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Dive into the research topics where Robert S. Meissner is active.

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Featured researches published by Robert S. Meissner.


Journal of Biological Chemistry | 2010

Discovery of the Selective Androgen Receptor Modulator MK-0773 Using a Rational Development Strategy Based on Differential Transcriptional Requirements for Androgenic Anabolism Versus Reproductive Physiology

Azriel Schmidt; Donald B. Kimmel; Chang Bai; Angela Scafonas; SuJane Rutledge; Robert L. Vogel; Sheila McElwee-Witmer; Fang Chen; Pascale V. Nantermet; Viera Kasparcova; Chih-Tai Leu; Hai-Zhuan Zhang; Mark E. Duggan; Michael A. Gentile; Paul Hodor; Brenda Pennypacker; Patricia Masarachia; Evan E. Opas; Sharon Adamski; Tara E. Cusick; Jiabing Wang; Helen J. Mitchell; Yuntae Kim; Thomayant Prueksaritanont; James J. Perkins; Robert S. Meissner; George D. Hartman; Leonard P. Freedman; Shun-ichi Harada; William J. Ray

Selective androgen receptor modulators (SARMs) are androgen receptor (AR) ligands that induce anabolism while having reduced effects in reproductive tissues. In various experimental contexts SARMs fully activate, partially activate, or even antagonize the AR, but how these complex activities translate into tissue selectivity is not known. Here, we probed receptor function using >1000 synthetic AR ligands. These compounds produced a spectrum of activities in each assay ranging from 0 to 100% of maximal response. By testing different classes of compounds in ovariectomized rats, we established that ligands that transactivated a model promoter 40–80% of an agonist, recruited the coactivator GRIP-1 <15%, and stabilized the N-/C-terminal interdomain interaction <7% induced bone formation with reduced effects in the uterus and in sebaceous glands. Using these criteria, multiple SARMs were synthesized including MK-0773, a 4-aza-steroid that exhibited tissue selectivity in humans. Thus, AR activated to moderate levels due to reduced cofactor recruitment, and N-/C-terminal interactions produce a fully anabolic response, whereas more complete receptor activation is required for reproductive effects. This bimodal activation provides a molecular basis for the development of SARMs.


Journal of Biological Chemistry | 2009

Identification of Anabolic Selective Androgen Receptor Modulators with Reduced Activities in Reproductive Tissues and Sebaceous Glands

Azriel Schmidt; Shun-ichi Harada; Donald B. Kimmel; Chang Bai; Fang Chen; Su Jane Rutledge; Robert L. Vogel; Angela Scafonas; Michael A. Gentile; Pascale V. Nantermet; Sheila McElwee-Witmer; Brenda Pennypacker; Patricia Masarachia; Soumya P. Sahoo; Yuntae Kim; Robert S. Meissner; George D. Hartman; Mark E. Duggan; Gideon A. Rodan; Dwight A. Towler; William J. Ray

Androgen replacement therapy is a promising strategy for the treatment of frailty; however, androgens pose risks for unwanted effects including virilization and hypertrophy of reproductive organs. Selective Androgen Receptor Modulators (SARMs) retain the anabolic properties of androgens in bone and muscle while having reduced effects in other tissues. We describe two structurally similar 4-aza-steroidal androgen receptor (AR) ligands, Cl-4AS-1, a full agonist, and TFM-4AS-1, which is a SARM. TFM-4AS-1 is a potent AR ligand (IC50, 38 nm) that partially activates an AR-dependent MMTV promoter (55% of maximal response) while antagonizing the N-terminal/C-terminal interaction within AR that is required for full receptor activation. Microarray analyses of MDA-MB-453 cells show that whereas Cl-4AS-1 behaves like 5α-dihydrotestosterone (DHT), TFM-4AS-1 acts as a gene-selective agonist, inducing some genes as effectively as DHT and others to a lesser extent or not at all. This gene-selective agonism manifests as tissue-selectivity: in ovariectomized rats, Cl-4AS-1 mimics DHT while TFM-4AS-1 promotes the accrual of bone and muscle mass while having reduced effects on reproductive organs and sebaceous glands. Moreover, TFM-4AS-1 does not promote prostate growth and antagonizes DHT in seminal vesicles. To confirm that the biochemical properties of TFM-4AS-1 confer tissue selectivity, we identified a structurally unrelated compound, FTBU-1, with partial agonist activity coupled with antagonism of the N-terminal/C-terminal interaction and found that it also behaves as a SARM. TFM-4AS-1 and FTBU-1 represent two new classes of SARMs and will allow for comparative studies aimed at understanding the biophysical and physiological basis of tissue-selective effects of nuclear receptor ligands.


