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Dive into the research topics where Samir Bhattacharya is active.

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Featured researches published by Samir Bhattacharya.


Molecular Cancer Therapeutics | 2014

A Naturally Derived Small Molecule Disrupts Ligand-Dependent and Ligand-Independent Androgen Receptor Signaling in Human Prostate Cancer Cells

Karishma S Amin; Shankar Jagadeesh; Gakul Baishya; Paruchuri G. Rao; Nabin C. Barua; Samir Bhattacharya; Partha P. Banerjee

Continued reliance on androgen receptor (AR) signaling is a hallmark of prostate cancer, including the development of castration-resistant prostate cancer (CRPC), making it an attractive therapeutic target for prostate cancer treatment. Mahanine is a novel carbazole alkaloid derived from the leaves of Murraya koenigii, commonly known as the curry leaf plant, which grows widely across East-Asia. We show here that mahanine possesses the ability to inhibit ligand-dependent and -independent AR transactivation, leading to a prominent decline in AR target gene expression. Mahanine treatment causes a time- and dose-dependent decline in AR protein levels, including truncated AR splice variants, in a panel of androgen-responsive and -independent prostate cancer cells. The decrease in AR levels induced by mahanine occurs posttranslationally by proteasomal degradation, without any change in the AR gene expression. Mahanine treatment induces an outward movement of the AR from the nucleus to the cytoplasm, leading to an initial increase in cytoplasmic AR levels, followed by a gradual decline in the AR levels in both cellular compartments. Ligand-induced AR phosphorylation at Ser-81, a phospho-site associated with prostate cancer cell growth and AR transactivity, is greatly diminished in the presence of mahanine. The decline in AR phosphorylation at Ser-81 by mahanine occurs via the inactivation of mitotic kinase CDK1. Collectively, our data demonstrate that mahanine strongly disrupts AR signaling and inhibits the growth of androgen-dependent and -independent prostate cancer cells, thereby implicating a therapeutic role of mahanine in prostate cancer treatment. Mol Cancer Ther; 13(2); 341–52. ©2013 AACR.


Archive | 2010

Pharmaceutical composition and a method for treatment of prostate cancer

Swati Sinha; Bikas C. Pal; Samir Bhattacharya


Archive | 2006

A pharmaceutical composition useful for the treatment of prostate cancer

Swati Sinha; Bikas C. Pal; Samir Bhattacharya; Deepankar Dutta Gupta


Acta Biologica Szegediensis | 2018

‘Sensory pad’- A novel chemoreceptive device in Hilsa (Tenualosa ilisha) to support its amphihaline attribute

Subhendu Kumar Chatterjee; Chandan Malick; Samir Bhattacharya; Rakesh Kundu; Vettath Raghavan Suresh; Surjya Kumar Saikia


Archive | 2012

INSULIN MIMETIC ACTIVE COMPRISING OXODIPEROXO VANADATES AND A PHARAMACEUTICAL COMPOSITION OBTAINED THEREOF

Chaudhuri, Mihir, K.; Sahid Hussain; Saitanya K. Bharadwaj; Upasana Bora Sinha; Dhrubajyoti Talukdar; Subeer S. Majumdar; Sushmita Bhattacharya; Suman Dasgupta; Rakesh Kundu; Samir Bhattacharya; Shelley Bhattacharya


Archive | 2012

2',3'-epoxypropyl-3.4-dihydroxy benzene and a process for the preparation thereof

Nabin C. Barua; Samir Bhattacharya; Shelley Bhattacharya; Sushmita Bhattacharya; Manobiyoti Bordoloi; Suman Dasgupta; Paruchuri Gangadhar Rao


Archive | 2011

Procédé permettant d'inhiber l'expression du gène nf-kb

Pomy Barma; Nabin C. Barua; Samir Bhattacharya; Shelley Bhattacharya; Sushmita Bhattacharya; Anindita Biswas; Manobjyoti Bordoloi; Suman Dasgupta; Bikash Pal; Paruchuri Gangadhar Rao


Archive | 2006

Arzneimittel, verwendbar zur Behandlung von Prostatakrebs A pharmaceutical composition useful for the treatment of prostate cancer

Samir Bhattacharya; Deepankar Dutta Gupta; Bikas C. Pal; Swati Sinha


Archive | 2006

Pharmazeutische zusammensetzung von mahanin zur behandlung von prostatakrebs Pharmaceutical composition of mahanin to treat prostate cancer

Swati Sinha; Bikas C. Pal; Samir Bhattacharya


Archive | 2006

Mahanine InhibitsGrowth and InducesApoptosis inProstateCancerCellsThroughtheDeactivation ofAkt andActivation ofCaspases

Swati Sinha; Bikas C. Pal; Shankar Jagadeesh; Partha P. Banerjee; Arun Bandyopadhaya; Samir Bhattacharya

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Bikas C. Pal

Indian Institute of Chemical Biology

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Swati Sinha

Indian Institute of Chemical Biology

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Nabin C. Barua

North East Institute of Science and Technology

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Suman Dasgupta

Visva-Bharati University

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Deepankar Dutta Gupta

Council of Scientific and Industrial Research

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Paruchuri Gangadhar Rao

Council of Scientific and Industrial Research

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Rakesh Kundu

Visva-Bharati University

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Shankar Jagadeesh

Georgetown University Medical Center

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