Networked Drug REpurposing for Mechanism-based neuroPrOtection in Acute Ischaemic STROKE

NCT ID: NCT05762146

Last Updated: 2023-10-19

Study Results

Results pending

The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.

Basic Information

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Recruitment Status

UNKNOWN

Clinical Phase

PHASE2

Total Enrollment

28 participants

Study Classification

INTERVENTIONAL

Study Start Date

2022-09-05

Study Completion Date

2024-04-30

Brief Summary

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A combination therapy proposed to be evaluated in this trial, consisting of three already registered compounds with a validated disease mechanism and with known safety profiles, targets key proteins in the dysregulated signal network in stroke, and is expected to synergistically result in post-stroke blood-brain barrier stabilization and neuroprotection. The synergistic mode of action will allow for low doses and is expected to reduce possible side effects while maintaining maximal efficacy

Detailed Description

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There is a high need for new drugs \& novel approaches for neuroprotection in stroke treatment.

Pre-clinically, three interrelated in silico predicted drug targets and pharmacological principles all belonging to the same signal network were validated at the preclinical level to be causally relevant in stroke and thus hold promise for the first-in-class mechanism-based, curative neuroprotective therapy of an ischemic stroke:

1. NADPH oxidase type 4 and 5 (NOX4, NOX5), members of a reactive oxygen radical (ROS) forming enzyme family being either upregulated during hypoxia or activated by high post-reperfusion calcium influx causing unphysiological high levels of ROS and thereby blood-brain barrier (BBB) breakdown and neuronal damage, which can be prevented by NOX inhibitors (NOXi).
2. Nitric oxide (NO) synthase type 1 (NOS1), a neuronal signaling enzyme, which in stroke is hyperactivated (excitotoxicity) and produces neurotoxic quantities of NO, which are further toxified by chemically interacting with NADPH oxidase-derived ROS, forming and even more toxic peroxynitrite and which can be prevented by NOS inhibitors (NOSi)
3. Soluble guanylate cyclase (sGC), an enzyme, which forms the BBB stabilizing and neuroprotective second messenger, cyclic GMP (cGMP), but upon stroke is oxidatively damaged to a heme-free apo sGC (by peroxynitrite). Moreover, any remaining sGC is less activated by NO, because NO is scavenged by ROS and deviated into peroxynitrite. Thus, cGMP formation is greatly reduced in stroke, which can be reversed by sGC modulators which increase the activity of both sGC and apo-sGC in an NO-independent manner and thereby reinstall cGMP formation, BB closure and neuroprotection.

Different representatives of the drug classes of NADPH oxidase inhibitors (NOXi), nitric oxide synthase inhibitors (NOSi), and soluble guanylate cyclase modulators were identified and shown to be highly effective when given alone in different small animal experimentation and in vitro human models. However, since all single target approaches in stroke have so far failed in clinical development during the last decades, and NOS, NOX and sGC all belong to the same disease module, an innovative combined, so-called network pharmacology approach is proposed, i.e., a combination of 3 already registered compounds with a validated disease mechanism: the sGC activator riociguat, the NOS1 inhibitor propylthiouracil, and the NOX inhibitor perphenazine.

Riociguat is an sGC stimulator currently approved and marketed for pulmonary hypertension. Post-reperfusion therapy with riociguat, increased cGMP formation and therefore leads to direct neuroprotection and reduced infarct volume in a stroke animal model. Propylthiouracil is already marketed for the treatment of various subtypes of hyperthyroidism and has been identified as a new member of the class of potent and effective NOS1 inhibitors. Pre-clinically, post-reperfusion treatment with propylthiouracil significantly reduced infarct volume in brain ischemia mice models compared to non-treated animals (pre-clinical in-house data, unpublished). Perphenazine is already marketed as an antiemetic and antipsychotic, has the best NOX inhibitory characteristics compared to other compounds of the same drug class, and significantly reduced infarct size in acute ischemic stroke mice models.

In summary, the combination therapy proposed to be evaluated in this trial, consisting of already registered compounds with a validated disease mechanism and with known safety profiles, targets key proteins in the dysregulated signal network in stroke, and is expected to synergistically result in post-stroke blood-brain barrier stabilization and neuroprotection. The synergistic mode of action will allow for low doses and is expected to reduce possible side effects while maintaining maximal efficacy.

Conditions

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Ischemic Stroke, Acute

Study Design

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Allocation Method

RANDOMIZED

Intervention Model

PARALLEL

This is a Prospective Randomized Open-label Blinded End-point (PROBE) trial evaluating safety and efficacy of a triple combination therapy of riociguat, propylthiouracil, and perphenazine, administered orally in addition to standard of care treatment in patients with disabling acute ischemic stroke. Patients will be randomly assigned to the triple combination therapy group or the control group in a 3:1 ratio:
Primary Study Purpose

TREATMENT

Blinding Strategy

SINGLE

Outcome Assessors
This is a Prospective Randomized Open-label Blinded End-point (PROBE) trial

Study Groups

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Riociguat +Propylthiouracil +Perphenazine

Triple combination therapy group:

○ each patient in this group will receive two doses (8 +/- 2 hours between doses) of orally administered combination therapy of riociguat, propylthiouracil, and perphenazine, in addition to standard of care.

