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Dr Chaaya Iyengar

vidwan id: 49001
Female

Assistant Professor, Department of Biotechnology
National Institute of Pharmaceutical Education and Research (NIPER), Mohali

Expertise

  • Biology

Publications

Total Articles 50
Books 0
Proceedings 0

Publications

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Scopus

Citations 889
h-index 14

CrossRef

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Citations 622
h-index 14
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Professional Recognition

2014

National Women Bioscientist Award (Young Category)

Department of Biotechnology

Community & Membership

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Bio

Host pathogen interaction, tuberculosis, multifunctional proteins, iron transport, protein expression and enzyme characterization in Mycobacterium tuberculosis are subareas of research. Recently we have identified a novel mechanism by which M.tb acquires transferrin iron in order to survive during infection. The findings were published in Nature Communication in August 2014. Other research is focused on identifying new drug targets and developing protein expression strategies.

Personal Details

  • Female
  • Assistant Professor , National Institute of Pharmaceutical Education and Research (NIPER), Mohali
  • National Institute of Pharmaceutical Education and Research, SAS Nagar, Mohali
Ph.D
Other Institute 2001
Assistant Professor Jun 2008 – Present
National Institute of Pharmaceutical Education and Research (NIPER), Mohali | Department of Biotechnology

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Dr Chaaya Iyengar

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Co-Authors (8)

Arunava

Dr Arunava Dasgupta

Central Drug Research Institute

Avishek

Dr Avishek Saha

CSIR National Chemical Laboratory

Avishek

Dr Avishek Saha

Central Scientific Instruments Organization

Pravinkumar

Dr Pravinkumar Patil

Shivaji University

Prabha

Prof Prabha Garg

National Institute of Pharmaceutical Education and Research (NIPER), Mohali

Sidharth

Dr Sidharth Chopra

Central Drug Research Institute

Scholarly Work

The relevance of host and Mycobacterial GAPDH during infection”

Funding Agency: Department of Science and Technology, Govt. of India

NA

38.1 lakhs

2013 - 2016

Completed
Role of Mycobacterial GAPDH in Iron uptake

Funding Agency: Department of Biotechnology

NA

52.49 lakhs

2010 - 2014

Completed
Role of GAPDH as a multifunctional protein in Dendritic cells

Funding Agency: Department of Science and Technology Women’s Scientist Scheme (A)

NA

16.0 lakhs

2006 - 2009

Completed

Characterization of Mycobacterium tuberculosis H37Rv Glyceraldehyde-3-phosphate dehydrogenase (GAPDH, Rv1436) and its role in transferrin iron acquisition

University NIPER, SAS Nagar
Year 2016
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Scholarly Publications

Mycobacterium tuberculosis Cell-Surface GAPDH Functions as a Transferrin Receptor

Open Access
Book Chapter
Authors: Boradia V.M.;Raje M.;Raje C.I.

Purification and Characterization of Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) from Pea Seeds

Open Access
article
Authors: Gani Z, Boradia VM, Ram JR, Suryavanshi PM, Patil P, Kumar S, SinghR, Raje M and Raje CI
1

Reverse overshot water-wheel retroendocytosis of Apo Transferrin extrudes cellular iron.

Open Access
article
Authors: Sheokand N, Malhotra H, Chauhan AS, Kumar M, Chaudhary S, Patidar A, Boradia VM, Raje CI, Raje M

Exosomes, tunable nano vehicles for macromolecular delivery of transferrin and lactoferrin to specific intracellular compartment.,

Open Access
article
Authors: Malhotra H, Sheokand N, Kumar S, Chauhan AS, Kumar M, Jakhar P, Boradia VM, Raje CI, Raje M

Purification and characterization of glyceraldehyde-3-phosphate-dehydrogenase (GAPDH) from pea seeds

Open Access
Article
Authors: Gani Z.;Boradia V.M.;Raghu Ram J.;Suryavanshi P.M.;Patil P.;Kumar S.;Singh R.;Raje M.;Raje C.I.

Mycobacterium tuberculosis H37Ra: A surrogate for the expression of conserved, multimeric proteins of M.tb H37Rv

Open Access
Article
Authors: Boradia V.M.;Patil P.;Agnihotri A.;Kumar A.;Rajwadi K.K.;Sahu A.;Bhagath N.;Sheokand N.;Kumar M.;Malhotra H.;Patkar R.;Hasan N.;Raje M.;Raje C.I.

Secreted multifunctional Glyceraldehyde-3-phosphate dehydrogenase sequesters lactoferrin and iron into cells via a non-canonical pathway

Open Access
Article
Authors: Chauhan A.S.;Rawat P.;Malhotra H.;Sheokand N.;Kumar M.;Patidar A.;Chaudhary S.;Jakhar P.;Raje C.I.;Raje M.

Secreted multifunctional Glyceraldehyde-3-phosphate dehydrogenase sequesters lactoferrin and iron into cells via a non-canonical pathway.

Open Access
article
Authors: Chauhan AS, Rawat P, Malhotra H, Sheokand N, Kumar M, Patidar A, Chaudhary S, Jakhar P, Raje CI, Raje M.