Journal of Medicinal Chemistry | 2016

Identification and in Vivo Evaluation of Liver X Receptor β-Selective Agonists for the Potential Treatment of Alzheimer’s Disease

Shawn J. Stachel; Celina Zerbinatti; Michael T. Rudd; Mali Cosden; Sokreine Suon; Kausik K. Nanda; Keith Wessner; Jillian DiMuzio; Jill Maxwell; Zhenhua Wu; Jason M. Uslaner; Maria S. Michener; Peter Szczerba; Edward J. Brnardic; Vanessa Rada; Yuntae Kim; Robert S. Meissner; Peter Wuelfing; Yang Yuan; Jeanine Ballard; Marie A. Holahan; Daniel Klein; Jun Lu; Xavier Fradera; Gopal Parthasarathy; Victor N. Uebele; Zhongguo Chen; Yingjie Li; Jian Li; Andrew John Cooke

Herein, we describe the development of a functionally selective liver X receptor β (LXRβ) agonist series optimized for Emax selectivity, solubility, and physical properties to allow efficacy and safety studies in vivo. Compound 9 showed central pharmacodynamic effects in rodent models, evidenced by statistically significant increases in apolipoprotein E (apoE) and ATP-binding cassette transporter levels in the brain, along with a greatly improved peripheral lipid safety profile when compared to those of full dual agonists. These findings were replicated by subchronic dosing studies in non-human primates, where cerebrospinal fluid levels of apoE and amyloid-β peptides were increased concomitantly with an improved peripheral lipid profile relative to that of nonselective compounds. These results suggest that optimization of LXR agonists for Emax selectivity may have the potential to circumvent the adverse lipid-related effects of hepatic LXR activity.


Journal of Medicinal Chemistry | 2009

Design, synthesis, and biological evaluation of 16-substituted 4-azasteroids as tissue-selective androgen receptor modulators (SARMs).

Helen J. Mitchell; William P. Dankulich; George D. Hartman; Thomayant Prueksaritanont; Azriel Schmidt; Robert L. Vogel; Chang Bai; Sheila McElwee-Witmer; Hai Z. Zhang; Fang Chen; Chih-Tai Leu; Donald B. Kimmel; William J. Ray; Pascale V. Nantermet; Michael A. Gentile; Mark E. Duggan; Robert S. Meissner

A novel series of 16-substituted-4-azasteroids has been identified as potential tissue-selective androgen receptor modulators. These ligands display potent hAR binding and agonist activity, low virilizing potential, and good pharmacokinetic profiles in dogs. On the basis of its in vitro profile, 21 was evaluated in the OVX and ORX rat models and exhibited an osteoanabolic, tissue-selective profile.


European Journal of Pharmacology | 2014

The preclinical efficacy, selectivity and pharmacologic profile of MK-5932, an insulin-sparing selective glucocorticoid receptor modulator.

