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Biomedical subjects

Arthur L Burnett

Publications and source records attributed to Arthur L Burnett.

At least 19 recordsLinked to original sources

Overexpression of arginase in the aged mouse penis impairs erectile function and decreases eNOS activity: influence of in vivo gene therapy of anti-arginase.

Since both increased nitric oxide (NO) synthase (NOS) abundance and diminished NO signaling have been reported in the aging penis, the role of NO in the adaptations of aging remains controversial. Here we tested the hypothesis that arginase, an enzyme that competes with NOS for the substrate l-arginine, contributes to erectile dysfunction with advanced age in the B6/129 mouse strain. Arginase protein abundance, mRNA expression, and enzyme activity were elevated in aged compared with young penile endothelial cells. In addition, endothelial NOS (NOS3) protein abundance was greater in aged versus young penile endothelial cells, whereas NOS activity and cGMP levels were reduced. Calcium-dependent l-arginine-to-l-citrulline conversion and cGMP formation increased significantly in aged mouse penes in the presence of the arginase inhibitor 2(S)-amino-6-boronohexanoic acid (ABH). However, there was no effect on l-arginine-to-l-citrulline conversion or cGMP accumulation in the endothelium from young mouse penes. To assess the functional role of arginase in the inhibition of NOS pathway responsiveness in the penis, we evaluated the effects of ABH and an adeno-associated virus encoding an antisense sequence to arginase I (AAVanti-arginase) on erectile function in vivo. ABH and AAVanti-arginase enhanced endothelium-dependent erectile responses in the aged mice without altering endothelium-independent responses. Paralleling our in vitro observations, ABH or AAVanti-arginase did not affect vascular responses in the young mice. Inhibition of the arginase pathway improves endothelial function in the aging penile circulation, suggesting that the arginase pathway may be exploited to improve erectile dysfunction associated with aging.

Aging↗

Alternatively spliced neuronal nitric oxide synthase mediates penile erection.

A key role for nitric oxide (NO) in penile erection is well established, but the relative roles of the neuronal NO synthase (nNOS) versus endothelial forms of NOS are not clear. nNOS- and endothelial NOS-deficient mice maintain erectile function and reproductive capacity, questioning the importance of NO. Alternatively, residual NO produced by shorter transcripts in the nNOS(-/-) animals might suffice for normal physiologic function. We show that the beta splice variant of nNOS elicits normal erection despite a decrease in stimulus-response characteristics and a 5-fold increased sensitivity to the NOS inhibitor, l-NAME. Residual nNOSbeta generates only 10% of the normal NO level in vitro but produces citrulline and diaphorase staining reflecting in vivo NOS activity in pelvic ganglion nerves that is comparable to WT animals. Thus, alternatively spliced forms of nNOS are major mediators of penile erection and so may be targets for therapeutic intervention.

Alternative Splicing↗

Can phosphodiesterase type 5 inhibitors cure erectile dysfunction?

INTRODUCTION AND OBJECTIVES: To systematically analyze and review the available evidence about the potential role of chronic administration of phosphodiesterase type 5 (PDE-5) inhibitors for the cure of erectile dysfunction (ED) based on clinical and basic science data. METHODS: Analysis of published full-length papers that were identified with Medline and Cancerlit from January 1993 to September 2005. Abstracts published in the journals European Urology, the Journal of Urology, the International Journal of Impotence Research, and the Journal of Sexual Medicine as official proceedings of internationally known scientific societies held in the same time period were also assessed. RESULTS: Chronic administration of PDE-5 inhibitors have reportedly been associated with increased persistent vascular and endothelial function--which represents a key factor in maintaining vascular tone and inducing vasodilation--by increasing the level of endothelial cGMP generated by activation of endothelial nitric oxide. Clinical studies have revealed a potential protective role of these compounds on endothelial function in short- and long-term assessments. Several studies based on animal models have provided direct experimental support for the role of PDE-5 inhibitors in improving the structure and function of the cavernosal tissue and have suggested potential molecular mechanisms involved. CONCLUSIONS: Although evidence increasingly supports the potential role of chronic administration of PDE-5 inhibitors for improving erectile function in patients affected by ED, long-term data are lacking. However, data available from animal models support the evidence of potential benefits induced on endothelial function by chronic exposure to PDE-5 inhibitors.

