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临床试验/NCT04971720
NCT04971720招募中2 期

Natriuretic Peptide-Renin-Angiotensin-Aldosterone System Rhythm Axis and Nocturnal Blood Pressure

University of Alabama at Birmingham1 个研究点 分布在 1 个国家目标入组 160 人开始时间: 2022年2月18日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
2 期
状态
招募中
入组人数
160
试验地点
1
主要终点
Change in mean nocturnal systolic blood pressure

研究概览

简要总结

Obese individuals have a higher prevalence of nocturnal hypertension and non-dipping blood pressure (BP). These conditions are associated with an increased risk of cardiovascular (CV) events and death. Natriuretic Peptides (NPs) are hormones produced by the heart which directly regulate BP by causing dilation of blood vessels and by removing sodium and water from the body. NPs have a 24-hour day-night rhythm and this controls the day-night rhythm of BP as well. The NP-BP rhythm relationship is broken down in obese individuals. Obese individuals also have lower circulating NP levels. Lower circulating levels of NPs and elevated renin hormone (a part of the Renin-Angiotensin-Aldosterone System [RAAS]) at nighttime may contribute to the high nocturnal blood pressure in obese individuals which puts them at a higher risk of developing CV events. This current study seeks to determine the biological implications of chronopharmacology for synchronizing NP-RAAS-based blood pressure therapy with the physiological diurnal rhythms to restore the normal diurnal rhythm of blood pressure in obese individuals.

详细描述

The investigators have demonstrated that there exists a diurnal rhythm of natriuretic peptides (NPs) which tracks closely with the BP rhythm and is in an antiphase relationship with the rhythm of the RAAS (Renin-Angiotensin-Aldosterone System) hormones. The NP levels are lowest at night, and the renin and aldosterone levels are highest at nighttime. Furthermore, the investigators have demonstrated that obese individuals have a putative deficiency of NPs, and this is due to decreased production alongside increased clearance of NPs. LCZ696 is an FDA-approved inhibitor of neprilysin (an NP degrading enzyme) that augments the NP levels and also suppresses the RAAS. Hence, the confluence of putative NP deficiency among obese alongside the lower levels of NPs at nighttime and the increased activity of RAAS at night may contribute to the high-risk nocturnal non-dipping BP profile among obese individuals. Chronopharmacology (controlling the time of medication administration) to synchronize the NP-RAAS axis targeting anti-hypertensive medications with the inherent biological NP-RAAS-BP rhythm axis may help in controlling the high-risk nocturnal BP non-dipping in obese. Investigators hypothesize that nighttime administration of NP augmenting and/or RAAS inhibition therapy in obese hypertensive individuals will help to improve their nocturnal BP rhythm. The investigators aim to conduct a patient-oriented physiological clinical trial to assess the effect of timing of administration of NP-RAAS axis therapy on restoring the normal BP rhythm. This study is a 2x2 factorial design trial, wherein individuals will be randomized to either daytime dosing or nighttime dosing of either LCZ696 or valsartan. The investigators will study the effect of timing of NP augmenting and/or RAAS inhibiting therapy on the nighttime BP profile in obese hypertensive patients with nondipping nocturnal BP. The investigators will also assess the effect of NP augmentation in an NP deficient population on the nocturnal BP profile, i.e., in obese hypertensives with nondipping nocturnal BP. The investigators will also examine the impact of NP augmenting-RAAS inhibiting therapy on the NP levels and the physiological diurnal rhythms.

This study will assess the physiological implications of chronopharmacology of anti-hypertensive therapy and assess a potentially novel approach of using the inherent biological rhythms to reduce the normal BP rhythmicity in a high-risk population

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Factorial
主要目的
Other
盲法
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Age more than or equal to 18 years of age
  • Body Mass Index between 30 to 45 kg/m^2
  • Blood pressure: Systolic BP more than or equal to 130mmHg and less than or equal to 160mmHg and diastolic blood pressure more than or equal to 80mmHg and less than or equal to 100mmHg. Individuals with hypertension as per the 2017 ACC/AHA Guidelines will be eligible for enrollment

排除标准

  • Age less than 18, at screening.
  • Systolic BP <130 or >160mmHg at baseline, or diastolic BP <80 or >100 mmHg at baseline
  • BMI <30 kg/m^2 or >45 kg/m^2
  • History of pulmonary hypertension
  • Have any past or present illness of cardiovascular disease including myocardial infarction, angina, cardiac arrhythmia, diabetes, stroke, TIA, or seizure.
  • Participants who are taking 3 or more classes of hypertension medications on the maximum dose or with resistant hypertension
  • History of angioedema
  • Estimated glomerular filtration rate (GFR) < 60 ml/min/1.73 m2 (CKD-EPI equation); urine albumin creatinine ratio ≥30 mg/g
  • Hepatic Transaminase (AST and ALT) levels >3x the upper limit of normal;
  • Significant psychiatric illness
  • Anemia (men, Hct < 38%; women, Hct <36%)
  • Participants working night shifts or swing shifts
  • Women who are pregnant or breastfeeding or who can become pregnant and not practicing an acceptable method of birth control during the study (including abstinence)

