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  1. Next-generation care pathways for allergic rhinitis and asthma multimorbidity: A model for multimorbid non-communicable diseases—Meeting Report (Part 2)
  2. Next-generation care pathways for allergic rhinitis and asthma multimorbidity: A model for multimorbid non-communicable diseases—Meeting Report (Part 1)
  3. Mobile Technology in Allergic Rhinitis: Evolution in Management or Revolution in Health and Care?

    Smart devices and Internet-based applications (apps) are largely used in allergic rhinitis and may help to address some unmet needs. However, these new tools need to first of all be tested for privacy rules, acceptability, usability, and... mehr

     

    Smart devices and Internet-based applications (apps) are largely used in allergic rhinitis and may help to address some unmet needs. However, these new tools need to first of all be tested for privacy rules, acceptability, usability, and cost-effectiveness. Second, they should be evaluated in the frame of the digital transformation of health, their impact on health care delivery, and health outcomes. This review (1) summarizes some existing mobile health apps for allergic rhinitis and reviews those in which testing has been published, (2) discusses apps that include risk factors of allergic rhinitis, (3) examines the impact of mobile health apps in phenotype discovery, (4) provides real-world evidence for care pathways, and finally (5) discusses mobile health tools enabling the digital transformation of health and care, empowering citizens, and building a healthier society.

     

