Effects of aLdosterone Inhibition by baXdrostat on Molecular Imaging of cytoReduction in Primary Aldosteronism and Hypertension
Effects of aLdosterone Inhibition by baXdrostat on Molecular Imaging of cytoReduction in Primary Aldosteronism and Hypertension
The goal of this clinical trial is to find out whether treatment with baxdrostat changes aldosterone-producing activity in the adrenal glands of people with primary aldosteronism. The study will use specialised imaging to measure changes in the adrenal glands before and after treatment.
Participants will receive baxdrostat for 24 weeks and will be followed for changes in their adrenal imaging, blood pressure and hormone levels. The study will also investigate whether changes caused by treatment continue after baxdrostat is stopped.
This is a single-group study, meaning that all participants receive baxdrostat and there is no placebo or comparison group.
Primary aldosteronism (PA) is a common cause of hypertension in which the adrenal glands produce excess aldosterone. In some participants, the source of excess aldosterone can be associated with a small adrenal nodule. Aldosterone synthase, encoded by the CYP11B2 gene, is the enzyme responsible for the final steps of aldosterone production.
Molecular imaging using [18F]-CETO PET-CT can be used to visualise aldosterone-producing tissue in the adrenal glands. This study will investigate whether treatment with the aldosterone synthase inhibitor baxdrostat produces a measurable reduction in aldosterone-producing activity on molecular imaging.
This is an open-label, single-arm experimental medicine study. All participants will receive baxdrostat and there is no placebo or control group. Participants will receive baxdrostat 2 mg once daily for 24 weeks. Molecular imaging will be performed before treatment and following the treatment period, allowing the adrenal imaging signal to be compared within the same participant before and after treatment.
The study is designed to investigate whether pharmacological inhibition of aldosterone synthase is associated with a quantitative reduction in the molecular imaging signal from aldosterone-producing adrenal tissue. It will also investigate whether changes in imaging are associated with changes in biochemical measures of aldosterone production and clinical measures such as blood pressure, and how long suppression of aldosterone production persists after treatment has ended.
[18F]-CETO PET-CT is performed following dexamethasone pretreatment to suppress background uptake and improve visualisation of aldosterone-producing adrenal tissue. The radioligand is administered intravenously and PET imaging is performed together with a low-dose anatomical CT scan. Imaging will be undertaken at St Bartholomew's Hospital or Cambridge University Hospitals.
Participants will undergo regular follow-up during and after treatment. Assessments include blood pressure measurements, blood tests for electrolytes and adrenal hormones, 24-hour urine collections for measurement of aldosterone-related biomarkers, and quality-of-life assessment. Follow-up after treatment will allow the investigators to assess whether biochemical and clinical effects of baxdrostat persist after treatment has stopped.
The study also provides an opportunity to investigate the relationship between molecular imaging findings and subsequent clinical management. Where participants subsequently undergo adrenalectomy or ablation as part of their usual clinical care, adrenal tissue may be used for exploratory laboratory analyses of aldosterone synthase expression and markers of apoptosis. Adrenalectomy or ablation is not a research intervention and is not required by the study.
The study uses a within-participant comparison of adrenal molecular imaging before and after baxdrostat treatment. Participants are stratified according to the characteristics of the largest [18F]-CETO-positive adrenal nodule, but there is no randomisation or allocation to different treatment groups.
The study is intended to improve understanding of the effects of aldosterone synthase inhibition on aldosterone-producing adrenal tissue. The findings may help clarify the relationship between biochemical suppression of aldosterone production and changes in adrenal molecular imaging, and may inform the development of future approaches to the treatment and investigation of primary aldosteronism.
Inclusion criteria
aklima.khatun4@nhs.net0203 465 8577
w.m.drake@qmul.ac.uk