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Dive into the research topics where Catherine A. Franke is active.

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Featured researches published by Catherine A. Franke.


Bioorganic & Medicinal Chemistry Letters | 1994

A benzisothiazolone class of potent, selective mechanism-based inhibitors of human leukocyte elastase

Dennis J. Hlasta; Malcolm R. Bell; Neil Warren Boaz; John J. Court; Ranjit C. Desai; Catherine A. Franke; Albert J. Mura; Chakrapani Subramanyam; Richard P. Dunlap

Abstract A new type of mechanism-based inhibitor of human leukocyte elastase (HLE) is described that are designed to inhibit HLE by a suicide route to form an inhibitor-enzyme complex by cross linking the enzyme active site. A mechanism of HLE inhibition is proposed and was used to design analogues with improved potency. The structure-activity relationships described in this paper are consistent with the proposed mechanism of HLE inhibition, and led to WIN 62785 ( 12 ), the most potent compound in this series with a K i * = 0.3 nM.


Bioorganic & Medicinal Chemistry Letters | 1995

The design of potent and stable benzisothiazolone inhibitors of human leukocyte elastase

Dennis J. Hlasta; Malcolm R. Bell; John J. Court; Kenneth C. Cundy; Ranjit C. Desai; Edward Ferguson; Robert J. Gordon; Virendra Kumar; Alan L. Maycock; Chakrapani Subramanyam; Richard P. Dunlap; Shari L. Eiff; Catherine A. Franke; Albert J. Mura; Anne G. Rowlands

Abstract The lead compound for this SAR study, benzisothiazolone 1a, was a 15 nM inhibitor of HLE, but was unstable in human blood ( t 1 2 min). The introduction of lipophilic substituents at the R4-position such as ethyl or isopropyl and modulation of the electrophilicity of the benzisothiazolone carbonyl led to the identification of a potent ( K i ∗ =0.27 nM) and blood stable ( t 1 2 =260 min) inhibitor 2e, WIN 63395.


Bioorganic & Medicinal Chemistry Letters | 1995

Alkoxy substituted benzisothiazolone (BIT) derivatives: potent inhibitors of human leukocyte elastase

Ranjit C. Desai; Richard P. Dunlap; Robert P. Farrell; Edward Ferguson; Catherine A. Franke; Robert Gordon; Dennis J. Hlasta; Timothy G. Talomie

Abstract Alkoxy substituted benzisothiazolones (BIT) are reported as inhibitors of human leukocyte elastase (HLE). Structure-activity relationship study results are described. The contribution of alkoxy substituents towards improving the stability of BIT derivatives in human blood is discussed. WIN 68769 ( 12 ) with a Ki ∗ = 0.022 nM is the most potent analog synthesized in this series.


Bioorganic & Medicinal Chemistry Letters | 1995

Inhibitors of human leukocyte elastase. 2.1 synthesis and sar of benzisothiazolinylmethyl aryl ethers

Chakrapani Subramanyam; Malcolm R. Bell; Edward Ferguson; Robert G. Gordon; Richard P. Dunlap; Catherine A. Franke; Albert J. Mura

Abstract A series of 4-isopropyl benzisothiazolinylmethyl aryl ethers were prepared and evaluated as inhibitors of human leukocyte elastase (HLE). Among the phenols attached as leaving groups onto N-methyl of the 4-isopropyl benzisothiazolone nucleus, the sulfonamido phenol 26 was found to be the best. Compound 7i with K i ∗ = 0.8 nM was the most potent inhibitor in this series.


Bioorganic & Medicinal Chemistry Letters | 1995

Inhibitors of human leukocyte elastase. 3.1 inhibition by tetrahydrobenzisothiazolinylmethyl aryl carboxylates

Chakrapani Subramanyam; Malcolm R. Bell; Arup K. Ghose; Virendra Kumar; Richard P. Dunlap; Catherine A. Franke; Albert J. Mura

Abstract Potent mechanism based inhibition of human leukocyte elastase (HLE) by tetrahydrobenzisothiazolones ( 2 ) is described. Structure activity relationships studies led to the identification of WIN 62816 ( 2c ), the most potent inhibitor in this series with a K i ∗ = 0.7 nM.


Bioorganic & Medicinal Chemistry Letters | 1996

A comparative SAR and computer modeling study of benzisothiazolone, mechanism-based inhibitors with porcine pancreatic and human leukocyte elastase

Dennis J. Hlasta; John J. Court; Ranjit C. Desai; Timothy G. Talomie; Jian Shen; Richard P. Dunlap; Catherine A. Franke; Albert J. Mura

Abstract Distinct differences in the SAR for HLE and PPE inhibition in this class of compounds were observed. For example, larger lipophilic substituents at the benzisothiazolone 4-position afforded inhibitors that were potent against HLE, but inactive against PPE. These findings are consistent with computer models of inhibitor-enzyme complexes built using the X-ray structure coordinates of HLE and PPE. These models show that substituents at the benzisothiazolone 4-position fit into the S1 specificity pocket of the enzyme and that other differences in the SAR can be explained based on the structural differences of HLE and PPE.


Journal of Medicinal Chemistry | 1995

A novel class of cyclic beta-dicarbonyl leaving groups and their use in the design of benzisothiazolone human leukocyte elastase inhibitors.

Dennis J. Hlasta; James H. Ackerman; John J. Court; Robert P. Farrell; Judith A. Johnson; James. L. Kofron; David T. Robinson; Timothy G. Talomie; Richard P. Dunlap; Catherine A. Franke


Journal of Medicinal Chemistry | 1995

Phosphonates and phosphinates: novel leaving groups for benzisothiazolone inhibitors of human leukocyte elastase.

Ranjit C. Desai; John C. Court; Edward Ferguson; Robert J. Gordon; Dennis J. Hlasta; Richard P. Dunlap; Catherine A. Franke


Archive | 1998

Photographic element with new singlet oxygen quenchers

Catherine A. Franke; Albert J. Mura; Shari L. Eiff


Annals of the New York Academy of Sciences | 1991

Pulmonary Hemorrhage Induced by Intratracheal Administration of Human Leukocyte Elastase in Hamsters

Robert J. Gordon; Edward Ferguson; Richard P. Dunlap; Catherine A. Franke; Paul J. Silver

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Edward Ferguson

Rensselaer Polytechnic Institute

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John J. Court

Rensselaer Polytechnic Institute

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Malcolm R. Bell

Rensselaer Polytechnic Institute

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Robert J. Gordon

Rensselaer Polytechnic Institute

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