研究组 & 干预措施

Sacubitril/Valsartan Morning Dose

Experimental

We will enroll 40 adult obese individuals. Each participant will take the assigned dose of medication once in the morning and a placebo pill in the evening for 28 days. We evaluate Natriuretic Peptide-Renin-Angiotensin-Aldosterone System Rhythm Axis and Nocturnal Blood Pressure at baseline and after 28 days of intervention.

干预措施: Sacubitril-Valsartan 49 Mg-51 Mg Oral Tablet (Drug)

Sacubitril/Valsartan Evening Dose

Experimental

We will enroll 40 adult obese individuals. Each participant will take the assigned dose of medication once in the evening and a placebo pill in the morning for 28 days. We evaluate Natriuretic Peptide-Renin-Angiotensin-Aldosterone System Rhythm Axis and Nocturnal Blood Pressure at baseline and after 28 days of intervention.

干预措施: Sacubitril-Valsartan 49 Mg-51 Mg Oral Tablet (Drug)

Valsartan Morning Dose

Active Comparator

We will enroll 40 adult obese individuals. Each participant will take the assigned dose of medication once in the morning and a placebo pill in the evening for 28 days. We evaluate Natriuretic Peptide-Renin-Angiotensin-Aldosterone System Rhythm Axis and Nocturnal Blood Pressure at baseline and after 28 days of intervention.

干预措施: Valsartan 80 mg Oral Tablet (Drug)

Valsartan Evening Dose

Active Comparator

We will enroll 40 adult obese individuals. Each participant will take the assigned dose of medication once in the evening and a placebo pill in the morning for 28 days. We evaluate Natriuretic Peptide-Renin-Angiotensin-Aldosterone System Rhythm Axis and Nocturnal Blood Pressure at baseline and after 28 days of intervention.

干预措施: Valsartan 80 mg Oral Tablet (Drug)

结局指标

主要结局

Change in mean nocturnal systolic blood pressure

时间窗: At Baseline and after 28 days of intervention.

Change in mean nocturnal systolic blood pressure will be analyzed in the two study arms (morning vs. evening dose of sacubitril/valsartan or valsartan) from baseline and after 28 days of intervention.

次要结局

  • Change in 24-hour mean systolic blood pressure(At Baseline and after 28 days of intervention.)
  • Change in 24-hour mean diastolic blood pressure(At Baseline and after 28 days of intervention.)
  • Change in mean nocturnal diastolic blood pressure(At Baseline and after 28 days of intervention.)
  • Change in 24-hour, daytime, and nocturnal MRproANP levels(At Baseline and after 28 days of intervention)
  • Change in rhythm parameters (mesor, amplitude, and phase) for ANP, BNP, NTproBNP, renin, and melatonin rhythms.(At Baseline and after 28 days of intervention)
  • Change in percent nocturnal dipping blood pressure(At Baseline and after 28 days of intervention.)
  • Change in the daytime, nocturnal, and total urinary excretion parameters (Urine Sodium, Urine Potassium, Urine Creatinine, Urine Albumin).(At Baseline and after 28 days of intervention)
  • Change in mean daytime systolic blood pressure(At Baseline and after 28 days of intervention)
  • Change in mean daytime diastolic blood pressure(At Baseline and after 28 days of intervention)
  • Change in rhythm parameters (mesor, amplitude, and phase) for MRproANP.(At Baseline and after 28 days of intervention)
  • Change in 24-hour, daytime, and nocturnal ANP, BNP, NTproBNP, and renin levels(At Baseline and after 28 days of intervention)
  • Change in rhythm parameters (mesor, amplitude, and phase) for aldosterone rhythms.(At Baseline and after 28 days of intervention)
  • Change in rhythm parameters (mesor, amplitude, and phase) for cortisol rhythms.(At Baseline and after 28 days of intervention)
  • Change in 24-hour, daytime, and nocturnal Aldosterone levels(At Baseline and after 28 days of intervention)
  • Change in rhythm parameters (mesor, amplitude, and phase) for systolic BP, and diastolic BP rhythms.(At Baseline and after 28 days of intervention)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Pankaj Arora, MD

Assistant Professor, Division of Cardiovascular Disease, Department of Medicine

University of Alabama at Birmingham

研究点 (1)

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