplemented with five combinations of creatine (1.0-20 mM), phosphocreatine (0-25 mM), and Pi (0.25-5.0 mM). In all cases, the mitochondrial creatine kinase reaction was initiated by additions of 0.5 mM ATP. To emphasize the duality of control, the results are presented as three-dimensional stereoscopic projections. Under physiological conditions, with 5.0 mM creatine, increases in Pi or decreases in phosphocreatine had little influence upon mitochondrial respiration. When phosphocreatine was held constant (15 mM), changes in [creatine] modestly stimulated respiratory rates, whereas Pi again showed little effect. With 1.0 mM Pi, respiration clearly became dependent upon changes in [creatine] and [phosphocreatine]. Initially, respiratory rates increased as a function of [creatine]. However, at [phosphocreatine] values below 10 mM, product "deinhibition" was observed, and respiratory rates rapidly increased to 80% State 3. With 2.0 mM Pi or higher, respiration could be regulated from State 4 to 100% State 3. Overall, the data show how increasing [creatine] and decreasing [phosphocreatine] influence the rates of oxidative phosphorylation when mediated by mitochondrial creatine kinase. Thus, these changes may become secondary cytoplasmic signals regulating heart oxygen consumption.

Animals↗

Direct observation of 6-fluorodopamine in guinea pig nerve microsacs by 19F NMR.

19F nuclear magnetic resonance (NMR) has been used to examine the disposition of ring-fluorinated dopamine and norepinephrine in microsacs prepared from striata of guinea pig brains. Following incubation with a 10(-4)M initial concentration of 6-fluorodopamine (6F-DA), intact micmicrosacs at 4 degrees C gave a 19F NMR spectrum in which the 6F-DA present was sufficiently mobile to be visible. Intra-vesicular 6F-DA in striatal nerve terminals thus appears to exist in an environment resembling that in chromaffin vesicles but different from that prevailing inside the amine storage vesicles of platelets. Our data also suggest that the study of fluorinated compounds by 19F NMR can be used to expand our understanding of processes related to amine uptake, metabolism, and storage in nerves.

Animals↗

Concha bullosa: CT evaluation.

Aeration of the middle turbinate, termed "concha bullosa," is a common anatomical variant of intranasal anatomy. Of 320 patients evaluated for sinus disease with coronal CT, 34% had concha bullosa on at least one side. The overall incidence of inflammatory disease in the ostiomeatal complex in these symptomatic patients was not different between those with and without concha bullosa. However, there were many cases in which an abnormally large middle turbinate appeared to obstruct the ostiomeatal complex causing secondary infection of the ethmoid, frontal, and maxillary sinuses. Obstruction of drainage of the concha bullosa itself can lead to mucocele formation. Furthermore, the presence of a concha bullosa has important implications for the technique of endoscopic surgery used in the management of the sinus disease. The anatomy, pathophysiology, and CT findings in patients with concha bullosa are reviewed.

Adolescent↗