Publications by authors named "Moore O"

Purpose Of Review: Catecholaminergic polymorphic ventricular tachycardia (CPVT) is a devastating heritable channelopathy that can lead to sudden cardiac death in children and young adults. This review aims to explore genetics, the cardiac and extracardiac manifestations of mutations associated with CPVT, and the challenges involved with managing phenotypically variable variants.

Recent Findings: The understanding of the genetics and mechanisms of CPVT continues to grow with recent discoveries including alternative splicing of cardiac TRDN and calmodulin gene variants.

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Controls on organic carbon preservation in marine sediments remain controversial but crucial for understanding past and future climate dynamics. Here we develop a conceptual-mathematical model to determine the key processes for the preservation of organic carbon. The model considers the major processes involved in the breakdown of organic carbon, including dissolved organic carbon hydrolysis, mixing, remineralization, mineral sorption and molecular transformation.

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Background: Catecholaminergic polymorphic ventricular tachycardia (CPVT) is an inherited arrhythmia disorder associated with lethal arrhythmias. Most CPVT cases are caused by inherited variants in the gene encoding ryanodine receptor type 2 (RYR2).

Objective: The goal of this study was to investigate the structure-activity relationship of tetracaine derivatives and to test a lead compound in a mouse model of CPVT.

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Introduction: The recently developed Freiburg Index of Post-TIPS Survival (FIPS) allows improved risk classification of patients with decompensated cirrhosis allocated to transjugular intrahepatic portosystemic shunt (TIPS) implantation. This study investigated the prognostic value of the FIPS in patients hospitalized with acute decompensation of cirrhosis (AD), outside the setting of TIPS implantation.

Methods: A total of 1133 patients with AD were included in a retrospective, multi-centre study.

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Coronary heart disease (CHD) is a prevalent cardiac disease that causes over 370,000 deaths annually in the USA. In CHD, occlusion of a coronary artery causes ischemia of the cardiac muscle, which results in myocardial infarction (MI). Junctophilin-2 (JPH2) is a membrane protein that ensures efficient calcium handling and proper excitation-contraction coupling.

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Article Synopsis
  • * Results showed a complete reduction in ventricular arrhythmias in treated mice, both at 6 weeks and 12 months post-injection, indicating the long-term effectiveness of the treatment.
  • * The genome editing was found to be safe, with no negative effects on normal heart function or structure, suggesting a potential therapeutic avenue for CPVT.
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Objective: To evaluate and compare magnetic sphincter augmentation (MSA) device sizing protocols on postoperative outcomes and dysphagia.

Summary Background Data: Among predictors of dysphagia after MSA, device size is the only factor that may be modified. Many centers have adopted protocols to increase device size.

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Cardiac arrhythmias are a common cardiac condition that might lead to fatal outcomes. A better understanding of the molecular and cellular basis of arrhythmia mechanisms is necessary for the development of better treatment modalities. To aid these efforts, various mouse models have been developed for studying cardiac arrhythmias.

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The mobility of chromium (Cr) is controlled by minerals, especially iron (oxyhydr)oxides. The influence of organic carbon (OC) on the mobility and fate of Cr(VI) during Fe(II)-induced transformation of iron (oxyhydr)oxide, however, is still unclear. We investigate how low-weight carboxyl-rich OC influences the transformation of ferrihydrite (Fh) and controls the mobility of Cr(VI/III) in reducing environments and how Cr influences the formation of secondary Fe minerals and the stabilization of OC.

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Objective: To describe the feasibility of hysteroscopy-assisted suction curettage for early pregnancy loss and to investigate whether it reduces the rates of retained products of conception (RPOC) and intrauterine adhesions (IUA).

Design: Prospective single-arm cohort study.

Setting: University-affiliated Department of Obstetrics and Gynecology.

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Chronic kidney disease (CKD) is associated with a higher risk of atrial fibrillation (AF). The mechanistic link between CKD and AF remains elusive. IL-1β, a main effector of NLR family pyrin domain-containing 3 (NLRP3) inflammasome activation, is a key modulator of conditions associated with inflammation, such as AF and CKD.

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The balance between degradation and preservation of sedimentary organic carbon (OC) is important for global carbon and oxygen cycles. The relative importance of different mechanisms and environmental conditions contributing to marine sedimentary OC preservation, however, remains unclear. Simple organic molecules can be geopolymerized into recalcitrant forms by means of the Maillard reaction, although reaction kinetics at marine sedimentary temperatures are thought to be slow.

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This article reviews progress in the field of cardiac genome editing, in particular, its potential utility in treating cardiac arrhythmias. First, we discuss genome editing methods by which DNA can be disrupted, inserted, deleted, or corrected in cardiomyocytes. Second, we provide an overview of in vivo genome editing in preclinical models of heritable and acquired arrhythmias.

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Objective: This study aimed to evaluate the feasibility and efficacy of in-office hysteroscopic ablation of submucous uterine fibroids using a diode laser.

Method: A pilot study was conducted between January 2018 and January 2019 in a tertiary care university hospital. Patients with at least one symptomatic, class 0-2 FIGO classification, uterine fibroid ≤7 cm in size were eligible for inclusion.

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Calcium (Ca) ions are a key second messenger involved in the rhythmic excitation and contraction of cardiomyocytes throughout the heart. Proper function of Ca-handling proteins is required for healthy cardiac function, whereas disruption in any of these can cause cardiac arrhythmias. This comprehensive review provides a broad overview of the roles of Ca-handling proteins and their regulators in healthy cardiac function and the mechanisms by which mutations in these proteins contribute to inherited arrhythmias.

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Article Synopsis
  • The study investigates how minerals, particularly marine sediment clays, affect the persistence of organic carbon by adsorbing methylamines, which are key for methane production.
  • The significant adsorption of methylamines by clays reduces their levels in solution by up to 40% and slows down methane production by a methanogen by about 25%.
  • The research highlights that the interactions between minerals and organic carbon play a crucial role in regulating methane cycling in marine sediments.
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Introduction And Aim: Endometrial polyps (EPs) are a common gynecologic condition, associated with abnormal uterine bleeding (AUB), infertility, and premalignant and malignant conditions. Technologies for diagnosis and treatment of EPs are constantly evolving. We aim to provide an updated review on diagnosis and management options for patients with EPs.

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Article Synopsis
  • Enhanced diastolic calcium release from ryanodine receptor type-2 (RyR2) is linked to the development of atrial fibrillation (AF), with ongoing debates about the mechanisms driving changes in RyR2 function.
  • The study focused on SPEG, a regulator of RyR2 phosphorylation, by analyzing right atrial biopsies from AF patients and utilizing genetically modified mice.
  • Findings revealed lower SPEG levels in AF patients, and SPEG-deficient mice showed increased AF susceptibility and diastolic calcium leak, indicating SPEG's crucial role in the mechanisms underlying AF.
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Bio-based platform molecules such as itaconic, fumaric, and muconic acid offer much promise in the formation of sustainable unsaturated polyester resins upon reaction with suitable diols and polyols. The C=C bonds present in these polyester chains allows for post-polymerization modification and such moieties are conventionally utilized in curing processes during the manufacture of coatings. The C=C modification sites can also act as points to add useful pendants which can alter the polymers final properties such as glass transition temperature, biodegradability, hardness, polarity, and strength.

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