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Connection

Rooban Babyantony Nahomi to Animals

This is a "connection" page, showing publications Rooban Babyantony Nahomi has written about Animals.

 
Connection Strength
 
 
 
0.284
 
  1. Panja S, Nahomi RB, Rankenberg J, Michel CR, Gaikwad H, Nam MH, Nagaraj RH. Aggrelyte-2 promotes protein solubility and decreases lens stiffness through lysine acetylation and disulfide reduction: Implications for treating presbyopia. Aging Cell. 2023 04; 22(4):e13797.
    View in: PubMed
    Score: 0.020
  2. Nam MH, Stankowska DL, Johnson GA, Nahomi RB, Pantcheva MB, Nagaraj RH. Peptains block retinal ganglion cell death in animal models of ocular hypertension: implications for neuroprotection in glaucoma. Cell Death Dis. 2022 11 15; 13(11):958.
    View in: PubMed
    Score: 0.019
  3. Nam MH, Nahomi RB, Pantcheva MB, Dhillon A, Chiodo VA, Smith WC, Nagaraj RH. AAV2-Mediated Expression of HspB1 in RGCs Prevents Somal Damage and Axonal Transport Deficits in a Mouse Model of Ocular Hypertension. Transl Vis Sci Technol. 2022 11 01; 11(11):8.
    View in: PubMed
    Score: 0.019
  4. Nandi SK, Rankenberg J, Rakete S, Nahomi RB, Glomb MA, Linetsky MD, Nagaraj RH. Glycation-mediated protein crosslinking and stiffening in mouse lenses are inhibited by carboxitin in vitro. Glycoconj J. 2021 06; 38(3):347-359.
    View in: PubMed
    Score: 0.017
  5. Nahomi RB, Nam MH, Rankenberg J, Rakete S, Houck JA, Johnson GC, Stankowska DL, Pantcheva MB, MacLean PS, Nagaraj RH. Kynurenic Acid Protects Against Ischemia/Reperfusion-Induced Retinal Ganglion Cell Death in Mice. Int J Mol Sci. 2020 Mar 05; 21(5).
    View in: PubMed
    Score: 0.016
  6. Nahomi RB, Nandi SK, Rakete S, Michel C, Fritz KS, Nagaraj RH. Lysine malonylation and propionylation are prevalent in human lens proteins. Exp Eye Res. 2020 01; 190:107864.
    View in: PubMed
    Score: 0.016
  7. Nandi SK, Nahomi RB, Harris PS, Michel CR, Fritz KS, Nagaraj RH. The absence of SIRT3 and SIRT5 promotes the acetylation of lens proteins and improves the chaperone activity of a-crystallin in mouse lenses. Exp Eye Res. 2019 05; 182:1-9.
    View in: PubMed
    Score: 0.015
  8. Nahomi RB, Nandi SK, Nagaraj RH. A monoclonal antibody targeted to the functional peptide of aB-crystallin inhibits the chaperone and anti-apoptotic activities. J Immunol Methods. 2019 04; 467:37-47.
    View in: PubMed
    Score: 0.015
  9. Nahomi RB, Sampathkumar S, Myers AM, Elghazi L, Smith DG, Tang J, Lee CA, Kern TS, Nagaraj RH, Fort PE. The Absence of Indoleamine 2,3-Dioxygenase Inhibits Retinal Capillary Degeneration in Diabetic Mice. Invest Ophthalmol Vis Sci. 2018 04 01; 59(5):2042-2053.
    View in: PubMed
    Score: 0.014
  10. Biju PG, Rooban BN, Lija Y, Devi VG, Sahasranamam V, Abraham A. Drevogenin D prevents selenite-induced oxidative stress and calpain activation in cultured rat lens. Mol Vis. 2007 Jul 12; 13:1121-9.
    View in: PubMed
    Score: 0.013
  11. Nahomi RB, Pantcheva MB, Nagaraj RH. aB-crystallin is essential for the TGF-ß2-mediated epithelial to mesenchymal transition of lens epithelial cells. Biochem J. 2016 05 15; 473(10):1455-69.
