PubMed HealthSearch

Biomedical subjects

F Cosentino

Publications and source records attributed to F Cosentino.

At least 19 recordsLinked to original sources

Tetrahydrobiopterin restores endothelial function in hypercholesterolemia.

In hypercholesterolemia, impaired nitric oxide activity has been associated with increased nitric oxide degradation by oxygen radicals. Deficiency of tetrahydrobiopterin, an essential cofactor of nitric oxide synthase, causes both impaired nitric oxide activity and increased oxygen radical formation. In this study we tested whether tetrahydrobiopterin deficiency contributes to the decreased nitric oxide activity observed in hypercholesterolemic patients. Therefore, L-mono-methyl-arginine to inhibit basal nitric oxide activity, serotonin to stimulate nitric oxide activity, and nitroprusside as endothelium-independent vasodilator were infused in the brachial artery of 13 patients with familial hypercholesterolemia and 13 matched controls. The infusions were repeated during coinfusion of L-arginine (200 microg/kg/min), tetrahydrobiopterin (500 microg/min), or the combination of both compounds. Forearm vasomotion was assessed using forearm venous occlusion plethysmography and expressed as ratio of blood flow between measurement and control arm (M/C ratio). Tetrahydrobiopterin infusion alone did not alter M/C ratio. Both the attenuated L-mono-methyl-arginine-induced vasoconstriction as well as the impaired serotonin-induced vasodilation were restored in patients during tetrahydrobiopterin infusion. Tetrahydrobiopterin had no effect in controls. In conclusion, this study demonstrates restoration of endothelial dysfunction by tetrahydrobiopterin suppletion in hypercholesterolemic patients.

Adult

Effect of age on kinetics of nitric oxide release in rat aorta and pulmonary artery.

Aging is an important determinant of vascular disease. Endothelium-derived nitric oxide (NO) is protective as a vasodilator and inhibitor of platelet function. This study was designed to directly measure effects of prolonged aging on endotheliai NO release in isolated blood vessels and to delineate differences between the systemic and pulmonary circulation. Aortas and pulmonary arteries from 5-6-mo-old (young), 18-19-mo-old (middle-aged), and 32-33-mo-old (old) normotensive female rats were used. Blood pressure and plasma estradiol-17beta (E2) remained unchanged. In isolated blood vessels, NO release was induced by the receptor-independent agonist calcium ionophore A23187 (10 micromol/liter) and measured in situ on the endothelial surface of vessels using a porphyrinic microsensor. In vessels suspended in organ chambers isometric tension was recorded. In the aorta, the initial rate of NO release and peak NO concentration were reduced in middle-aged and old rats (P < 0.0006 vs. young rats, n = 6). Furthermore, endothelium-dependent relaxations to calcium ionophore and acetylcholine (both 10(-10) - 10(-5) mol/liter) were also reduced in aortas from old as compared with young rats (n = 6, P < 0.05). The initial rate of NO release and peak NO concentration significantly correlated with maximal relaxation to calcium ionophore A23187 (correlation coefficients r - 0.916, P < 0.0018 and r = 0.961, P < 0.0001, respectively, n = 7). In pulmonary arteries, however, the initial rate of NO release as well as peak NO concentration did not decrease with age (n = 6 for each age group, NS). In both blood vessels, the NO release was unaffected by superoxide dismutase in all age groups (n = 6, NS). Thus, aging specifically reduces initial rate and peak concentrations of endothelial NO release from aorta but not pulmonary artery indicating reduced NO production. As arterial pressure did not change with aging, the chronic exposure of the aorta to higher pressure and/or pulsatility than in the pulmonary artery may be the cause. This appears important as NO plays a protective role by preventing vasoconstriction, thrombosis and atherosclerosis.

Aging

[The utilization of Medline for the solution of real clinical problems. A prospective study in Italy].