Philip E. Brandish; Kenneth Anderson; Gretchen A. Baltus; Chang Bai; Christopher James Bungard; Patricia B. Bunting; Alan Byford; Chi-Sung Chiu; Milenko Cicmil; Halea A. Corcoran; Danielle Euler; John E. Fisher; Carlo Gambone; Martha Hasbun-Manning; Nelly A. Kuklin; Elizabeth Landis; Traci Q. Lifsted; Sheila McElwee-Witmer; Ian McIntosh; Robert S. Meissner; John Miao; Helen J. Mitchell; Amy Musselman; Azriel Schmidt; John H. Shin; Peter Szczerba; Charles D. Thompson; Catherine Tribouley; Robert L. Vogel; Sudha Warrier

Glucocorticoids are used widely in the treatment of inflammatory diseases, but use is accompanied by a significant burden of adverse effects. It has been hypothesized that gene- and cell-specific regulation of the glucocorticoid receptor by small molecule ligands could be translated into a therapeutic with an improved risk-benefit profile. MK-5932 is a highly selective glucocorticoid receptor modulator that is anti-inflammatory in vivo with an improved profile on glucose metabolism: Bungard et al. (2011). Bioorg. Med. Chem. 19, 7374-7386. Here we describe the full biological profile of MK-5932. Cytokine production following lipopolysaccharide (LPS) challenge was blocked by MK-5932 in both rat and human whole blood. Oral administration reduced inflammatory cytokine levels in the serum of rats challenged with LPS. MK-5932 was anti-inflammatory in a rat contact dermatitis model, but was differentiated from 6-methylprednisolone by a lack of elevation of fasting insulin or glucose levels after 7 days of dosing, even at high exposure levels. In fact, animals in the vehicle group were consistently hyperglycemic at the end of the study, and MK-5932 normalized glucose levels in a dose-dependent manner. MK-5932 was also anti-inflammatory in the rat collagen-induced arthritis and adjuvant-induced arthritis models. In healthy dogs, oral administration of MK-5932 exerted acute pharmacodynamic effects with potency comparable to prednisone, but with important differences on neutrophil counts, again suggestive of a dissociated profile. Important gaps in our understanding of mechanism of action remain, but MK-5932 will be a useful tool in dissecting the mechanisms of glucose dysregulation by therapeutic glucocortiocids.


Journal of Medicinal Chemistry | 2003

Nonpeptide alphavbeta3 antagonists. 8. In vitro and in vivo evaluation of a potent alphavbeta3 antagonist for the prevention and treatment of osteoporosis.

John H. Hutchinson; Wasyl Halczenko; Karen M. Brashear; Michael J. Breslin; Paul J. Coleman; Le T. Duong; Carmen Fernandez-Metzler; Michael A. Gentile; John E. Fisher; George D. Hartman; Huff; Donald B. Kimmel; Chih-Tai Leu; Robert S. Meissner; Kara Merkle; Nagy R; Brenda Pennypacker; James J. Perkins; Thomayant Prueksaritanont; Gideon A. Rodan; Varga Sl; Gregg Wesolowski; Amy E. Zartman; Sevgi B. Rodan; Mark E. Duggan


Archive | 2003

Fluorinated 4-azasteroid derivatives as androgen receptor modulators

Robert S. Meissner; James J. Perkins


Archive | 2004

17-heterocyclic-4-azasteroid derivatives as androgen receptor modulators

Mildred L. Kaufman; Robert S. Meissner; Helen J. Mitchell


Archive | 2007

2-[1-phenyl-5-hydroxy or methoxy-4alpha-methyl-hexahydrocyclopenta [ƒ]indazole-5-YL]ethyl phenyl derivatives as glucocorticoid receptor ligands

Christopher James Bungard; Jesse Josef Manikowski; James J. Perkins; Robert S. Meissner


Archive | 2004

17-acetamido-4-azasteroid derivatives as androgen receptor modulators

William P. Dankulich; Mildred L. Kaufman; Robert S. Meissner; Helen J. Mitchell

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James J. Perkins

United States Military Academy

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Jiabing Wang

United States Military Academy

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George D. Hartman

United States Military Academy

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Yuntae Kim

United States Military Academy

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Wasyl Halczenko

United States Military Academy

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Michael J. Breslin

United States Military Academy

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