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Dive into the research topics where Paola Bargagna-Mohan is active.

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Featured researches published by Paola Bargagna-Mohan.


Angiogenesis | 2004

Withaferin A is a potent inhibitor of angiogenesis.

Royce Mohan; Hans J. Hammers; Paola Bargagna-Mohan; Xiaoguo H. Zhan; Christopher J. Herbstritt; Antonio Ruiz; Li Zhang; Art D. Hanson; Barry P. Conner; John Rougas; Victor Pribluda

The medicinal plant Withania somnifera is widely researched for its anti-inflammatory, cardioactive and central nervous system effects. In Ayurveda, the major Traditional Indian medicine system, extracts from W. somnifera are distinctively employed for the treatment of arthritis and menstrual disorders. Because these conditions involve angiogenic processes we hypothesized that the W. somnifera extracts might contain angiogenesis inhibitors. We employed an endothelial cell-sprouting assay to monitor the purification of substances from W. somnifera root extracts and isolated as the active principle the previously known natural product withaferin A. We show that withaferin A inhibits human umbilical vein endothelial cell (HUVEC) sprouting in three-dimensional collagen-I matrix at doses which are relevant to NF-kappa B-inhibitory activity. Withaferin A inhibits cell proliferation in HUVECs (IC50=12 nM) at doses that are significantly lower than those required for tumor cell lines through a process associated with inhibition of cyclin D1 expression. We propose that the inhibition of NF-kappa B by withaferin A in HUVECs occurs by interference with the ubiquitin-mediated proteasome pathway as suggested by the increased levels of poly-ubiquitinated proteins. Finally, withaferin A is shown to exert potent anti-angiogenic activity in vivo at doses that are 500-fold lower than those previously reported to exert anti-tumor activity in vivo. In conclusion, our findings identify a novel mode of action of withaferin A, which highlights the potential use of this natural product for cancer treatment or prevention.


Chemistry & Biology | 2007

The Tumor Inhibitor and Antiangiogenic Agent Withaferin A Targets the Intermediate Filament Protein Vimentin

Paola Bargagna-Mohan; Adel Hamza; Yang eon Kim; Yik Khuan Ho; Nirit Mor-Vaknin; Nicole Wendschlag; Junjun Liu; Robert M. Evans; David M. Markovitz; Chang-Guo Zhan; Kyung Bo Kim; Royce Mohan


Chemistry & Biology | 2007

LMP2-Specific Inhibitors: Chemical Genetic Tools for Proteasome Biology

Yik Khuan Ho; Paola Bargagna-Mohan; Marie Wehenkel; Royce Mohan; Kyung Bo Kim


Bioorganic & Medicinal Chemistry Letters | 2006

Development of withaferin A analogs as probes of angiogenesis

Yasuno Yokota; Paola Bargagna-Mohan; Padma Priya Ravindranath; Kyung Bo Kim; Royce Mohan


Investigative Ophthalmology & Visual Science | 2006

Small Molecule Anti-Angiogenic Probes of the Ubiquitin Proteasome Pathway: Potential Application to Choroidal Neovascularization

Paola Bargagna-Mohan; Padma Priya Ravindranath; Royce Mohan


Bioorganic & Medicinal Chemistry Letters | 2005

Use of PROTACS as molecular probes of angiogenesis.

Paola Bargagna-Mohan; Sun-Hee Baek; Hyosung Lee; Kyung Bo Kim; Royce Mohan


Archive | 2007

Withanolides, probes and binding targets and methods of use thereof

Royce Mohan; Paola Bargagna-Mohan; Kyung Bo Kim


Investigative Ophthalmology & Visual Science | 2011

Vimentin is a Novel Target for Corneal Fibrosis

Paola Bargagna-Mohan; Riya R. Paranthan; Keiko Nakayama; Keiichi T. Nakayama; Royce Mohan


Investigative Ophthalmology & Visual Science | 2011

A Chemical Genetic Approach for Targeting Intermediate Filaments: Towards Rational Drug Design for Retinal Gliosis

Royce Mohan; Riya R. Paranthan; Paola Bargagna-Mohan


Investigative Ophthalmology & Visual Science | 2010

Withaferin A Regulates Muller Glial Cell Cycle During Retinal Gliosis

Paola Bargagna-Mohan; Riya R. Paranthan; Cidambi Srinivasan; Daniel L. Lau; Royce Mohan

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Royce Mohan

University of Connecticut Health Center

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Adel Hamza

University of Kentucky

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B. Trucchi

University of Kentucky

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