AIM: Measure of usefulness of Medline searches requested for clinical problems. METHODS: open prospective uncontrolled study lasted for 3 months. Collection of online or CD-ROM Medline searches operated by clinicians or librarians at 5 biomedical libraries. User interviews about use and usefulness of Medline, recorded with a closed-answer self-administered questionnaire, adapted from a U.S. National Library of Medicine product. RESULTS: Of the 6 participating libraries, one was excluded from analysis from data collection inadequacies. Among 668 searches, 55 (8.2%) were produced for real patients. Physicians judgement about clinical usefulness of their searches (available for 46 cases) indicate a significant importance for diagnostic evaluation (23%) and therapy administration (46%). After applying search results into clinical practice, clinicians think that positive outcomes are achieved in the doctor-patient-family relationship area (19%), a better use of health care system facilities is obtained (26%) and, less consistently, positive effects are perceived on longevity (5%), abnormality correction (10%), symptomatic relief (7%) and functional recovery (6%). CONCLUSION: Physicians judge that Medline searches actually can contribute to diagnosis and treatment of real patients, with significant benefits on the process of care, on doctor-patient relationship and on patient's health.

CD-ROM

Tetrahydrobiopterin and dysfunction of endothelial nitric oxide synthase in coronary arteries.

BACKGROUND: The L-arginine/nitric oxide pathway plays a key role in the regulation of arterial tone. Biosynthesis of nitric oxide requires activation of nitric oxide synthase in the presence of tetrahydrobiopterin as a cofactor. Biochemical studies demonstrated that activation of purified nitric oxide synthase at suboptimal concentrations of tetrahydrobiopterin leads to production of hydrogen peroxide. The present experiments were designed to determine whether in coronary arteries inhibition of tetrahydrobiopterin synthesis may favor nitric oxide synthase-catalyzed production of hydrogen peroxide. METHODS AND RESULTS: Primary branches of canine left anterior descending artery were incubated for 6 hours in minimum essential medium in the presence or in the absence of the tetrahydrobiopterin synthesis inhibitor 2,4-diamino-6-hydroxypyrimidine (DAHP; 10(-2) mol/L). Arterial rings were suspended for isometric tension recording. Production of cGMP was measured by radioimmunoassay. Experiments were performed in the presence of indomethacin (10(-5) mol/L). During contractions to the thromboxane A2/prostaglandin H2 receptor agonist U46619 (10(-7) mol/L), calcium ionophore A23187 (10(-9) to 10(-6) mol/L) caused endothelium-dependent relaxations. A nitric oxide synthase inhibitor, NG-nitro-L-arginine methyl ester (3 x 10(-4) mol/L), significantly inhibited these relaxations. In DAHP-treated arteries, relaxations to A23187 and its stimulating effect on cGMP production were significantly reduced in the presence of catalase (1200 U/mL). By contrast, catalase did not exert any effect in rings incubated in the absence of DAHP. Furthermore, the inhibitory effect of catalase on A23187-induced relaxations was abolished when coronary arteries were incubated in the presence of DAHP plus a liposoluble analogue of tetrahydrobiopterin, 6-methyltetrahydropterin (10(-4) mol/L). CONCLUSIONS: The present study suggests that hydrogen peroxide may be a mediator of endothelium-dependent relaxations in coronary arteries depleted of tetrahydrobiopterin. This initially compensatory response, triggered by a dysfunctional nitric oxide synthase, may represent an important mechanism underlying oxidative vascular injury.

Amino Acid Oxidoreductases

Maintenance of vascular integrity: role of nitric oxide and other bradykinin mediators.

In the blood-vessel wall, the endothelium plays a key functional role by generating several substances that modulate vascular smooth muscle tone, as well as growth, and platelet function. This review focuses on the role of the endothelial L-arginine/nitric oxide signal transduction pathway in the maintenance of vascular integrity. Functional alterations of this pathway may be important in cardiovascular disease, because depressed activity of this protective mechanism leads to impaired relaxation and is also associated with reduced antithrombotic properties of the endothelial layer. Many of the beneficial effects of ACE inhibitor therapy may be mediated through their ability to enhance the physiological roles of nitric oxide.