Animals↗

Elevated RhoA/Rho-kinase activity in the aged rat penis: mechanism for age-associated erectile dysfunction.

Epidemiologic studies have shown that aging accounts significantly for the prevalence of erectile dysfunction (ED). The pathophysiology of ED during aging and its underlying molecular mechanisms are largely unknown. We hypothesized that increased RhoA/Rho-kinase signaling is a major factor in the pathogenesis of age-associated ED and the mechanism involves increased penile smooth muscle contractility through inhibition of myosin light chain phosphatase. Male Fischer 344 young (4 month old) and aged (20-22 month old) rats underwent erectile function testing in vivo by measuring intracavernosal pressure (ICP) and mean arterial blood pressure (MAP) upon electrical stimulation of the cavernous nerve. The data demonstrated that erectile function was significantly lower in aged rats than that in young rats at all voltages tested (P<0.05). Western blot analysis results showed that there were no significant changes in protein expressions of RhoA, Rho-kinase-alpha and -beta isoforms, and myosin light chain phosphatase target subunit (MYPT1); however, membrane-bound RhoA and phosphorylated MYPT1 were increased in aged rat penes by 95 +/- 15 and 56 +/- 8% (P<0.05), respectively, indicating enhanced RhoA and Rho-kinase activity. Inhibition of Rho-kinase with Y27632 maximally increased ICP/MAP to 0.72 +/- 0.05 in aged rats vs. 0.47 +/- 0.06 in young rats (P<0.05). Gene transfer of adeno-associated virus (AAV) encoding dominant negative RhoA (T19NRhoA) to penes of aged and young rats for 7 days markedly improved erectile function in aged rats when compared with that in young rats (P<0.05). These observations were also supported by Rho-kinase activity assay results showing that basal Rho-kinase activity in aged rat penes receiving AAV vehicle treatment was twofold greater than that in young rat penes receiving AAV vehicle treatment, while it was reduced to a level similar to that in young rat penes after gene therapy of T19NRhoA (P<0.05). Taken together, these data suggest that impaired erectile function during the aging process involves increased RhoA/Rho-kinase signaling, and this pathway may be exploited for the treatment of age-associated ED.

Aging↗

Priapism: new concepts in the pathophysiology and new treatment strategies.

Priapism is defined as prolonged and persistent erection of the penis without sexual stimulation. This is a poorly understood disease process, and we have little information on the etiology and pathophysiology of this erectile disorder. Two main types of priapism exist: low-flow (ischemic) and high-flow (nonischemic) priapism. When the physician first diagnoses which type of priapism exists, distinguishing the type of priapic event is paramount in order to choose the correct treatment options. Until recently, we had not sufficiently understood the pathogenesis of this erectile disorder and therefore, could not effectively manage its pathologic consequences of erectile tissue damage and erectile dysfunction. In this review, the proposed pathogenesis of ischemic priapism is reviewed, and a survey regarding novel treatment modalities is given.

Humans↗

Neuromodulatory therapy to improve erectile function recovery outcomes after pelvic surgery.

