Publications

 

Published Articles

  • YJ Lim, TC Foo, AWS Yeung, X Tu, Y Ma, CL Hawkins, PK Witting, GN Jameson, AC Terentis, SR Thomas, Human Indoleamine 2,3-Dioxygenase 1 is a Novel Mammalian Nitrite Reductase, Biochemistry, 2019:58(7):974-986. [PMID: 30585477]
  • C Gapstur, H Mahfuz, J Hashemi, AC Terentis, Enhancing Fracture Toughness and Stress Energy Release Rate of Vinyl Ester Matrix Using Dual Reinforcement of CNT and GNP, MRS Advances, 2018:3(15-16);867-873.
  • SM Sabet, H Mahfuz, AC Terentis, M Nezakat, J Hashemi, Effects of POSS Functionalization of Carbon Nanotubes on Microstructure and Thermo-Mechanical Behavior of Carbon Nanotube/Polymer Nanocomposites, Journal of Materials Science, 2018:53(12);8963-8977.
  • PJ Cosme, J Ye, S Sears, EP Wojcikiewicz, AC Terentis, Label-Free Confocal Raman Mapping of Transportan in Melanoma Cells, Molecular Pharmaceutics, 2018:15(3);851-860. [PMID: 29397737]
  • CJ Corcoran, CC Tang, V Lykourinou, AC Terentis, A Andgerhofer, L-J Ming, To be structurally well-defined or not to be, that is not the question for iron(III)–poly(4-Vinylpyridine-co-acrylamide) to exhibit catechol dioxygenase activity!, Catalysis Communications, 2018:106;87-91. [https://doi.org/10.1016/j.catcom.2017.11.006]
  • TC Foo, AC Terentis, KV Venkatachalam, A continuous spectrophotometric assay and nonlinear kinetic analysis of methionine γ-lyase catalysis, Analytical Biochemistry, 2016:507;21-26. [PMID: 27235171]
  • SM Sabet, H Mahfuz, AC Terentis, J Hashemi, B Boesl, A facile approach to the synthesis of multi-walled carbon nanotube-polyhedral oligomeric silsesquioxane (POSS) nanohybrids, Materials Letters, 2016:168;9-12.
  • E Nagy, E St.Germain, P Cosme, P Maity, AC Terentis, SD Lepore, Ammonium Catalyzed Cyclitive Additions: Evidence for a Cation-π Interaction with Alkynes, Chemical Communications, 2016:52(11);2311-3. [PMID: 26728333]
  • SJ Friedman, AC Terentis, Analysis of G-Quadruplex Conformations using Raman and Polarized Raman Spectroscopy, Journal of Raman Spectroscopy, 2016:47(3);259-268. [DOI: 10.1002/jrs.4823]
  • AWS Yeung, AC Terentis, NJC King, SR Thomas, Role of Indoleamine 2,3-Dioxygenase in Health and Disease, Clinical Science, 2015:129(7);601-672. [PMID: 26186743]
  • AM Knapinska, D Tokmina-Roszyk, S Amar, M Tokmina-Roszyk, VN Mochalin, Y Gogotsi, P Cosme, AC Terentis, GB Fields, Solid-Phase Synthesis, Characterization, and Cellular Activities of Collagen-Model Nanodiamond-Peptide Conjugates, Peptide Science, 2015:104(3);186-195. [PMID: 25753561]
  • H Liu, R Lantz, P Cosme, N Rivera, C Andino, WG Gonzalez, AC Terentis, EP Wojcikiewicz, R Oyola, J Miksovska, D Du, Site-specific dynamics of amyloid formation and fibrillar configuration of Aβ1-23 using an unnatural amino acid, Chemical Communications, 2015:51(32);7000-7003. [PMID: 25801393]
  • SM Sabet, H Mahfuz, AC Terentis, J Hashemi, A New Approach to the Synthesis of Carbon Nanotube-Polyhedral Oligomeric Silsesquioxane (POSS) Nanohybrids. In ASME 2015 International Mechanical Engineering Congress and Exposition, American Society of Mechanical Engineers: Houston, Texas, USA, 2015:2B;V02BT02A044.
