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Dr Ashwini Mital - Uckkr.org

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Mittal A, Khurana S, Sadana R, Kamboj RC and Singh H. 2003. Purification and characterization<br />

of DPP-IV from goat brain. J. Ind. Chem. Soc, 80, 1019-1025.<br />

Raghav N, Mittal A, Sadana R, Khurana S, Singh H and Kamboj RC. 2003. Effect of some antiinflarnmatof)',<br />

antituberculous and anti-Ieprotic drugs on Cathepsin H. lnd. J Hetero.Comp.<br />

13,41-44.<br />

Mittal A, Khurana S, Sadana R, Singh H and Kamboj RC. 2002. Regional and subcellular<br />

distribution of DPP-IV in goat brain. J. Ind. Chem. Soc. 79, 605-608.<br />

In News & some important citations<br />

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TWEAKing Muscle Atrophy. Elizabeth M. Adler (30 March 2010). Sci. Signal. 3 (115), ec94.<br />

[DOI: 10.1126/scisignal.3115ec94].<br />

Disuse TWEAKs muscle loss. B. Short (2010). J. Cell Biol. 188, 752.<br />

<br />

<br />

Science Daily, March 22, 2010. TWEAK Triggers Atrophy of Disused Muscle.<br />

http://www.sciencedaily.com/releases/2010/03/100322091956.htm<br />

Eurekalert, March 22, 2010. TWEAK Triggers Atrophy of Disused Muscle.<br />

http://www.eurekalert.<strong>org</strong>/pub_releases/2010-03/rup-tta031210.php<br />

Abstracts/Papers (National/International Conferences):<br />

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Mittal A. Effect of natural compounds on inflammatory and oxidative response in skeletal muscle<br />

physiology. (In the proceedings of National Symposium on Emerging Trends in Biotechnology,<br />

M.M. Modi College, Feb 24 th , 2012).<br />

Mittal A, Bindal R, Dabur R. 2011. Cathepsin B: A possible negative regulator in fungal mediated<br />

lung infection. (In the proceedings of International Conference on Food Engineering and<br />

Biotechnology-ICFEB, Bangkok, Thailand. May 28 th – 29 th , 2011).<br />

Kumar A, Bhatnagar S, Mittal A and Glass DJ. 2010. TWEAK/Fn14 system is a critical regulator<br />

of denervation-induced skeletal muscle atrophy.<br />

http://www.fasebj.<strong>org</strong>/cgi/content/meeting_abstract/24/1_MeetingAbstracts/801.30<br />

Mittal A and Kumar A. 2009. TWEAK-induces muscle-wasting through coordinative action of<br />

autophagy, caspases and ubiquitin-proteosome proteolysis systems. (In proceedings of “Making<br />

Muscle in the Embryo and the Adult, Columbia University, New York, NY, USA – May 28 to<br />

June 2, 2009).<br />

Kumar A, Li H, Makonchuk DY, Bhatnagar S, Ashkenazi A, Mittal A. 2009. TWEAK/Fn14<br />

system is an important regulator of loss of skeletal muscle mass in response to nerve injury. (In<br />

proceedings of “Making Muscle in the Embryo and the Adult, Columbia University, New York,<br />

NY, USA – May 28 to June 2, 2009).<br />

Mittal A and Kumar A. 2009. TWEAK-induces muscle-wasting through coordinative action of<br />

autophagy and ubiquitin-proteosome proteolysis systems. (In proceedings of “Understanding<br />

Muscle: From Development to Disease, Ohio State University, Columbus, Ohio, April,16).<br />

Mittal A, Li H, Makonchuk DY, Bhatnagar S, Ashkenazi A, Kumar A. 2009. TWEAK is an<br />

important mediator of progressive fibrosis. Fiber-type switching and loss of skeletal muscle mass<br />

in response to nerve injury. (In proceedings of “Understanding Muscle: From Development to<br />

Disease, Ohio State University, Columbus, Ohio, April,16).

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