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1.
Cardiovasc Diabetol ; 23(1): 252, 2024 Jul 15.
Article in English | MEDLINE | ID: mdl-39010053

ABSTRACT

Sodium-glucose cotransporter type 2 inhibitors (SGLT2i) were initially recommended as oral anti-diabetic drugs to treat type 2 diabetes (T2D), by inhibiting SGLT2 in proximal tubule and reduce renal reabsorption of sodium and glucose. While many clinical trials demonstrated the tremendous potential of SGLT2i for cardiovascular diseases. 2022 AHA/ACC/HFSA guideline first emphasized that SGLT2i were the only drug class that can cover the entire management of heart failure (HF) from prevention to treatment. Subsequently, the antiarrhythmic properties of SGLT2i have also attracted attention. Although there are currently no prospective studies specifically on the anti-arrhythmic effects of SGLT2i. We provide clues from clinical and fundamental researches to identify its antiarrhythmic effects, reviewing the evidences and mechanism for the SGLT2i antiarrhythmic effects and establishing a novel paradigm involving intracellular sodium, metabolism and autophagy to investigate the potential mechanisms of SGLT2i in mitigating arrhythmias.


Subject(s)
Anti-Arrhythmia Agents , Arrhythmias, Cardiac , Diabetes Mellitus, Type 2 , Sodium-Glucose Transporter 2 Inhibitors , Sodium-Glucose Transporter 2 Inhibitors/therapeutic use , Sodium-Glucose Transporter 2 Inhibitors/adverse effects , Humans , Animals , Diabetes Mellitus, Type 2/drug therapy , Diabetes Mellitus, Type 2/diagnosis , Anti-Arrhythmia Agents/therapeutic use , Anti-Arrhythmia Agents/adverse effects , Arrhythmias, Cardiac/drug therapy , Arrhythmias, Cardiac/physiopathology , Arrhythmias, Cardiac/prevention & control , Arrhythmias, Cardiac/metabolism , Treatment Outcome , Heart Rate/drug effects , Autophagy/drug effects , Sodium-Glucose Transporter 2/metabolism , Action Potentials/drug effects , Sodium/metabolism
2.
Elife ; 122024 Jul 10.
Article in English | MEDLINE | ID: mdl-38985568

ABSTRACT

Accurate tracking of the same neurons across multiple days is crucial for studying changes in neuronal activity during learning and adaptation. Advances in high-density extracellular electrophysiology recording probes, such as Neuropixels, provide a promising avenue to accomplish this goal. Identifying the same neurons in multiple recordings is, however, complicated by non-rigid movement of the tissue relative to the recording sites (drift) and loss of signal from some neurons. Here, we propose a neuron tracking method that can identify the same cells independent of firing statistics, that are used by most existing methods. Our method is based on between-day non-rigid alignment of spike-sorted clusters. We verified the same cell identity in mice using measured visual receptive fields. This method succeeds on datasets separated from 1 to 47 days, with an 84% average recovery rate.


Subject(s)
Neurons , Animals , Neurons/physiology , Mice , Electrophysiology/methods , Electrophysiological Phenomena , Action Potentials/physiology , Cell Tracking/methods
3.
Nat Commun ; 15(1): 5861, 2024 Jul 12.
Article in English | MEDLINE | ID: mdl-38997274

ABSTRACT

Electrical stimulation is a key tool in neuroscience, both in brain mapping studies and in many therapeutic applications such as cochlear, vestibular, and retinal neural implants. Due to safety considerations, stimulation is restricted to short biphasic pulses. Despite decades of research and development, neural implants lead to varying restoration of function in patients. In this study, we use computational modeling to provide an explanation for how pulsatile stimulation affects axonal channels and therefore leads to variability in restoration of neural responses. The phenomenological explanation is transformed into equations that predict induced firing rate as a function of pulse rate, pulse amplitude, and spontaneous firing rate. We show that these equations predict simulated responses to pulsatile stimulation with a variety of parameters as well as several features of experimentally recorded primate vestibular afferent responses to pulsatile stimulation. We then discuss the implications of these effects for improving clinical stimulation paradigms and electrical stimulation-based experiments.


