Objective: To evaluate the reliability, efficacy, and safety of vardenafil, 10 mg, for patients with erectile dysfunction.

Patients And Methods: Vardenafil-naive patients completed a 4-week treatment-free run-in phase and a 1-week single-dose vardenafil (10 mg) open-label challenge phase. Responders to vardenafil in the challenge phase were randomized to 12 weeks of double-blind, fixed-dose treatment with vardenafil at 10 mg or placebo. Diary responses to Sexual Encounter Profile (SEP) questions about erections and attempts at sexual activity were collected after 4, 8, and 12 weeks of randomized treatment. Adverse events were monitored throughout the study.

Results: During the open-label challenge phase, the proportions of patients with a first-time success for penetration (SEP2) and maintenance of erection (SEP3) were 87% and 74%, respectively. Of 600 patients challenged with a single dose of vardenafil at 10 mg, 260 were randomized to vardenafil and 263 to placebo. During the double-blind phase, the reliability of penetration and maintenance rates for patients successful during the challenge phase were significantly greater with vardenafil compared with placebo (83.4% vs 55.8% [SEP2] and 76.6% vs 42.1% [SEP3], respectively). At week 12, patients in the vardenafil group had a consistently higher least squares mean (SE) on the erectile function domain score of the International Index of Erectile Function than patients in the placebo group (23.5 [0.4] vs 15.8 [0.4], respectively [last observation carried forward]) and a greater proportion of positive responses to the Global Assessment Question (80.8% vs 32.3%, respectively [last observation carried forward]) at each assessment (Pc.001). Vardenafil was generally well tolerated; most adverse events were mild to moderate, with headache and flushing reported most frequently.

Conclusion: During this 12-week study, vardenafil produced consistently higher reliability of penetration and maintenance of erection rates compared to placebo and was generally well tolerated in patients with erectile dysfunction.

Download full-text PDF

Source
http://dx.doi.org/10.4065/80.10.1291DOI Listing

Publication Analysis

Top Keywords

challenge phase
16
vardenafil
11
efficacy safety
8
safety vardenafil
8
erectile dysfunction
8
patients
8
patients erectile
8
open-label challenge
8
adverse events
8
maintenance erection
8

Similar Publications

Acting as the interface between the human body and its environment, clothing is indispensable in human thermoregulation and even survival under extreme environmental conditions. Development of clothing textiles with prolonged passive temperature-adaptive thermoregulation without external energy consumption is much needed for protection from thermal stress and energy saving, but very challenging. Here, a temperature-adaptive thermoregulation filament (TATF) consisting of thermoresponsive vacuum cavities formed by the temperature-responsive volume change of the material confined in the cellular cores of the filament is proposed.

View Article and Find Full Text PDF

Electronic confinement induced quantum dot behavior in magic-angle twisted bilayer graphene.

Nanoscale

January 2025

Transport at Nanoscale Interfaces Laboratory, Empa, Swiss Federal Laboratories for Materials Science and Technology, 8600 Dübendorf, Switzerland.

Magic-angle twisted bilayer graphene (TBLG) has emerged as a versatile platform to explore correlated electron phases driven primarily by low-energy flat bands in moiré superlattices. While techniques for controlling the twist angle between graphene layers have spurred rapid experimental progress, understanding the effects of doping inhomogeneity on electronic transport in correlated electron systems remains challenging. In this work, we investigate the interplay of confinement and doping inhomogeneity on the electrical transport properties of TBLG by leveraging device dimensions and twist angles.

View Article and Find Full Text PDF

The intentional manipulation of carrier characteristics serves as a fundamental principle underlying various energy-related and optoelectronic semiconductor technologies. However, achieving switchable and reversible control of the polarity within a single material to design optimized devices remains a significant challenge. Herein, we successfully achieved dramatic reversible p-n switching during the semiconductor‒semiconductor phase transition in BiI via pressure, accompanied by a substantial improvement in their photoelectric properties.

View Article and Find Full Text PDF

Tailoring rhodium-based metal-organic layers for parahydrogen-induced polarization: achieving 20% polarization of H in liquid phase.

Natl Sci Rev

January 2025

State Key Laboratory of Physical Chemistry of Solid Surfaces, School of Electronic Science and Engineering, Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

Heterogeneous catalysts for parahydrogen-induced polarization (HET-PHIP) would be useful for producing highly sensitive contrasting agents for magnetic resonance imaging (MRI) in the liquid phase, as they can be removed by simple filtration. Although homogeneous hydrogenation catalysts are highly efficient for PHIP, their sensitivity decreases when anchored on porous supports due to slow substrate diffusion to the active sites and rapid depolarization within the channels. To address this challenge, we explored 2D metal-organic layers (MOLs) as supports for active Rh complexes with diverse phosphine ligands and tunable hydrogenation activities, taking advantage of the accessible active sites and chemical adaptability of the MOLs.

View Article and Find Full Text PDF

Whole-body PET imaging is often hindered by respiratory motion during acquisition, causing significant degradation in the quality of reconstructed activity images. An additional challenge in PET/CT imaging arises from the respiratory phase mismatch between CT-based attenuation correction and PET acquisition, leading to attenuation artifacts. To address these issues, we propose two new, purely data-driven methods for the joint estimation of activity, attenuation, and motion in respiratory self-gated TOF PET.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!