Angiotensin-Converting Enzyme Inhibitors

Glossopharyngeal neuralgia with cardiac syncope.

Glossopharyngeal Neuralgia is an uncommon craniofacial pain syndrome that is occasionally associated with cardiac syncope. Involvement of the glossopharyngeal nerve may be painless or may be marked by true episodic neuralgia, and this justifies the term neuralgia reported here. We present 5 cases of this uncommon syndrome, of a total of 15 observed cases of glossopharyngeal neuralgia, successfully treated by section of the rootlets of Cranial Nerves IX and X or by microvascular decompression in the posterior cranial fossa. We also analyze the relevant literature and discuss the pathogenesis and treatment of the syndrome.

Cranial Fossa, Posterior

Role of superoxide anions in the mediation of endothelium-dependent contractions.

We designed experiments to characterize the role of superoxide anions in the mediation of endothelium-dependent contractions in isolated canine basilar arteries. Rings with and without endothelium were suspended for isometric tension recording in Krebs-Ringer bicarbonate solution bubbled with 94% O2-6% CO2 (37 degrees C, pH 7.4). Radioimmunoassay was used to determine the levels of cyclic GMP and cyclic AMP. Calcium ionophore A23187 (10(-9) to 10(-6) mol/L) caused concentration-dependent contractions. The removal of endothelium abolished the effect of A23187. Contractions to A23187 were reversed into relaxations in the presence of superoxide dismutase (150 U/mL) or the prostaglandin H2/thromboxane A2 receptor antagonist SQ29548 (10(-6) mol/L). NG-nitro-L-arginine methyl ester (3 x 10(-4) mol/L) augmented contractions to A23187. In rings with endothelium, A23187 (3 x 10(-7) mol/L) significantly increased levels of both cyclic AMP and cyclic GMP. Indomethacin (10(-5) mol/L) inhibited stimulatory effects of A23187 on cyclic AMP production. In contrast, indomethacin augmented A23187-induced production of cyclic GMP. Selective augmentation of cyclic GMP production by indomethacin appears to be due to protection of nitric oxide or a closely related molecule released following translocation of calcium into endothelial cells. Our findings suggest that (1) an increased concentration of calcium in endothelial cells may activate both cyclooxygenase and the L-arginine/nitric oxide pathway, (2) arachidonic acid metabolism via cyclooxygenase is a source of superoxide anions, and (3) superoxide anions may be responsible for impairment of balance between relaxing and contracting factors leading to contraction of underlying smooth muscle cells.

Animals

Does endothelin-1 play a role in the pathogenesis of cerebral vasospasm?

BACKGROUND: Endothelin-1 is a very powerful endogenous vasoconstrictor substance produced by endothelial cells. Its long-lasting vasoconstrictor and hypertensive action has been well documented in several species, including humans. SUMMARY OF REVIEW: It is generally accepted that endothelin-1 may contribute to the pathogenesis of a number of cardiovascular diseases. In the cerebral vasculature, endothelin-1 has been proposed as a key mediator of cerebral vasospasm following subarachnoid hemorrhage. Availability of endothelin-1 antagonist provided a pharmacologic tool to test the role of endothelin in the development of vasospasm. CONCLUSIONS: This brief review is focused on the controversial results reported by different groups concerning the possible role of endothelin-1 in narrowing of cerebral arteries exposed to autologous blood.

Animals

Risk factors influencing survival in ICU acute renal failure.

Factors influencing survival in ICU patients with acute renal failure (ARF) requiring dialysis were analysed from data collected prospectively in an ARF registry. A total of 363 patients were analysed. Overall mortality was 79.1% and did not differ between medical and surgical patients. Factors associated with an increased risk of dying included the development of any concomitant organ system failure, the number of failed organs, APACHE II score at the time of renal consultation for medical patients, pre-existing chronic liver disease, and the number of days from ICU admission to institution of dialysis. Male gender reached borderline significance. Survivors recovered renal function and discontinued dialysis in 65.7% of cases. We conclude that mortality rates for ARF in ICU patients continues to be high. Multi-system organ failure (MSOF) occurs frequently and is the major cause of death.

