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Vesicant Reference Library

Found 6060 results
Author Title Type [ Year(Asc)]
2016
Nejad-Moghaddam A., Ajdary S., Tahmasbpour E., Rad F.R, Panahi Y., Ghanei M..  2016.  Immunomodulatory Properties of Mesenchymal Stem Cells Can Mitigate Oxidative Stress and Inflammation Process in Human Mustard Lung. Biochem Genet. 54(6):769-783.
Sauvaigo S., Sarrazy F., Batal M., Caillat S., Pitiot B., Mouret S., Clery-Barraud C., Boudry I., Douki T..  2016.  Impact of topical application of sulfur mustard on mice skin and distant organs DNA repair enzyme signature. Toxicol Lett. 241:71-81.
Sauvaigo S., Sarrazy F., Batal M., Caillat S., Pitiot B., Mouret S., Clery-Barraud C., Boudry I., Douki T..  2016.  Impact of topical application of sulfur mustard on mice skin and distant organs DNA repair enzyme signature. Toxicol Lett. 241:71-81.
Deppe J., Popp T., Egea V., Steinritz D., Schmidt A., Thiermann H., Weber C., Ries C..  2016.  Impairment of hypoxia-induced HIF-1alpha signaling in keratinocytes and fibroblasts by sulfur mustard is counteracted by a selective PHD-2 inhibitor. Arch Toxicol. 90(5):1141-50.
Deppe J., Popp T., Egea V., Steinritz D., Schmidt A., Thiermann H., Weber C., Ries C..  2016.  Impairment of hypoxia-induced HIF-1alpha signaling in keratinocytes and fibroblasts by sulfur mustard is counteracted by a selective PHD-2 inhibitor. Arch Toxicol. 90(5):1141-50.
Malaviya R., Sunil V.R, Venosa A., Vayas K.N, Heck D.E, Laskin J.D, Laskin D.L.  2016.  Inflammatory mechanisms of pulmonary injury induced by mustards. Toxicol Lett. 244:2-7.
Malaviya R., Sunil V.R, Venosa A., Vayas K.N, Heck D.E, Laskin J.D, Laskin D.L.  2016.  Inflammatory mechanisms of pulmonary injury induced by mustards. Toxicol Lett. 244:2-7.
Abtahi H., Peiman S., Foroumandi M., Safavi E..  2016.  Long Term Follow-Up of Sulfur Mustard Related Bronchiolitis Obliterans Treatment. Acta Med Iran. 54(9):605-609.
Nishimura Y., Iwamoto H., Ishikawa N., Hattori N., Horimasu Y., Ohshimo S., Fujitaka K., Kondo K., Hamada H., Awai K. et al..  2016.  Long-term pulmonary complications of chemical weapons exposure in former poison gas factory workers. Inhal Toxicol. 28(8):343-8.
Malaviya R., Sunil V.R, Venosa A., Vayas K.N, Businaro R., Heck D.E, Laskin J.D, Laskin D.L.  2016.  Macrophages and inflammatory mediators in pulmonary injury induced by mustard vesicants. Ann N Y Acad Sci. 1374(1):168-75.
Xiaoji Z., Xiao M., Rui X., Haibo C., Chao Z., Chengjin L., Tao W., Wenjun G., Shengming Z..  2016.  Mechanism underlying acute lung injury due to sulfur mustard exposure in rats. Toxicol Ind Health. 32(8):1345-1357.
Steinritz D., Striepling E., Rudolf K.D, Schroder-Kraft C., Puschel K., Hullard-Pulstinger A., Koller M., Thiermann H., Gandor F., Gawlik M. et al..  2016.  Medical documentation, bioanalytical evidence of an accidental human exposure to sulfur mustard and general therapy recommendations. Toxicol Lett. 244:112-120.
Steinritz D., Striepling E., Rudolf K.D, Schroder-Kraft C., Puschel K., Hullard-Pulstinger A., Koller M., Thiermann H., Gandor F., Gawlik M. et al..  2016.  Medical documentation, bioanalytical evidence of an accidental human exposure to sulfur mustard and general therapy recommendations. Toxicol Lett. 244:112-120.