PURPOSE: Erectile dysfunction is a recognized, common adverse consequence of radical prostatectomy as well as various other pelvic surgeries. While a host of management options have been considered to decrease this complication, neuromodulatory therapy has recently been advanced as an intervention that may be applied for this purpose. We evaluated concepts regarding the neuropathic basis for erectile dysfunction following pelvic surgery, principles for establishing neuromodulatory therapy in this clinical context, evidence from preclinical studies supporting neuromodulatory approaches as a therapeutic strategy and the progress of early clinical developments in this field. MATERIALS AND METHODS: The exercise principally consisted of a current literature search using the National Library of Medicine PubMed Services, a survey of recent abstract proceedings from national meetings relevant to the topic and an Internet online search for current information on federally and privately supported clinical trials specific to this topic. References were made to such key words as neuroprotection, nerve regeneration, nerve growth factors, neurotrophic factors, cavernous nerves, nerve guides and penile erection. RESULTS: Basic science research and clinical studies support the concept that erectile loss after pelvic surgery is frequently related to neuropathic effects, resulting in penile vascular impairment. An assortment of neurobiological studies using rodent models of cavernous nerve injury have shown nerve reconstitutive actions for a host of neurotrophic substances, including classic neurotrophins, growth hormone, cytokines and atypical neurotrophic mediators. Clinical trials of several proposed neuroprotective and neurotrophic applications have been done or are in progress. CONCLUSIONS: Erectile dysfunction is a well recognized and yet ineffectively averted complication of pelvic surgery. Neuromodulatory therapy offers a therapeutic approach for addressing the neuropathic changes of the penis that occurs in this context with the goal of maximally preserving erectile function postoperatively. While several specific neuromodulatory applications have gained interest for their potential benefit with pelvic surgery, determining their actual roles awaits the completion of controlled clinical trials.

Erectile Dysfunction↗

Long-term oral phosphodiesterase 5 inhibitor therapy alleviates recurrent priapism.

OBJECTIVES: Recurrent ischemic priapism describes a disorder of repeated episodes of prolonged penile erection that frequently leads to devastating complications of erectile tissue damage and erectile dysfunction. A mechanistic role for dysregulated phosphodiesterase 5 (PDE5) in the deranged smooth muscle response of the corpus cavernosum of the penis offers new understanding about the pathogenesis of the disorder and suggests that PDE5 may serve as a molecular target for its treatment and prevention. We explored the use of PDE5 inhibitors to treat recurrent priapism, based on the hypothesis that the erection regulatory function of PDE5 would be regularized by this treatment and protect against further episodes. METHODS: We administered PDE5 inhibitors using a long-term therapeutic regimen to 3 men with sickle cell disease-associated priapism recurrences and 1 man with idiopathic priapism recurrences. RESULTS: Long-term PDE5 inhibitor treatment alleviated priapism recurrences. CONCLUSIONS: These observations support the hypothesis that PDE5 dysregulation exerts a pathogenic role for priapism associated with hematologic dyscrasias, as well as idiopathic priapism. Although these preliminary findings suggest that continuous, long-term PDE5 inhibitor therapy may be useful as a preventative strategy for priapism, additional evaluation in the form of a controlled clinical trial is needed.

3',5'-Cyclic-GMP Phosphodiesterases↗

Erectile dysfunction.

PURPOSE: An overview of the latest concepts advanced with regard to the epidemiology, pathophysiology, and management of male ED is provided. MATERIALS AND METHODS: Published literature and current paradigms promoted by consensus bodies in the field with regard to the management of ED were reviewed. RESULTS: ED is a neurovascular phenomenon modulated by hormonal, local biochemical, and biomechanical/structural factors of the penis. Once viewed primarily as a psychological issue, ED is now understood to represent predominantly organic etiologies. It has a significant association with cardiovascular disease and could serve as a harbinger of subsequent cardiovascular events. Goal directed assessment and management implies a focus on patient (and partner) preferences regarding various treatment options. These options range from oral pharmacological agents to surgery and may be pursued according to a stepwise management approach. Psychosocial interventions also may serve as useful therapeutic adjuncts. CONCLUSIONS: ED is a highly manageable disorder in most patients. The patient and his partner have integral roles in the decision making process, since preferences regarding the importance of sexual activity, and the risks and benefits of treatment will vary greatly among individuals.

Adult↗

Benign prostatic hyperplasia in primary care: what you need to know.

