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Dive into the research topics where Vaibhav Varkhedkar is active.

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Featured researches published by Vaibhav Varkhedkar.


Journal of Medicinal Chemistry | 2006

Novel 1,3-disubstituted 8-(1-benzyl-1H-pyrazol-4-yl) xanthines: high affinity and selective A2B adenosine receptor antagonists.

Rao Kalla; Elfatih Elzein; Thao Perry; Xiaofen Li; Venkata Palle; Vaibhav Varkhedkar; Arthur Gimbel; Tennig Maa; Dewan Zeng; Jeff Zablocki

Adenosine has been suggested to induce bronchial hyperresponsiveness in asthmatics, which is believed to be an A(2B) adenosine receptor (AdoR) mediated pathway. We hypothesize that a selective, high-affinity A(2B) AdoR antagonist may provide therapeutic benefit in the treatment of asthma. In an attempt to identify a high-affinity, selective antagonist for the A(2B) AdoR, we synthesized 8-(C-4-pyrazolyl) xanthines. Compound 22, 8-(1H-pyrazol-4-yl)-1,3-dipropyl xanthine, is a N-1 unsubstituted pyrazole derivative that has favorable binding affinity (K(i) = 9 nM) for the A(2B) AdoR, but it is only 2-fold selective versus the A(1) AdoR. Introduction of a benzyl group at the N-1-pyrazole position of 22 resulted in 19, which had moderate selectivity. The initial focus of the SAR study was on the preparation of substituted benzyl derivatives of 19 because the corresponding phenyl, phenethyl, and phenpropyl derivatives showed a decrease in A(2B) AdoR affinity and selectivity relative to 19. The preferred substitution on the phenyl ring of 19 contains an electron-withdrawing group, specifically F or CF(3) at the m-position, as in 33 and 36 respectively, increases the selectivity while retaining the affinity for the A(2B) AdoR. Exploring disubstitutions on the phenyl ring of derivatives 33 and36 led to the 2-chloro-5-trifluoromethylphenyl derivative 50, which retained the A(2B) AdoR affinity but enhanced the selectivity relative to 36. After optimization of the substitution on the 8-pyrazole xanthine, 1,3-disubstitution of the xanthine core was explored with methyl, ethyl, butyl, and isobutyl groups. In comparison to the corresponding dipropyl analogues, the smaller 1,3-dialkyl groups (methyl and ethyl) increased the A(2B) AdoR binding selectivity of the xanthine derivatives while retaining the affinity. However, the larger 1,3-dialkyl groups (isobutyl and butyl) resulted in a decrease in both A(2B) AdoR affinity and selectivity. This final SAR optimization led to the discovery of 1,3-dimethyl derivative 60, 8-(1-(3-(trifluoromethyl) benzyl)-1H-pyrazol-4-yl)-1,3-dimethyl xanthine, a high-affinity (K(i) = 1 nM) A(2B) AdoR antagonist with high selectivity (990-, 690-, and 1,000-) for the human A(1), A(2A,) and A(3) AdoRs.


Archive | 2004

A2B adenosine receptor antagonists

Rao Kalla; Thao Perry; Elfatih Elzein; Vaibhav Varkhedkar; Xiaofen Li; Prabha Ibrahim; Venkata D Oakwood Estates Palle; Dengming Xiao; Jeff Zablocki


Bioorganic & Medicinal Chemistry Letters | 2005

The discovery of a selective, high affinity A2B adenosine receptor antagonist for the potential treatment of asthma

Jeff Zablocki; Rao Kalla; Thao Perry; Venkata Palle; Vaibhav Varkhedkar; Dengming Xiao; Anthony D. Piscopio; Tenning Maa; Art Gimbel; Jia Hao; Nancy Chu; Kwan Leung; Dewan Zeng


Archive | 2000

Partial or full A1agonists-N-6 heterocyclic 5′-thio substituted adenosine derivatives

Jeff Zablocki; Venkata Palle; Vaibhav Varkhedkar; Luiz Belardinelli


Archive | 2003

Partial and full agonists of A1 adenosine receptors

Arvinder Dhalla; Elfatih Elzein; Prabha Ibrahim; Venkata Palle; Vaibhav Varkhedkar; Jeff Zablocki


Journal of Medicinal Chemistry | 2007

Liver-Targeted Prodrugs of 2‘-C-Methyladenosine for Therapy of Hepatitis C Virus Infection

Scott J. Hecker; K. Raja Reddy; Paul D. van Poelje; Zhili Sun; Wenjian Huang; Vaibhav Varkhedkar; M. Venkat Reddy; James M. Fujitaki; David B. Olsen; Kenneth A. Koeplinger; Serge H. Boyer; David L. Linemeyer; Malcolm Maccoss; Mark D. Erion


Archive | 2004

Adenosine a3 receptor agonists

Elfatih Elzein; Venkata Palle; Vaibhav Varkhedkar; Jeff Zablocki


Archive | 2002

Purine derivatives as a2b adenosine receptor antagonists

Venkata Palle; Vaibhav Varkhedkar; Jeff Zablocki; Dengming Xiao


Archive | 2002

Partial and full agonist of a adenosine receptors

Elfatih Elzein; Prabha Ibrahim; Venkata Palle; Vaibhav Varkhedkar; Jeff Zablocki


Journal of Medicinal Chemistry | 2000

Adenosine deaminase inhibitors: synthesis and biological evaluation of unsaturated, aromatic, and oxo derivatives of (+)-erythro-9-(2'S-hydroxy-3'R-nonyl)adenine [(+)-EHNA].

Palle V.P. Pragnacharyulu; Vaibhav Varkhedkar; Mark A. Curtis; I. F. Chang; Elie Abushanab

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Dewan Zeng

Virginia Commonwealth University

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Brent Blackburn

University of Alabama at Birmingham

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Elie Abushanab

University of Rhode Island

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Mark A. Curtis

University of Rhode Island

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