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Biomedical subjects

A F Brading

Publications and source records attributed to A F Brading.

At least 19 recordsLinked to original sources

The sarcoplasmic reticulum in disease and smooth muscle dysfunction: therapeutic potential.

The functions of the sarcoplasmic reticulum (SR) in diseased smooth muscle can be investigated by measuring Ca2+ transients in response to agonist application, and through cell homogenization, isolation of microsomes and measurements of Ca-ATPase activity (SERCA). Such measurements have indicated that contractile dysfunction may be associated with degradation of SERCA in some systems, such as hypertrophied bladder smooth muscle. However, the postulated roles of the SR in smooth muscle function vary from one tissue to another and SR may mediate relaxation as well as contraction. Function seems to depend on the precise location of the SR with respect to the plasma membrane and its Ca2+-activated ion channels, the Ca2+ transporters, the cavaeoli, the mitochondria, and the contractile machinery. In diseases characterized by smooth muscle dysfunction, the size of the smooth muscle cells is frequently altered, as occurs in the hypertrophy seen in gut and bladder obstruction and hypertension. This will inevitably lead to alterations in the morphology and the function of the SR. Any therapeutic potential awaits considerable advances in our understanding of the systems in individual smooth muscles and the development of selective drugs.

Animals↗

Augmentation of nitric oxide to treat detrusor-external sphincter dyssynergia in spinal cord injury.

Detrusor-external sphincter dyssynergia (DSD) is a common cause of bladder outlet obstruction in men with spinal cord injuries, which if left untreated leads ultimately to renal failure. External sphincterotomy is currently the main treatment for DSD. However, obstruction persists in a substantial proportion of cases after this procedure. There is no effective drug treatment for DSD. Nitric oxide is an inhibitory neurotransmitter synthesised by nitric oxide synthase. Both animal and human studies suggest that nitric oxide mediates urethral sphincter relaxation. Nitric-oxide-synthase staining neurons have been identified in very high density in the urethral sphincters of a variety of animals and in human beings. Relaxation of the urethral sphincter is abolished by inhibitors of nitric oxide synthase and enhanced by nitric oxide donors. Mice with targeted deletion of the gene, for neuronal nitric oxide have urethral sphincters that do not relax in response to electrical stimulation. We hypothesise that augmentation of external sphincter nitric oxide could be an effective pharmacological treatment for DSD. Currently available nitric oxide donors such as glyceryl trinitrate or isosorbide mononitrate could be used to deliver nitric oxide to the urethral sphincter. The variable pharmacokinetics of these drugs combined with different modes of delivery (sublingual, buccal, or oral) could be used to achieve both short-term and long-term increases in concentrations of sphincter nitric oxide, thereby resulting in either acute or chronic lowering of urethral pressure. The safety and efficacy of this potential treatment for DSD needs to be established in clinical trials of men with spinal cord injures with DSD.

Animals↗

Dual action of ZD6169, a novel K(+) channel opener, on ATP-sensitive K(+) channels in pig urethral myocytes.

1. The effects of ZD6169, a novel K(+) channel opener, on both membrane and unitary currents in pig urethra were investigated using patch-clamp techniques. Its effect was also examined on currents in inside-out patches of COS7 cells expressing carboxy terminus truncated inwardly rectifying K(+) channel (Kir6.2) subunits (Kir6.2C36) which form ATP-sensitive K(+) channels (K(ATP) channels). 2. In current-clamp mode, ZD6169 (< or = 10 microM) induced a concentration-dependent membrane hyperpolarization. Higher concentrations (> or = 30 microM) caused a transient membrane hyperpolarization, followed by a gradual membrane depolarization. On removal of ZD6169, an after hyperpolarization was observed. 3. In conventional voltage-clamp configuration, at -50 mV in symmetrical 140 mM K(+) conditions, ZD6169 (100 microM) caused a transient inward current which gradually decayed. Removal of ZD6169 evoked a much larger amplitude K(+) current with a similar time course. 4. ZD6169 produced an inward glibenclamide-sensitive K(+) current, demonstrating a bell-shaped concentration-response relationship. 5. In cell-attached configuration in symmetrical 140 mM K(+) conditions, ZD6169 (< or = 30 microM) activated an K(ATP) channel which was reversibly suppressed by application of glibenclamide. In contrast, ZD6169 (100 microM) inhibited the activity of the levcromakalim-induced K(ATP) channels. 6. ZD6169 (100 microM) had no significant effect on the channel activity of Kir6.2C36 in inside-out configuration, although cibenzoline greatly suppressed the channel activity. 7. These results demonstrate that ZD6169 possesses a dual effect on the activity of the K(ATP) channel; activating at low concentration and inhibiting at higher concentration.

