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Biomedical subjects

D L Browne

Publications and source records attributed to D L Browne.

At least 19 recordsLinked to original sources

Angiotensin II does not affect endothelial tone in Type 1 diabetes-results of a double-blind placebo controlled trial.

AIMS: Previously, we have demonstrated that patients with normoalbuminuric Type 1 diabetes are characterized by impaired nitric oxide bioavailability compensated for by increased vasodilatory prostanoid-mediated vasodilation. Experimental evidence suggests vascular responses to endogenous angiotensin II involve the nitric oxide and prostaglandin pathways. We examined whether selective blockade of angiotensin II influences endothelial tone with particular reference to the nitric oxide/prostaglandin pathways in patients with Type 1 diabetes free from vascular complications. METHODS: At baseline, we studied changes in forearm blood flow in response to brachial arterial infusions of acetylcholine, l-NMMA, a combination of l-NMMA and the cyclo-oxygenase inhibitor indomethacin and nitroprusside in 30 patients with normoalbuminuric Type 1 diabetes [21 male, 9 female; age 38.5 +/- 1.9 years (mean +/- sem)]. Patients were randomized to 2 weeks' treatment with placebo or the selective angiotensin II receptor blocking agent irbesartan, 300 mg, prior to forearm vasoactive responses being re-examined. RESULTS: The forearm responses to nitroprusside and acetylcholine were unchanged by both placebo (P = 0.23 and P = 0.36, respectively) and irbesartan (P = 0.41 and P = 0.36). Similarily, dose-response curves to acetylcholine in the presense of l-NMMA alone (P = 0.42) and a combination of l-NMMA and indomethacin (P = 0.44) were not altered by angiotensin II blockade. CONCLUSION: This study demonstrated that physiological blockade of endogenous angiotensin II in Type 1 diabetes does not augment agonist-evoked vasodilation or the contribution of nitric oxides and prostanoids to endothelial tone.

Acetylcholine↗

Plasma homocysteine, oxidative stress and endothelial function in patients with Type 1 diabetes mellitus and microalbuminuria.

AIMS: The purpose of this study was to examine the associations between endothelial function, plasma homocysteine and oxidative stress in patients with Type 1 diabetes mellitus (DM) and microalbuminuria compared with DM patients with normoalbuminuria and non-diabetic control subjects. We wished to test the hypothesis that increased cardiovascular risk in patients with Type 1 diabetes and microalbuminuria may be in part as a result of hyperhomocysteinaemia-mediated oxidative stress leading to impaired endothelial function. METHODS: We measured forearm blood flow, total plasma homocysteine, total antioxidant status (TAOS) and whole blood glutathione in 31 DM patients, 16 with microalbuminuria and 15 with normoalbuminuria, and 15 non-diabetic control subjects. RESULTS: Plasma homocysteine levels were significantly higher in the microalbuminuric diabetic patients compared with the normoalbuminuric patients and the control subjects. TAOS was significantly lower in the micoalbuminuric and normoalbuminuric diabetic patients compared with the control subjects, although TAOS levels were similar in both groups of diabetic patients. There was no difference in forearm blood flow between the groups and no association between measured endothelial function and antioxidant defence/oxidative stress and homocysteine in each group. There was no association between plasma total homocysteine and TAOS or whole blood glutathione within the groups. CONCLUSIONS: We have found mild hyperhomocysteinaemia in microalbuminuric DM patients compared with normoalbuminuric DM patients and non-diabetic subjects and some evidence for reduced antioxidant defence in DM patients. These findings add to our understanding of the increased risk of vascular disease in patients with Type 1 diabetes.

Adult↗

Diabetic erectile dysfunction--an indicator of generalised endothelial function per se?