Subject(s)
Electric Stimulation , Animals , Electric Stimulation/methods , Models, Neurological , Macaca mulatta , Action Potentials/physiology , Neurons/physiology , Computer Simulation , Humans , Vestibule, Labyrinth/physiology
4.
PLoS Comput Biol ; 20(7): e1012220, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38950068

ABSTRACT

Evidence for metastable dynamics and its role in brain function is emerging at a fast pace and is changing our understanding of neural coding by putting an emphasis on hidden states of transient activity. Clustered networks of spiking neurons have enhanced synaptic connections among groups of neurons forming structures called cell assemblies; such networks are capable of producing metastable dynamics that is in agreement with many experimental results. However, it is unclear how a clustered network structure producing metastable dynamics may emerge from a fully local plasticity rule, i.e., a plasticity rule where each synapse has only access to the activity of the neurons it connects (as opposed to the activity of other neurons or other synapses). Here, we propose a local plasticity rule producing ongoing metastable dynamics in a deterministic, recurrent network of spiking neurons. The metastable dynamics co-exists with ongoing plasticity and is the consequence of a self-tuning mechanism that keeps the synaptic weights close to the instability line where memories are spontaneously reactivated. In turn, the synaptic structure is stable to ongoing dynamics and random perturbations, yet it remains sufficiently plastic to remap sensory representations to encode new sets of stimuli. Both the plasticity rule and the metastable dynamics scale well with network size, with synaptic stability increasing with the number of neurons. Overall, our results show that it is possible to generate metastable dynamics over meaningful hidden states using a simple but biologically plausible plasticity rule which co-exists with ongoing neural dynamics.


Subject(s)
Action Potentials , Models, Neurological , Nerve Net , Neuronal Plasticity , Neurons , Synapses , Neuronal Plasticity/physiology , Nerve Net/physiology , Action Potentials/physiology , Neurons/physiology , Synapses/physiology , Animals , Cerebral Cortex/physiology , Computational Biology , Humans , Computer Simulation
5.
Proc Natl Acad Sci U S A ; 121(28): e2403143121, 2024 Jul 09.
Article in English | MEDLINE | ID: mdl-38959041

ABSTRACT

Currently, the nanofluidic synapse can only perform basic neuromorphic pulse patterns. One immediate problem that needs to be addressed to further its capability of brain-like computing is the realization of a nanofluidic spiking device. Here, we report the use of a poly(3,4-ethylenedioxythiophene) polystyrene sulfonate membrane to achieve bionic ionic current-induced spiking. In addition to the simulation of various electrical pulse patterns, our synapse could produce transmembrane ionic current-induced spiking, which is highly analogous to biological action potentials with similar phases and excitability. Moreover, the spiking properties could be modulated by ions and neurochemicals. We expect that this work could contribute to biomimetic spiking computing in solution.


Subject(s)
Action Potentials , Polystyrenes , Synapses , Action Potentials/physiology , Synapses/physiology , Polystyrenes/chemistry , Nanotechnology/methods , Nanotechnology/instrumentation
8.
Int J Mol Sci ; 25(13)2024 Jun 22.
Article in English | MEDLINE | ID: mdl-38999984

ABSTRACT

Enhanced electrical activity in detrusor smooth muscle (DSM) cells is a key factor in detrusor overactivity which causes overactive bladder pathological disorders. Transient receptor potential melastatin-4 (TRPM4) channels, which are calcium-activated cation channels, play a role in regulating DSM electrical activities. These channels likely contribute to depolarizing the DSM cell membrane, leading to bladder overactivity. Our research focuses on understanding TRPM4 channel function in the DSM cells of mice, using computational modeling. We aimed to create a detailed computational model of the TRPM4 channel based on existing electrophysiological data. We employed a modified Hodgkin-Huxley model with an incorporated TRP-like current to simulate action potential firing in response to current and synaptic stimulus inputs. Validation against experimental data showed close agreement with our simulations. Our model is the first to analyze the TRPM4 channel's role in DSM electrical activity, potentially revealing insights into bladder overactivity. In conclusion, TRPM4 channels are pivotal in regulating human DSM function, and TRPM4 channel inhibitors could be promising targets for treating overactive bladder.


