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Neuro-pharmacological Properties of Repurposed Posaconazole in Glioblastoma: A Phase 0 Clinical Trial

Neuro-pharmacological Properties of Repurposed Posaconazole in Glioblastoma: A Phase 0 Clinical Trial

Status
Terminated
Phases
Early Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04825275
Enrollment
7
Registered
2021-04-01
Start date
2022-05-13
Completion date
2024-11-06
Last updated
2026-01-23

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Glioblastoma, Glioblastoma Multiforme, Glioblastoma Multiforme, Adult, Glioblastoma Multiforme of Brain

Keywords

Glioblastoma, Glioblastoma Multiforme, GBM, Brain cancer, Posaconazole, Anti-fungal agents

Brief summary

This research is being done to find out if the study drug (posaconazole) can enter brain tumors at a high enough amount to stop the tumor cells from dividing. Posaconazole is a drug which doctors already use for fungal infections and is thought to be able to effect tumor cells. As treatments for this type of brain tumor are limited, it is hoped that the results of this study will help to determine if the study drug should be studied further as a possible treatment.

Detailed description

Both ketoconazole and posaconazole are FDA-approved anti-fungal agents with a well-established side effect and safety profile. Ketoconazole and posaconazole have shown efficacy in reducing tumor cell proliferation in in-vitro studies. Furthermore, both have also shown efficacy, mediated at least in part through inhibition of HK2 activity, in animal models with dosing concentration and schedules that are documented as safe in humans. As a drug, posaconazole has a more predictable half-life than ketoconazole and has less off-target effects. Therefore, the proposed trial will focus on the role of posaconazole exclusively. As a first step, demonstration of adequate penetrance of study drug in brain and tumor tissue (pharmacokinetics) and biological effect (inhibition of glycolysis and subsequent tumor cell death) is necessary prior to large scale clinical studies. A total of 5 control participants will be included in this study as the investigator specifically wants to assess for pharmacodynamic differences too. The addition of a control group to this study rather to both the studies (ketoconazole study is a separate protocol) is because the investigator feels posaconazole may be a more promising drug for moving forward. Plasma drug concentration measurements are an unreliable method to assess delivery of drugs across the blood-brain barrier. In contrast, intracerebral MDC monitoring allows for approximate measurements within extracellular fluid (ECF) sampling of the brain. MDC placement within the brain is not a novel technique and has been utilized routinely in the ICU setting to measure brain metabolism by sampling of ECF of traumatic brain injury patients \[59-61\]. MDC are now FDA-approved and are being placed routinely with intracranial pressure monitors. This method allows for continuous measurement of ECF within a tumor or normal tissue. The dialysis probe has a semipermeable membrane which is less than 1 mm in diameter into which two sections of microcatheter are fused. Previous studies have demonstrated the feasibility of keeping the catheters in place of critically injured patients for up to 2 weeks \[62-64\]. When placed at the time of surgical resection, the microcatheters are stereotactically implanted, placing the probe within the desired brain and/or tumor region. Externally, the catheter is connected to a syringe pump, which delivers a low flow rate (μl/min) of continuous perfusion fluid (Lactated Ringers or artificial CSF) and dialysate is collected in a microvial from the outlet tube. This sterile, single use catheter is minimally invasive and developed to achieve optimal diffusing characteristics similar to passive diffusion of a capillary blood vessel. Just as in the function of brain capillary vessel, water, inorganic ions and small organic molecules freely diffuse across the membrane of the probe, whereas proteins and protein bound compounds are impermeable. Additionally, lipophilic compounds are poorly recovered. Therefore, assessment of pharmacokinetics of drug using MDC provides valuable insight relevant to its anti-neoplastic properties.