    Export in Literaturverwaltung   RIS-Format
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    Quelle: BASE Fachausschnitt AVL
    Sprache: Englisch
    Medientyp: Aufsatz aus einer Zeitschrift
    Format: Online
    Schlagworte: App; Digital transformation of health; MASK; mHealth; Mobile technology; Rhiniti; Delivery of Health Care; Europe; Human; Mobile Application; Phenotype; Rhinitis; Allergic; Risk Factor; Telemedicine; Smartphone
  4. Cabbage and fermented vegetables: From death rate heterogeneity in countries to candidates for mitigation strategies of severe COVID-19
    Autor*in: Bousquet J.; Anto J. M.; Czarlewski W.; Haahtela T.; Fonseca S. C.; Iaccarino G.; Blain H.; Vidal A.; Sheikh A.; Akdis C. A.; Zuberbier T.; Hamzah Abdul Latiff A.; Abdullah B.; Aberer W.; Abusada N.; Adcock I.; Afani A.; Agache I.; Aggelidis X.; Agustin J.; Akdis M.; Al-Ahmad M.; Al-Zahab Bassam A.; Alburdan H.; Aldrey-Palacios O.; Alvarez Cuesta E.; Alwan Salman H.; Alzaabi A.; Amade S.; Ambrocio G.; Angles R.; Annesi-Maesano I.; Ansotegui I. J.; Anto J.; Ara Bardajo P.; Arasi S.; Arshad H.; Cristina Artesani M.; Asayag E.; Avolio F.; Azhari K.; Bachert C.; Bagnasco D.; Baiardini I.; Bajrovic N.; Bakakos P.; Bakeyala Mongono S.; Balotro-Torres C.; Barba S.; Barbara C.; Barbosa E.; Barreto B.; Bartra J.; Bateman E. D.; Battur L.; Bedbrook A.; Bedolla Barajas M.; Beghe B.; Bekere A.; Bel E.; Ben Kheder A.; Benson M.; Berghea E. C.; Bergmann K. -C.; Bernardini R.; Bernstein D.; Bewick M.; Bialek S.; Bialoszewski A.; Bieber T.; Billo N. E.; Bilo M. B.; Bindslev-Jensen C.; Bjermer L.; Bobolea I.; Bochenska Marciniak M.; Bond C.; Boner A.; Bonini M.; Bonini S.; Bosnic-Anticevich S.; Bosse I.; Botskariova S.; Bouchard J.; Boulet L. -P.; Bourret R.; Bousquet P.; Braido F.; Briggs A.; Brightling C. E.; Brozek J.; Brussino L.; Buhl R.; Bumbacea R.; Buquicchio R.; Burguete Cabanas M. -T.; Bush A.; Busse W. W.; Buters J.; Caballero-Fonseca F.; Calderon M. A.; Calvo M.; Camargos P.; Camuzat T.; Canevari F. R.; Cano A.; Canonica G. W.; Capriles-Hulett A.; Caraballo L.; Cardona V.; Carlsen K. -H.; Carmon Pirez J.; Caro J.; Carr W.; Carreiro-Martins P.; Carreon-Asuncion F.; Carriazo A. -M.; Casale T.; Castor M. -A.; Castro E.; Caviglia A. G.; Cecchi L.; Cepeda Sarabia A.; Chandrasekharan R.; Chang Y. -S.; Chato-Andeza V.; Chatzi L.; Chatzidaki C.; Chavannes N. H.; Chaves Loureiro C.; Chelninska M.; Chen Y.; Cheng L.; Chinthrajah S.; Chivato T.; Chkhartishvili E.; Christoff G.; Chrystyn H.; Chu D. K.; Chua A.; Chuchalin A.; Chung K. F.; Ciceran A.; Cingi C.; Ciprandi G.; Cirule I.; Coelho A. C.; Compalati E.; Constantinidis J.; Correia de Sousa J.; Costa E. M.; Costa D.; Costa Dominguez M. D. C.; Coste A.; Cottini M.; Cox L.; Crisci C.; Crivellaro M. A.; Cruz A. A.; Cullen J.; Custovic A.; Cvetkovski B.; D'Amato G.; da Silva J.; Dahl R.; Dahlen S. -E.; Daniilidis V.; DarjaziniNahhas L.; Darsow U.; Davies J.; de Blay F.; De Feo G.; De Guia E.; de los Santos C.; De Manuel Keenoy E.; De Vries G.; Deleanu D.; Demoly P.; Denburg J.; Devillier P.; Didier A.; Dimic Janjic S.; Dimou M.; Dinh-Xuan A. T.; Djukanovic R.; Do Ceu Texeira M.; Dokic D.; Dominguez Silva M. G.; Douagui H.; Douladiris N.; Doulaptsi M.; Dray G.; Dubakiene R.; Dupas E.; Durham S.; Duse M.; Dykewicz M.; Ebo D.; Edelbaher N.; Eiwegger T.; Eklund P.; El-Gamal Y.; El-Sayed Z. A.; El-Sayed S. S.; El-Seify M.; Emuzyte R.; Enecilla L.; Erhola M.; Espinoza H.; Espinoza Contreras J. G.; Farrell J.; Fernandez L.; Fink Wagner A.; Fiocchi A.; Fokkens W. J.; Lenia F.; Fonseca J. A.; Fontaine J. -F.; Forastiere F.; Fuentes Perez J. M.; Gaerlan-Resureccion E.; Gaga M.; Galvez Romero J. L.; Gamkrelidze A.; Garcia A.; Garcia Cobas C. Y.; Garcia Cruz M. D. L. L. H.; Gayraud J.; Gelardi M.; Gemicioglu B.; Gennimata D.; Genova S.; Gereda J.; Gerth van Wijk R.; Giuliano A.; Gomez M.; Gonzalez Diaz S.; Gotua M.; Grigoreas C.; Grisle I.; Gualteiro L.; Guidacci M.; Guldemond N.; Gutter Z.; Guzman A.; Halloum R.; Halpin D.; Hamelmann E.; Hammadi S.; Harvey R.; Heffler E.; Heinrich J.; Hejjaoui A.; Hellquist-Dahl B.; Hernandez Velazquez L.; Hew M.; Hossny E.; Howarth P.; Hrubisko M.; Huerta Villalobos Y. R.; Humbert M.; Salina H.; Hyland M.; Ibrahim M.; Ilina N.; Illario M.; Incorvaia C.; Infantino A.; Irani C.; Ispayeva Z.; Ivancevich J. -C.; E. J. Jares E.; Jarvis D.; Jassem E.; Jenko K.; Jimeneracruz Uscanga R. D.; Johnston S. L.; Joos G.; Jost M.; Julge K.; Jung K. -S.; Just J.; Jutel M.; Kaidashev I.; Kalayci O.; Kalyoncu F.; Kapsali J.; Kardas P.; Karjalainen J.; Kasala C. A.; Katotomichelakis M.; Kavaliukaite L.; Kazi B. S.; Keil T.; Keith P.; Khaitov M.; Khaltaev N.; Kim Y. -Y.; Kirenga B.; Kleine-Tebbe J.; Klimek L.; Koffi N'Goran B.; Kompoti E.; Kopac P.; Koppelman G.; KorenJeverica A.; Koskinen S.; Kosnik M.; Kostov K. V.; Kowalski M. L.; Kralimarkova T.; Kramer Vrscaj K.; Kraxner H.; Kreft S.; Kritikos V.; Kudlay D.; Kuitunen M.; Kull I.; Kuna P.; Kupczyk M.; Kvedariene V.; Kyriakakou M.; Lalek N.; Landi M.; Lane S.; Larenas-Linnemann D.; Lau S.; Laune D.; Lavrut J.; Le L.; Lenzenhuber M.; Lessa M.; Levin M.; Li J.; Lieberman P.; Liotta G.; Lipworth B.; Liu X.; Lobo R.; Lodrup Carlsen K. C.; Lombardi C.; Louis R.; Loukidis S.; Lourenco O.; Luna Pech J. A.; Madjar B.; Maggi E.; Magnan A.; Mahboub B.; Mair A.; Mais Y.; Maitland van der Zee A. -H.; Makela M.; Makris M.; Malling H. -J.; Mandajieva M.; Manning P.; Manousakis M.; Maragoudakis P.; Marseglia G.; Marshall G.; Reza Masjedi M.; Maspero J. F.; Matta Campos J. J.; Maurer M.; Mavale-Manuel S.; Meco C.; Melen E.; Melioli G.; Melo-Gomes E.; Meltzer E. O.; Menditto E.; Menzies-Gow A.; Merk H.; Michel J. -P.; Micheli Y.; Miculinic N.; Midao L.; Mihaltan F.; Mikos N.; Milanese M.; Milenkovic B.; Mitsias D.; Moalla B.; Moda G.; Mogica Martinez M. D.; Mohammad Y.; Moin M.; Molimard M.; Momas I.; Mommers M.; Monaco A.; Montefort S.; Mora D.; Morais-Almeida M.; Mosges R.; Mostafa B.; Mullol J.; Munter L.; Muraro A.; Murray R.; Musarra A.; Mustakov T.; Naclerio R.; Nadeau K. C.; Nadif R.; Nakonechna A.; Namazova-Baranova L.; Navarro-Locsin G.; Neffen H.; Nekam K.; Neou A.; Nettis E.; Neuberger D.; Nicod L.; Nicola S.; Niederberger-Leppin V.; Niedoszytko M.; Nieto A.; Novellino E.; Nunes E.; Nyembue D.; O'Hehir R.; Odjakova C.; Ohta K.; Okamoto Y.; Okubo K.; Oliver B.; Onorato G. L.; Pia Orru M.; Ouedraogo S.; Ouoba K.; Paggiaro P. L.; Pagkalos A.; Pajno G.; Pala G.; Palaniappan S. P.; Pali-Scholl I.; Palkonen S.; Palmer S.; Panaitescu Bunu C.; Panzner P.; Papadopoulos N. G.; Papanikolaou V.; Papi A.; Paralchev B.; Paraskevopoulos G.; Park H. -S.; Passalacqua G.; Patella V.; Pavord I.; Pawankar R.; Pedersen S.; Peleve S.; Pellegino S.; Pereira A.; Perez T.; Perna A.; Peroni D.; Pfaar O.; Pham-Thi N.; Pigearias B.; Pin I.; Piskou K.; Pitsios C.; Plavec D.; Poethig D.; Pohl W.; Poplas Susic A.; Popov T. A.; Portejoie F.; Potter P.; Poulsen L.; Prados-Torres A.; Prarros F.; Price D.; Prokopakis E.; Puggioni F.; Puig-Domenech E.; Puy R.; Rabe K.; Raciborski F.; Ramos J.; Recto M. T.; Reda S. M.; Regateiro F. S.; Reider N.; Reitsma S.; Repka-Ramirez S.; Ridolo E.; Rimmer J.; Rivero Yeverino D.; Angelo Rizzo J.; Robalo-Cordeiro C.; Roberts G.; Roche N.; Rodriguez Gonzalez M.; Rodriguez Zagal E.; Rolla G.; Rolland C.
    Erschienen: 2021

