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Dive into the research topics where Richard R. Tidwell is active.

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Featured researches published by Richard R. Tidwell.


Pharmaceutical Research | 2002

Enhanced permeability of the antimicrobial agent 2,5-bis(4-amidinophenyl)furan across Caco-2 cell monolayers via its methylamidoxime prodrug

Lian Zhou; Kiho Lee; Dhiren R. Thakker; David W. Boykin; Richard R. Tidwell; James E. Hall

AbstractPurpose. DB75 [2,5-bis(4-amidinophenyl)furan] is a promising antimicrobial agent although it has poor oral potency. In contrast, its novel prodrug, 2,5-bis(4-amidinophenyl)furan-bis-O-methyl- amidoxime (DB289), has excellent oral potency. The mechanisms of transport of DB289 and DB75 across intestinal epithelium have been investigated in these studies to understand differences in their oral potency.nMethods. Caco-2 cell monolayers were used as an in vitro model to examine the mechanisms of transport of DB289 and DB75. Samples collected from the transport studies were quantified using high-performance liquid chromatography with ultraviolet and fluorescence detection.nResults. A low permeability coefficient (3.8 × 10−7 cm/s for transport in apical [AP] to basolateral [BL] direction) and high sensitivity to extracellular Ca2+ suggest that AP to BL transport of DB75 across Caco-2 cell monolayers occurs predominantly via a paracellular route. DB289 has an 85-fold higher transport rate (322.0 × 10−7 cm/s for transport in the AP to BL direction) across Caco-2 monolayers than that of DB75. This, with its insensitivity to extracellular Ca2+ indicates that AP to BL transport of DB289 across Caco-2 cell monolayers occurs predominantly via a transcellular route.nConclusions. DB75 is transported across Caco-2 cell monolayers predominantly via paracellular pathways, whereas the prodrug DB289 is transported via transcellular pathways. This could account for the much higher oral activity of DB289 over DB75.


Archive | 2004

Dicationic DNA Minor Groove Binders as Antimicrobial Agents

Richard R. Tidwell; David W. Boykin


Archive | 2000

Novel prodrugs for antimicrobial amidines

David W. Boykin; M. Syed Rahmathullah; Richard R. Tidwell; James Edwin Hall


Archive | 2004

Dicationic triaryl analogs as anti-protozoan agents

David W. Boykin; Richard R. Tidwell; David W. Wilson; Reto Brun; Mohamed A. Ismail


Archive | 2001

Synthesis and antimicrobial activity of novel dicationic reversed amidines

David W. Boykin; Richard R. Tidwell; W. David Wilson; John R. Perfect; Chad F. Stephens


Archive | 1990

Methods for the treatment and prophylaxis of pneumocystis carinii pneumonia and other diseases and compounds and formulations for use in said methods

Richard R. Tidwell; J. Dieter Geratz; James Edwin Hall; Dennis E Kyle; Max Grogl; Kwasi A. Ohemeng


Archive | 2014

Sickness of Second-Stage African Sleeping Treatment 28DAP010, a Novel Diamidine for Evaluation of In Vivo and In Vitro

Michael Zhuo Wang; Mohamed A. Ismail; Richard R. Tidwell; David W. Tanja Wenzler; Sihyung Yang; Donald A. Patrick


Archive | 2011

NOVEL TERARYL COMPOUNDS AS ANTIPARASITIC AGENTS

Richard R. Tidwell; David W. Boykin; David W. Wilson; Reto Brun; Karl Werbovetz; Mohamed A. Ismail; Reem K. Arafa; Laixing Hu


Archive | 2006

5,5'-bis-(4-Amidinophenyl)-2,2'-Bifuran Derivate und Erwandte Verbindungen als Wirkstoffe gegen Protozen und Prodrugs 5,5'-bis (4-amidinophenyl) -2,2'-Bifuran derivatives and Erwandte compounds as active substances against protozoa and prodrugs

Karl Werbovetz; Reto Brun; Richard R. Tidwell; David W. Boykin; Chad E. Stephens; Mohamed A. Ismail; W. David Wilson


Archive | 2006

Composés dicationiques reconnaissant sélectivement l'ADN G-quadruplexe

Richard R. Tidwell; David W. Boykin; Mohamed A. Ismail; W. David Wilson; Elizabeth White; Arvind Kumar; Rupesh Nanjunda

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Dennis E Kyle

University of North Carolina at Chapel Hill

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Kwasi A. Ohemeng

University of North Carolina at Chapel Hill

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Max Grogl

Walter Reed Army Institute of Research

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J. Dieter Geratz

University of North Carolina at Chapel Hill

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M. Syed Rahmathullah

University of North Carolina at Chapel Hill

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