Adenosine Triphosphate↗

The pharmacology of the internal anal sphincter and new treatments of ano-rectal disorders.

Surgical options for faecal incontinence in the presence of intact sphincters are limited. Furthermore, in patients with fissures, lateral sphincterotomy reduces anal sphincter hypertonia but there has been concern about complications. A greater understanding of the basic pharmacology of the internal anal sphincter has led to the development of novel treatments for both these disorders. A Medline review was undertaken for internal anal sphincter pharmacology, anal fissures and faecal incontinence. This review is based on these articles and those found by further cross-referencing. Nitric oxide released from non-adrenergic non-cholinergic nerves is the main inhibitory agent in the internal anal sphincter. Relaxations are also mediated through beta-adrenoceptors and muscarinic receptors. Stimulation of alpha-receptors results in contraction. Calcium and its entry through L-type calcium channels is important for the maintenance of tone. Nitric oxide donors produce reductions in resting anal tone and heal fissures but are associated with side-effects. Muscarinic agents and calcium channel antagonists show promise as low side-effect alternatives. Botulinum toxin appears more efficacious than other agents in healing fissures. To date, alpha-receptor agonists have been disappointing at improving incontinence. Further understanding of the pharmacology of the internal anal sphincter may permit the development of new agents to selectively target the tissue with greater efficacy and fewer side-effects.

Adrenergic alpha-Agonists↗

Morphological and physiological characteristics of urethral circular and longitudinal smooth muscle.

The urethral wall contains circular and longitudinal smooth muscle. Both layers can develop spontaneous tone, and contract further or relax in response to excitatory or inhibitory stimuli. In the pig the cells do not generate action potentials, and the membranes possess L-type calcium channels and a variety of potassium channels which may modulate the membrane potential and tone. The importance of these layers in generating the urethral pressure is not well understood in the human, but it seems likely that the circular smooth muscle is involved in generating urethral pressure in the pig.

Animals↗

The effect of bladder outflow obstruction on detrusor blood flow changes during the voiding cycle in conscious pigs.

PURPOSE: We monitored detrusor blood flow in pigs with bladder outflow obstruction. MATERIALS AND METHODS: Partial urethral obstruction was created in 9 immature, female large white pigs with an implanted ring, and 10 normal animals were used for comparison. Urodynamic parameters and detrusor blood flow were measured using chronically implanted access catheters and laser Doppler fibers. Repeated recordings were made from each animal while it was lightly sedated. RESULTS: The animals with implanted rings developed prolonged, high pressure voiding contractions in association with poor urinary flow, indicating bladder outflow obstruction, and had evidence of detrusor instability. In obstructed and normal animals detrusor blood flow was maintained during bladder filling. Elevated detrusor pressure during voiding significantly decreased blood flow to similar levels in each group. The duration of the ischemic period was much greater in obstructed animals. CONCLUSIONS: Bladder outflow obstruction is associated with repeated episodes of prolonged detrusor ischemia which may account for the biochemical and neuronal alterations in such bladders.

Animals↗

Morphological aspects of the female pig bladder neck and urethra: quantitative analysis using computer assisted 3-dimensional reconstructions.

PURPOSE: To investigate whether the pig is a suitable model for studies of lower urinary tract function and dysfunction, we sought to determine the morphology of the female pig bladder neck and urethra. Computer assisted 3-dimensional (D) reconstructions from step serial histological sections were used for visualization of the spatial relationships between neighboring urethral wall components, and the quantification of these components in the bladder neck and along the urethra. MATERIALS AND METHODS: Step serial histological paraffin sections from the bladder neck and urethra of 6 female pigs, stained with Masson's trichrome, were used to generate computer assisted 3-D reconstructions using MacStereology (Ranfurly MicroSystems Ltd., Airdrie, United Kingdom) as the 3-D software package. RESULTS: The bladder neck and urethral anatomy revealed well defined smooth and striated muscle layers that varied in location, regional distribution and orientation. Circular smooth muscle was maximally developed in the mid urethra, at which point maximal urethral pressure was observed. The longitudinal smooth muscle layer appeared continuous with the detrusor, implicating a possible role in urethral shortening at the onset of voiding. A small circular and longitudinal striated muscle component was present in the distal urethra. CONCLUSIONS: Anatomical differences exist between the female pig and human bladder neck and urethra, which were successfully highlighted using computer assisted 3-D reconstructions from step serial histological paraffin sections.

