Anahi-Paula Arias-Loza
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Explore the profile of Anahi-Paula Arias-Loza including associated specialties, affiliations and a list of published articles.
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Articles
9
Citations
232
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0
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Recent Articles
1.
Williams T, Gross R, Arias-Loza A, Nordbeck P, Noerpel M, Cirnu A, et al.
J Am Heart Assoc
. 2025 Mar;
14(5):e038331.
PMID: 40028850
Background: Arrhythmogenic cardiomyopathy (ACM) is a genetic heart muscle disease, which presents with arrhythmias and sudden cardiac death, along with progressive cardiac remodeling and myocardial inflammation. This study aims to...
2.
Christa M, Dithmar F, Weinaus T, Kohlhaas M, Arias-Loza A, Hofmann M, et al.
Sci Rep
. 2024 Jan;
14(1):2426.
PMID: 38287086
Cardiac myocyte sodium (Na) homoeostasis is pivotal in cardiac diseases and heart failure. Intracellular Na ([Na]) is an important regulator of excitation-contraction coupling and mitochondrial energetics. In addition, extracellular Na...
3.
Chen R, Buchmann S, Kroth A, Arias-Loza A, Kohlhaas M, Wagner N, et al.
Circ Res
. 2023 Jan;
132(2):e43-e58.
PMID: 36656972
Background: Nuclear envelope proteins play an important role in the pathogenesis of hereditary cardiomyopathies. Recently, a new form of arrhythmic cardiomyopathy caused by a homozygous mutation (p.L13R) in the inner...
4.
Rizzo G, Gropper J, Piollet M, Vafadarnejad E, Rizakou A, Bandi S, et al.
Cardiovasc Res
. 2022 Aug;
119(3):772-785.
PMID: 35950218
Aims: Macrophages have a critical and dual role in post-ischaemic cardiac repair, as they can foster both tissue healing and damage. Multiple subsets of tissue resident and monocyte-derived macrophages coexist...
5.
Ohto T, Tayeh A, Nishikomori R, Abe H, Hashimoto K, Baba S, et al.
J Autoimmun
. 2022 Feb;
127:102794.
PMID: 35168003
Mutations in IFIH1 gene encoding viral RNA sensor MDA5 have been reported responsible for many interferonopathies, including Aicardi-Goutières syndrome (AGS) and monogenic lupus, however, the pathological link between IFIH1 mutations...
6.
Vafadarnejad E, Rizzo G, Krampert L, Arampatzi P, Arias-Loza A, Nazzal Y, et al.
Circ Res
. 2020 Aug;
127(9):e232-e249.
PMID: 32811295
Rationale: After myocardial infarction, neutrophils rapidly and massively infiltrate the heart, where they promote both tissue healing and damage. Objective: To characterize the dynamics of circulating and cardiac neutrophil diversity...
7.
Ullrich M, Assmus B, Augustin A, Habich H, Abesser M, Martin Machado J, et al.
J Mol Cell Cardiol
. 2019 Feb;
129:13-26.
PMID: 30771306
Cardiac functionality is dependent on a balanced protein turnover. Accordingly, regulated protein decay is critical to maintain cardiac function. Here we demonstrate that deficiency of SPRED2, an intracellular repressor of...
8.
Hayakawa N, Yamane T, Arias-Loza A, Shinaji T, Wakabayashi H, Lapa C, et al.
Int J Cardiol
. 2016 Nov;
227:257-260.
PMID: 27839818
Objectives: Tissue photon attenuation is one of the essential artifacts requiring correction in clinical cardiac positron emission tomography (PET) imaging. However, due to small body size its impact on diagnostic...
9.
Mathes D, Weirather J, Nordbeck P, Arias-Loza A, Burkard M, Pachel C, et al.
J Mol Cell Cardiol
. 2016 Oct;
101:99-105.
PMID: 27771254
Objective: The present study analyzed the effect of CD4 Forkhead box protein 3 negative (Foxp3) T-cells and Foxp3 CD4 T-cells on infarct size in a mouse myocardial ischemia-reperfusion model. Approach...
10.
Pachel C, Mathes D, Arias-Loza A, Heitzmann W, Nordbeck P, Deppermann C, et al.
Arterioscler Thromb Vasc Biol
. 2016 Feb;
36(4):629-35.
PMID: 26916731
Objective: The objective of this study was to investigate the effects of platelet inhibition on myocardial ischemia-reperfusion (IR) injury. Approach And Results: Timely restoration of coronary blood flow after myocardial...