Preeclampsia, Pregnancy
Conditions
Keywords
pregnancy, preeclampsia, MitoQ, Mitoquinone, Endothelial Function
Brief summary
Preeclampsia is a leading cause of maternal and neonatal morbidity and mortality. There is a lack of effective therapeutics for prevention or treatment. Our previous ex vivo work demonstrated that mitochondrial-antioxidants can reverse placental microvascular damage. Therefore, this study will evaluate whether MitoQ (Mitoquinol Mesylate, a mitochondrial-antioxidant) has the potential to restore vasodilation, improve placental function, and therefore promote pregnancy prolongation in patients with preeclampsia. This evaluation of clinical data, patient samples, and vascular function studies in patients with preeclampsia could translate into a viable therapeutic option.
Detailed description
Preeclampsia (PreE) impacts \ 10% of pregnancies and has severe outcomes both during and after pregnancy. It is a leading cause of pregnancy-related deaths, and has long term cardiovascular consequences for maternal and child health. Despite advances in the understanding of preeclampsia over the past 50 years, the underlying unifying mechanism causing preeclampsia remains elusive. This critical gap not only encompasses lack of understanding of the pathophysiology, but it also includes a lack of therapeutics for prevention or treatment. Success in this study could translate into a clinical trial that could finally offer a treatment for PreE. The investigators have recently demonstrated that endothelial function in the human placental microcirculation is impacted by excess reactive oxygen and nitrogen species (ROS, RNS) from the mitochondria (MT), which in preeclampsia, impairs vasodilation. Excess ROS causes decreased nitric oxide (NO) bioavailability, increased lipid peroxidation, uncoupled eNOS, peroxynitrite, and exacerbates MT dysfunction and MT DNA damage via alterations in NO. Microvascular function can be improved by mechanisms that rebalance the oxidative stress response. The investigators have shown that MitoTempol, a MT antioxidant, improves vasodilation. Moreover, the investigators have shown that a major part of the cycle of excessive oxidative stress is caused by MT DNA damage and subsequent activation of toll like receptor 9 (TLR9), and that inhibiting TLR9 prevents this dysfunction. The finding that MT antioxidants given ex-vivo can reverse placental vascular damage after delivery gives promise that treatment of patients during pregnancy could restore vasodilation and allow for safer prolongation of pregnancy. MitoQ (Mitoquinol Mesylate) is a nutritional supplement, and mitochondrial antioxidant. MitoQ has been extensively studied pre- clinically in cell-culture, and pregnant mouse, rat, and sheep models of PreE or oxidative stress and demonstrated beneficial fetal results. It has been used in clinical trials for heart failure, hepatitis C, Parkinson's, and multiple sclerosis with doses from 10mg to 80mg per day. Overall Hypothesis: The investigators hypothesize that MitoQ (Mitoquinol Mesylate)-treated preeclampsia patients will have improved brachial artery flow-mediated dilation (FMD) and laser Doppler flowmetry assessments of the cutaneous microvasculature, and that placental endothelial function in micro-vessels and placental pathology will be improved in treated patients. To demonstrate this, the investigators will enroll two pilot human cohorts- one of admitted patients with preeclampsia with severe features who will either continue standard in-patient clinical care or be supplemented daily with MitoQ (Mitoquinol Mesylate) and a second outpatient cohort of patients with preeclampsia without severe features who will received standard outpatient care or be supplemented daily with MitoQ Aim: Test whether with MitoQ (Mitoquinol Mesylate) treatment in preeclamptic patients improves endothelial function Hypothesis: MitoQ (Mitoquinol Mesylate)-treated patients will have improved brachial artery FMD and laser Doppler flowmetry assessments of the cutaneous microvasculature and placental endothelial function in micro-vessels and placental pathology will be improved in treated patients.
Interventions
Patients randomized to the intervention will receive 10mg of Mitoquinol Mesylate daily from enrollment until delivery.
Patients randomized to the placebo groups will take 1 placebo capsule daily until delivery.
Sponsors
Study design
Eligibility
Inclusion criteria
* Inpatient Cohort * pregnant patients with a clinical diagnosis of preeclampsia with severe features * gestational age between 23+0 and 32+0 weeks' gestation * singleton pregnancy * age 18-50 years old * No indication for immediate delivery (e.g. the patient and their physician team have planned expectant management of preeclampsia with severe features * Able to consent and follow a 2-step commend * English speaking * Outpatient Cohort * Pregnant patients with a clinical diagnosis of preeclampsia without severe features * gestational age between 23+0 and 34+0 weeks' gestation * singleton pregnancy * age 18-50 years old * No indication for immediate delivery * Planned outpatient management of preeclampsia * Able to consent and follow a 2-step commend * English speaking
Exclusion criteria
* • Unable to stand from chair without physical assistance from another person (able to use assistive device). * History of blood clots in the extremities or any condition in which compression of the thigh or transient ischemia is contraindicated (i.e., wounds in the leg). * Chronic lasting symptoms (\> 6 months) of severe COVID-19 (i.e., hospitalization) * History of head trauma or concussion within the past 6 months * Comorbid neurological disorder * Peripheral vascular disease * Diagnosed myocardial infarction or arrhythmia in the previous year * Resting SBP ≥180 mmHg or DBP ≥ 100 mmHg * Other significant medical condition likely to influence study or jeopardize safety as assessed by the Primary Investigator
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Brachial Artery Flow Mediated Dilation (FMD) | 1-2 times per week from enrollment until delivery, up to 10 months | We will measure brachial artery vascular health in the arm. Baseline brachial artery diameter and blood flow velocity through the artery will be measured before and after a pneumatic forearm cuff is inflated to 225 mmHg for five minutes. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Cutaneous Microvascular Function | 1-2 times per week From enrollment until delivery, up to to months. | Laser Doppler Flowmetry (LDF) will measure blood flow flux during local skin heating to examine microvessel vasodilation |
| Placental Microvascular Function | At Delivery | After delivery, placental vessels will be isolated from the placenta and a videomicroscopy technique will be used to evaluate flow-mediated dilation in vessels from placebo and MitoQ treated pregnancies. |
| Time from Enrollment to Delivery | Time in days from enrollment to delivery, up to 10 months | Time from diagnosis and initiation of MitoQ or placebo to delivery |
| Blood Draw | Weekly from enrollment until Delivery, up to 10 months | We will collect blood each week. The blood draw analysis may include but will not be limited to examining sFlt:PlGF ratio, plasma redox and bioenergetic analyses. |
| Maternal Preeclampsia Severity | From enrollment until delivery, up to 10 months | A composite outcome of Maternal Severity of preeclampsia will be assessed and include laboratory, blood pressure, and ultrasound data relevant to preeclampsia |
| Composite Neonatal Delivery Outcome | Collected from delivery until hospital discharge; up to 1 week after birth. | A composite outcome of neonatal delivery information including (but not limited to): cord blood, gestational age, weight, APGARs |
Countries
United States
Contacts
Medical College of Wisconsin