Animals↗

Studies of the pathophysiology of idiopathic detrusor instability: the physiological properties of the detrusor smooth muscle and its pattern of innervation.

PURPOSE: Idiopathic detrusor instability (IDI) is a common cause of lower urinary tract storage symptoms, such as urgency, frequency and urge incontinence. We have investigated the in vitro properties and pattern of innervation of the detrusor from patients with this condition. MATERIALS AND METHODS: Full thickness bladder specimens were obtained perioperatively from 14 patients with IDI and from 14 cadaveric controls undergoing transplant organ retrieval. Isolated detrusor smooth muscle strips were mounted in organ baths for isometric tension recording. Frequency-response curves to electrical field stimulation (EFS) (1 Hz to 50 Hz) and concentration response curves for carbachol (10(-7) M to 5 x 10(-4) M) and potassium (12 mM to 120 mM) were constructed. Acetylcholinesterase histochemistry and immunohistochemistry for both phosphorylated and non-phosphorylated neurofilaments was carried out on frozen sections of control and IDI bladders. RESULTS: IDI strips developed greater spontaneous tone (0.25 gm./mg. versus 0.12 gm./mg.; p <0.0001) and more spontaneous fused tetanic contractions (16.8% versus 6.8%; p <0.005) during an initial 90 minutes equilibration period. The IDI strips were less responsive than controls to nerve stimulation (max. response to EFS 0.79 gm./mg. versus 1.23 gm./mg.; p <0.0001) and were supersensitive to potassium (EC50 39.7 mM versus 45.7 mM; p = 0.003) but not to carbachol (EC50 7.3 x 10(-6) M versus 6.6 x 10(-6) M; p = 0.48). Morphometric studies revealed reduced staining of presumed cholinergic nerves, with 34.7% of IDI smooth muscle bundles appearing denervated compared with 1.5% of controls (p <0.0001). CONCLUSIONS: Our study supports the notion that there is a fundamental abnormality in IDI at the level of the bladder wall, with evidence of altered spontaneous contractile activity consistent with an increased electrical coupling of cells, a patchy denervation of the detrusor and a potassium supersensitivity.

Adult↗

Structural and functional denervation of human detrusor after spinal cord injury.

The bladder receives an extensive nerve supply that is predominantly cholinergic, but several putative transmitters are present, some of which are colocalized. Previous studies have shown increased levels of sensory nerves, reduced inhibitory transmitters, and structural and functional changes in the excitatory input in unstable bladder conditions. The present study compared the end-organ nerve supply to the bladder in spinal cord injury (SCI) with uninjured controls. Acetylcholinesterase histochemistry and double-label immunofluorescence were used to investigate neurotransmitter content, with confocal laser scanning microscopy to assess colocalization. Organ bath studies provided functional correlates for the structural changes in the excitatory innervation. Control samples had dense innervation of the detrusor containing a diverse range of transmitters. Hyperreflexic SCI samples showed patchy denervation, and areflexic SCI samples were diffusely denervated. Vasoactive intestinal polypeptide-, neuropeptide Y-, neuronal nitric oxide synthase-, and galanin-immunoreactive nerve fibers were reduced from frequent or moderately frequent to infrequent or very infrequent in SCI. Calcitonin gene-related peptide-immunoreactive fibers were infrequent in controls and SCI samples. Patterns of colocalization were unchanged, but significantly fewer fibers expressed more than one transmitter. The subepithelial plexus was markedly reduced and several of the smaller coarse nerve trunks showed no immunoreactivity to the transmitters assessed. There was no reduction in sensitivity to electrical field stimulation of intrinsic nerves in SCI, but the maximum force generated by each milligram of bladder tissue and the peak force as a proportion of the maximum carbachol contraction were significantly reduced and the responses were protracted. There was no significant functional atropine-resistant neuromuscular transmission in controls or SCI. The reported findings have clinical implications in the management of chronic SCI and development of new treatments.

