Salta al contenuto
VuFind
    • English
    • Deutsch
    • Español
    • Français
    • Italiano
    • 日本語
    • Nederlands
    • Português
    • Português (Brasil)
    • 中文(简体)
    • 中文(繁體)
    • Türkçe
    • עברית
    • Gaeilge
    • Cymraeg
    • Ελληνικά
    • Català
    • Euskara
    • Русский
    • Čeština
    • Suomi
    • Svenska
    • polski
    • Dansk
    • slovenščina
    • اللغة العربية
    • বাংলা
    • Galego
    • Tiếng Việt
    • Hrvatski
    • हिंदी
    • Հայերէն
    • Українська
    • Sámegiella
    • Монгол
Avanzata
  • Human epicardial adipose tissu...
  • Citazione
  • Invia SMS
  • Invia email
  • Stampa
  • Esporta il record
    • Esporta a RefWorks
    • Esporta a EndNoteWeb
    • Esporta a EndNote
  • PLink permanente
Human epicardial adipose tissue-secreted miR-92a-3p regulates myocardial redox state via paracrine signalling: implications for cardiovascular clinical outcomes

Human epicardial adipose tissue-secreted miR-92a-3p regulates myocardial redox state via paracrine signalling: implications for cardiovascular clinical outcomes

Dettagli Bibliografici
Autori principali: Badi, I, Carena, MC, Polkinghorne, M, Akoumianakis, I, Douglas, G, Kotanidis, CP, Akawi, N, Antonopoulos, AS, Psarros, C, Sayeed, R, Krasopoulos, G, Srivastava, V, Channon, KM, Casadei, B, Antoniades, C
Natura: Journal article
Lingua:English
Pubblicazione: Oxford University Press 2023
  • Posseduto
  • Descrizione
  • Documenti analoghi
  • MARC21

Documenti analoghi

  • Role of human epicardial adipose tissue–derived miR-92a-3p in myocardial redox state
    di: Carena, MC, et al.
    Pubblicazione: (2023)
  • Effects of canagliflozin on human myocardial redox signalling: clinical implications
    di: Kondo, H, et al.
    Pubblicazione: (2021)
  • A human arterial transcriptomic signature predicts major adverse cardiac events and identifies novel, redox-related therapeutic targets within the vascular wall
    di: Kotanidis, CP, et al.
    Pubblicazione: (2021)
  • Direct effects of canagliflozin on human myocardial redox signalling: a novel role for SGLT1 inhibition
    di: Kondo, H, et al.
    Pubblicazione: (2020)
  • Wnt5a contributes to human atherosclerosis via novel USP17 redox signalling
    di: Akoumianakis, I, et al.
    Pubblicazione: (2019)

Opzioni di ricerca

  • Ultime ricerche
  • Ricerca avanzata

Cerca

  • Scorri il catalogo
  • Scorri in ordine alfabetico
  • Esplora selezioni
  • Materiali riservati (per i corsi)
  • Nuovi documenti

Serve aiuto?

  • Suggerimenti per la ricerca
  • Chiedi al bibliotecario
  • FAQ