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March 19, 2026Journal of Clinical Investigation3 citationsOpen Access

Chloride homeostasis dysfunction drives hyperactivation of corticotropin-releasing factor-expressing neurons in the amygdala in stress-induced hypertension

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HMHongyu MaYZYing ZhangXGXinqi Guo

Key Result

NKCC1 inhibition with bumetanide restored chloride homeostasis and reduced sympathetic vasomotor tone in borderline hypertensive rats subjected to chronic stress.

Key Points

  • This research aims to explore how dysfunction in chloride homeostasis affects neural activity and blood pressure during stress-induced hypertension.
  • Used borderline hypertensive rats (BHRs) as a model for chronic unpredictable mild stress (CUMS) exposure.
  • Monitored changes in arterial blood pressure (ABP) and sympathetic outflow in response to optogenetic activation of neurons.
  • Analyzed changes in delta-FosB expression and neuronal firing rate in the central nucleus of amygdala (CeA).
  • Assessed impacts on GABAergic inhibition and chloride homeostasis through NKCC1 inhibition with bumetanide.
  • CUMS led to sustained hypertension and increased delta-FosB expression in BHRs.
  • Optogenetic activation of CeA CRF-expressing neurons raised sympathetic outflow and ABP significantly.
  • Impaired GABAergic inhibition and disturbed chloride homeostasis were linked to increased NKCC1 expression in stressed BHRs.
  • NKCC1 inhibition restored GABAergic function and normalized neuronal excitability, reducing vasomotor tone.

Structured PICO

Does NKCC1 inhibition with bumetanide reduce sympathetic vasomotor tone in borderline hypertensive rats subjected to chronic stress?

P
Population
Borderline hypertensive rats (BHRs) subjected to chronic unpredictable mild stress (CUMS)
I
Intervention
NKCC1 inhibition with bumetanide; optogenetic activation of CeA CRF-expressing neurons
O
Outcome
Arterial blood pressure (ABP) and sympathetic activitysurrogate

NKCC1-mediated disruption of chloride homeostasis in amygdala CRF-expressing neurons contributes to stress-induced hypertension, highlighting NKCC1 inhibition as a potential therapeutic target.

Abstract

Stress promotes the progression from borderline hypertension to sustained hypertension, but the mechanism remains unclear. We investigated the role of corticotropin-releasing factor (CRF)-expressing neurons in the central nucleus of amygdala (CeA) on arterial blood pressure (ABP) and sympathetic activity of borderline hypertensive rats (BHRs) subjected to chronic unpredictable mild stress (CUMS). CUMS induced sustained hypertension, and led to increased delta-FosB expression as well as enhanced spontaneous and evoked firing of CeA CRF-expressing neurons in BHRs. Furthermore, optogenetic activation of CeA CRF-expressing neurons significantly increased the sympathetic outflow and ABP in BHRs. Impaired GABAergic inhibition, a depolarizing shift of GABA reversal potential (EGABA), disrupted chloride homeostasis and increased NKCC1 expression were observed in CeA CRF-expressing neurons in BHRs subjected to CUMS. NKCC1 inhibition with bumetanide restored GABAergic inhibition and chloride homeostasis, normalized neuronal excitability, leading to reduced sympathetic vasomotor tone in CUMS BHRs. These results indicate that NKCC1-mediated disruption of chloride homeostasis in CeA CRF-expressing neurons contributes to elevated sympathetic activity and hypertension under chronic stress. These findings enhance our understanding of the neuronal and molecular mechanisms underlying stress-induced hypertension and reveal potential targets for its prevention and treatment.

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Cite This Study

Ma et al. (2026) studied this question. NKCC1 inhibition with bumetanide restored chloride homeostasis and reduced sympathetic vasomotor tone in borderline hypertensive rats subjected to chronic stress.

synapsesocial.com/papers/69bb91c7496e729e6297f26dhttps://doi.org/10.1172/jci195536
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