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D A Dougherty

Publications and source records attributed to D A Dougherty.

At least 55 records · Page 3Linked to original sources

Effect of intracisternal and intravenous calcitonin gene-related peptide on experimental cerebral vasospasm in rabbits.

We investigated the vasodilatory effect of intracisternal (i.c.) and intravenous (i.v.) administration of calcitonin gene-related peptide (CGRP) on arterial narrowing after experimental subarachnoid hemorrhage (SAH). Forty-one rabbits were divided into five groups: control (normal animals); SAH plus i.c. infusion of vehicle; SAH plus i.c. infusion of CGRP; SAH plus i.v. infusion of vehicle; SAH plus i.v. infusion of CGRP. In all but the control group, either CGRP (100 ng/kg/min) or vehicle solution was infused for two hours immediately prior to sacrifice by perfusion-fixation. A morphometric technique was employed to measure the luminal diameter of rabbit basilar arteries two days after SAH. The diameter of the basilar arteries in either the i.c. or i.v. CGRP groups was significantly greater than that of the respective vehicle group (i.c., p < 0.001; i.v., p < 0.01). Although there was no significant difference in systemic arterial blood pressure after infusion between the i.c. vehicle and i.c. CGRP groups, i.v. CGRP caused significant hypotension. Our results suggest that exogenous CGRP has some therapeutic potential for arterial narrowing after SAH not only by intrathecal application, but also by systemic use.

Animals↗

Effect of bilirubin on rabbit cerebral arteries in vivo and in vitro.

The effect of bilirubin on vasoreactivity was examined in the exposed rabbit basilar artery (diameter, 1045 +/- 17 microns; n = 18) and its cortical branches (diameter, 265 +/- 11 microns; n = 43) in vivo. Vasoconstriction induced by uridine triphosphate (UTP; 10(-5) to 10(-3) mol/L) was observed in vivo before and after a 60-minute application of supersaturated bilirubin (10(-4) mol/L). Bilirubin was dissolved in modified artificial cerebrospinal fluid (pH 7.4) or in physiological salt solution (pH 7.6). The latter was spectrophotometrically estimated to contain a higher concentration of free bilirubin because of the formation of less colloid. After treatment with bilirubin in artificial cerebrospinal fluid, the effect was minimal in the basilar arteries (n = 7), whereas the diameter of the branches was reduced by 9.6 +/- 1.5% (n = 23) and UTP-induced vasoconstriction was potentiated. After application of bilirubin in physiological salt solution, the basilar arteries contracted slightly (-2.1 +/- 0.9%; n = 6) and the UTP-induced vasoconstriction in the branches was attenuated (n = 12). After a 60-minute incubation of basilar artery with bilirubin in physiological salt solution in vitro, isometric tension recordings showed a diminution in KCl- and UTP-induced vasoconstrictions. Acetylcholine- and sodium nitroprusside-induced relaxations were also attenuated. It is suggested that bilirubin may exert different effects depending on the size of arteries and the concentration of free bilirubin. The constrictor and potentiating effects of bilirubin could be caused by the impairment of the relaxation mechanism. When the toxic effect of bilirubin becomes severe, the constrictor mechanism is also damaged.

Acetylcholine↗

Effect of subarachnoid hemorrhage on serotonin uptake and metabolism in rabbit basilar artery.

The effects of subarachnoid hemorrhage (SAH) on neuronal uptake and metabolism of serotonin (5-HT) in the rabbit basilar artery were examined. Extracted 3H-amines from the isolated arteries after incubation with [3H]5-HT were separated by column chromatography. Radioactivity of 5-HT and 5-hydroxyindoleacetic acid was, respectively, 52.7 +/- 13.9 and 22.9 +/- 5.4 x 10(2) dpm/mg tissue in the control group (n = 8); 32 and 18% of control after denervation (n = 6); 99 and 12% of control after treatment with pargyline (n = 7); and 65 and 76% of control after SAH (n = 7). These results suggest that the neuronal uptake of 5-HT is impaired by SAH, although monoamine oxidase activity is relatively preserved.