    View in: PubMed
    Score: 0.012
  12. Nagaraj RH, Nahomi RB, Mueller NH, Raghavan CT, Ammar DA, Petrash JM. Therapeutic potential of a-crystallin. Biochim Biophys Acta. 2016 Jan; 1860(1 Pt B):252-7.
    View in: PubMed
    Score: 0.011
  13. Nahomi RB, DiMauro MA, Wang B, Nagaraj RH. Identification of peptides in human Hsp20 and Hsp27 that possess molecular chaperone and anti-apoptotic activities. Biochem J. 2015 Jan 01; 465(1):115-25.
    View in: PubMed
    Score: 0.011
  14. Nahomi RB, Wang B, Raghavan CT, Voss O, Doseff AI, Santhoshkumar P, Nagaraj RH. Chaperone peptides of a-crystallin inhibit epithelial cell apoptosis, protein insolubilization, and opacification in experimental cataracts. J Biol Chem. 2013 May 03; 288(18):13022-35.
    View in: PubMed
    Score: 0.010
  15. Sasikala V, Rooban BN, Sahasranamam V, Abraham A. Rutin ameliorates free radical mediated cataract by enhancing the chaperone activity of a-crystallin. Graefes Arch Clin Exp Ophthalmol. 2013 Jul; 251(7):1747-55.
    View in: PubMed
    Score: 0.010
  16. Rooban BN, Sasikala V, Gayathri Devi V, Sahasranamam V, Abraham A. Prevention of selenite induced oxidative stress and cataractogenesis by luteolin isolated from Vitex negundo. Chem Biol Interact. 2012 Mar 05; 196(1-2):30-8.
    View in: PubMed
    Score: 0.009
  17. Rooban BN, Sasikala V, Sahasranamam V, Abraham A. Analysis on the alterations of lens proteins by Vitex negundo in selenite cataract models. Mol Vis. 2011; 17:1239-48.
    View in: PubMed
    Score: 0.009
  18. Rooban BN, Sasikala V, Sahasranamam V, Abraham A. Amelioration of selenite toxicity and cataractogenesis in cultured rat lenses by Vitex negundo. Graefes Arch Clin Exp Ophthalmol. 2011 May; 249(5):685-92.
    View in: PubMed
    Score: 0.009
  19. Sasikala V, Rooban BN, Priya SG, Sahasranamam V, Abraham A. Moringa oleifera prevents selenite-induced cataractogenesis in rat pups. J Ocul Pharmacol Ther. 2010 Oct; 26(5):441-7.
    View in: PubMed
    Score: 0.008
  20. Devi VG, Rooban BN, Sasikala V, Sahasranamam V, Abraham A. Isorhamnetin-3-glucoside alleviates oxidative stress and opacification in selenite cataract in vitro. Toxicol In Vitro. 2010 Sep; 24(6):1662-9.
    View in: PubMed
    Score: 0.008
  21. Rooban BN, Sasikala V, Sahasranamam V, Abraham A. Vitex negundo modulates selenite-induced opacification and cataractogensis in rat pups. Biol Trace Elem Res. 2010 Dec; 138(1-3):282-92.
    View in: PubMed
    Score: 0.008
  22. Vibin M, Siva Priya SG, N Rooban B, Sasikala V, Sahasranamam V, Abraham A. Broccoli regulates protein alterations and cataractogenesis in selenite models. Curr Eye Res. 2010 Feb; 35(2):99-107.
    View in: PubMed
    Score: 0.008
  23. Rooban BN, Lija Y, Biju PG, Sasikala V, Sahasranamam V, Abraham A. Vitex negundo attenuates calpain activation and cataractogenesis in selenite models. Exp Eye Res. 2009 Mar; 88(3):575-82.
    View in: PubMed
    Score: 0.004
Connection Strength

The connection strength for concepts is the sum of the scores for each matching publication.

Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.

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