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Background: Hypertension remains a significant global health challenge, with limited treatment efficacy in many patients. Emerging evidence suggests that gut microbiota plays a crucial role in blood pressure regulation. This study investigates the anti-hypertensive effects of Achyranthes bidentat...

2025-04-02 | MTBLS11993 | MetaboLights

We identify a novel microbiota-driven anti-hypertensive mechanism mediated by Achyranthes bidentata (Ab) extract and gut microbe Dubosiella sp.. Using a hypertensive mouse model induced by L-NAME and a high-salt diet, we show that Ab extract significantly ameliorates hypertension and renal damage...

2025-04-02 | MTBLS12017 | MetaboLights

Gut microbiota dysbiosis has been implicated in pulmonary arterial hypertension (PAH). However, most studies have focused on the bacterial community and the exact role and mechanisms of multi-kingdom gut microbiota, including bacteria, archaea and fungi in PAH remains largely unclear. Idiopathic ...

2025-05-12 | MTBLS10563 | MetaboLights

Arterial stiffening is a hallmark of early vascular aging (EVA) syndrome and an independent predictor of cardiovascular morbidity and mortality. In this case-control study we sought to identify plasma metabolites associated with EVA syndrome in the setting of hypertension. An untargeted metabolom...

2020-01-14 | MTBLS1359 | MetaboLights
Microarray analysis of peripheral blood mononuclear (PBMC) cells in pulmonary arterial hypertension.
ORGANISM(S): Homo sapiens 
Not available
ORGANISM(S): Rattus norvegicus 

Abstract

Background: Hypertension and hyperlipidemia are interconnected conditions that heighten cardiovascular risk, yet their intricate multi-scale molecular signatures remain inadequately mapped. This study aimed to conduct an integrated multi-omics investigation to unravel the key pathw...

2025-09-25 | MTBLS13039 | MetaboLights
Although multiple gene and protein expression have been extensively profiled in human pulmonary arterial hypertension (PAH), the mechanism for the development and progression of pulmonary hypertension remains elusive. Analysis of the global metabolomic heterogeneity within the pulmonary vascular sy...
ORGANISM(S): Homo sapiens 
Not available
ORGANISM(S): Rattus norvegicus 
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