Subject(s)
Computer Simulation , TRPM Cation Channels , Urinary Bladder, Overactive , TRPM Cation Channels/metabolism , Urinary Bladder, Overactive/metabolism , Urinary Bladder, Overactive/physiopathology , Animals , Mice , Humans , Urinary Bladder/metabolism , Urinary Bladder/physiopathology , Action Potentials , Electrophysiological Phenomena , Muscle, Smooth/metabolism , Muscle, Smooth/physiopathology
15.
Curr Protoc ; 4(7): e1101, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38980221

ABSTRACT

Cardiovascular diseases have emerged as one of the leading causes of human mortality, but the discovery of new drugs has been hindered by the absence of suitable in vitro platforms. In recent decades, continuously refined protocols for differentiating human induced pluripotent stem cells (hiPSCs) into hiPSC-derived cardiomyocytes (hiPSC-CMs) have significantly advanced disease modeling and drug screening; however, this has led to an increasing need to monitor the function of hiPSC-CMs. The precise regulation of action potentials (APs) and intracellular calcium (Ca2+) transients is critical for proper excitation-contraction coupling and cardiomyocyte function. These important parameters are usually adversely affected in cardiovascular diseases or under cardiotoxic conditions and can be measured using optical imaging-based techniques. However, this procedure is complex and technologically challenging. We have adapted the IonOptix system to simultaneously measure APs and Ca2+ transients in hiPSC-CMs loaded with the fluorescent dyes FluoVolt and Rhod 2, respectively. This system serves as a powerful high-throughput platform to facilitate the discovery of new compounds to treat cardiovascular diseases with the cellular phenotypes of abnormal APs and Ca2+ handling. Here, we present a comprehensive protocol for hiPSC-CM preparation, device setup, optical imaging, and data analysis. © 2024 Wiley Periodicals LLC. Basic Protocol 1: Maintenance and seeding of hiPSC-CMs Basic Protocol 2: Simultaneous detection of action potentials and Ca2+ transients in hiPSC-CMs.


Subject(s)
Action Potentials , Calcium , Induced Pluripotent Stem Cells , Myocytes, Cardiac , Optical Imaging , Humans , Induced Pluripotent Stem Cells/metabolism , Induced Pluripotent Stem Cells/cytology , Induced Pluripotent Stem Cells/drug effects , Myocytes, Cardiac/metabolism , Myocytes, Cardiac/drug effects , Action Potentials/drug effects , Calcium/metabolism , Optical Imaging/methods , Cell Differentiation/drug effects
16.
BMC Cardiovasc Disord ; 24(1): 340, 2024 Jul 05.
Article in English | MEDLINE | ID: mdl-38970012

ABSTRACT

Atrial flutter, a prevalent cardiac arrhythmia, is primarily characterized by reentrant circuits in the right atrium. However, atypical forms of atrial flutter present distinct challenges in terms of diagnosis and treatment. In this study, we examine three noteworthy clinical cases of atypical atrial flutter, which offer compelling evidence indicating the implication of the lesser-known Septopulmonary Bundle (SPB). This inference is based on the identification of distinct electrocardiographic patterns observed in these patients and their favorable response to catheter ablation, which is a standard treatment for atrial flutter. Remarkably, in each case, targeted ablation at the anterior portion of the left atrial roof effectively terminated the arrhythmia, thus providing further support for the hypothesis of SPB involvement. These insightful observations shed light on the potential significance of the SPB in the etiology of atypical atrial flutter and introduce a promising therapeutic target. We anticipate that this paper will stimulate further exploration into the role of the SPB in atrial flutter and pave the way for the development of targeted ablation strategies.


Subject(s)
Action Potentials , Atrial Flutter , Catheter Ablation , Electrocardiography , Heart Rate , Atrial Flutter/physiopathology , Atrial Flutter/diagnosis , Atrial Flutter/surgery , Atrial Flutter/therapy , Atrial Flutter/etiology , Humans , Male , Treatment Outcome , Middle Aged , Female , Aged , Pericardium/physiopathology , Electrophysiologic Techniques, Cardiac
17.
Europace ; 26(7)2024 Jul 02.
Article in English | MEDLINE | ID: mdl-38970395