Animals↗

Does vasospasm occur in small pial arteries and arterioles of rabbits?

BACKGROUND: Vasospasm is a serious complication associated with subarachnoid hemorrhage. Successful management of vasospasm will ultimately depend on a clear understanding of the scope of this phenomenon, including whether arterial elements of different calibers are equally affected. We therefore examined the responses to subarachnoid hemorrhage in rabbit basilar arteries, small pial arteries, and arterioles. SUMMARY OF REPORT: We compared the brain stem pial arteries of 10 perfusion-fixed male New Zealand White rabbits after experimental subarachnoid hemorrhage to those of five control rabbits using morphological analysis of cross-sections of plastic-embedded vessels. After subarachnoid hemorrhage, the internal elastic lamina was highly corrugated in all basilar arteries (mean diameter 319 +/- 51 microns). These arteries were severely constricted in comparison with the control group, in which the mean diameter was 691 +/- 17 microns, and corrugation of the internal elastic lamina was not present. In contrast, small pial arteries and arterioles very rarely demonstrated a vasoconstrictive configuration after subarachnoid hemorrhage. The contractility of the smaller vessels was confirmed by injecting 2 mg/kg BaCl2 intracisternally. Following BaCl2 injection, corrugation of the internal elastic lamina was detected in the small arteries and arterioles as well as the basilar arteries. CONCLUSIONS: We conclude that experimental chronic vasospasm after subarachnoid hemorrhage in rabbits tends to occur in large conducting arteries rather than in smaller pial arteries and arterioles.

Animals↗

Molecules of the early equine trophoblast.

Three monoclonal antibodies raised against equine trophoblast cells were tested to determine the characteristics of the identified molecules. First, the antibodies were used to precipitate molecules from radiolabelled equine trophoblast cells of the chorionic girdle. Antibody F71.1 precipitated a molecule of 115 kDa, whereas antibodies 71.8 and 71.10 precipitated a molecule of 66 kDa. Second, 2 of the antibodies were used in an indirect immunoperoxidase assay on frozen sections of equine conceptuses of different gestational ages beginning at Day 8. Antibody F71.1 labelled trophoblast cells from Day 13 onward, whereas antibody F71.8 first labelled trophoblast cells beginning on Day 24. Third, the antibodies were tested for reactivity with first trimester human placental tissues using an indirect immunoperoxidase assay. Antibody F71.1 labelled villous cytotrophoblast cells, whereas antibody F71.8 labelled only the syncytiotrophoblast cells. Neither antibody reacted with extra-villous trophoblast cells. The molecular weight and tissue distribution of the antigen identified by antibody F71.8 suggest that it may be a placental form of alkaline phosphatase. The molecule identified by antibody F71.1 was first detected very close to the time of maternal recognition of pregnancy in the mare.

Animals↗

Acetylcholine binding by a synthetic receptor: implications for biological recognition.

The neurotransmitter acetylcholine (ACh) is bound with 50-micromolar affinity by a completely synthetic receptor (host) comprising primarily aromatic rings. The host provided an overall hydrophobic binding site, but one that could recognize the positive charge of the quaternary ammonium group of ACh through a stabilizing interaction with the electron-rich pi systems of the aromatic rings (cation-pi interaction). Similar interactions may be involved in biological recognition of ACh and other choline derivatives.

Acetylcholine↗

Trichinella spiralis infections of inbred mice: immunologically specific responses induced by different Trichinella isolates.