Interventions

DRUGPosaconazole Pill

300 mg (three 100 mg tablets) orally

Sponsors

Milton S. Hershey Medical Center
Lead SponsorOTHER
National Cancer Institute (NCI)
CollaboratorNIH

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Age ≥18 years * Evidence of primary or recurrent HGG that in the opinion of the treating team would require surgical resection * Karnofsky Performance Score (KPS) ≥ 60% * ECOG ≤ 2 * Life expectancy greater than 12 weeks * Adequate liver function defined as ALT, AST, ALP within 1.5x institutional upper limit of normal (for study drug arm only) * Ability to swallow medication (for study drug arm only) * Women of child-bearing potential and men must agree to use adequate contraception (hormonal or barrier method of birth control; abstinence) for the duration of study participation (for study drug arm only) * Ability to understand and willingness to sign a written informed consent document * Be able to comply with treatment plan, study procedures and follow-up examinations

Exclusion criteria

* Patients may not be receiving any other investigational agents while on study * Patients who have known allergy to posaconazole or other azoles (for study drug arm only) * Patients who have previously had a severe side effect, such as agranulocytosis and neutropenia, in conjunction with previous azole class drugs for a parasitic infection (for study drug arm only) * Patients with a history of acute or chronic hepatitis (for study drug arm only) * Patients with liver enzymes (ALT, AST, ALP) \>1.5x above normal range for the laboratory performing the test (for study drug arm only) * Patients who are taking metronidazole and cannot be safely moved to a different antibiotic greater than 7 days prior to starting posaconazole therapy (for study drug arm only) * Patients who are taking any anti-convulsant medication that interferes with the cytochrome P450 pathway (e.g. phenytoin, phenobarbital, carbamazepine, etc.) and who cannot be switched to alternative medications such as keppra (levetiracetam) (for study drug arm only) * Uncontrolled intercurrent illness such as chronic hepatitis, acute hepatitis, or psychiatric illness/social situation that would limit compliance with study requirements (for study drug arm only) * Patients with a history of Addison's disease or other forms of adrenal insufficiency (for study drug arm only) * Patient with little or no stomach acid production (achlorhydria) (for study drug arm only) * Pregnant and breast feeding women) * Patients with a history of any medical or psychiatric condition or laboratory abnormality that in the opinion of the investigator may increase the risks associated with the study participation or investigational product administration or may interfere with the interpretation of the results. * Patients who are not available for follow-up assessments or unable to comply with study requirements. * Patients who are currently taking medications that induce the metabolism of posaconazole, such as isoniazid, nevirapine, rifamycins (such as rifabutin, rifampin), or St. John's wort and cannot be safely discontinued off of them for the duration of the trial (for study drug arm only). * Patients who are currently taking medications for which the metabolism may be affected by posaconazole, which include but are not limited to: benzodiazepines (such as alprazolam, midazolam, triazolam), domperidone, eletriptan, eplerenone, ergot drugs (such as ergotamine), nisoldipine, drugs used to treat erectile dysfunction-ED or pulmonary hypertension (such as sildenafil, tadalafil), some drugs used to treat seizures (such as carbamazepine, phenytoin), some statin drugs (such as atorvastatin, lovastatin, simvastatin) (for study drug arm only). * Patients who are non-English speakers * Patients who are not capable of understanding the consent form and would need a legally authorized representative.

Design outcomes

Primary

MeasureTime frameDescription
Posaconazole Concentration in Cerebrospinal Fluid Using Microdialysis CathetersCollected over a 24-hour period after surgery (biopsy or resection)Assessment of the concentration of drug in the dialysate fluid.