  • SA Fox, A Shanblatt, H Beckman, J Strasswimmer, AC Terentis, Raman Spectroscopy Differentiates Squamous Cell Carcinoma (SCC) From Normal Skin Following Treatment with a High-Powered CO2 Laser, Lasers in Surgery and Medicine, 2014:46(10);757–772. [PMID: 25345858]
  • AC Terentis, SA Fox, SJ Friedman, ES Spencer, Confocal Raman microspectroscopy discriminates live human metastatic melanoma and skin fibroblast cells, Journal of Raman Spectroscopy, 2013:44(9);1205-1216.
  • M Freewan, MD Rees, TS Sempértegui Plaza, E Glaros, YJ Lim, X-S Wang, AWS Yeung, PK Witting, AC Terentis, SR Thomas, Human Indoleamine 2,3-Dioxygenase is a Catalyst of Physiological Heme Peroxidase Reactions – Implications for the Inhibition of Dioxygenase Activity by Hydrogen Peroxide, Journal of Biological Chemistry, 2013:288(3);1548-1567. [PMID: 23209301]
  • AC Terentis, J Ye, Peptide detection and structure determination in live cells using confocal Raman microscopy. In Peptide Modifications to Increase Metabolic Stability and Activity; P Cudic, Ed. Humana Press: New York, 2013; Vol. 1081, pp 211-236. From Methods in Molecular Biology series. [PMID: 24014442]
  • AC Terentis, M Freewan, TS Sempértegui Plaza, M Raftery, R Stocker, SR Thomas, The Selenazal Drug Ebselen Potently Inhibits Indoleamine 2,3-Dioxygenase by Targeting Enzyme Cysteine Residues, Biochemistry, 2010:49(3);591-600. [PMID: 20000778]
  • J Ye, SA Fox, M Cudic, EM Rezler, JL Lauer, GB Fields, AC Terentis, Determination of Penetratin Secondary Structure in Live Cells with Raman Microscopy, Journal of the American Chemical Society, 2010:132(3);980-988. [PMID: 20041639]
  • SW Vetter, AC Terentis, RL Osborne, JH Dawson, DB Goodin, Replacement of the Axial Histidine Heme Ligand with Cysteine in Nitrophorin-1: Spectroscopic and Crystallographic Characterization, Journal of Biological Inorganic Chemistry, 2009:14(2);179-191. [PMID: 18923851]
  • SR Thomas, AC Terentis, H Cai, O Takikawa, A Levina, PA Lay, M Freewan, R Stocker, Post-translational regulation of human indolamine 2,3-dioxygenase activity by nitric oxide, Journal of Biological Chemistry, 2007:282(33);23778-23787. [PMID: 17535808]
  • AC Terentis, L Ujj, H Abramczyk, GH Atkinson, Primary events in the bacteriorhodopsin photocycle: torsional vibrational dephasing in the first excited electronic state, Chemical Physics, 2005:313(1-3);51-62.
  • AC Terentis, L Ujj, Y Zhou, GH Atkinson, Picosecond time-resolved coherent anti-Stokes Raman spectroscopy of the artificial bacteriorhodopsin pigment BR6.11, Journal of Physical Chemistry A, 2003:107(49);10787-10797.
  • AC Terentis, SR Thomas, O Takikawa, TK Littlejohn, RJW Truscott, RS Armstrong, S-R Yeh, R Stocker, The heme environment of recombinant human indoleamine 2,3-dioxygenase – structural properties and substrate-ligand interactions, Journal of Biological Chemistry, 2002:277(18);15788-15794. [PMID: 11867636]
  • JM Upston, AC Terentis, K Morris, JF Keaney, Jr., R Stocker, Oxidized lipid accumulates in the presence of alpha-tocopherol in atherosclerosis, Biochemical Journal, 2002:363(3);753-760. [PMID: 11964176]
  • AC Terentis, SR Thomas, JA Burr, DC Liebler, R Stocker, Vitamin E oxidation in human atherosclerotic lesions, Circulation Research, 2002:90(3);333-339. [PMID: 11861423]
  • GF Metha, AC Terentis, SH Kable, Near-threshold photochemistry of propanal. Barrier height, transition state structure, and product state distributions for the HCO channel, Journal of Physical Chemistry A, 2002:106(24);5817-5827.