    Large differences in COVID-19 death rates exist between countries and between regions of the same country. Some very low death rate countries such as Eastern Asia, Central Europe, or the Balkans have a common feature of eating large quantities of... mehr

     

    Large differences in COVID-19 death rates exist between countries and between regions of the same country. Some very low death rate countries such as Eastern Asia, Central Europe, or the Balkans have a common feature of eating large quantities of fermented foods. Although biases exist when examining ecological studies, fermented vegetables or cabbage have been associated with low death rates in European countries. SARS-CoV-2 binds to its receptor, the angiotensin-converting enzyme 2 (ACE2). As a result of SARS-CoV-2 binding, ACE2 downregulation enhances the angiotensin II receptor type 1 (AT1R) axis associated with oxidative stress. This leads to insulin resistance as well as lung and endothelial damage, two severe outcomes of COVID-19. The nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is the most potent antioxidant in humans and can block in particular the AT1R axis. Cabbage contains precursors of sulforaphane, the most active natural activator of Nrf2. Fermented vegetables contain many lactobacilli, which are also potent Nrf2 activators. Three examples are: kimchi in Korea, westernized foods, and the slum paradox. It is proposed that fermented cabbage is a proof-of-concept of dietary manipulations that may enhance Nrf2-associated antioxidant effects, helpful in mitigating COVID-19 severity.

     

    Export in Literaturverwaltung   RIS-Format
      BibTeX-Format
    Quelle: BASE Fachausschnitt AVL
    Sprache: Englisch
    Medientyp: Aufsatz aus einer Zeitschrift
    Format: Online
    Schlagworte: cabbage; diet; fermented vegetable; kimchi; Lactobacillu; sulforaphane
    Lizenz:

    info:eu-repo/semantics/openAccess