Acute Kidney Injury

[Intracranial actinomycosis].

Actinomycosis is a bacterial infection mainly affecting the cervico-oro-facial area, abdomen and lungs, sometimes spreading to the central nervous system. Extremely rare is the primary cerebral location of the disease.

Actinomyces

Meningiomas in elderly patients. Clinico-therapeutic considerations.

This study examines the immediate and long-term results of surgical treatment for intracranial meningioma in patients aged 65 and over. Average patient age was 69 years. The most frequent localizations were the convexity (29.8%) and the sphenoid wing (20.1%). Preoperative risk factors included hypertension (16.1%), cardiopathies (16.1%), diabetes (12.9%) pneumopathies (12.9%) and peripheral vascular diseases (9.6%). All patients were assessed according to the Karnofsky Performance Status (KPS). Operative mortality was 18.5% (23 cases). At long term follow up (minimum 4 months, maximum 12 years, average 5 years) 31.5% of patients were cured, 32.3% had improved and 4% had worsened. The risk factors that mainly influenced results included poor preoperative clinical condition as expressed by low KPS, while the most frequent medical postoperative complications that increased the rate of operative mortality were brain edema, infections and lung embolism.

Aged

Effect of endothelinA-receptor antagonist BQ-123 and phosphoramidon on cerebral vasospasm.

The present study was designed to determine whether an endothelinA (ETA)-receptor antagonist BQ-123 (cyclo[Dtrp, Dasp, pro-D-Val-Leu]) or an ET-converting enzyme inhibitor phosphoramidon may prevent development of cerebral vasospasm after subarachnoid hemorrhage (SAH). A "double hemorrhage" canine model of the disease was used (n = 17 dogs), and the degree of vasospasm of the basilar artery was assessed by angiography. Mongrel dogs of either sex were divided into three experimental groups: animals treated with daily intracisternal injections of BQ-123 (10(-4) M; n = 6) or phosphoramidon (2 x 10(-4) M; n = 6) and control animals treated with saline solution (n = 5). Diameter of basilar arteries in animals treated with saline solution was reduced by SAH to 56 +/- 7% of control diameter. BQ-123 and phosphoramidon did not significantly affect SAH-induced vasospasm (diameters were 62 +/- 0% and 56 +/- 10% of control diameters for BQ-123 and phosphoramidon, respectively). In contrast, in isolated canine basilar arteries BQ-123 (10(-5) M) selectively inhibited concentration-dependent contractions to ET-1 (10(-11)-3 x 10(-8) M; n = 5). Levels of immunoreactive ET in plasma and cerebrospinal fluid were not affected by development of vasospasm. These results suggest that intracisternal injections of ETA-receptor antagonist or phosphoramidon cannot prevent SAH-induced cerebral vasospasm and that ET-1 may not be the major mediator responsible for the decrease in cerebral arterial diameter associated with SAH.

Amino Acid Sequence

Endothelial L-arginine pathway and relaxations to vasopressin in canine basilar artery.