Group Type EXPERIMENTAL

Riociguat

Intervention Type DRUG

Riociguat is an sGC stimulator currently approved and marketed for pulmonary arterial hypertension.

Propylthiouracil

Intervention Type DRUG

Propylthiouracil, already marketed for the treatment of various subtypes of hyperthyroidism, has been identified as a new member of the class of potent and effective neuronal nitric oxide synthase (NOS1) inhibitors

Perphenazine

Intervention Type DRUG

Perphenazine, already marketed as an antiemetic and antipsychotic drug, presents the best NADPH oxidase (NOX) inhibitory characteristics compared to other compounds of the same drug class.

standard of care

Control group: each patient in this group will receive only standard of care

Group Type NO_INTERVENTION

No interventions assigned to this group

Interventions

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Riociguat

Riociguat is an sGC stimulator currently approved and marketed for pulmonary arterial hypertension.

Intervention Type DRUG

Propylthiouracil

Propylthiouracil, already marketed for the treatment of various subtypes of hyperthyroidism, has been identified as a new member of the class of potent and effective neuronal nitric oxide synthase (NOS1) inhibitors

Intervention Type DRUG

Perphenazine

Perphenazine, already marketed as an antiemetic and antipsychotic drug, presents the best NADPH oxidase (NOX) inhibitory characteristics compared to other compounds of the same drug class.

Intervention Type DRUG

Other Intervention Names

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Adempas Propycil Perphenazin neuraxpharm

Eligibility Criteria

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Inclusion Criteria

* Informed consent has to be obtained from the patient or a legal representative. In case this is not feasible due to the emergency situation, an alternative informed consent procedure is allowed, according to the current legislation in Germany, as described in section 15.4 and 15.5 of this protocol.
* Male or female adult, ≥18 to ≤80 years of age. Patients older than 80 years of age may be enrolled after review of an initial safety data set obtained from younger patients as described in section 7.2.
* Disabling acute ischemic stroke with an NIHSS score of ≤12 at time of randomization.
* Treatment with IMP can be initiated within 24 hours after the onset of stroke or after last known normal.

Exclusion Criteria

* Patients receiving intravenous thrombolysis with recombinant tissue plasminogen activator (rt-PA) for the index event (i.e., the current stroke that led to screening the patient for this trial).
* Prior inability to walk or to lead an independent life, which is defined as daily need for assistance in performing activities of daily living (ADL).
* Patients who are delirious, comatose or stuporous (a score of ≥ 2 on item 1.a of the NIHSS).
* Patients undergoing mechanical thrombectomy or intra-arterial thrombolysis.
* Detection of hemorrhage on baseline CT.
* Severe dysphagia with inability to swallow and no indication for nasogastric tube as per opinion of the investigator and thus inability to administer IMP.
* Systolic blood pressure \< 110 mmHg at randomization.
* Pregnant and breastfeeding patients. Females with childbearing potential must comply with using highly effective methods of contraception as defined in section 9.2.
* Reported severe ongoing hepatic impairment (Child Pugh C).
* Reported relevant ongoing renal failure with known GFR \<30ml/min.
* Reported ongoing major depression.
* Reported ongoing tracheal obstruction.
* Reported ongoing pulmonary hypertension associated with idiopathic interstitial pneumonias (PHIIP)
* Reported leucopenia or agranulocytosis.
* Reported agranulocytosis during previous treatment with thiourea derivatives.
* Reported hypersensitivity to perphenazine or propylthiouracil or riociguat or any of the other excipients.
* Participation in another clinical trial within the last four weeks.
* Reported use of phosphodiesterase (PDE) inhibitors (such as sildenafil, tadalafil, vardenafil) within the last 7 days.
* Reported use of nitrates or nitric oxide donors (such as amyl nitrite) in any form including recreational drugs called 'poppers' within the last 7 days.
* Reported use of antithyroid drugs within the last 7 days.
Minimum Eligible Age

18 Years

Maximum Eligible Age

80 Years

Eligible Sex

ALL

Accepts Healthy Volunteers

No

Sponsors

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Maastricht University

OTHER

Sponsor Role lead

Responsible Party

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Responsibility Role SPONSOR

Locations

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University Hospital Essen, Department of Neurology

Essen, , Germany

Site Status RECRUITING

Countries

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Germany

Central Contacts

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Harald Schmidt, MD PhD

Role: CONTACT

+31433881421

Facility Contacts

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Benedikt Frank, Priv.-Doz. Dr.

Role: primary

+49 0201/723-84362

References

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Casas AI, Nogales C, Szepanowski RD, Elbatreek MH, Anastasi E, Sadegh S, Skelton J, Frank B, Wipat A, Baumbach J, Kleinschnitz C, Schmidt HHHW. Synergistic Network Pharmacology: Preclinical Validation and Clinical Safety in Acute Ischemic Stroke. J Am Heart Assoc. 2025 May 20;14(10):e039098. doi: 10.1161/JAHA.124.039098. Epub 2025 May 15.

Reference Type DERIVED
PMID: 40371623 (View on PubMed)

Other Identifiers

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2019-000474-31

Identifier Type: EUDRACT_NUMBER

Identifier Source: secondary_id

REPO-STROKE II

Identifier Type: -

Identifier Source: org_study_id

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