Undergraduate |
Bharathidhasan University, Trichy, India |
|
1992 |
B.Sc. |
Graduate |
University of Madras, Chennai, India |
|
1994 |
M.Sc. |
Graduate |
University of Madras, Chennai, India |
|
1996 |
M.Phil. |
Graduate |
University of Madras, Chennai, India |
|
2001 |
Ph.D. |
|
Appointment Type |
Department |
Division |
Rank |
Primary |
Joint Pathology |
Molecular & Cellular Pathology |
Associate Professor |
Secondary |
Dept of Biomedical Engineering |
Dept of Biomedical Engineering |
Assistant Professor |
Center |
Comprehensive Cardiovascular Ctr |
Comprehensive Cardiovascular Ctr |
Associate Professor |
Center |
Comprehensive Diabetes Center |
Comprehensive Diabetes Center |
Associate Professor |
Center |
Ctr for Exercise Medicine (Org Ret) |
Ctr for Exercise Medicine (Org Ret) |
Associate Professor |
|
Cellular and Molecular Biology Program |
Medical Scientist Training Program |
Molecular and Cellular Pathology Program |
Pathobiology and Molecular Medicine |
|
Publication |
PUBMEDID |
Henderson J, Dubey PK, Patil M, Singh S, Dubey S, Namakkal Soorappan R, et al. microRNA-377 Signaling Modulates Anticancer Drug-Induced Cardiotoxicity in Mice. Frontiers in Cardiovascular Medicine. 2021;8. |
34485421 |
Quiles JM, Pepin ME, Sunny S, Shelar SB, Challa AK, Dalley B, Hoidal JR, Pogwizd SM, Wende AR, Rajasekaran NS. Identification of Nrf2-responsive microRNA networks as putative mediators of myocardial reductive stress. Sci Rep. 2021 Jun 7;11(1):11977. doi: 10.1038/s41598-021-90583-y. PMID: 34099738; PMCID: PMC8184797. |
34099738 |
Byrne NJ, Rajasekaran NS, Abel ED, Bugger H. Therapeutic potential of targeting oxidative stress in diabetic cardiomyopathy. Free Radic Biol Med. 2021 Jun;169:317-342. doi: 10.1016/j.freeradbiomed.2021.03.046. Epub 2021 Apr 25. PMID: 33910093; PMCID: PMC8285002. |
33910093 |
Ravichandran G, Lakshmanan DK, Murugesan S, Elangovan A, Rajasekaran NS, Thilagar S. Attenuation of protein glycation by functional polyphenolics of dragon fruit (Hylocereus polyrhizus); an in vitro and in silico evaluation. Food Res Int. 2021 Feb;140:110081. doi: 10.1016/j.foodres.2020.110081. Epub 2020 Dec 29. PMID: 33648300. |
33648300 |
Sunny S, Challa AK, Qiao A, Jyothidasan A, Krishnamurthy P, Ramamurthy MT, Crossman DK, Pogwizd S, Cinghu S, Rajasekaran NS. Transcriptional Regulation of Structural and Functional Adaptations in a Developing Adulthood Myocardium. Cardiol Cardiovasc Med. 2021;5(5):454-470. doi: 10.26502/fccm.92920215. Epub 2021 Sep 7. PMID: 34497977; PMCID: PMC8423094. |
34497977 |
Klionsky DJ,...,Rajasekaran NS,...,Tong CK. Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1. Autophagy. 2021 Jan;17(1):1-382. doi: 10.1080/15548627.2020.1797280. Epub 2021 Feb 8. PMID: 33634751; PMCID: PMC7996087. |
33634751 |
Kain V, Ingle KA, Rajasekaran NS, Halade GV. Activation of EP4 receptor limits transition of acute to chronic heart failure in lipoxygenase deficient mice. Theranostics. 2021 Jan 1;11(6):2742-2754. doi: 10.7150/thno.51183. PMID: 33456570; PMCID: PMC7806484. |
33456570 |