Per T.S, Khan N.A, Masood A., Fatma M..  2016.  Methyl Jasmonate Alleviates Cadmium-Induced Photosynthetic Damages through Increased S-Assimilation and Glutathione Production in Mustard. Front Plant Sci. 7:1933.
Composto G.M, Laskin J.D, Laskin D.L, Gerecke D.R, Casillas R.P, Heindel N.D, Joseph L.B, Heck D.E.  2016.  Mitigation of nitrogen mustard mediated skin injury by a novel indomethacin bifunctional prodrug. Exp Mol Pathol. 100(3):522-31.
Lacey C.J, Wohlman I., Guillon C., Saxena J., Fianu-Velgus C., Aponte E., Young S.C, Heck D.E, Joseph L.B, Laskin J.D et al..  2016.  Multi-inhibitor prodrug constructs for simultaneous delivery of anti-inflammatory agents to mustard-induced skin injury. Ann N Y Acad Sci. 1378(1):174-179.
Weinberger B., Malaviya R., Sunil V.R, Venosa A., Heck D.E, Laskin J.D, Laskin D.L.  2016.  Mustard vesicant-induced lung injury: Advances in therapy. Toxicol Appl Pharmacol. 305:1-11.
Wohlman I.M, Composto G.M, Heck D.E, Heindel N.D, Lacey C.J, Guillon C.D, Casillas R.P, Croutch C.R, Gerecke D.R, Laskin D.L et al..  2016.  Mustard vesicants alter expression of the endocannabinoid system in mouse skin. Toxicol Appl Pharmacol. 303:30-44.
Tewari-Singh N., Agarwal R..  2016.  Mustard vesicating agent-induced toxicity in the skin tissue and silibinin as a potential countermeasure. Ann N Y Acad Sci. 1374(1):184-92.
Fatma M., Masood A., Per T.S, Khan N.A.  2016.  Nitric Oxide Alleviates Salt Stress Inhibited Photosynthetic Performance by Interacting with Sulfur Assimilation in Mustard. Front Plant Sci. 7:521.
Goswami D.G, Tewari-Singh N., Dhar D., Kumar D., Agarwal C., Ammar D.A, Kant R., Enzenauer R.W, Petrash J.M, Agarwal R..  2016.  Nitrogen Mustard-Induced Corneal Injury Involves DNA Damage and Pathways Related to Inflammation, Epithelial-Stromal Separation, and Neovascularization. Cornea. 35(2):257-66.
Nobakht B.F, Aliannejad R., Rezaei-Tavirani M., A. Oskouie A, Naseri M.T, Parastar H., Aliakbarzadeh G., Fathi F., Taheri S..  2016.  NMR- and GC/MS-based metabolomics of sulfur mustard exposed individuals: a pilot study. Biomarkers. 21(6):479-89.
Udasin R.G, Wen X., Bircsak K.M, Aleksunes L.M, Shakarjian M.P, Kong A.N, Heck D.E, Laskin D.L, Laskin J.D.  2016.  Nrf2 Regulates the Sensitivity of Mouse Keratinocytes to Nitrogen Mustard via Multidrug Resistance-Associated Protein 1 (Mrp1). Toxicol Sci. 149(1):202-12.
Udasin R.G, Wen X., Bircsak K.M, Aleksunes L.M, Shakarjian M.P, Kong A.N, Heck D.E, Laskin D.L, Laskin J.D.  2016.  Nrf2 Regulates the Sensitivity of Mouse Keratinocytes to Nitrogen Mustard via Multidrug Resistance-Associated Protein 1 (Mrp1). Toxicol Sci. 149(1):202-12.
John H., Siegert M., Gandor F., Gawlik M., Kranawetvogl A., Karaghiosoff K., Thiermann H..  2016.  Optimized verification method for detection of an albumin-sulfur mustard adduct at Cys(34) using a hybrid quadrupole time-of-flight tandem mass spectrometer after direct plasma proteolysis. Toxicol Lett. 244:103-111.

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