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Expert Opinion on Therapeutic Patents | 2011

Neutrophil Elastase Inhibitors

William C. Groutas; Dengfeng Dou; Kevin R. Alliston

Introduction: Chronic obstructive pulmonary disease (COPD) constitutes a worldwide health problem. There is currently an urgent and unmet need for the development of small molecule therapeutics capable of blocking and/or reversing the progression of the disorder. Recent studies have greatly illuminated our understanding of the multiple pathogenic processes associated with COPD. Of paramount importance is the key role played by proteases, oxidative stress, apoptosis and inflammation. Insights gained from these studies have made possible the exploration of new therapeutic approaches. Areas covered: An overview of major developments in COPD research with emphasis on low-molecular mass neutrophil elastase inhibitors is described in this review. Expert opinion: Great strides have been made toward our understanding of the biochemical and cellular events associated with COPD. However, our knowledge regarding the inter-relationships among the multiple pathogenic mechanisms and their mediators involved is still limited. The problem is further compounded by the unavailability of suitable validated biomarkers for assessing the efficacy of potential therapeutic interventions. The complexity of COPD suggests that effective therapeutic interventions may require the administration of more than one agent such as a human neutrophil elastase or MMP-12 inhibitor with an anti-inflammatory agent such as a PDE4 inhibitor or a dual function agent capable of disrupting the cycle of proteolysis, apoptosis, inflammation and oxidative stress.


Bioorganic & Medicinal Chemistry | 2012

Inhibition of Dengue virus and West Nile virus proteases by click chemistry-derived benz[d]isothiazol-3(2H)-one derivatives.

Kok-Chuan Tiew; Dengfeng Dou; Tadahisa Teramoto; Huiguo Lai; Kevin R. Alliston; Gerald H. Lushington; Radhakrishnan Padmanabhan; William C. Groutas

Two click chemistry-derived focused libraries based on the benz[d]isothiazol-3(2H)-one scaffold were synthesized and screened against Dengue virus and West Nile virus NS2B-NS3 proteases. Several compounds (4l, 7j-n) displayed noteworthy inhibitory activity toward Dengue virus NS2B-NS3 protease in the absence and presence of added detergent. These compounds could potentially serve as a launching pad for a hit-to-lead optimization campaign.


Bioorganic & Medicinal Chemistry | 2013

Design, synthesis and characterization of novel 1,2-benzisothiazol-3(2H)-one and 1,3,4-oxadiazole hybrid derivatives: potent inhibitors of Dengue and West Nile virus NS2B/NS3 proteases.

Huiguo Lai; Dengfeng Dou; Sridhar Aravapalli; Tadahisa Teramoto; Gerald H. Lushington; Tom Muinde Mwania; Kevin R. Alliston; David M. Eichhorn; Radhakrishnan Padmanabhan; William C. Groutas

1,2-Benzisothiazol-3(2H)-ones and 1,3,4-oxadiazoles individually have recently attracted considerable interest in drug discovery, including as antibacterial and antifungal agents. In this study, a series of functionalized 1,2-benzisothiazol-3(2H)-one-1,3,4-oxadiazole hybrid derivatives were synthesized and subsequently screened against Dengue and West Nile virus proteases. Ten out of twenty-four compounds showed greater than 50% inhibition against DENV2 and WNV proteases ([I] = 10 μM). The IC(50) values of compound 7n against DENV2 and WNV NS2B/NS3 were found to be 3.75 ± 0.06 and 4.22 ± 0.07 μM, respectively. The kinetics data support a competitive mode of inhibition by compound 7n. Molecular modeling studies were performed to delineate the putative binding mode of this series of compounds. This study reveals that the hybrid series arising from the linking of the two scaffolds provides a suitable platform for conducting a hit-to-lead optimization campaign via iterative structure-activity relationship studies, in vitro screening and X-ray crystallography.


Bioorganic & Medicinal Chemistry | 2011

Design and synthesis of inhibitors of noroviruses by scaffold hopping.

Dengfeng Dou; Sivakoteswara Rao Mandadapu; Kevin R. Alliston; Yunjeong Kim; Kyeong-Ok Chang; William C. Groutas

A scaffold hopping strategy was employed to identify new chemotypes that inhibit noroviruses. The replacement of the cyclosulfamide scaffold by an array of heterocyclic scaffolds lead to the identification of additional series of compounds that possessed anti-norovirus activity in a cell-based replicon system.


Bioorganic & Medicinal Chemistry Letters | 2012

Inhibition of noroviruses by piperazine derivatives.