Experiments were designed to determine the role of the L-arginine pathway in endothelium-dependent relaxations to vasopressin. The effects of L-arginine analogues NG-nitro-L-arginine (L-NNA), NG-nitro-L-arginine methyl ester (L-NAME), and NG-monomethyl-L-arginine (L-NMMA) on basal and vasopressin-induced activity of nitric oxide synthase were studied in isolated canine basilar arteries. Rings with and without endothelium were suspended for isometric tension recording in Krebs-Ringer bicarbonate solution bubbled with 94% O2-6% CO2 (37 degrees C, pH 7.4). Radioimmunoassay was used to determine the level of guanosine 3',5'-cyclic monophosphate (cGMP). All experiments were performed in the presence of indomethacin, a cyclooxygenase inhibitor. L-NAME and L-NMMA caused endothelium-dependent contractions and inhibited basal production of cGMP. In contrast, L-NNA did not affect basal tone or basal production of cGMP. L-Arginine analogues inhibited relaxations to vasopressin but did not affect relaxations to a nitric oxide donor, molsidomine (SIN-1). The effects of L-NNA, L-NAME, and L-NMMA were reversed in the presence of L-arginine. The relaxations to vasopressin were associated with an increase of cGMP levels in the arterial wall. This effect of vasopressin was inhibited in the presence of L-NNA. These studies suggest that the relaxations to vasopressin are mediated by activation of the endothelial L-arginine pathway, leading to increased production of nitric oxide, with subsequent activation of guanylate cyclase in smooth muscle cells. In canine basilar artery, L-NAME and L-NMMA are nonselective inhibitors of both basal and stimulated production of nitric oxide, whereas L-NNA selectively inhibits vasopressin-induced activation of the L-arginine pathway.

Animals

Endothelium-dependent contractions to oxygen-derived free radicals in the canine basilar artery.

Experiments were designed to determine the effect of oxygen-derived free radicals in isolated canine basilar arteries. Rings with and without endothelium were suspended for isometric tension recording in modified Krebs-Ringer bicarbonate solution bubbled with 95% O2-5% CO2 (temperature = 37 degrees C; pH = 7.4). A radioimmunoassay technique was used to measure production of prostaglandins and thromboxane B2. Xanthine oxidase (1-9 mU/ml, in the presence of 10(-4) M xanthine) and hydrogen peroxide (10(-6) to 10(-4) M) caused concentration-dependent contractions. The removal of endothelium reversed these contractions into relaxations. Contractions to xanthine oxidase and hydrogen peroxide were inhibited in the presence of superoxide dismutase (150 U/ml), catalase (1,200 U/ml), indomethacin (10(-5) M), and SQ 29548 (10(-6) M) but not in the presence of deferoxamine (10(-4) to 10(-3) M) and dimethyl sulfoxide (10(-4) M). NG-monomethyl-L-arginine (3 x 10(-5) M) augmented the contractions to hydrogen peroxide. Xanthine oxidase stimulated production of 6-ketoprostaglandin F1 alpha, prostaglandin F2 alpha, prostaglandin E2, and thromboxane B2. The stimulatory effect was prevented by the removal of endothelial cells. These studies suggest that xanthine oxidase causes endothelium-dependent contractions mediated by: 1) hydrogen peroxide-induced stimulation of the endothelial metabolism of arachidonic acid via the cyclooxygenase pathway, leading to activation of prostaglandin H2-thromboxane A2 receptors, and 2) inactivation of basal production of nitric oxide by superoxide anions.

Animals

Inhibition of thromboxane biosynthesis and platelet function by indobufen in type II diabetes mellitus.

Indobufen is a reversible inhibitor of platelet prostaglandin G/H-synthase. To verify the dose dependence of the antiplatelet effect of indobufen on ex vivo and in vivo indexes of thromboxane (TX) biosynthesis and TXA2-dependent platelet function, we studied nine patients with non-insulin-dependent diabetes mellitus (NIDDM). This was a randomized, double-blind, crossover study in which each patient was treated with three different daily regimens (50 mg BID, 100 mg BID, and 200 mg BID) of indobufen for 1 week, with a 7-day washout period between treatments. Urinary 11-dehydro-TXB2 excretion averaged 58.2 +/- 21.8 ng/h at baseline. TX metabolite excretion was reduced dose dependently by indobufen: by 67% at 50 mg BID, 72% at 100 mg BID, and 81% at 200 mg BID. Platelet cyclooxygenase activity, ATP release, collagen-induced platelet aggregation, and bleeding time also were modified dose dependently by indobufen. Biochemical demonstration of suppressed platelet TXA2 in vivo was accompanied by evidence of inhibited platelet function as assessed ex vivo. Under pathophysiological conditions, such as NIDDM, which are associated with enhanced TXA2 synthesis, more than 95% suppression of platelet cyclooxygenase activity may be necessary to produce virtually maximal inhibition of platelet TXA2 biosynthesis in vivo.

