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2019 | 1 |
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Andexanet for Factor Xa Inhibitor-Associated Acute Intracerebral Hemorrhage.
N Engl J Med. 2024 May 16;390(19):1745-1755. doi: 10.1056/NEJMoa2313040.
N Engl J Med. 2024.
PMID: 38749032
Clinical Trial.
Synthesis of a Fe(II)SH complex stabilized by an intramolecular N-H···S hydrogen bond, which acts as a H2S donor.
Galardon E, Roger T, Deschamps P, Roussel P, Tomas A, Artaud I.
Galardon E, et al.
Inorg Chem. 2012 Oct 1;51(19):10068-70. doi: 10.1021/ic300952d. Epub 2012 Sep 7.
Inorg Chem. 2012.
PMID: 22957658
Through use of the reversible protonation of an iron(II) complex containing a deprotonated carboxamido moiety, we prepared and fully characterized the first hydrogen(sulfido)iron(II) complex stabilized by an intramolecular hydrogen bond, which acts as a H(2)S donor …
Through use of the reversible protonation of an iron(II) complex containing a deprotonated carboxamido moiety, we prepared and fully charact …
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Global Impact of COVID-19 on Stroke Care and IV Thrombolysis.
Nogueira RG, Qureshi MM, Abdalkader M, Martins SO, Yamagami H, Qiu Z, Mansour OY, Sathya A, Czlonkowska A, Tsivgoulis G, Aguiar de Sousa D, Demeestere J, Mikulik R, Vanacker P, Siegler JE, Kõrv J, Biller J, Liang CW, Sangha NS, Zha AM, Czap AL, Holmstedt CA, Turan TN, Ntaios G, Malhotra K, Tayal A, Loochtan A, Ranta A, Mistry EA, Alexandrov AW, Huang DY, Yaghi S, Raz E, Sheth SA, Mohammaden MH, Frankel M, Bila Lamou EG, Aref HM, Elbassiouny A, Hassan F, Menecie T, Mustafa W, Shokri HM, Roushdy T, Sarfo FS, Alabi TO, Arabambi B, Nwazor EO, Sunmonu TA, Wahab K, Yaria J, Mohammed HH, Adebayo PB, Riahi AD, Sassi SB, Gwaunza L, Ngwende GW, Sahakyan D, Rahman A, Ai Z, Bai F, Duan Z, Hao Y, Huang W, Li G, Li W, Liu G, Luo J, Shang X, Sui Y, Tian L, Wen H, Wu B, Yan Y, Yuan Z, Zhang H, Zhang J, Zhao W, Zi W, Leung TW, Chugh C, Huded V, Menon B, Pandian JD, Sylaja PN, Usman FS, Farhoudi M, Hokmabadi ES, Horev A, Reznik A, Sivan Hoffmann R, Ohara N, Sakai N, Watanabe D, Yamamoto R, Doijiri R, Tokuda N, Yamada T, Terasaki T, Yazawa Y, Uwatoko T, Dembo T, Shimizu H, Sugiura Y, Miyashita F, Fukuda H, Miyake K, Shimbo J, Sugimura Y, Yagita Y, Takenobu Y, Matsumaru Y, Yamada S, Kono R, Kanamaru …
See abstract for full author list ➔
Nogueira RG, et al.
Neurology. 2021 Jun 8;96(23):e2824-e2838. doi: 10.1212/WNL.0000000000011885. Epub 2021 Mar 25.
Neurology. 2021.
PMID: 33766997
Free PMC article.
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Combined organic coagulants and photocatalytic processes for winery wastewater treatment.
Jorge N, Teixeira AR, Lucas MS, Peres JA.
Jorge N, et al.
J Environ Manage. 2023 Jan 15;326(Pt B):116819. doi: 10.1016/j.jenvman.2022.116819. Epub 2022 Nov 20.
J Environ Manage. 2023.
PMID: 36417832
Free article.
Results showed that KPS-photo-Fenton, under the best operational conditions [Fe(2+)] = 2.5 mM, [KPS] = 1.0 mM, pH = 3.0, radiation UV-C mercury lamp (254 nm), agitation 350 rpm, temperature 298 K, reaction time 240 min achieved a DOC removal of 91.2 and 96.8%, with a H …
Results showed that KPS-photo-Fenton, under the best operational conditions [Fe(2+)] = 2.5 mM, [KPS] = 1.0 mM, pH = 3.0, radiation UV-C merc …
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Combination of adsorption and heterogeneous photo-Fenton processes for the treatment of winery wastewater.
Guimarães V, Lucas MS, Peres JA.
Guimarães V, et al.
Environ Sci Pollut Res Int. 2019 Oct;26(30):31000-31013. doi: 10.1007/s11356-019-06207-6. Epub 2019 Aug 26.
Environ Sci Pollut Res Int. 2019.
PMID: 31452122
Regarding to the heterogeneous photo-Fenton process, the higher TOC removal percentage obtained (78.7% - 240 min) was achieved at pH 4.0, with a H(2)O(2) concentration of 98 mM and a catalyst dosage (S:L, solid:liquid ratio) corresponding to 6.00 g/L (UV-C). ...
Regarding to the heterogeneous photo-Fenton process, the higher TOC removal percentage obtained (78.7% - 240 min) was achieved at pH 4.0, wi …
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