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Lillo MA
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Diffusion of nitric oxide across cell membranes of the vascular wall requires specific connexin-based channels
XF Figueroa, MA Lillo, PS Gaete, MA Riquelme, JC Sáez
Neuropharmacology 75, 471-478, 2013
1102013
Prevention of connexin-43 remodeling protects against Duchenne muscular dystrophy cardiomyopathy
E Himelman, MA Lillo, J Nouet, JP Gonzalez, Q Zhao, LH Xie, H Li, T Liu, ...
The Journal of clinical investigation 130 (4), 1713-1727, 2020
622020
S-nitrosylation of connexin43 hemichannels elicits cardiac stress–induced arrhythmias in Duchenne muscular dystrophy mice
MA Lillo, E Himelman, N Shirokova, LH Xie, D Fraidenraich, JE Contreras
JCI insight 4 (24), 2019
552019
Functional role of connexins and pannexins in the interaction between vascular and nervous system
PS Gaete, MA Lillo, XF Figueroa
Journal of Cellular Physiology 229 (10), 1336-1345, 2014
402014
Cx43 hemichannels contribute to astrocyte-mediated toxicity in sporadic and familial ALS
AA Almad, A Taga, J Joseph, SK Gross, C Welsh, A Patankar, JP Richard, ...
Proceedings of the National Academy of Sciences 119 (13), e2107391119, 2022
362022
Critical contribution of Na+-Ca2+ exchanger to the Ca2+-mediated vasodilation activated in endothelial cells of resistance arteries
MA Lillo, PS Gaete, M Puebla, NM Ardiles, I Poblete, A Becerra, F Simon, ...
322018
Ca2+-activated K+ channels of small and intermediate conductance control eNOS activation through NAD (P) H oxidase
PS Gaete, MA Lillo, NM Ardiles, FR Pérez, XF Figueroa
Free Radical Biology and Medicine 52 (5), 860-870, 2012
292012
CGRP signalling inhibits NO production through pannexin-1 channel activation in endothelial cells
PS Gaete, MA Lillo, M Puebla, I Poblete, XF Figueroa
Scientific Reports 9 (1), 7932, 2019
242019
Novel pannexin-1-coupled signaling cascade involved in the control of endothelial cell function and NO-dependent relaxation
MA Lillo, PS Gaete, M Puebla, PC Burboa, I Poblete, XF Figueroa
Oxidative Medicine and Cellular Longevity 2021, 2021
112021
A novel voltage-clamp/dye uptake assay reveals saturable transport of molecules through CALHM1 and connexin channels
PS Gaete, MA Lillo, W López, Y Liu, W Jiang, Y Luo, AL Harris, ...
Journal of General Physiology 152 (11), e202012607, 2020
82020
Remodeled connexin 43 hemichannels alter cardiac excitability and promote arrhythmias
MA Lillo, M Muñoz, P Rhana, K Gaul-Muller, J Quan, N Shirokova, LH Xie, ...
Journal of General Physiology 155 (7), e202213150, 2023
42023
Endothelial mechanisms for inactivation of inflammation-induced hyperpermeability
PR Nepali, PC Burboa, MA Lillo, PE Mujica, T Iwahashi, J Zhang, ...
American Journal of Physiology-Heart and Circulatory Physiology 324 (5 …, 2023
32023
Connexin and pannexin large-pore channels in microcirculation and neurovascular coupling function
PC Burboa, M Puebla, PS Gaete, WN Durán, MA Lillo
International journal of molecular sciences 23 (13), 7303, 2022
32022
Control and Coordination of Vasomotor Tone in the Microcirculation
MA Lillo, FR Pérez, M Puebla, PS Gaete, XF Figueroa
The Cardiovascular System-Physiology, diagnostics and clinical implications …, 2012
32012
Opening the floodgates: An emerging role for Connexin-43 hemichannels in the heart
MA Lillo, JE Contreras
Cell calcium 97, 102410, 2021
22021
Connexin 43 hemichannels mediate spatial and temporal disease spread in ALS
AA Almad, A Taga, J Joseph, C Welsh, A Patankar, SK Gross, JP Richard, ...
BioRxiv, 2020.03. 14.990747, 2020
22020
eNOS Location is a Fundamental Mechanism for Inactivation of Inflammation‐induced Hyperpermeability
PC Burboa, PR Nepali, MA Lillo, NG Alves, WN Duran
The FASEB Journal 36, 2022
12022
Novel biophysical properties of molecular permeation in CALHM1 and connexin channels
PS Gaete, MA Lillo, WI Lopez, Y Liu, AL Harris, JE Contreras
Biophysical Journal 118 (3), 270a, 2020
12020
Nitric Oxide Increases Endothelial Cell Membrane Permeability via S-Nitrosylation-Mediated Opening of Cx43 Hemichannels
MA Lillo, JE Contreras, XF Figueroa
Biophysical Journal 110 (3), 118a, 2016
12016
CGRP release from perivascular capsaicin‐sensitive sensory nerves regulates vascular function through pannexin‐1 channel opening (1075.4)
P Gaete, M Lillo, I Poblete, X Figueroa
The FASEB Journal 28, 1075.4, 2014
12014
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Articles 1–20