Aged

Subarachnoid hemorrhage and endothelial L-arginine pathway in small brain stem arteries in dogs.

BACKGROUND AND PURPOSE: Experiments were designed to determine the effect of subarachnoid hemorrhage on endothelium-dependent relaxations in small arteries of the brain stem. A "double-hemorrhage" canine model of the disease was used, and the presence of vasospasm in the basilar artery was confirmed by angiography. METHODS: Secondary branches of both untreated basilar arteries (inner diameter, 324 +/- 11 microns; n = 12) and arteries exposed to subarachnoid hemorrhage for 7 days (inner diameter, 328 +/- 12 microns; n = 12) were dissected and mounted on glass microcannulas in organ chambers. Changes in the intraluminal diameter of pressurized arteries were measured using a video dimension analyzer. RESULTS: In untreated arteries, 10(-11) to 10(-7) M vasopressin, 10(-10) to 10(-6) M bradykinin, and 10(-9) to 10(-6) M calcium ionophore A23187 caused endothelium-dependent relaxations. At 10(-6) and 3 x 10(-4) M the nitric oxide synthase inhibitor NG-nitro-L-arginine methyl ester (L-NAME) abolished relaxations to vasopressin and produced small but significant rightward shifts of the concentration-response curves to bradykinin and A23187. At 10(-3) M L-arginine prevented the inhibitory effect of L-NAME. Subarachnoid hemorrhage abolished relaxations to vasopressin but did not affect relaxations to bradykinin or A23187. CONCLUSIONS: These studies suggest that in small arteries of the brain stem vasopressin causes relaxations by activation of the endothelial L-arginine pathway. This mechanism of relaxation is selectively inhibited by subarachnoid hemorrhage. Preservation of endothelium-dependent relaxations to bradykinin and A23187 is consistent with the concept that small arteries are resistant to vasospasm after subarachnoid hemorrhage.

Animals

Sympathetic overactivity in patients with chronic renal failure.

BACKGROUND: Hypertension is a frequent complication of chronic renal failure, but its causes are not fully understood. There is indirect evidence that increased activity of the sympathetic nervous system might contribute to hypertension in patients with end-stage renal disease, but sympathetic-nerve discharge has not been measured directly in patients or animals with chronic renal failure. METHODS: We recorded the rate of postganglionic sympathetic-nerve discharge to the blood vessels in skeletal muscle by means of microelectrodes inserted into the peroneal nerve in 18 patients with native kidneys who were undergoing long-term treatment with hemodialysis (of whom 14 had hypertension), 5 patients receiving hemodialysis who had undergone bilateral nephrectomy (of whom 1 had hypertension), and 11 normal subjects. RESULTS. The mean (+/- SE) rate of sympathetic-nerve discharge was 2.5 times higher in the patients receiving hemodialysis who had not undergone nephrectomy than in the normal subjects (58 +/- 3 vs. 23 +/- 3 bursts per minute, P < 0.01). In contrast, the rate of sympathetic-nerve discharge was similar in the patients receiving hemodialysis who had undergone bilateral nephrectomy (21 +/- 6 bursts per minute) and the normal subjects. The rate of sympathetic-nerve discharge in the patients receiving hemodialysis who had not undergone nephrectomy was also significantly higher (P < 0.01) than that in the patients with bilateral nephrectomy, and it was accompanied in the former group by higher values for vascular resistance in the calf (45 +/- 4 vs. 22 +/- 4 units, P < 0.05) and mean arterial pressure (106 +/- 4 vs. 76 +/- 14 mm Hg, P < 0.05). The rate of sympathetic-nerve discharge was not correlated with either plasma norepinephrine concentrations or plasma renin activity. CONCLUSIONS: Chronic renal failure may be accompanied by reversible sympathetic activation, which appears to be mediated by an afferent signal arising in the failing kidneys.

Angiotensin II