Adult↗

Abnormal contractile properties of rectal smooth muscle in chronic ulcerative colitis.

BACKGROUND: Patients with ulcerative colitis have abnormal rectal motility. AIM: To compare the contractile properties of rectal smooth muscle from patients with ulcerative colitis and controls. METHODS: Rectal smooth muscle strips from patients undergoing resection for ulcerative colitis or cancer (control) were mounted in an organ bath. The effects of carbachol (receptor-mediated) and potassium (causes membrane depolarization) were studied. Acetylcholinesterase histochemistry was performed and nerve counts compared. RESULTS: Ulcerative colitis (n=41) and control (n=34) strips contracted in response to potassium and carbachol. Mean (S.E. M.) maximum response to potassium in the control and ulcerative colitis groups was 1.07 (0.06) g/mg and 1.02 (0.09) g/mg tissue, respectively (P=N.S.). EC50s (concentrations required to give 50% of maximal response) were 75 (1) mM and 73 (1) mM, respectively (P=N.S. ). Although maximum responses to carbachol were similar, 2.12 (0.12) g/mg and 1.95 (0.12) g/mg tissue (P=N.S.), ulcerative colitis strips exhibited an increased sensitivity to carbachol, EC50s: 5.05 x 10-6 (0.55 x 10-6) M vs. 8.36 x 10-6 (0.88 x 10-6) M, P=0.002). There was no significant difference in nerve counts between the tissues, as assessed by staining for acetylcholinesterase. CONCLUSIONS: Ulcerative colitis tissue has an increased sensitivity to carbachol and this is not due to denervation; it may result from increased calcium release from intracellular stores since contraction due to membrane depolarization is not altered. Modulation of this pathway could potentially be used to alter rectal motility in patients with ulcerative colitis.

Acetylcholinesterase↗

The effect of bladder outlet obstruction on tissue oxygen tension and blood flow in the pig bladder.

OBJECTIVE: To investigate the effect of partial bladder outlet obstruction on detrusor blood flow and oxygen tension (PdetO2) in female pigs. MATERIALS AND METHODS: Detrusor-layer oxygen tension and blood flow were measured using oxygen-sensitive electrode and radiolabelled microsphere techniques in five female Large White pigs with a partial urethral obstruction and in five sham-operated controls. The effects of chronic outlet obstruction on bladder weight, and cholinergic nerve density and distribution, are also described. RESULTS: In the obstructed bladders, blood flow and oxygen tension were, respectively, 54.9% and 74.3% of control values at low bladder volume, and 47.5% and 42.5% at cystometric capacity. Detrusor blood flow declined by 27.8% and 37.5% in the control and obstructed bladders, respectively, as a result of bladder filling, whilst PdetO2 did not decrease in the controls, but fell by 42.7% in the obstructed bladders. Bladder weight increased whilst cholinergic nerve density decreased in the obstructed animals. CONCLUSION: In pigs with chronic bladder outlet obstruction, blood flow and oxygen tension in the detrusor layer were lower than in control animals. In addition, increasing detrusor pressure during filling caused significantly greater decreases in blood flow and oxygen tension in the obstructed than in the control bladders.

Animals↗

The contribution of cholinergic detrusor excitation in a pig model of bladder hypocompliance.

OBJECTIVE: To investigate the role of cholinergic excitation in mediating changes in detrusor compliance (manifested on conventional cystometry as an incremental rise in detrusor pressure as bladder volume increases) under conditions of propofol-sedation in the pig. Materials and methods Consecutive cystometrograms (CMGs) were obtained from eight female Large White pigs at a bladder filling rate of 50 mL/min. The first CMG was obtained while the pig was awake and unsedated. Two subsequent CMGs were obtained after light to moderate sedation with propofol (2-8 mg/kg/h) before and after the administration of intravenous atropine (0.02 mg/kg). RESULTS: All bladders were highly compliant over the volumes instilled (before sedation) with a maximum pressure during the filling phase of 0.9 cmH2O and a compliance of 943 mL/cmH2O. After sedation with propofol, the maximum pressure during the filling phase increased to 14 cmH2O with a compliance of 69 mL/cmH2O. Atropine antagonized this change in compliance; after sedation and atropine, the maximum pressure during the filling phase decreased to 4 cmH2O (P < 0.05) and the compliance increased to 337 mL/cmH2O (P < 0.05). CONCLUSION: The decrease in compliance seen in the pig bladder after sedation with propofol is mediated via muscarinic excitation. This probably occurs as a result of low-level tonic release of acetylcholine by the efferent parasympathetic nerves. The existence of such efferent excitatory activity during the storage phase in the overactive human bladder might explain the efficacy of bladder-selective muscarinic antagonists in a proportion of patients with detrusor hyper-reflexia and instability.

