Chronic Beta-adrenergic Stimulation

Chronic beta-adrenergic stimulation is the prolonged activation of beta-adrenergic receptors by endogenous catecholamines or beta-agonist drugs, a process that can alter organ function and treatment responses. Receptor activation normally couples through Gs proteins to adenylyl cyclase, increasing cyclic AMP and protein kinase A signaling; sustained stimulation promotes receptor phosphorylation, beta-arrestin recruitment, desensitization, and internalization. In medicine, this process is important for understanding cardiac dysfunction, vascular and metabolic responses, and tolerance to bronchodilator therapy. Its study helps clarify how persistent sympathetic activity contributes to disease and how treatment strategies can preserve beneficial signaling while limiting maladaptive remodeling.

Chronic Beta-adrenergic Stimulation - Related Videos

Research

JoVE EoE - Neurotherapeutics

Vagus Nerve Stimulation via Chronically Implanted Peripheral Nerve Cuff Electrodes in Rats

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2025

Source: Sanchez, C. A., et al. Preparation of Peripheral Nerve Stimulation Electrodes for Chronic Implantation in Rats. J. Vis. Exp. (2020).This video demonstrates vagus nerve stimulation in an awake rat. A rat with an implanted chronic peripheral nerve cuff electrode and trained in a lever press task is connected to a stimulus generator via an implanted head cap. The vagus nerve is stimulated immediately after each successful lever press, resulting in the expansion of the motor map.

Modulation of Chronic Pain Using Multicolumn Paddle Lead Spinal Cord Stimulation

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2025

Source: Remacle, T., et al. Treating Low Back Pain in Failed Back Surgery Patients with Multicolumn-lead Spinal Cord Stimulation. J. Vis. Exp. (2018)This video demonstrates the method of using multicolumn paddle lead spinal cord stimulation to manage chronic lower back pain in Failed back surgery syndrome (FBSS) patients. The pre-implanted lead delivers targeted electrical pulses that activate non-painful sensory pathways, interrupting pain signals and reducing pain perception.

Measuring DNA Damage and Repair in Mouse Splenocytes After Chronic In Vivo Exposure to Very Low Doses of Beta- and Gamma-Radiation

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Cited by 3 •

2015

A protocol to evaluate changes in DNA damage levels and DNA repair capacity that may be induced by chronic in vivo low dose irradiation in mouse spleen lymphocytes, by measuring phosphorylated histone H2AX, a marker of DNA double-strand breaks, using flow cytometry is presented.

Utilizing Repetitive Transcranial Magnetic Stimulation to Improve Language Function in Stroke Patients with Chronic Non-fluent Aphasia

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Cited by 16 •

2013

We explore the use of repetitive transcranial magnetic stimulation (rTMS) to improve language abilities in patients with chronic stroke and non-fluent aphasia. After identifying a site in the right frontal gyrus for each patient that responds optimally to stimulation, we target this site during ten days of rTMS treatment.

Cardiac Response to β-Adrenergic Stimulation Determined by Pressure-Volume Loop Analysis

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2021

Here we describe a cardiac pressure-volume loop analysis under increasing doses of intravenously infused isoproterenol to determine the intrinsic cardiac function and the β-adrenergic reserve in mice. We use a modified open-chest approach for the pressure-volume loop measurements, in which we include ventilation with positive end-expiratory pressure.

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