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Assistant Research

Location:
Ambavaram, AP, 523112, India
Posted:
January 26, 2016

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Resume:

PUBLICATIONS

*. Bakhit Bakhaudyn**, Palash Mandal1*, Dola Das1*, Sanjoy Roychowdhury1*, Jazmine Danner1, Katelyn Bush1, Katherine Pollard1, James Kaspar1, Megan R. McMullen1 and Laura E. Nagy1(2014). Protective role of HO-1 and carbon monoxide in ethanol-induced cell death in hepatocytes and liver injury in mice. Journal of Hepatology,; 2014 Nov;61(5):1029-37. impact factor 10.418. (1*these 3 authors contributed equally).

2. Roychowdhury S, Chiang DJ, Palash Mandal, McMullen MR, Liu X, Cohen JI, Pollard J, Feldstein AE, Nagy LE (2012). Inhibition of apoptosis protects mice from ethanol-mediated acceleration of early markers of CCl4 -induced fibrosis but not steatosis or inflammation. Alcohol Clin Exp Res. Jul; 36(7):1139-47., impact factor 3.392.

3. * Palash Mandal, Pratt BT, Barnes M, McMullen MR, Nagy LE (2011). Molecular mechanism for adiponectin-dependent alternative macrophage polarization: Link between the metabolic and innate immune activity of full-length adiponectin. Journal of Biological Chemistry. Volume 286, issue 15, pp. 134**-*****. (* indicates manuscripts for which I am corresponding author), impact factor 5.6.

4. Harini Venkata, Nishank Reddy, Imran Khan and Palash Mandal (2015). Effect of alcohol on adipose tissue. Adipocyte (In press).

5. Palash Mandal, S Roychowdhury, PH Park, BT. Pratt, T Roger and LE. Nagy (2011). Hemeoxygenase-1 protects mice from ethanol-induced liver injury via suppression of TLR4 signaling. Journal of Immunology. Vol 185, pp 4928-4937, impact factor 6.0.

6. Palash Mandal, MT. Pritchard and LE. Nagy (2010). Anti-inflammatory pathways and alcoholic liver disease: Role of an adiponectin/ interleukin-10/heme oxygenase-1 pathway. World J. Gastro. Vol 16, No. 11, pp1330-1336. impact factor 2.433.

7. Palash Mandal, Pil-hoon Park, Megan R. McMullen, Brian T. Pratt and Laura E. Nagy. (2010). The anti-inflammatort effects of adiponectin are mediated via a heme oxygenase-1-dependent pathway in rat Kupffer cells. Hepatolgy: Volume 51, Issue: 4, pp. 1420-1429. Impact factor 12.06.

8. C Zhao, S Datta, Palash Mandal, and TA Hamilton (2010). Stress-sensitive regulation of TIS7/IFRD1 mRNA decay is mediated by an upstream ORF. Journal of Biological Chemistry. VOL. 285, NO. 12, pp. 8552–8562. Impact factor 5.6.

9. Park PH, Huang H, McMullen MR, Palash Mandal, Sun L, Nagy LE (2008). Suppression of Lipopolysaccharide-stimulated Tumor Necrosis Factor-{alpha} Production by Adiponectin Is Mediated by Transcriptional and Post-transcriptional Mechanisms. Journal of Biological Chemistry. 2008 Oct 3; 283(40):26850-8. Impact factor 5.6.

10. Palash Mandal and TA Hamilton (2007). Signaling in Lipopolysaccharide-Induced Stabilization of Formyl Peptide Receptor 1 mRNA in Mouse Peritoneal Macrophages. The Journal of Immunology: volume 178, pp 2542-2548. Impact factor 6.0.

11. TA. Hamilton, M Novotny, S Datta, Palash Mandal, J Hartupee, J Tebo, and X Li. Chemokine and chemoattractant receptor expression:post-transcriptional regulation. J. Leukoc. Biol. 82: 000–000; 2007. Impact factor 4.6.

12. S Datta, R Biswas, M Novotny, PG. Pavicic, T Herjan, Palash Mandal and TA. Hamilton (2008). Tristetraprolin regulates CXCL1 (KC) mRNA stability. The Journal of Immunology; volume 180, pages 2545-52. Impact factor 6.0.

13. Palash Mandal, Novotny M, Hamilton T (2005). Lipopolysaccharide induces formyl peptide receptor 1 gene expression in macrophage and neutrophils via transcriptional and post transcriptional mechanisms. The Journal of Immunology: volume 175, pp 6085-6091. Impact factor 6.0.

14. Palash Mandal, Sikdar SR (2003). Plant regeneration from mesophyll protoplast of Rorippa indica (L.) Hiren, a wild crucifer. Current Science: volume 85, issue 10, pp 1451-1454.

https://scholar.google.co.in/citations?user=gn5cHLwAAAAJ&hl=en&oi=ao

Citation indices

All Since 2010

Citations

632 553

h-index

13 12

i10-index

16 14



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