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Featured researches published by Jianliang Shi.


Bioorganic & Medicinal Chemistry Letters | 2011

Monosubstituted γ-lactam and conformationally constrained 1,3-diaminopropan-2-ol transition-state isostere inhibitors of β-secretase (BACE)

Kenneth M. Boy; Jason M. Guernon; Jianliang Shi; Jeremy H. Toyn; Jere E. Meredith; Donna M. Barten; Catherine R. Burton; Charles F. Albright; Jovita Marcinkeviciene; Andrew C. Good; Andrew J. Tebben; Jodi K. Muckelbauer; Daniel M. Camac; Kimberley A. Lentz; Joanne J. Bronson; Richard E. Olson; John E. Macor; Lorin A. Thompson

The synthesis, evaluation, and structure-activity relationships of a class of γ-lactam 1,3-diaminopropan-2-ol transition-state isostere inhibitors of BACE are discussed. Two strategies for optimizing lead compound 1a are presented. Reducing the overall size of the inhibitors resulted in the identification of γ-lactam 1i, whereas the introduction of conformational constraint on the prime-side of the inhibitor generated compounds such as the 3-hydroxypyrrolidine inhibitor 28n. The full in vivo profile of 1i in rats and 28n in Tg 2576 mice is presented.


Bioorganic & Medicinal Chemistry Letters | 2011

Synthesis and in vivo evaluation of cyclic diaminopropane BACE-1 inhibitors.

Lorin A. Thompson; Jianliang Shi; Carl P. Decicco; Andrew J. Tebben; Richard E. Olson; Kenneth M. Boy; Jason M. Guernon; Andrew Good; Ann Y. Liauw; Changsheng Zheng; Robert A. Copeland; Andrew P. Combs; George L. Trainor; Daniel M. Camac; Jodi K. Muckelbauer; Kimberley A. Lentz; James E. Grace; Catherine R. Burton; Jeremy H. Toyn; Donna M. Barten; Jovita Marcinkeviciene; Jere E. Meredith; Charles F. Albright; John E. Macor

The synthesis, evaluation, and structure-activity relationships of a set of related constrained diaminopropane inhibitors of BACE-1 are described. The full in vivo profile of an optimized inhibitor in both normal and P-gp deficient mice is compared with data generated in normal rats.


Journal of Medicinal Chemistry | 2017

Development of New Benzenesulfonamides As Potent and Selective Nav1.7 Inhibitors for the Treatment of Pain

Yong-Jin Wu; Jason M. Guernon; Jianliang Shi; Jonathan L. Ditta; Kevin J. Robbins; Ramkumar Rajamani; Amy Easton; Amy Newton; Clotilde Bourin; Kathleen W. Mosure; Matthew G. Soars; Ronald J. Knox; Michele Matchett; Rick L. Pieschl; Debra J. Post-Munson; Shuya Wang; James Herrington; John D. Graef; Kimberly Newberry; Linda J. Bristow; Nicholas A. Meanwell; Richard E. Olson; Lorin A. Thompson; Carolyn Diane Dzierba

By taking advantage of certain features in piperidine 4, we developed a novel series of cyclohexylamine- and piperidine-based benzenesulfonamides as potent and selective Nav1.7 inhibitors. However, compound 24, one of the early analogs, failed to reduce phase 2 flinching in the mouse formalin test even at a dose of 100 mpk PO due to insufficient dorsal root ganglion (DRG) exposure attributed to poor membrane permeability. Two analogs with improved membrane permeability showed much increased DRG concentrations at doses of 30 mpk PO, but, confoundingly, only one of these was effective in the formalin test. More data are needed to understand the disconnect between efficacy and exposure relationships.


ACS Medicinal Chemistry Letters | 2016

Targeting the BACE1 Active Site Flap Leads to a Potent Inhibitor That Elicits Robust Brain Aβ Reduction in Rodents.

Yong-Jin Wu; Jason M. Guernon; Fukang Yang; Lawrence B. Snyder; Jianliang Shi; Andrea McClure; Ramkumar Rajamani; Hyunsoo Park; Alicia Ng; Hal A. Lewis; Chiehying Chang; Dan Camac; Jeremy H. Toyn; Michael K. Ahlijanian; Charles F. Albright; John E. Macor; Lorin A. Thompson

By targeting the flap backbone of the BACE1 active site, we discovered 6-dimethylisoxazole-substituted biaryl aminothiazine 18 with 34-fold improved BACE1 inhibitory activity over the lead compound 1. The cocrystal structure of 18 bound to the active site indicated two hydrogen-bond interactions between the dimethylisoxazole and threonine 72 and glutamine 73 of the flap. Incorporation of the dimethylisoxazole substitution onto the related aminothiazine carboxamide series led to pyrazine-carboxamide 26 as a very potent BACE1 inhibitor (IC50 < 1 nM). This compound demonstrated robust brain Aβ reduction in rat dose-response studies. Thus, compound 26 may be useful in testing the amyloid hypothesis of Alzheimers disease.


Journal of Medicinal Chemistry | 2016

Discovery of S3-Truncated, C-6 Heteroaryl Substituted Aminothiazine β-Site APP Cleaving Enzyme-1 (BACE1) Inhibitors

Yong-Jin Wu; Jason M. Guernon; Jianliang Shi; Mendi A. Higgins; Ramkumar Rajamani; Jodi K. Muckelbauer; Hal A. Lewis; Chiehying Chang; Dan Camac; Jeremy H. Toyn; Michael K. Ahlijanian; Charles F. Albright; John E. Macor; Lorin A. Thompson

Truncation of the S3 substituent of the biaryl aminothiazine 2, a potent BACE1 inhibitor, led to a low molecular weight aminothiazine 5 with moderate activity. Despite its moderate activity, compound 5 demonstrated significant brain Aβ reduction in rodents. The metabolic instability of 5 was overcome by the replacement of the 6-dimethylisoxazole, a metabolic soft spot, with a pyrimidine ring. Thus, truncation of the S3 substituent represents a viable approach to the discovery of orally bioavailable, brain-penetrant BACE1 inhibitors.