Murugesan S, Saravanakumar L, Powell MF, Rajasekaran NS, Kannappan R, Berkowitz DE. Role of exosomal microRNA signatures: An emerging factor in preeclampsia-mediated cardiovascular disease. Placenta. 2021 Jan 1;103:226-231. doi: 10.1016/j.placenta.2020.10.033. Epub 2020 Oct 28. PMID: 33171429; PMCID: PMC8278543. |
33171429 |
Shanmugam, G., Wang, D., Gounder, S.S., Fernandes, J., Litovsky, S.H., Whitehead, K., Radhakrishnan, R.K., Franklin, S., Hoidal, J.R., Kensler, T.W. and Dell'Italia, L., 2020. Reductive stress causes pathological cardiac remodeling and diastolic dysfunction. Antioxidants & redox signaling, 32(18), pp.1293-1312. |
32064894 |
Rajasekaran, N.S., 2020. Reductive Stress: Neglected Science. Antioxidants & redox signaling. |
32375496 |
Rajasekaran, N.S., Shelar, S.B., Jones, D.P. and Hoidal, J.R., 2020. Reductive stress impairs myogenic differentiation. Redox biology, 34, p.101492. |
32361680 |
Narasimhan, K.K.S., Devarajan, A., Karan, G., Sundaram, S., Wang, Q., van Groen, T., Del Monte, F. and Rajasekaran, N.S., 2020. Reductive stress promotes protein aggregation and impairs neurogenesis. Redox biology, 37, p.101739. |
33242767 |
Pecha, P.P., Almishaal, A.A., Mathur, P.D., Hillas, E., Johnson, T., Price, M.S., Haller, T., Yang, J., Rajasekaran, N.S., Firpo, M.A. and Park, A.H., 2020. Role of Free Radical Formation in Murine Cytomegalovirus–Induced Hearing Loss. Otolaryngology–Head and Neck Surgery, 162(5), pp.709-717. |
32041493 |
Kim, S., Song, J., Ernst, P., Latimer, M.N., Ha, C.M., Goh, K.Y., Ma, W., Rajasekaran, N.S., Zhang, J., Liu, X. and Prabhu, S.D., 2020. MitoQ regulates redox-related noncoding RNAs to preserve mitochondrial network integrity in pressure-overload heart failure. American Journal of Physiology-Heart and Circulatory Physiology, 318(3), pp.H682-H695. |
32004065 |
Miller, J.M., Mardhekar, N.M., Pretorius, D., Krishnamurthy, P., Rajasekaran, N.S., Zhang, J. and Kannappan, R., 2020. DNA damage-free iPS cells exhibit potential to yield competent cardiomyocytes. American Journal of Physiology-Heart and Circulatory Physiology, 318(4), pp.H801-H815. |
32057252 |
Murugesan, S., Saravanakumar, L., Powell, M.F., Kannappan, R. and Berkowitz, D.E., 2020. Role of exosomal microRNA signatures: An emerging factor in preeclampsia-mediated cardiovascular disease. Placenta. |
33171429 |
Sunny, S., Challa, A.K., Barchue, J.P., Ramamurthy, M.T., Crossman, D.K., Pogwizd, S., Cinghu, S. and Namakkal-Soorappan, R., 2020. Transcriptional regulation of structural and functional adaptations in a developing adulthood myocardium. bioRxiv. |
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Haglund, T.A., Rajasekaran, N.S., Smood, B., Giridharan, G.A., Hoopes, C.W., Holman, W.L., Mauchley, D.C., Prabhu, S.D., Pamboukian, S.V., Tallaj, J.A. and Rajapreyar, I.N., 2019. Evaluation of flow-modulation approaches in ventricular assist devices using an in-vitro endothelial cell culture model. The Journal of Heart and Lung Transplantation, 38(4), pp.456-465. |
30503074 |
