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Biomedical subjects

D Diederich

Publications and source records attributed to D Diederich.

At least 37 records · Page 2Linked to original sources

Difference between endothelium-dependent relaxation in arterial and in venous coronary bypass grafts.

Both the internal mammary artery and the saphenous vein are used to construct coronary-artery bypass grafts. We hypothesized that the release or production of endothelium-derived relaxing factor, which regulates blood flow and inhibits platelet function, may differ in venous and arterial grafts. We therefore studied endothelium-dependent relaxation in internal mammary arteries, internal mammary veins, and saphenous veins obtained from 58 patients undergoing coronary bypass surgery. Vascular rings with and without endothelium were suspended in organ chambers, and isometric tension was recorded. Acetylcholine (10(-8) to 10(-4) M), thrombin (1 U per milliliter), and adenosine diphosphate (10(-7) to 10(-4) M) evoked potent endothelium-dependent relaxation in the mammary artery but weak response in the saphenous vein (P less than 0.005; n = 6 to 27). In the mammary artery, relaxation was greatest in response to acetylcholine (86 +/- 4 percent reduction in norepinephrine-induced tension), followed by thrombin (44 +/- 7 percent) and adenosine diphosphate (39 +/- 8 percent). In the saphenous and mammary veins, relaxation was less than 25 percent. Relaxation was unaffected by indomethacin but was inhibited by methylene blue and hemoglobin (P less than 0.005 and 0.01, respectively), which suggests that endothelium-derived relaxing factor was the mediator. Endothelium-independent relaxation in response to sodium nitroprusside was similar in arteries and veins. We conclude that endothelium-dependent relaxation is greater in the mammary artery than in the saphenous vein. The possibility that this contributes to the higher patency rate among arterial grafts than among venous grafts will require further study.

Acetylcholine↗

Endothelium-dependent responses in carotid and renal arteries of normotensive and hypertensive rats.

Endothelium-dependent relaxations are impaired in the aorta of various models of hypertension, but no data are available regarding the cerebral or renal circulation. Endothelium-dependent relaxations were studied in the carotid and renal artery of Wistar-Kyoto rats (WKY) and spontaneously hypertensive rats (SHR). Rings with and without endothelium were suspended in organ chambers for isometric tension recording. Acetylcholine and adenosine 5'-diphosphate (ADP) caused endothelium-dependent relaxations in both arteries that were impaired in the carotid, but not in the renal artery, of the SHR, similar to those to the endothelium-independent vasodilator sodium nitroprusside. Indomethacin did not affect relaxations to acetylcholine in the carotid artery, but it significantly augmented them in the renal artery. This finding suggests that an impaired vascular responsiveness to endothelium-derived relaxing factor is responsible for the decreased relaxations in the carotid artery of the SHR. In the renal artery, acetylcholine appears to release both endothelium-derived relaxing factor and a vasoconstrictor prostanoid. Carotid arteries of SHR were more sensitive to the constrictor effects of serotonin than were those of WKY. Endothelium removal caused a twofold to eightfold increase in sensitivity to serotonin in both strains. Thus, endothelium-dependent relaxations to acetylcholine and ADP are reduced and constrictions to serotonin are enhanced in the carotid, but not in the renal, artery of the SHR.

Acetylcholine↗

PH-dependent accumulation of clindamycin in a polycystic kidney.

We determined the concentrations of clindamycin and gentamicin in fluid aspirated from 16 cysts of a surgically excised polycystic kidney. The patient had received both drugs intravenously for seven days before nephrectomy. The cysts were grouped into proximal (pH greater than 6.5) and distal (pH less than 6.5) types according to the pH of the fluid. In nine proximal cysts the mean concentration of gentamicin was 1.3 +/- 0.2 and that of clindamycin was 9.2 +/- 2.3 micrograms/mL. In seven distal cysts the gentamicin concentration was 0.7 +/- 0.2 micrograms/mL and the clindamycin concentration was 34.0 +/- 5.2 micrograms/mL. Plasma gentamicin was 3.8 (peak) and 1.9 (trough) micrograms/mL, and clindamycin was 3.9 micrograms/mL (random). Clindamycin cyst concentrations showed an inverse correlation with cyst fluid pH (r2 = 0.78). These studies confirm that in autosomal dominant polycystic kidney disease (ADPKD), certain cysts develop steep pH gradients between fluid and plasma and indicate that intracystic pH determines the extent to which basic lipophilic antibiotics accumulate in the fluid. Lipid-soluble antibiotics with relatively alkaline pKaS may be useful in the treatment of infected renal cysts.

Body Fluids↗