Erectile dysfunction (ED) affects up to 70% of men with diabetes. However, the pathophysiology of ED in diabetes remains uncertain with both neuronal and vascular factors cited. We examined whether ED is an indicator of generalized endothelial dysfunction. A unique group of diabetic patients free from established conventional cardiac risk factors were investigated. Forearm bloodflow responses to nitroprusside and acetylcholine on 11 diabetic men with ED and 11 potent diabetic men were measured by venous plethysmography. Patient characteristics between the impotent and potent patients were similar except for Hba1c which was higher in the group with ED (8.35% vs. 7.03%: p = 0.003). Both groups showed increases in FBF to incremental infusions of nitroprusside and acetylcholine but the area under curve (AUC) were similar in the ED and the non-ED groups (p = 0.16 and p = 0.17, respectively). We demonstrated that ED in patients with type 2 diabetes is not associated with additional generalized endothelial dysfunction.

Area Under Curve↗

The contribution of nitric oxide and vasodilatory prostanoids to bradykinin-mediated vasodilation in Type 1 diabetes.

AIMS: To investigate the effect of bradykinin on endothelial tone in normoalbuminuric Type 1 diabetic patients and specifically whether any changes are mediated through nitric oxide or prostaglandins. METHODS: Forearm blood flow was measured using venous occlusion plethysmography at baseline and after brachial artery infusions of incremental doses of bradykinin (50, 100 and 200 ng/min) in 15 patients with Type 1 diabetes and 13 non-diabetic controls. Forearm blood flow at baseline and following bradykinin was then re-examined after local infusion of L-NMMA, a nitric oxide synthase inhibitor, and L-NMMA with indomethacin, a cyclo-oxygenase inhibitor. RESULTS: Baseline blood flow in the diabetic and control groups were similar (4.46 +/- 1.11 vs. 3.41 +/- 1.23 ml/min/100 ml, respectively; P = 0.07). After infusion of L-NMMA and L-NMMA with indomethacin, there was a similar reduction in blood flow responses to bradykinin in both groups. There was no significant difference between the diabetic patients and control subjects in the percentage reduction in forearm blood flow following L-NMMA (16.55 vs. 18.12%, respectively, P = 0.94) and L-NMMA with indomethacin (47.1 vs. 37.3%, respectively, P = 0.14). CONCLUSIONS: This study demonstrates that bradykinin-stimulated vasodilation is mediated by both nitric oxide and prostaglandin release from the endothelium in patients with Type 1 diabetes and normoalbuminuria, and in healthy control subjects. We have also shown that the relative contributions of nitric oxide and prostaglandin to bradykinin-mediated vasodilation are similar in these diabetic patients compared with non-diabetic subjects.

Adult↗

What do patients with diabetes know about their tablets?

AIMS: To assess knowledge about oral hypoglycaemic agents amongst patients with diabetes and non-specialist healthcare professionals. METHOD: An anonymous questionnaire was used in two centres to assess knowledge about oral agents amongst 261 patients with Type 2 diabetes mellitus (mean age 64 years) and 102 health professionals (including doctors, nurses and pharmacists). RESULTS: Only 15% of patients knew the correct mechanism of action of their medication and 62% took tablets correctly in relation to food. Only 10% of those taking a sulphonylurea knew it may cause hypoglycaemia and 20% of those taking metformin were aware of its gastrointestinal side-effects. Twenty per cent forgot to take their tablets at least once a week and 5% omitted tablets because of hyperglycaemia. Only 35% of patients recalled receiving advice about their medication with only 1% receiving written advice. The healthcare professionals showed important gaps in their knowledge on dosage timing and mechanism of action, particularly with respect to metformin and acarbose. CONCLUSION: It is concluded that patients' and professionals' knowledge of oral hypoglycaemic agents is poor. More appropriate advice and information to patients from prescribers may improve patient understanding and hence compliance. Community pharmacists are ideally placed to reinforce this information.

Acarbose↗

Effects of cyclo-oxygenase inhibition on vasodilatory response to acetylcholine in patients with type 1 diabetes and nondiabetic subjects.