Narasimhan, G., Henderson, J., Luong, H.T., Rajasekaran, N.S., Qin, G., Zhang, J. and Krishnamurthy, P., 2019. OBG‐like ATP ase 1 inhibition attenuates angiotensin II‐induced hypertrophic response in human ventricular myocytes via GSK‐3beta/beta‐catenin signalling. Clinical and Experimental Pharmacology and Physiology, 46(8), pp.743-751. |
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Devarajan, A., Rajasekaran, N.S., Valburg, C., Ganapathy, E., Bindra, S. and Freije, W.A., 2019. Maternal perinatal calorie restriction temporally regulates the hepatic autophagy and redox status in male rat. Free Radical Biology and Medicine, 130, pp.592-600. |
30248445 |
Berry, J.L., Zhu, W., Tang, Y.L., Krishnamurthy, P., Ge, Y., Cooke, J.P., Chen, Y., Garry, D.J., Yang, H.T., Rajasekaran, N.S. and Koch, W.J., 2019. Convergences of life sciences and engineering in understanding and treating heart failure. Circulation research, 124(1), pp.161-169. |
30605412 |
Kuster, D.W., Lynch IV, T.L., Barefield, D.Y., Sivaguru, M., Kuffel, G., Zilliox, M.J., Lee, K.H., Craig, R., Namakkal-Soorappan, R. and Sadayappan, S., 2019. Altered C10 domain in cardiac myosin binding protein-C results in hypertrophic cardiomyopathy. Cardiovascular research, 115(14), pp.1986-1997. |
31050699 |
Goh, K.Y., He, L., Song, J., Jinno, M., Rogers, A.J., Sethu, P., Halade, G.V., Rajasekaran, N.S., Liu, X., Prabhu, S.D. and Darley-Usmar, V., 2019. Mitoquinone ameliorates pressure overload-induced cardiac fibrosis and left ventricular dysfunction in mice. Redox biology, 21, p.101100. |
30641298 |
Kannappan, R., Turner, J.F., Miller, J.M., Fan, C., Rushdi, A.G., Rajasekaran, N.S. and Zhang, J., 2019. Functionally Competent DNA Damage-Free Induced Pluripotent Stem Cell–Derived Cardiomyocytes for Myocardial Repair. Circulation, 140(6), pp.520-522. |
31381423 |
Shanmugam, G., Challa, A.K., Devarajan, A., Athmanathan, B., Litovsky, S.H., Krishnamurthy, P., Davidson, C.J. and Rajasekaran, N.S., 2019. Exercise mediated Nrf2 signaling protects the myocardium from isoproterenol-induced pathological remodeling. Frontiers in cardiovascular medicine, 6, p.68. |
31245386 |
Shanmugam, G., Challa, A.K., Litovsky, S.H., Devarajan, A., Wang, D., Jones, D.P., Darley-Usmar, V.M. and Rajasekaran, N.S., 2019. Enhanced Keap1-Nrf2 signaling protects the myocardium from isoproterenol-induced pathological remodeling in mice. Redox biology, 27, p.101212. |
31155513 |
Narasimhan, K.K.S., Jayakumar, D., Velusamy, P., Srinivasan, A., Mohan, T., Ravi, D.B., Uthamaraman, S., Sathyamoorthy, Y.K., Rajasekaran, N.S. and Periandavan, K., 2019. Morinda citrifolia and its active principle scopoletin mitigate protein aggregation and neuronal apoptosis through augmenting the DJ-1/Nrf2/ARE signaling pathway. Oxidative medicine and cellular longevity, 2019. |
28986357 |
Shanmugam, G., Crossman, D., Rajasingh, J., Dalley, B., Zhang, J. and Rajasekaran, N.S., 2019. Impaired Regulation of Redox Transcriptome during the Differentiation of iPSCs into Induced Cardiomyocytes (iCMs). bioRxiv, p.519793. |