Dengfeng Dou; Guijia He; Sivakoteswara Rao Mandadapu; Sridhar Aravapalli; Yunjeong Kim; Kyeong-Ok Chang; William C. Groutas

There is currently an unmet need for the development of small-molecule therapeutics for norovirus infection. The piperazine scaffold, a privileged structure embodied in many pharmacological agents, was used to synthesize an array of structurally-diverse derivatives which were screened for anti-norovius activity in a cell-based replicon system. The studies described herein demonstrate for the first time that functionalized piperazine derivatives possess anti-norovirus activity. Furthermore, these studies have led to the identification of two promising compounds (6a and 9l) that can be used as a launching pad for the optimization of potency, cytotoxicity, and drug-like characteristics.


ACS Combinatorial Science | 2010

Design, Synthesis and In Vitro Evaluation of Potential West Nile Virus Protease Inhibitors Based on the 1-Oxo-1, 2, 3, 4-tetrahydroisoquinoline and 1-Oxo-1, 2-dihydroisoquinoline Scaffolds

Dengfeng Dou; Prasanth Viwanathan; Yi Li; Guijia He; Kevin R. Alliston; Gerald H. Lushington; Joshua D. Brown-Clay; Radhakrishnan Padmanabhan; William C. Groutas

The 1-oxo-1, 2, 3, 4-tetrahydroisoquinoline and 1-Oxo-1, 2-dihydroisoquinoline scaffolds were utilized in the design and solution phase synthesis of focused libraries of compounds for screening against West Nile Virus (WNV) protease. Exploratory studies have led to the identification of a WNV protease inhibitor (a 1-oxo-1, 2-dihydroisoquinoline-based derivative, 12j) which could potentially serve as a launching pad for a hit-to-lead optimization campaign. The identified hit was devoid of any inhibitory activity toward a panel of mammalian serine proteases.


Journal of Medicinal Chemistry | 2008

X-ray snapshot of the mechanism of inactivation of human neutrophil elastase by 1,2,5-thiadiazolidin-3-one 1,1-dioxide derivatives.

Weijun Huang; Yasufumi Yamamoto; Yi Li; Dengfeng Dou; Kevin R. Alliston; Robert P. Hanzlik; Todd D. Williams; William C. Groutas

The mechanism of action of a general class of mechanism-based inhibitors of serine proteases, including human neutrophil elastase (HNE), has been elucidated by determining the X-ray crystal structure of an enzyme-inhibitor complex. The captured intermediate indicates that processing of inhibitor by the enzyme generates an N-sulfonyl imine functionality that is tethered to Ser195, in accordance with the postulated mechanism of action of this class of inhibitors. The identity of the HNE-N-sulfonyl imine species was further corroborated using electrospray ionization mass spectrometry.


Bioorganic & Medicinal Chemistry | 2011

Potent inhibition of Norwalk virus by cyclic sulfamide derivatives

Dengfeng Dou; Kok-Chuan Tiew; Guijia He; Sivakoteswara Rao Mandadapu; Sridhar Aravapalli; Kevin R. Alliston; Yunjeong Kim; Kyeong-Ok Chang; William C. Groutas

A new class of compounds that exhibit anti-norovirus activity in a cell-based system and embody in their structure a cyclosulfamide scaffold has been identified. The structure of the initial hit (compound 2a, ED(50) 4 μM, TD(50) 50 μM) has been prospected by exploiting multiple points of diversity and generating appropriate structure-activity relationships.


Bioorganic & Medicinal Chemistry | 2011

Antifungal activity of a series of 1,2-benzisothiazol-3(2H)-one derivatives

Dengfeng Dou; Deepu Alex; Bingfan Du; Kok-Chuan Tiew; Sridhar Aravapalli; Sivakoteswara Rao Mandadapu; Richard Calderone; William C. Groutas

A series of broad-spectrum antifungal agents based on the 1,2-benzisothiazol-3(2H)-one scaffold is reported. Preliminary structure-activity relationship studies have established the importance of the presence of the heterocyclic ring, a methyl group, and a phenyl ring for optimal manifestation of antifungal activity.


Bioorganic & Medicinal Chemistry | 2012

Potent norovirus inhibitors based on the acyclic sulfamide scaffold

Dengfeng Dou; Kok-Chuan Tiew; Sivakoteswara Rao Mandadapu; Mallikarjuna Reddy Gunnam; Kevin R. Alliston; Yunjeong Kim; Kyeong-Ok Chang; William C. Groutas

The development of small molecule therapeutics to combat norovirus infection is of considerable interest from a public health perspective because of the highly contagious nature of noroviruses. A series of amino acid-derived acyclic sulfamide-based norovirus inhibitors has been synthesized and evaluated using a cell-based replicon system. Several compounds were found to display potent anti-norovirus activity, low toxicity, and good aqueous solubility. These compounds are suitable for further optimization of pharmacological and ADMET properties.

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Guijia He

Wichita State University

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Yi Li

Wichita State University

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Yunjeong Kim

Kansas State University

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Kok-Chuan Tiew

Wichita State University

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