International Journal of Alzheimer's Disease | 2014

Identification and Preclinical Pharmacology of the γ-Secretase Modulator BMS-869780.

Jeremy H. Toyn; Lorin A. Thompson; Kimberley A. Lentz; Jere E. Meredith; Catherine R. Burton; Sethu Sankaranararyanan; Valerie Guss; Tracey Hall; Lawrence G. Iben; Carol M. Krause; Rudy Krause; Xu-Alan Lin; Maria Pierdomenico; Craig Polson; Alan S. Robertson; Rex Denton; James E. Grace; John Morrison; Joseph Raybon; Xiaoliang Zhuo; Kimberly Snow; Ramesh Padmanabha; Michele Agler; Kim Esposito; David G. Harden; Margaret M Prack; Sam Varma; Victoria Wong; Yingjie Zhu; Tatyana Zvyaga

Alzheimers disease is the most prevalent cause of dementia and is associated with accumulation of amyloid-β peptide (Aβ), particularly the 42-amino acid Aβ1-42, in the brain. Aβ1-42 levels can be decreased by γ-secretase modulators (GSM), which are small molecules that modulate γ-secretase, an enzyme essential for Aβ production. BMS-869780 is a potent GSM that decreased Aβ1-42 and Aβ1-40 and increased Aβ1-37 and Aβ1-38, without inhibiting overall levels of Aβ peptides or other APP processing intermediates. BMS-869780 also did not inhibit Notch processing by γ-secretase and lowered brain Aβ1-42 without evidence of Notch-related side effects in rats. Human pharmacokinetic (PK) parameters were predicted through allometric scaling of PK in rat, dog, and monkey and were combined with the rat pharmacodynamic (PD) parameters to predict the relationship between BMS-869780 dose, exposure and Aβ1-42 levels in human. Off-target and safety margins were then based on comparisons to the predicted exposure required for robust Aβ1-42 lowering. Because of insufficient safety predictions and the relatively high predicted human daily dose of 700 mg, further evaluation of BMS-869780 as a potential clinical candidate was discontinued. Nevertheless, BMS-869780 demonstrates the potential of the GSM approach for robust lowering of brain Aβ1-42 without Notch-related side effects.


Bioorganic & Medicinal Chemistry Letters | 2016

Design and optimization of tricyclic gamma-secretase modulators

Jianliang Shi; Dmitry Zuev; Li Xu; Kimberley A. Lentz; James E. Grace; Jeremy H. Toyn; Richard E. Olson; John E. Macor; Lorin A. Thompson

Beginning with a diaminotriazine screening hit, several series of novel, tricyclic gamma-secretase modulators (GSMs) were designed. The SAR of several related series of GSMs is presented, and the in vivo profile of a lead molecule from the series is described.


ACS Medicinal Chemistry Letters | 2018

BMS-986163, a Negative Allosteric Modulator of GluN2B with Potential Utility in Major Depressive Disorder

Jayakumar Sankara Warrier; Srinivasan Thangathirupathy; Jianliang Shi; George N. Karageorge; Bradley C. Pearce; Alicia Ng; Hyunsoo Park; James Kempson; Jianqing Li; Huiping Zhang; Arvind Mathur; Aliphedi B. Reddy; G. Nagaraju; Gopikishan Tonukunuru; Grandhi V. R.K. M. Gupta; Manjunatha Kamble; Raju Mannoori; Srinivas Cheruku; Srinivas Jogi; Jyoti Gulia; Tanmaya Bastia; Charulatha Sanmathi; Jayant Aher; Rajareddy Kallem; Bettadapura N. Srikumar; Kumar Kuchibhotla Vijaya; Pattipati S. Naidu; Mahesh Paschapur; Narasimharaju Kalidindi; Reeba K. Vikramadithyan

There is a significant unmet medical need for more efficacious and rapidly acting antidepressants. Toward this end, negative allosteric modulators of the N-methyl-d-aspartate receptor subtype GluN2B have demonstrated encouraging therapeutic potential. We report herein the discovery and preclinical profile of a water-soluble intravenous prodrug BMS-986163 (6) and its active parent molecule BMS-986169 (5), which demonstrated high binding affinity for the GluN2B allosteric site (Ki = 4.0 nM) and selective inhibition of GluN2B receptor function (IC50 = 24 nM) in cells. The conversion of prodrug 6 to parent 5 was rapid in vitro and in vivo across preclinical species. After intravenous administration, compounds 5 and 6 have exhibited robust levels of ex vivo GluN2B target engagement in rodents and antidepressant-like activity in mice. No significant off-target activity was observed for 5, 6, or the major circulating metabolites met-1 and met-2. The prodrug BMS-986163 (6) has demonstrated an acceptable safety and toxicology profile and was selected as a preclinical candidate for further evaluation in major depressive disorder.


Archive | 2010

Bicyclic Compounds for the Reduction of Beta-Amyloid Production

Lorin A. Thompson; Kenneth M. Boy; Jason M. Guernon; Mendi A. Higgins; Jianliang Shi; Yong-Jin Wu; Yunhui Zhang; John E. Macor


Archive | 2006

Novel isophthalates as beta-secretase inhibitors

Lorin A. Thompson; Kenneth M. Boy; Jianliang Shi; John E. Macor

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