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Kain, V., Ingle, K.A., Kachman, M., Baum, H., Shanmugam, G., Rajasekaran, N.S., Young, M.E. and Halade, G.V., 2018. Excess ω-6 fatty acids influx in aging drives metabolic dysregulation, electrocardiographic alterations, and low-grade chronic inflammation. American Journal of Physiology-Heart and Circulatory Physiology, 314(2), pp.H160-H169. |
28986357 |
Jyothidasan, A., Shanmugam, G., Zhang, J., Dally, B., Crossman, D. and Rajasekaran, N.S., 2018. Basal Role for Nrf2-transgne on transcriptional (mRNA/miRNA) regulation in the mouse myocardium. bioRxiv, p.490953. |
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Narasimhan, M. and Rajasekaran, N.S., 2017. Cardiac Aging–Benefits of Exercise, Nrf2 Activation and Antioxidant Signaling. In Exercise for Cardiovascular Disease Prevention and Treatment (pp. 231-255). Springer, Singapore. |
29022266 |
Kumar, R.R., Narasimhan, M., Shanmugam, G., Hong, J., Devarajan, A., Palaniappan, S., Zhang, J., Halade, G.V., Darley-Usmar, V.M., Hoidal, J.R. and Rajasekaran, N.S., 2016. Abrogation of Nrf2 impairs antioxidant signaling and promotes atrial hypertrophy in response to high-intensity exercise stress. Journal of translational medicine, 14(1), pp.1-16. |
27048381 |
Wende, A.R., Young, M.E., Chatham, J., Zhang, J., Rajasekaran, N.S. and Darley-Usmar, V.M., 2016. Redox biology and the interface between bioenergetics, autophagy and circadian control of metabolism. Free Radical Biology and Medicine, 100, pp.94-107. |
27242268 |
Swamy, S.M., Rajasekaran, N.S. and Thannickal, V.J., 2016. Nuclear factor–erythroid-2–related factor 2 in aging and lung fibrosis. The American journal of pathology, 186(7), pp.1712-1723. |
26839378 |
Narasimhan, M. and Rajasekaran, N.S., 2016. Exercise, Nrf2 and antioxidant signaling in cardiac aging. Frontiers in physiology, 7, p.241. |
29022266 |
Patibandla, P.K., Rajasekaran, N.S., Shelar, S.B., Giridharan, G.A., Litovsky, S.H. and Sethu, P., 2016. Evaluation of the effect of diminished pulsatility as seen in continuous flow ventricular assist devices on arterial endothelial cell phenotype and function. The Journal of Heart and Lung Transplantation, 35(7), pp.930-932. |
27138701 |
Ahmed, M.I., Guichard, J.L., Rajasekaran, N.S., Ahmad, S., Mariappan, N., Litovsky, S., Gupta, H., Lloyd, S.G., Denney, T.S., Powell, P.C. and Aban, I., 2016. Disruption of desmin-mitochondrial architecture in patients with regurgitant mitral valves and preserved ventricular function. The Journal of thoracic and cardiovascular surgery, 152(4), pp.1059-1070. |
27464577 |
Mariappan, N., Soorappan, R.N., Haque, M., Sriramula, S. and Francis, J., 2007. TNF-α-induced mitochondrial oxidative stress and cardiac dysfunction: restoration by superoxide dismutase mimetic Tempol. American Journal of Physiology-Heart and Circulatory Physiology, 293(5), pp.H2726-H2737. |
17675574 |
Rachel A. Brewer, Helen E. Collins, Ryan D. Berry, Manoja K. Brahma, Brian A. Tirado, Rodrigo A. Peliciari-Garcia, Haley L. Stanley, Adam R. Wende, Heinrich Taegtmeyer, Rajasekaran NS, Victor Darley-Usmar, Jianhua Zhang, Stuart J. Frank, John C. Chatham, Martin E. Young. Temporal partitioning of adaptive responses of the murine heart to fasting. Life Sciences 197 (2018) 30–39. |