Animals↗

Possible underestimation of the channel conductance underlying pinacidil-induced K+ currents using noise analysis in pig urethral myocytes.

Electrophysiological and pharmacological properties of the pinacidil-induced K+ currents in isolated cells from pig urethra were investigated using patch-clamp techniques. Pinacidil (100 microM) induced an outward current at -50 mV which gradually decreased. Under current-clamp conditions, 100 microM pinacidil induced a hyperpolarization that was sustained. This suggests that activation of only a few channels can hyperpolarize the membrane. At a holding potential of -50 mV, glibenclamide inhibited the pinacidil-induced current with a single exponential time course. Unitary current recordings in symmetrical 140 mM K+ conditions demonstrated that pinacidil activates a 43-pS, glibenclamide-sensitive K+ channel (i.e. K(ATP) channel). Analysis of the basal noise of the pinacidil-induced macroscopic currents from -90 mV to -30 mV yielded estimates of channel conductance (6 pS) which were much smaller, and probably an underestimate. These results indicate that pinacidil induces a glibenclamide-sensitive K+ current through only one type of K+ channel (K(ATP) channel) in pig urethra.

Animals↗

Electrical coupling in smooth muscles. Is it universal?

There is strong experimental evidence for electrical coupling in all types of smooth muscle. In some publications, and particularly in physiological textbooks, smooth muscles are still divided into those that are electrically coupled and those that are not. In this article we review the evidence for the universal presence of coupling in smooth muscles and the underlying mechanism, which, in most cases, appears to be gap junctions. We propose a classification of smooth muscles based on the mechanisms that initiate their activity. The two main types of smooth muscle according to this classification are neurogenic (e.g., iris, arterioles, vas deferens) and myogenic (e.g., urinary bladder, intestine, most blood vessels).

Animals↗

Radiotelemetered cystometry in pigs: validation and comparison of natural filling versus diuresis cystometry.

PURPOSE: Cystometry has previously been performed in awake animals using vesical and abdominal catheters, and artificial bladder filling. Conventional urodynamic recordings may be obtained in this manner, albeit under nonphysiological and potentially stressful conditions. Therefore, we developed a technique to perform continuous, ambulatory cystometric monitoring in pigs. MATERIALS AND METHODS: A dual pressure radiotelemetry device was surgically implanted in 22 large white pigs. Vesical and abdominal pressures were recorded and validated, subtracted detrusor pressures were derived and natural fill and diuresis cystometry was compared. RESULTS: Continuous recordings were obtained for 1 to 24 hours, and the devices remained in the animals for up to 3 months. There were few complications and incrustation of the intravesical catheter tip occurred but it did not appear to affect recorded pressures. The pressure data were validated by comparison with filling pressures during bladder distention and simultaneous conventional cystometry at the end of the experimental period. Comparison of natural filling and diuresis cystometrograms showed that natural bladder filling results in higher maximum detrusor pressure during voiding (38.1 versus 33.9 cm. H2O, p <0.05), higher detrusor pressure after contractions (42.6 versus 32.2 cm. H2O, p <0.05) and more frequent detection of unstable contractions in pigs with detrusor instability secondary to experimental manipulation of the lower urinary tract (77.8% versus 45.0%, p <0.05). CONCLUSIONS: This technique allows continuous cystometric monitoring in less stressed animals under more physiological conditions for relatively long periods and, thus, allows prolonged assessment of bladder function in pigs in response to pathological and pharmacological manipulations. Nonphysiological rates of bladder filling have been shown to result in detrusor inhibition, which emphasizes the importance of ambulatory cystometry when describing bladder function.

Animals↗