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临床试验/NCT06176118
NCT06176118尚未招募2 期

Clinical Trial of 2-HOBA in Pulmonary Arterial Hypertension

Vanderbilt University Medical Center0 个研究点目标入组 12 人开始时间: 2026年9月1日最近更新:
适应症
干预措施

试验速览

阶段
2 期
状态
尚未招募
入组人数
12
主要终点
Change in acetylated SOD2 and LCAD in plasma

研究概览

简要总结

Based on existing literature and clinical trials, 2- hydroxbenzylamine (2-HOBA) has clear impact on mechanisms that much of the international field of pulmonary hypertension (PH) research agrees are central to disease progression. The investigator's preliminary data and Phase I studies demonstrate not only a clear positive impact on reducing pulmonary vascular resistances in Group I and II PH, and both cytokine and molecular biomarkers of disease, but also indicated the potential for a substantial positive effect on heart function under load stress. In this Phase II project, investigators will test the safety and efficacy of 2-HOBA in PH patients, improving the function of the right ventricle under stress in a large animal model, and effectiveness in the context of standard-of-care in mouse models and large animals, to establish the remaining data needed to proceed to commercialization.

详细描述

Pulmonary Hypertension (PH) is a disease in which gradual cellular occlusion of the blood vessels in the lungs increases pulmonary vascular resistance, eventually leading to right heart failure and death. Approved therapies in common use are all different classes of vasodilator, which can extend life in some patients, but are not disease modifying and do not prevent decline and death. There is thus need for new therapies for PH.

Although originating causes are different across patients, a common molecular factor across most etiologies is an increase in reactive oxygen species leading to a set of specific metabolic problems. These include increased insulin resistance, increased reliance on glutamine uptake in the lungs, a shift away from normal TCA-glucose metabolism, and suppressed fatty acid oxidation in the heart leading to increased intracellular fat. An important part of the mechanism is a feedback loop in which ROS causes reactive lipids particularly within the mitochondria, which then adduct to proteins causing loss of function and further metabolic defects. One such target in PH is the mitochondrial lysine deacetylase, Sirt3. In a recent clinical trial attempting an intervention on this metabolic axis, the only patients in whom it succeeded were those with an unusual activating set of SNPs in Sirt3, indicating that rescue of Sirt3 is a prerequisite for resolving disease.

This presents the possibility of rescuing the defects in metabolic function that are required for disease progression by alleviating the upstream problem with reactive lipid species. 2-Hydroxybenzylamine (2-HOBA) is a potent scavenger of reactive lipid dicarbonyls. It blocks the effects of reactive lipids by selectively trapping them - giving an alternate target to bind to with a binding affinity two to three orders of magnitude stronger. We have published that 2-HOBA treatment rescued Sirt3 activity in vivo in BMPR2 mutant mice, resulting in normalization of metabolic markers and near normalization of pulmonary vascular resistance2, resulting in reduced acetylation of key targets. In Phase I of this project, we found that 2-HOBA also reduced pulmonary pressures in the AKR-high fat diet model of Group II PH, the most common form of disease, associated with metabolic syndrome. The investigators also identified cytokines and metabolites known to be changed in PH that were corrected in our models, which could be used as biomarkers. Metabolic changes in the hearts in response to 2-HOBA in both mouse models which the investigators believe are extremely positive - increased ability to metabolize fatty acids, which is a key need in the right ventricle under stress.

The investigator's preliminary studies show that 2-HOBA is a safe compound which shows great promise in treating the core molecular defect in PH, in both the closest genetic mouse model to human disease available (BMPR2 mutants), in a mouse model of the most common type of PH (AKR-high fat diet) and in existing and animal toxicity and human safety trials.

Based on existing literature and clinical trials, 2- hydroxbenzylamine (2-HOBA) has clear impact on mechanisms that much of the international field of pulmonary hypertension (PH) research agrees are central to disease progression. Our preliminary data and Phase I studies demonstrate not only clear positive impact on reducing pulmonary vascular resistances in Group I and II PH, and both cytokine and molecular biomarkers of disease, but also indicated the potential for a substantial positive effect on heart function under load stress. In this Phase II project, investigators will test the safety and efficacy of 2-HOBA in PH patients, improving function of the right ventricle under stress in a large animal model, and effectiveness in the context of standard-of-care in mouse models and large animals, to establish the remaining data needed to proceed to commercialization.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Treatment
盲法
None

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

  • Adults aged 18 or older
  • Diagnosed with idiopathic, heritable, simple congenital heart defect, or drug- or toxin-associated pulmonary arterial hypertension (PAH) according to World Health Organization consensus recommendations.
  • Stable PAH-specific medication regimen for three months prior to enrollment. Subjects with only a single diuretic adjustment in the prior three months will be included. Adjustments in IV prostacyclin for side effect management are allowed.
  • FEV1> or = 60% predicted and no more than mild abnormalities on lung imaging
  • WHO Functional Class II-IV
  • Ambulatory

排除标准

  • Sensitivity to 2-HOBA
  • Sensitivity to aspirin or salicylates
  • Aspirin-related rhinitis or wheezing
  • Prohibited from normal activity due to wheelchair bound status, bed bound status, reliance on a cane/walker, activity-limiting angina, activity-limiting osteoarthritis, or other condition that limits activity
  • Pregnancy
  • Diagnosis of PAH etiology other than idiopathic, heritable, simple congenital heart defect, or associated with drugs or toxins
  • Drug and toxin associated PAH patients with active drug use
  • Prior diagnosis of cirrhosis
  • Malignancy
  • eGFR by MDRD <60mL/min
  • Non-english speaking

研究组 & 干预措施

Unblinded Intervention

Experimental

There is no control group in this study. Only intervention group due to phase of trial and study intentions.

干预措施: 2-HOBA (Dietary Supplement)

结局指标

主要结局

Change in acetylated SOD2 and LCAD in plasma

时间窗: baseline and 12-weeks

This is a direct indication of effect; the mechanism of action of 2-HOBA is sequestration of lipids, and so this will demonstrate that it is having the desired molecular effect.

次要结局

  • Change in Right Ventricle (RV) Free Wall Longitudinal Strain, as assessed by echocardiogram results, and expressed as percent (%) change in myocardial deformation.(baseline and 12-weeks)
  • Change in Estimated Right Ventricle (RV) Systolic Pressure, as assessed by echocardiogram results, expressed in mmHg(baseline and 12-weeks)
  • Change in meters walked in six-minute walk distance (meters)(baseline and 12-weeks)
  • Change in Quality of Life as measured by the emPHasis-10(baseline and 12-weeks)
  • Incidence of Treatment-Emergent Adverse Events [Safety and Tolerability](baseline and 12-weeks)
  • Change in plasma acylcarnitine profile measured as a concentration (mg/dL)(baseline and 12-weeks)
  • Change in plasma LDL, HDL, triglyceride, free fatty acid concentration measured as a concentration (mg/dL)(baseline and 12-weeks)

研究者

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

James D. West

Professor-Allergy, Pulmonary, and Critical Care Medicine

Vanderbilt University Medical Center

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