Now showing items 1-5 of 5

    • Catalán Díaz, Mabel Elizabeth; Castro Castillo, Vicente; Gajardo de la Fuente, Javier; Aguilera, Jocelyn; Ferreira, Jorge; Ramires Fernández, Ricardo; Olmedo Alegría, Ivonne Odette; Molina Berríos, Alfredo Enrique; Palominos, Charlotte; Valencia, Marcelo; Domínguez, Marta; Souto, José A.; Jara Sandoval, José (Royal Society of Chemistry, 2020)
      Continuous flow chemistry was used for the synthesis of a series of delocalized lipophilic triphenylphosphonium cations (DLCs) linked by means of an ester functional group to several hydroxylated benzoic acid derivatives ...
    • Sánchez Vergara, Gina; Chalmers, Stefanie; Ahumada, Xavier; Montecinos, Luis; Olmedo Alegría, Ivonne Odette; Eisner, Verónica; Riveros, Ana; Kogan, Marcelo J.; Lavandero González, Sergio; Pedrozo Cibils, Zully; Donoso Laurent, Paulina (Public Library Science, 2020)
      The heart is critically dependent on mitochondrial respiration for energy supply. Ischemia decreases oxygen availability, with catastrophic consequences for cellular energy systems. After a few minutes of ischemia, the ...
    • Olmedo Alegría, Ivonne; Pino Tapia, Gonzalo; Riquelme Meléndez, Jaime; Aranguiz, Pablo; Díaz, Magda C.; López Crisosto, Camila; Lavandero González, Sergio; Donoso Laurent, Paulina; Pedrozo Cibils, Zully; Sánchez Vergara, Gina (Elsevier, 2020)
      Cardiomyocyte loss is the main cause of myocardial dysfunction following an ischemia-reperfusion (IR) injury. Mitochondrial dysfunction and altered mitochondrial network dynamics play central roles in cardiomyocyte death. ...
    • Catalán Díaz, Mabel; Olmedo Alegría, Ivonne; Faúndez, Jennifer; Jara Sandoval, José (MDPI, 2020)
      Interest in tumor cell mitochondria as a pharmacological target has been rekindled in recent years. This attention is due in part to new publications documenting heterogenous characteristics of solid tumors, including ...
    • Conejeros, Carolina; Parra Ortiz, Valentina; Sánchez Vergara, Gina; Pedrozo Cibils, Zully; Olmedo Alegría, Ivonne (Elsevier, 2020)
      Cardiac hypertrophy is an adaptive response to manage an excessive cardiac workload and maintain normal cardiac function. However, sustained hypertrophy leads to cardiomyopathy, cardiac failure, and death. Adrenergic ...