ABSTRACT

AIMS: Although electrical activity of the normal human heart is well characterized by the electrocardiogram, detailed insights into within-subject and between-subject variations of ventricular activation and recovery by noninvasive electroanatomic mapping are lacking. We characterized human epicardial activation and recovery within and between normal subjects using non-invasive electrocardiographic imaging (ECGI) as a basis to better understand pathology. METHODS AND RESULTS: Epicardial activation and recovery were assessed by ECGI in 22 normal subjects, 4 subjects with bundle branch block (BBB) and 4 with long-QT syndrome (LQTS). We compared characteristics between the ventricles [left ventricle (LV) and right ventricle (RV)], sexes, and age groups (<50/≥50years). Pearson's correlation coefficient (CC) was used for within-subject and between-subject comparisons. Age of normal subjects averaged 49 ± 14 years, 6/22 were male, and no structural/electrical heart disease was present. The average activation time was longer in LV than in RV, but not different by sex or age. Electrical recovery was similar for the ventricles, but started earlier and was on average shorter in males. Median CCs of between-subject comparisons of the ECG signals, activation, and recovery patterns were 0.61, 0.32, and 0.19, respectively. Within-subject beat-to-beat comparisons yielded higher CCs (0.98, 0.89, and 0.82, respectively). Activation and/or recovery patterns of patients with BBB or LQTS contrasted significantly with those found in the normal population. CONCLUSION: Activation and recovery patterns vary profoundly between normal subjects, but are stable individually beat to beat, with a male preponderance to shorter recovery. Individual characterization by ECGI at baseline serves as reference to better understand the emergence, progression, and treatment of electrical heart disease.


Subject(s)
Action Potentials , Bundle-Branch Block , Electrocardiography , Long QT Syndrome , Humans , Male , Female , Middle Aged , Adult , Bundle-Branch Block/physiopathology , Bundle-Branch Block/diagnosis , Long QT Syndrome/physiopathology , Long QT Syndrome/diagnosis , Heart Rate , Predictive Value of Tests , Aged , Case-Control Studies , Time Factors , Heart Ventricles/physiopathology , Heart Ventricles/diagnostic imaging , Age Factors , Epicardial Mapping
18.
Sci Rep ; 14(1): 15683, 2024 Jul 08.
Article in English | MEDLINE | ID: mdl-38977794

ABSTRACT

We explored physiological effects of the sodium-glucose co-transporter-2 inhibitor empagliflozin on intact experimentally hypertrophic murine hearts following transverse aortic constriction (TAC). Postoperative drug (2-6 weeks) challenge resulted in reduced late Na+ currents, and increased phosphorylated (p-)CaMK-II and Nav1.5 but not total (t)-CaMK-II, and Na+/Ca2+ exchanger expression, confirming previous cardiomyocyte-level reports. It rescued TAC-induced reductions in echocardiographic ejection fraction and fractional shortening, and diastolic anterior and posterior wall thickening. Dual voltage- and Ca2+-optical mapping of Langendorff-perfused hearts demonstrated that empagliflozin rescued TAC-induced increases in action potential durations at 80% recovery (APD80), Ca2+ transient peak signals and durations at 80% recovery (CaTD80), times to peak Ca2+ (TTP100) and Ca2+ decay constants (Decay30-90) during regular 10-Hz stimulation, and Ca2+ transient alternans with shortening cycle length. Isoproterenol shortened APD80 in sham-operated and TAC-only hearts, shortening CaTD80 and Decay30-90 but sparing TTP100 and Ca2+ transient alternans in all groups. All groups showed similar APD80, and TAC-only hearts showed greater CaTD80, heterogeneities following isoproterenol challenge. Empagliflozin abolished or reduced ventricular tachycardia and premature ventricular contractions and associated re-entrant conduction patterns, in isoproterenol-challenged TAC-operated hearts following successive burst pacing episodes. Empagliflozin thus rescues TAC-induced ventricular hypertrophy and systolic functional, Ca2+ homeostatic, and pro-arrhythmogenic changes in intact hearts.


Subject(s)
Benzhydryl Compounds , Calcium , Glucosides , Homeostasis , Animals , Benzhydryl Compounds/pharmacology , Glucosides/pharmacology , Mice , Calcium/metabolism , Homeostasis/drug effects , Male , Action Potentials/drug effects , Arrhythmias, Cardiac/metabolism , Arrhythmias, Cardiac/drug therapy , Sodium-Glucose Transporter 2 Inhibitors/pharmacology , Myocytes, Cardiac/drug effects , Myocytes, Cardiac/metabolism , NAV1.5 Voltage-Gated Sodium Channel/metabolism , Sodium-Calcium Exchanger/metabolism , Aorta/drug effects , Aorta/metabolism , Aorta/surgery , Mice, Inbred C57BL , Isoproterenol/pharmacology , Disease Models, Animal
19.
BMC Cardiovasc Disord ; 24(1): 347, 2024 Jul 08.
Article in English | MEDLINE | ID: mdl-38977958