  • R Stocker, AC Terentis, JM Upston, L Kritharides, Is there a role for vitamin E in the prevention of atherosclerosis? In The antioxidant vitamins C and E, Proceedings of a symposium held at the 2002 World Congress of the Oxygen Club of California, AOCS Press: Santa Barbara, California, USA, 2002:2002;228-242. Edited by L Packer.
  • JM Upston, AC Terentis, R Stocker, Tocopherol-mediated peroxidation of lipoproteins: implications for vitamin E as a potential antiatherogenic supplement, FASEB Journal, 1999:13(9);977-994. [PMID: 10336881]
  • AC Terentis, SE Waugh, GF Metha, SH Kable, HCO (N, Ka, Kc, J) distributions from near-threshold photolysis of H2CO (J, Ka, Kc), Journal of Chemical Physics, 1998:108(8);3187-3198.
  • R Stocker, JM Upston, X Nui, AC Terentis, V Zammit, LJ Hazell, S Fu, RT Dean, Lipoprotein oxidation in human atherosclerosis. In Atherosclerosis XI: proceedings of the XIth international symposium on atherosclerosis, B Jacotot, D Mathe, J-C Fruchart, Eds. Elsevier: Paris, 1998:1155;475-482. From International Congress Series.
  • SE Waugh, AC Terentis, GF Metha, SH Kable, On the conservation of angular momentum in polyatomic photochemical reactions: H2CO (v, J, Ka, Kc) → HCO (N, Ka, Kc, J). In Laser Techniques for State-Selected and State-to-State Chemistry IV: Optoelectronics and High-Power Lasers and Applications, San Jose, CA, USA, 1998/5/15; International Society for Optics and Photonics (SPIE): San Jose, CA, USA, 1998:3271;36-46.
  • AC Terentis, SH Kable, Near-threshold dynamics and dissociation energy of the reaction H2CO → HCO + H, Chemical Physics Letters, 1996:258(5,6);626-632.
  • PT Knepp, AC Terentis, SH Kable, Photodissociation dynamics of NO2 at moderately high available energy (lambda = 309 nm; Eavail = 7222 cm-1), Journal of Chemical Physics, 1995:103(1);194-204.
  • AC Terentis, PT Knepp, SH Kable, Nascent state distribution of the HCO photoproduct arising from 309 nm photolysis of propionaldehyde, Journal of Physical Chemistry, 1995:99(34);12704-12710.
  • AC Terentis, PT Knepp, SH Kable, Radical channel photodissociation dynamics of aliphatic aldehydes: the nascent state distribution of the HCO photoproduct. In SPIE's 1995 International Symposium on Optical Science, Engineering, and Instrumentation, San Diego, CA, USA, 1995/9/18; SPIE: San Diego, CA, USA, 1995:2548;328-339.
  • PT Knepp, AC Terentis, SH Kable, Photodissociation dynamics of NO2 at 309.1 nm. In SPIE's 1995 International Symposium on Optical Science, Engineering, and Instrumentation, San Diego, CA, USA, 1995/9/18; SPIE: San Diego, CA, USA, 1995;2548;316-327.
  • AC Terentis, M Stone, SH Kable, Dynamics of acetaldehyde dissociation at 308 nm: rotational (N,Ka) and translational distributions of the HCO photoproduct, Journal of Physical Chemistry, 1994:98(42);10802-10808.
  • AC Terentis, A Doughty, JC Mackie, Kinetics of pyrolysis of a coal model-compound, 2-picoline, the nitrogen heteroaromatic analogue of toluene, Journal of Physical Chemistry, 1992:96(25);10334-10339.