Nadia Brugger
Merck Serono
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Featured researches published by Nadia Brugger.
The Journal of Urology | 2008
Nadia Brugger; Noel N. Kim; Gian Luca Araldi; Abdulmaged M. Traish; Stephen Palmer
Introduction. Despite the widespread use of prostaglandin E1 as an efficacious treatment for male erectile dysfunc- tion for more than two decades, research on prostanoid function in penile physiology has been limited. Aim. To characterize the pharmacological and physiological activity of novel subtype-selective EP and DP receptor agonists. Methods. Radioligand binding and second messenger assays were used to define receptor subtype specificity of the EP and DP agonists. Functional activity was further characterized using isolated human and rabbit penile cavernosal tissue in organ baths. In vivo activity was assessed in rabbits and rats by measuring changes in cavernous pressure after intracavernosal injection of receptor agonists. Main Outcome Measures. Receptor binding and signal transduction, smooth muscle contractile activity, erectile function. Results. In organ bath preparations of human cavernosal tissue contracted with phenylephrine, EP2- and EP4- selective agonists exhibited variable potency in causing relaxation. One of the compounds caused mild contraction, and none of the compounds was as effective as PGE1 (EC50 = 0.23 mM). There was no consistent correlation between the pharmacological profile (receptor binding and second messenger assays) of the EP agonists and their effect on cavernosal tissue tone. In contrast, the DP1-selective agonist AS702224 (EC50 =29 nM) was more effective in relaxing human cavernosal tissue than either PGE1, PGD2 (EC50 = 58 nM), or the DP agonist BW245C (EC50 =59 nM). In rabbit cavernosal tissue, PGE1 and PGD2 caused only contraction, while AS702224 and BW245C caused relaxation. Intracavernosal administration of AS702224 and BW245C also caused penile tumescence in rabbits and rats. For each compound, the erectile response improved with increasing dose and was significantly higher than vehicle alone. Conclusions. These data suggest that AS702224 is a potent DP1-selective agonist that causes penile erection. The DP1 receptor mediates relaxation in human cavernosal tissue, and stimulates pro-erectile responses in rat and rabbit. Thus, rabbits and rats can be useful models for investigating the physiological function of DP1 receptors. Brugger N, Kim NN, Araldi GL, Traish AM, and Palmer SS. Pharmacological and functional characterization of novel EP and DP receptor agonists: DP1 receptor mediates penile erection in multiple species. J Sex Med 2008;5:344-356.
Bioorganic & Medicinal Chemistry Letters | 2007
Catherine Jorand-Lebrun; Bill Brondyk; Jing Lin; Sharad Magar; Robert Murray; Adulla Reddy; Hitesh Shroff; Greg Wands; Weishui Weiser; Qihong Xu; Sean D. McKenna; Nadia Brugger
Bioorganic & Medicinal Chemistry Letters | 2007
Yufang Xiao; Gian Luca Araldi; Zhong Zhao; Nadia Brugger; Srinivasa Karra; David Fischer; Elizabeth Palmer
Bioorganic & Medicinal Chemistry Letters | 2008
Yufang Xiao; Gian Luca Araldi; Zhong Zhao; Adulla Reddy; Srinivasa Karra; Nadia Brugger; David Fischer; Elizabeth Palmer; Bagna Bao; Sean D. McKenna
Bioorganic & Medicinal Chemistry Letters | 2007
Zhong Zhao; Gian Luca Araldi; Yufang Xiao; Adulla Reddy; Yihua Liao; Srinivasa Karra; Nadia Brugger; David Fischer; Elizabeth Palmer
The Journal of Sexual Medicine | 2008
Nadia Brugger; Noel N. Kim; Gian Luca Araldi; Abdulmaged M. Traish; Stephen Palmer
Archive | 2004
Gian Luca Araldi; Srinivasa Karra; Zhong Zhao; Nadia Brugger
Archive | 2004
Gian Luca Araldi; Yihua Liao; Nadia Brugger
Cancer Research | 2007
Srinivasa Karra; Andreas Goutopoulos; Amanda E. Sutton; Nadia Brugger; John Yingsheng Zhang; Qihong Xu; Tony Arulanandam; Roustem Nabioullin; Adam Shutes; Wendy Y. Zhang; Carolyn Hum; Zhaowen Luo; Xuliang Jiang; Sharad Magar; Brian Healey; Robert K. Murray; Peter Blume-Jensen; Steve Arkinstall; Claudio Giachetti; Lucia Golzio; Pamela Ferro; Paolo Marinelli; Rocco Cirillo; Jeff Shaw; Matthias Schwarz
Archive | 2017
Amanda E. Sutton; Benny C Askew; Nadia Brugger; Ruoxi Lan