PURPOSE: We reviewed recent literature and treatment guidelines regarding the prevalence, pathophysiology, and management of BPO related to BPH; and management of lower urinary tract symptoms secondary to BPH. MATERIALS AND METHODS: Published literature and current treatment concepts were reviewed regarding the diagnosis and treatment options for BPO. RESULTS: BPH is a histological diagnosis that can contribute to medical problems, including enlargement of the prostate and BPO. These conditions should be treated only if the symptoms are troublesome, there is considerable risk of progression, and/or cancer is suspected. Very effective medical and surgical options are available to treat BPO and improve patient quality of life. CONCLUSIONS: BPO is highly treatable, but should be managed in close collaboration with the patient. Pharmacological agents and minimally invasive procedures, when appropriate, are generally preferred to more invasive surgery. Patients with mild or moderate symptoms usually can be treated by a primary care physician; more complicated cases should be referred to a urologist for evaluation and management.

Age Distribution↗

RhoA/Rho-kinase in erectile tissue: mechanisms of disease and therapeutic insights.

Penile erection is a complicated event involving the regulation of corpus cavernosal smooth muscle tone. Recently, the small monomeric G-protein RhoA and its downstream effector Rho-kinase have been proposed to be important players for mediating vasoconstriction in the penis. RhoA/Rho-kinase increases MLC (myosin light chain) phosphorylation through inhibition of MLCP (MLC phosphatase) thereby increasing Ca2+ sensitivity. This review will outline the RhoA/Rho-kinase signalling pathway, including the upstream regulators, guanine nucleotide exchange factors, GDP dissociation inhibitors and GTPase-activating proteins. We also summarize the current knowledge about the physiological roles of RhoA/Rho-kinase in both male and female erectile tissues and its aberrations contributing to erectile dysfunction in several disease states. Understanding the RhoA/Rho-kinase signalling pathway in the regulation of erection is important for the development of therapeutic interventions for erectile dysfunction.

Erectile Dysfunction↗

eNOS function and dysfunction in the penis.

Endothelial nitric oxide (NO) synthase (eNOS) has an indispensable role in the erectile response. In the penis, eNOS activity and endothelial NO bioavailability are regulated by multiple post-translational molecular mechanisms, such as eNOS phosphorylation, eNOS interaction with regulatory proteins and contractile pathways, and actions of reactive oxygen species (ROS). These mechanisms regulate eNOS-mediated responses under physiologic circumstances and provide various mechanisms whereby endothelial NO availability may be altered in states of vasculogenic erectile dysfunction (ED). In view of the recent advances in the field of eNOS function in the penis and its role in penile erection, the emphasis in this review is placed on the mechanisms regulating eNOS activity and its interaction with the RhoA/Rho-kinase pathway in the physiology of penile erection and the pathophysiology of ED.

Aging↗

Nitric oxide/redox-based signalling as a therapeutic target for penile disorders.

Oxidative and/or nitrosative stress is implicated in the pathogeneses of assorted penile disorders of clinical significance, notably erectile dysfunction, priapism and penile fibrosis. It is becoming increasingly recognised that the generation and activity of reactive oxygen and nitrogen species in the penis influence vascular homeostasis of this organ, with adverse effects exerted at cellular and molecular levels. Furthermore, these elements may interact with molecular signalling pathways operating in the penis, modulating their functional roles. This interaction in particular suggests that by accessing molecular targets associated with oxidative/nitrosative stress in the penis, new pharmacotherapeutic approaches may be developed to promote normal erectile ability and preserve erectile tissue health. This notion pertains to, but also extends beyond, interventions which predictably target components of the nitric oxide-based signal transduction pathway for the on-demand treatment of erectile dysfunction. The next line of pharmaceuticals for disorders of the penis, in general, may well spawn from an integrative understanding of the complex regulatory interactions influenced by, as well as influencing nitric oxide signalling in this organ.

Animals↗

Erectile function outcomes in the current era of anatomic nerve-sparing radical prostatectomy.