ABSTRACT

BACKGROUND: CHA2DS2-VASc score-related differences have been reported in atrial fibrotic remodeling and prognosis of atrial fibrillation (AF) patients after ablation. There are currently no data on the efficacy of low voltage zone (LVZ)-guided ablation in persistent AF patients according to CHA2DS2-VASc score. We assessed in a cohort of persistent AF patients the extent of LVZ, the regional distribution of LA voltage and the outcome of LA voltage-guided substrate ablation in addition to PVI according to CHA2DS2-VASc score. METHODS: 138 consecutive persistent AF patients undergoing a first voltage-guided catheter ablation were enrolled. 58 patients with CHAD2DS2-VASc score ≥ 3 and 80 patients with CHAD2DS2-VASc score ≤ 2 were included. LA voltage maps were obtained using 3D-electroanatomical mapping system in sinus rhythm. LVZ was defined as < 0.5 mV. RESULTS: In the high CHAD2DS2-VASc score group, LA voltage was lower (1.5 [1.1-2.5] vs. 2.3 [1.5-2.8] mV, p = 0.02) and LVZs were more frequently identified (40% vs. 18%), p < 0.01). Female with CHA2DS2-VASc score ≥ 3 (p = 0.031), LA indexed volume (p = 0.009) and P-wave duration ≥ 150 ms (p = 0.001) were predictors of LVZ. After a 36-month follow-up, atrial arrhythmia-free survival was similar between the two groups (logrank test, P = 0.676). CONCLUSIONS: AF patients with CHAD2DS2-VASc score ≥ 3 display more LA substrate remodeling with lower voltage and more LVZs compared with those with CHAD2DS2-VASc score ≤ 2. Despite this atrial remodeling, they had similar and favorable 36 months results after one single procedure. Unlike male with CHAD2DS2-VASc score ≥ 3, female with CHAD2DS2-VASc score ≥ 3 was predictor of LVZ occurrence.


Subject(s)
Action Potentials , Atrial Fibrillation , Atrial Function, Left , Atrial Remodeling , Catheter Ablation , Predictive Value of Tests , Humans , Atrial Fibrillation/physiopathology , Atrial Fibrillation/surgery , Atrial Fibrillation/diagnosis , Atrial Fibrillation/mortality , Female , Male , Catheter Ablation/adverse effects , Middle Aged , Aged , Risk Assessment , Risk Factors , Time Factors , Treatment Outcome , Heart Atria/physiopathology , Heart Atria/surgery , Heart Rate , Decision Support Techniques , Electrophysiologic Techniques, Cardiac , Recurrence , Retrospective Studies
20.
Bull Exp Biol Med ; 177(1): 57-62, 2024 May.
Article in English | MEDLINE | ID: mdl-38954299

ABSTRACT

We studied the effect of Refralon on the electrophysiological properties of the supraventricular myocardium against the background of adrenergic (epinephrine) influence in the zone of the pulmonary veins, the area where 50-90% of atrial arrhythmias is triggered. The experiments were carried out on isolated tissue preparations of Wistar rats. The multichannel microelectrode array technique was used to record action potentials simultaneously in the atrium and in the ostium and distal parts of the pulmonary veins. Epinephrine application (12-50 nM) led to depolarization of the resting potential and the conduction block in the distal part of the pulmonary veins. Refralon (30 µg/kg) restored the resting potential in the distal part of the pulmonary veins. Against the background of epinephrine, Refralon did not significantly change the duration of the action potential at 90% repolarization in comparison with control. At the same time, the comparison drug E-4031 against the background of epinephrine significantly increased the duration of action potential in the atrium and in the ostium of the pulmonary veins, and sotalol increased it only in the ostium. Neither E-4031, nor sotalol restored conduction in their distal part. Refralon has a biphasic effect under conditions of adrenergic stimulation: the fast component is responsible for stabilizing the resting potential in the pulmonary vein and reduces the dispersion of action potential duration in the atrium and pulmonary vein and is also quickly washed away, and the slow component is responsible for the increase of the action potential duration and is slowly washed away.


Subject(s)
Action Potentials , Anti-Arrhythmia Agents , Epinephrine , Heart Atria , Pulmonary Veins , Rats, Wistar , Animals , Rats , Epinephrine/pharmacology , Action Potentials/drug effects , Anti-Arrhythmia Agents/pharmacology , Pulmonary Veins/drug effects , Male , Heart Atria/drug effects , Heart Atria/physiopathology , Arrhythmias, Cardiac/physiopathology , Arrhythmias, Cardiac/drug therapy
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