29410090 |
Bolus DJ, Shanmugam G, Narasimhan M, Rajasekaran NS. 2017. Recurrent heat shock impairs the proliferation and differentiation of C2C12 myoblasts. Cell Stress Chaperones. doi: 10.1007/s12192-017-0851-4. |
29063376 |
Bharat D, Cavalcanti RRM, Petersen C, Begaye N, Cutler BR, Costa MMA, Ramos RKLG, Ferreira MR, Li Y, Bharath LP, Toolson E, Sebahar P, Looper RE, Jalili T, Rajasekaran NS, Jia Z, Symons JD, Pon Velayutham AB. 2017. Blueberry Metabolites Attenuate Lipotoxicity-Induced Endothelial Dysfunction. Mol Nutr Food Res. doi: 10.1002/mnfr.201700601. |
29024402 |
Quiles JM, Narasimhan M, Mosbruger T, Shanmugam G, Crossman D, Rajasekaran NS. 2017. Identification of transcriptome signature for myocardial reductive stress. Redox Biol. 13:568-580. |
28768233 |
McGinnis GR, Tang Y, Brewer RA, Brahma MK, Stanley HL, Shanmugam G, Rajasekaran NS, Rowe GC, Frank SJ, Wende AR, Abel ED, Taegtmeyer H, Litovsky S, Darley-Usmar V, Zhang J, Chatham JC, Young ME. 2017. Genetic disruption of the cardiomyocyte circadian clock differentially influences insulin-mediated processes in the heart. J Mol Cell Cardiol. 110:80-95. |
28736261 |
Gobinath Shanmugam, Madhusudhanan Narasimhan, Robbie L. Conley, Thiagarajan Sairam, Ashutosh Kumar, Ronald P. Mason, Ramalingam Sankaran, John R. Hoidal, and Rajasekaran NS. 2017. Chronic Endurance Exercise Impairs Cardiac Structure and Function in Middle-Aged Mice with Impaired Nrf2 Signaling. Frontiers in Physiology 8 (268). |
28515695 |
Gobinath Shanmugam, Madhusudhanan Narasimhan, Susan Tamowski, Victor Darley-Usmar, and Rajasekaran NS. 2017. Constitutive Activation of Nrf2 Induces a Stable Reductive State in the Mouse Myocardium. Redox Biology, 12;937–945. |
28482326 |
Quiles, J.M., Narasimhan, N., Shanmugam, G., Milash, B., Hoidal, J.R., and Rajasekaran NS. Differential Regulation of miRNA and mRNA Expression in the Myocardium of Nrf2 Knockout Mice. BMC Genomics. 2017 Jul 3;18(1):509. |
28673258 |
Shanmugam G, Narasimhan M, Sakthivel R, Kumar R R, Davidson C, Palaniappan S, Claycomb WC, Hoidal JR, Darley-Usmar VM, Rajasekaran NS. A biphasic effect of TNF-α in regulation of the Keap1/Nrf2 pathway in cardiomyocytes. Redox Biol. 2016 Jun 27; 9:77-89. |
27423013 |
Thiagarajan Sairam, Amit N Patel, Meenu Subrahmanian, Rajendran Gopalan, Steven M Pogwizd, Sudha Ramalingam, Sankaran Ramalingam, Rajasekaran NS (2018). Evidence for hyper-reductive redox in a subset of heart failure patients. Journal of Translational Medicine (In press). |
29022266 |
Rajasekaran NS, Devaraj H, Devaraj SN. The effect of glutathione monoester (GME) on glutathione (GSH) depleted rat liver. J Nutr Biochem. 2002 May;13(5):302-306.
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2015161 |
Rajasekaran NS, Devaraj NS, Devaraj H.Vitamin E prevents buthionine sulfoximine-induced biochemical disorders in the rat. J Pharm Pharmacol. 2004 Jan;56(1):91-9.
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14983899 |
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