The contemporary use of anatomic nerve-sparing radical prostatectomy, which entails preserving the autonomic nerve supply to the penis required for penile erection, has led to improved erectile function outcomes compared with what has been seen historically. However, delay of postoperative recovery of erection for as long as 2 years is common, such that dysfunctional erection status lingers as a major postoperative problem. Several possible strategies to improve overall recovery rates and to hasten postoperative recovery of erectile function are currently being advanced. These include pharmacologic rehabilitation therapy and neuromodulatory therapy. Rigorous basic scientific investigation and clinical assessment of these new strategic approaches are critically important to establish their actual therapeutic benefits.

Journal Article↗

Sexual dysfunction and cardiac risk (the Second Princeton Consensus Conference).

Recent studies have highlighted the relation between erectile dysfunction (ED) and cardiovascular disease. In particular, the role of endothelial dysfunction and nitric oxide in ED and atherosclerotic disease has been elucidated. Given the large number of men receiving medical treatment for ED, concerns regarding the risk for sexual activity triggering acute cardiovascular events and potential risks of adverse or unanticipated drug interactions need to be addressed. A risk stratification algorithm was developed by the First Princeton Consensus Panel to evaluate the degree of cardiovascular risk associated with sexual activity for men with varying degrees of cardiovascular disease. Patients were assigned to 3 categories: low, intermediate (including those requiring further evaluation), and high risk. This consensus study from the Second Princeton Consensus Conference corroborates and clarifies the algorithm and emphasizes the importance of risk factor evaluation and management for all patients with ED. The panel reviewed recent safety and drug interaction data for 3 phosphodiesterase (PDE)-5 inhibitors (sildenafil, tadalafil, vardenafil), with emphasis on the safety of these agents in men with ED and concomitant cardiovascular disease. Increasing evidence supports the role of lifestyle intervention in ED, specifically weight loss and increased physical activity, particularly in patients with ED and concomitant cardiovascular disease. Special management recommendations for patients taking PDE-5 inhibitors who present at the emergency department and other emergency medical situations are described. Finally, further research on the role of PDE-5 inhibition in treating patients with other medical or cardiovascular disorders is recommended.

Cardiovascular Diseases↗

Inactivation of phosphorylated endothelial nitric oxide synthase (Ser-1177) by O-GlcNAc in diabetes-associated erectile dysfunction.

Impaired endothelial nitric oxide synthase (eNOS) function is associated with erectile dysfunction in diabetes mellitus, but the exact molecular basis for the eNOS defect in the diabetic penis remains unclear. We investigated whether hyperglycemia increases O-GlcNAc modification of eNOS in the penis, preventing phosphorylation at the primary positive regulatory site on the enzyme and hampering mechanisms of the erectile response. Type I diabetes mellitus was induced in male rats by alloxan (140 mg/kg, i.p.). After 5 wk, the diabetic rat penis exhibited increased O-GlcNAc modification of eNOS and decreased eNOS phosphorylation at Ser-1177 at baseline compared with the control rat penis; eNOS phosphorylation at Thr-495, Ser-615, and Ser-633 was not affected. In addition, eNOS phosphorylation at Ser-1177 was impaired in the diabetic rat penis in response to penile blood flow (shear stress) elicited by electrical stimulation of the cavernous nerve (ES) and to recombinant human VEGF165. Phosphorylation of Akt, a mediator of shear stress-induced eNOS phosphorylation at Ser-1177, was decreased in the diabetic penis at baseline, but it was restored by ES. Erectile response to shear stress elicited by ES and to VEGF was decreased in diabetic compared with control rats. This work demonstrates that eNOS inactivation occurs in the diabetic penis by a glycosylation mechanism specifically at Ser-1177, by which the enzyme is rendered incapable of activation by fluid shear stress stimuli and VEGF signaling. In vivo penile erection paradigm supports the physiologic relevance of O-GlcNAc modification in vascular disorders associated with diabetes.

Acetylglucosamine↗