The immune response of inbred mice was studied following infection with Trichinella spiralis var. pseudospiralis (TP) or with isolates of T. spiralis derived from a pig or from an arctic fox. Animals given a primary infection with 1 isolate of Trichinella and challenged 21 days later with the same or different isolates responded more quickly by expelling worms from the homologous challenge. In addition, although mesenteric lymph node cells from mice infected with each isolate of Trichinella would proliferate in vitro when cultured with antigen derived from each of the others, the strongest proliferation response always occurred when cells were cultured in the presence of antigen prepared from the specific isolate used to infect the mouse from which the cells were derived. In addition, it was possible to prepare monoclonal antibodies that recognized an antigen expressed by TP which was not shared by T. spiralis isolates and vice versa. Collectively, these data support the conclusion that the differences observed in the kinetics of immune responsiveness to different Trichinella isolates are referable, at least in part, to differences among the isolates in the expression of functionally relevant antigens.

Animals↗

Trichinella spiralis infections of inbred mice: genetics of the host response following infection with different Trichinella isolates.

The immune response of inbred strains of mice was studied following infection with isolates of Trichinella from a pig (P1), an arctic fox (AF1), and T. spiralis var. pseudospiralis (TP). Strains of mice previously characterized as highly resistant to a separate pig isolate of T. spiralis responded to the P1 and AF1 isolates by expelling over 80% of the worms by day 10 postinfection (PI), and by suppressing the in vitro release of newborn larvae by female worms. However, the response induced by AF1 worms was expressed more quickly when compared to responses induced by the P1 and TP isolates. The host response to TP was less as recovery was always higher at day 10 PI and antifecundity effects were not induced in TP worms even in highly resistant strains of mice. Strains of mice previously characterized as susceptible to T. spiralis infection were slow to develop resistance when compared to the resistant mouse strains, but even among the susceptible strains, infection with AF1 induced a more rapid response. The mouse strains used in these experiments allowed us to assess the role of the major histocompatibility complex (MHC) and/or non-MHC genes in influencing the responses observed. As previously reported for a pig isolate of T. spiralis, both MHC and non-MHC genes influenced the rate at which worms were expelled from the gut and the host response that limits the fecundity of adult female worms.

Animals↗

H-2-controlled, dose-dependent suppression of the response that expels adult Trichinella spiralis from the small intestine of mice.

H-2 congenic strains of mice expressing the H-2k, H-2q or H-2f haplotype were tested for their ability to expel Trichinella spiralis from the gut following infection with either 100, 150, 200, 400, 500, or 600 L1 infective larvae. H-2q and H-2f mice expelled worms more quickly than H-2k mice when 100-200 L1 larvae were given, but this H-2-controlled effect was much reduced when mice received 400 L1 larvae, and completely eliminated when 500 or 600 L1 larvae were given. The observed dose-dependent delay in the expulsion response was paralleled by a concurrent suppression of lymphocyte responsiveness. Lymphocytes from H-2q mice infected with 100-200 L1 larvae incorporated more [3H]thymidine than did cells from H-2k mice. However, this H-2-controlled difference was not apparent in cells from mice receiving 400-600 L1 larvae. The strongest proliferation response in each case was associated with mice infected with the smallest number of worms. Since strains of mice expressing H-2q or H-2f alleles were suppressed at high doses to a much greater extent than were mice expressing H-2k, H-2 genes must influence this dose-dependent response. Many earlier studies, which failed to demonstrate marked H-2 effects on immunity to T. spiralis, employed infective doses which are shown here to be preferentially suppressive to otherwise resistant strains of mice.

Animals↗

Mechanism of thermal rearrangement of the spiro bicyclo[2.1.0]-pentane-5,2'-methylenecyclopropanes to 6- and 7- methylenebicyclo[3.2.0]hept-1-enes.

The thermal rearrangements of the bicyclo[2.1.0]pentane-5,2'-methylenecyclopropanes fall into two classes. The first occurs near 80 degrees C and consists of a double epimerization ("bridge flip") which is initiated by cleavage of the bridge bond. An alternative mechanism by way of a trimethylenemethane intermediate is ruled out by an isotopic position-marking experiment. The second rearrangement begins to be detected above 120 degrees C. It gives the isomeric 6- and 7-methylenebicyclo[3.2.0]hept-1-enes. Two possible mechanisms can operate in this complex change, but a choice between them is not yet possible.

Journal Article↗