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Updated: Jun 23, 2025

The Motivation for Alcohol Reward: Predictors of Progressive-Ratio Intravenous Alcohol Self-Administration in Humans
Published on: April 28, 2022
Heart rate variability: A primer for alcohol researchers
Raizel M Frasier1, Thatiane de Oliveira Sergio2, Phillip A Starski2
1Department of Psychiatry, Indiana University School of Medicine, Indianapolis, IN, USA; Indiana University School of Medicine, Medical Scientist Training Program, Indianapolis, IN, USA.
Insights
Heart rate variability (HRV) may serve as a biomarker for sex differences in alcohol use disorder (AUD). Female rats showed more parasympathetic (PNS) activity, while males showed sympathetic (SNS) activity, suggesting potential for personalized AUD treatments.
Area of Science:
- Neuroscience
- Cardiology
- Behavioral Science
Background:
- Problem alcohol drinking poses significant societal costs and burdens.
- Increasing rates of problem drinking in women highlight risks for alcohol-related issues and comorbidities.
- Understanding sex differences in alcohol's impact is crucial for effective interventions.
Purpose of the Study:
- To explore the utility of cardiac measures, specifically heart rate (HR) and heart rate variability (HRV), as markers for sex differences in the drive to consume alcohol.
- To investigate if cardiac markers predict alcohol and anxiety-like behaviors differently across sexes.
- To discuss the potential of HRV as a biomarker for developing individualized and sex-specific alcohol addiction treatments.
Main Methods:
- Cardiac telemetry was employed in adult female and male rats to record heart rate (HR) and heart rate variability (HRV).
- Cardiac markers were analyzed in relation to alcohol and anxiety-like behaviors.
- Physiological systems, HRV metrics, hormonal influences, and brain circuits underlying autonomic regulation were reviewed.
Main Results:
- Female rats' behaviors were associated with HRV measures indicating greater parasympathetic nervous system (PNS) influence.
- Male rats' behaviors were linked to indicators of sympathetic nervous system (SNS) influence.
- Sex differences in PNS versus SNS engagement under challenge in rats mirrored findings in human studies, suggesting cross-species convergence.
Conclusions:
- HR and HRV show potential as biomarkers for uncovering mechanisms of sex and individual differences in autonomic drivers of alcohol use.
- These cardiac measures could guide the development of more personalized and sex-specific treatments for alcohol addiction.
- Differential autonomic regulation between sexes may play a key role in alcohol-related behaviors.
Abstract:
Problem alcohol drinking remains a major cost and burden for society. Also, rates of problem drinking in women have dramatically increased in recent decades, and women are at risk for more alcohol problems and comorbidities. The purpose of this commentary is to discuss the potential utility of cardiac measures, including heart rate (HR) and HR variability (HRV), as markers of individual and sex differences in the drive to drink alcohol. We recently used cardiac telemetry in female and male adult rats to determine whether different cardiac markers, including HR and HRV, would differently predict alcohol and anxiety-like behavior across the sexes. Indeed, female behaviors related to HRV measures that indicate more parasympathetic (PNS) influence (the "rest and digest" system). In contrast, male behaviors are associated more with sympathetic (SNS) indicators (the activation system). Remarkably, similar sex differences in PNS versus SNS engagement under challenge are seen in several human studies, suggesting strong cross-species convergence in differential autonomic regulation in females and males. Here, we describe the larger challenges that alcohol addiction presents, and how HRV measures may provide new biomarkers to help enhance development of more individualized and sex-specific treatments. We briefly explain the physiological systems underlying cardiac PNS and SNS states, and how specific HRV metrics are defined and validated, especially why particular HRV measures are considered to reflect more PNS versus SNS influence. Finally, we describe hormonal influences and sex differences in brain circuits related to cardiac autonomic regulation. Together, these findings show that HR and HRV have potential for uncovering key underlying mechanisms of sex and individual differences in autonomic drivers, which could guide more personalized treatment.
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