Hydroxychloroquin (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Hydroxychloroquin" in German language version.

refsWebsite
Global rank German rank
4th place
7th place
2nd place
3rd place
68th place
29th place
719th place
1,553rd place
2,112th place
1,609th place
8,332nd place
1,213th place
8,573rd place
1,211th place
4,294th place
2,006th place
43rd place
985th place
3,329th place
378th place
low place
low place
low place
1,217th place
3,043rd place
200th place

aerzteblatt.de

bfarm.de

cas.org

commonchemistry.cas.org

chemspider.com

doi.org

  • Jing Xue, Amanda Moyer, Bing Peng, Jinchang Wu, Bethany N. Hannafon: Chloroquine Is a Zinc Ionophore. In: PLoS ONE. Band 9, Nr. 10, 1. Oktober 2014, S. e109180, doi:10.1371/journal.pone.0109180, PMID 25271834, PMC 4182877 (freier Volltext) – (plos.org [abgerufen am 21. März 2020]).
  • Aartjan J. W. te Velthuis, Sjoerd H. E. van den Worm, Amy C. Sims, Ralph S. Baric, Eric J. Snijder: Zn2+ Inhibits Coronavirus and Arterivirus RNA-Polymerase Activity In Vitro and Zinc Ionophores Block the Replication of These Viruses in Cell Culture. In: PLOS Pathogens. Band 6, Nr. 11, 11. April 2010, S. e1001176, doi:10.1371/journal.ppat.1001176, PMID 21079686, PMC 2973827 (freier Volltext).
  • Z. J. Yang, C. E. Chee u. a.: The role of autophagy in cancer: therapeutic implications. In: Molecular cancer therapeutics. Band 10, Nummer 9, September 2011, S. 1533–1541, doi:10.1158/1535-7163.MCT-11-0047, PMID 21878654, PMC 3170456 (freier Volltext) (Review).
  • Heimann, Heinrich et al.: Atlas des Augenhintergrundes. Kapitel 7: Makulaerkrankungen, Abschnitt 7.7: Chloroquin- und Hydroxychloroquin-Retinopathie. Thieme, 2010. doi:10.1055/b-0034-40509.
  • Neil W. Schluger et al.: Observational Study of Hydroxychloroquine in Hospitalized Patients with Covid-19. In: Massachusetts Medical Society (Hrsg.): New England Journal of Medicine. 7. Mai 2020, doi:10.1056/NEJMoa2012410, PMID 32379955, PMC 7224609 (freier Volltext).
  • Fachgruppe COVRIIN Am Robert-Koch-Institut: Medikamentöse Therapie bei COVID-19 mit Bewertung durch die Fachgruppe COVRIIN am Robert-Koch-Institut. Hrsg.: RKI. 7. März 2022, S. 13, doi:10.25646/7743.19.
  • Pradelle A, Mainbourg S, Provencher S, Massy E, Grenet G, Lega JC. Deaths induced by compassionate use of hydroxychloroquine during the first COVID-19 wave: an estimate. Biomed Pharmacother. 2024 Jan 2;171:116055. doi:10.1016/j.biopha.2023.116055 Epub ahead of print.

drugbank.ca

europa.eu

echa.europa.eu

fu-berlin.de

refubium.fu-berlin.de

  • Richard Bergholz: Chloroquin-Makulopathie: Risikofaktoren und Früherkennung. Habilitationsschrift. Medizinische Fakultät Charité - Universitätsmedizin Berlin, November 2017. PDF (PDF; 399 kB)

medscape.com

emedicine.medscape.com

nih.gov

ncbi.nlm.nih.gov

  • Jing Xue, Amanda Moyer, Bing Peng, Jinchang Wu, Bethany N. Hannafon: Chloroquine Is a Zinc Ionophore. In: PLoS ONE. Band 9, Nr. 10, 1. Oktober 2014, S. e109180, doi:10.1371/journal.pone.0109180, PMID 25271834, PMC 4182877 (freier Volltext) – (plos.org [abgerufen am 21. März 2020]).
  • Aartjan J. W. te Velthuis, Sjoerd H. E. van den Worm, Amy C. Sims, Ralph S. Baric, Eric J. Snijder: Zn2+ Inhibits Coronavirus and Arterivirus RNA-Polymerase Activity In Vitro and Zinc Ionophores Block the Replication of These Viruses in Cell Culture. In: PLOS Pathogens. Band 6, Nr. 11, 11. April 2010, S. e1001176, doi:10.1371/journal.ppat.1001176, PMID 21079686, PMC 2973827 (freier Volltext).
  • Z. J. Yang, C. E. Chee u. a.: The role of autophagy in cancer: therapeutic implications. In: Molecular cancer therapeutics. Band 10, Nummer 9, September 2011, S. 1533–1541, doi:10.1158/1535-7163.MCT-11-0047, PMID 21878654, PMC 3170456 (freier Volltext) (Review).
  • YS Chhonker, RL Sleightholm, J Li, D Oupický, DJ Murry: Simultaneous quantitation of hydroxychloroquine and its metabolites in mouse blood and tissues using LC-ESI-MS/MS: An application for pharmacokinetic studies. In: J Chromatogr B Analyt Technol Biomed Life Sci., 2018 Jan 1;1072, S. 320–327, PMID 29207305.
  • AK Füzéry, AR Breaud, N Emezienna, S Schools, WA Clarke: A rapid and reliable method for the quantitation of hydroxychloroquine in serum using turbulent flow liquid chromatography-tandem mass spectrometry. In: Clin Chim Acta., 2013 Jun 5,421, S. 79–84, PMID 23485647.
  • J Yeon Lee, J Lee, S Ki Kwok, J Hyeon Ju, K Su Park, SH Park: Factors Related to Blood Hydroxychloroquine Concentration in Patients With Systemic Lupus Erythematosus. In: Arthritis Care Res (Hoboken), 2017 Apr;69(4), S. 536–542, PMID 27390146.
  • AV Kemmenoe: An infant fatality due to hydroxychloroquine poisoning. In: J Anal Toxicol., 1990 May-Jun;14(3), S. 186–188, PMID 2374409.
  • Neil W. Schluger et al.: Observational Study of Hydroxychloroquine in Hospitalized Patients with Covid-19. In: Massachusetts Medical Society (Hrsg.): New England Journal of Medicine. 7. Mai 2020, doi:10.1056/NEJMoa2012410, PMID 32379955, PMC 7224609 (freier Volltext).

pubchem.ncbi.nlm.nih.gov

files.covid19treatmentguidelines.nih.gov

plos.org

journals.plos.org

sanofi.de

mein.sanofi.de

wikidata.org