OBJECTIVE: Studies examining vasodilatory responses to acetylcholine (ACh) and its derivatives have been conflicting. Enhanced activation of the cyclo-oxygenase pathway and increased availability of vasodilatory prostanoids may occur in type 1 diabetes, and this may compensate for the observed reduction in nitric oxide (NO) activity We examined the role of cyclo-oxygenase inhibition on vasodilatory responses in 12 healthy normotensive type 1 diabetic adults and 12 nondiabetic control subjects of similar age, sex, and BMI. RESEARCH DESIGN AND METHODS: Forearm blood flow was measured using a venous occlusion plethysmography technique at baseline and after brachial artery infusions of ACh (7.5, 15, and 30 microg/min). Forearm blood flow at baseline and after ACh was then reexamined after local intra-arterial infusion of indomethacin (0.3 mg/100 ml forearm volume), a cyclo-oxygenase inhibitor. RESULTS: Baseline blood flow in the diabetic and control groups were similar (2.65 +/- 0.26 vs. 2.59 +/- 0.20 ml/min per 100 ml, respectively; P = 0.4). After indomethacin infusion, the vasodilatory responses to all doses of ACh were reduced in both the diabetic (by 25.30 +/- 4.90%) and control group (by 11.23 +/- 5.45%). However, the reduction in blood flow response to ACh after indomethacin was greater in diabetic patients compared with control subjects (P = 0.03). CONCLUSIONS: Our findings suggest that vasodilatory, prostanoids are important in determining endothelial response to ACh in diabetic and nondiabetic subjects. Increased prostaglandin-mediated vasodilation may compensate for attenuated responses to NO previously reported in diabetic subjects. These findings may partly explain the conflicting reports of endothelial dysfunction in patients with type 1 diabetes.

Acetylcholine↗

Hereditary myokymia and paroxysmal ataxia linked to chromosome 12 is responsive to acetazolamide.

A sixth family with autosomal dominantly inherited myokymia and paroxysmal ataxia is described. The syndrome in this family is linked to the recently discovered locus for inherited myokymia and paroxysmal ataxia on the human chromosome 12p, and a missense mutation is shown in the KCNA1 gene. The attacks of ataxia in this family compare well with those of previously described families and similarly are precipitated by kinesigenic stimuli, exertion, and startle. Responsiveness of these attacks to low dose acetazolamide is confirmed, but some loss of efficacy occurs with prolonged treatment, and side effects are notable. Although not all affected family members showed myokymia on clinical examination, electromyography invariably showed myokymic discharges, in one patient only after a short provocation with regional ischaemia. One affected family member also had attacks of paroxysmal kinesigenic choreoathetosis, responsive to carbamazepine.

Acetazolamide↗

Episodic ataxia/myokymia syndrome is associated with point mutations in the human potassium channel gene, KCNA1.

Episodic ataxia (EA) is a rare, familial disorder producing attacks of generalized ataxia, with normal or near-normal neurological function between attacks. One type of EA is characterized by brief episodes of ataxia with myokymia (rippling of muscles) evident between attacks. Linkage studies in four such families suggested localization of an EA/myokymia gene near the voltage gated K+ channel gene, KCNA1 (Kv1.1), on chromosome 12p. Mutation analysis of the KCNA1 coding region in these families identified four different missense point mutations present in the heterozygous state, indicating that EA/myokymia can result from mutations in this gene.

Amino Acid Sequence↗

The gene encoding chicken chromosomal protein HMG-14a is transcribed into multiple mRNAs.

The sequence and structure of the chicken HMG14a gene encoding HMG-14a non-histone chromosomal protein suggest that it may be a unique member of the HMG (high mobility group) gene family with properties intermediate to those of the typical HMG-14 and HMG-17 genes. Genomic clones were isolated which together contain the complete chicken HMG-14a gene. The gene covers about 10 kb while coding for an mRNA of about 1000 nt in size. Primer extension, S1 mapping and further cDNA clone analysis suggest that HMG-14a codes for multiple mRNAs arising from two or more transcription start points with alternative splicing and utilization of two or more polyadenylation sites. However, no variation in the coding portion of the mRNA has been observed. The sequence of the promoter region of HMG-14a is similar to that of chicken HMG-14b and human HMG-14 in that it is very G+C rich, contains several putative Sp1-binding sequences and has an unusually high density of CpG dinucleotides. Expression studies confirm earlier results suggesting that the gene is expressed at low levels in most tissue types.

Alternative Splicing↗