Secondary

MeasureTime frameDescription
Number of Participants Able to Tolerate Preoperative Steady-state Dosing of Posaconazolefrom Baseline to Visit 7 (14 days +/- 7 days post-op)Measured through the Grade and Frequency of adverse events, based on the CTCAE v5.0 criteria
Posaconazole Effect on Hexokinase 2 Concentration Within Tumor TissueWithin 24 hours after biopsy or tumor resectionMeasured using a hexokinase-2 ELISA with a range of 1.56 ng/mL - 100 ng/mL on tumor tissue.
Posaconazole Effect on Tumor Proliferation in Tumor TissueWithin 24 hours after biopsy or tumor resectionMeasured using Ki-67 proliferation index with of a range of 0% proliferation (no proliferation) to 100% (high proliferation). Ki-67 is a marker found in actively dividing cells. A higher Ki-67 value may signify a more aggressive tumor. Ki-67 is routinely measured during pathology analysis of tumor samples.
Posaconazole Effect on Cell Death in Tumor TissueWithin 24 hours after biopsy or tumor resectionMeasured using a BCL-2 ELISA with a range of 0.156 ng/mL to 10 ng/mL.
Posaconazole Effect on Angiogenesis in Tumor TissueWithin 24 hours after biopsy or tumor resectionMeasured using a CD31 ELISA with a range of 31.2 pg/mL to 2000 pg/mL.
Correlation of Neuro-pharmacokinetic Profile of Posaconazole With Lactate ConcentrationCollected over a 24-hour period after surgery (biopsy or resection)The concentration vs. time profile of posaconazole will be correlated with the concentration vs. time profile of lactate in the cerebrospinal fluid.
Correlation of Neuro-pharmacokinetic Profile of Posaconazole With Pyruvate ConcentrationCollected over a 24-hour period after surgery (biopsy or resection)The concentration vs. time profile of posaconazole will be correlated with the concentration vs. time profile of pyruvate in the cerebrospinal fluid.

Countries

United States

Contacts

PRINCIPAL_INVESTIGATORAlireza Mansouri, MD

Milton S. Hershey Medical Center

Participant flow

Recruitment details

Seven participants gave informed consent to participate in the clinical trial. One participant withdrew consent prior to beginning dosing posaconazole.

Pre-assignment details

Participants were assigned to the Control Arm if their tumor resection surgery was scheduled more than 7-10 days after informed consent was obtained.

Participants by arm

ArmCount
Posaconazole
Participants will be taking 300 mg of the study drug (three 100 mg tablets) by mouth twice a day the first day and then 300 mg once a day until the day of biopsy or surgery. On the day of biopsy or surgery, participants will take their medication the morning of their biopsy or surgery (before the operation). Participants will then take the last dose of the medication in the morning of the day after their biopsy or surgery. Participants will be given 12 days' worth of the study drug (pills) and verbally instructed how and when to take them.
2
Control
Participants will not undergo any intervention.
4
Total6

Baseline characteristics

CharacteristicPosaconazoleControlTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
2 Participants3 Participants5 Participants
Age, Categorical
Between 18 and 65 years
0 Participants1 Participants1 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
0 Participants0 Participants0 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
2 Participants4 Participants6 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Asian
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Black or African American
0 Participants0 Participants0 Participants
Race (NIH/OMB)
More than one race
1 Participants0 Participants1 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants0 Participants0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race (NIH/OMB)
White
1 Participants4 Participants5 Participants
Sex: Female, Male
Female
0 Participants0 Participants0 Participants
Sex: Female, Male
Male
2 Participants4 Participants6 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
0 / 20 / 4
other
Total, other adverse events
2 / 24 / 4
serious
Total, serious adverse events
0 / 22 / 4

Outcome results

Primary

Posaconazole Concentration in Cerebrospinal Fluid Using Microdialysis Catheters

Assessment of the concentration of drug in the dialysate fluid.

Time frame: Collected over a 24-hour period after surgery (biopsy or resection)

Population: The fourth control participant's samples were unavailable for analysis.

ArmMeasureValue (MEAN)
PosaconazolePosaconazole Concentration in Cerebrospinal Fluid Using Microdialysis CathetersNA ng/mL
ControlPosaconazole Concentration in Cerebrospinal Fluid Using Microdialysis CathetersNA ng/mL
Secondary

Correlation of Neuro-pharmacokinetic Profile of Posaconazole With Lactate Concentration

The concentration vs. time profile of posaconazole will be correlated with the concentration vs. time profile of lactate in the cerebrospinal fluid.

Time frame: Collected over a 24-hour period after surgery (biopsy or resection)

Population: The entirety of the cerebrospinal fluid collected from the microdialysis catheters was consumed during the posaconazole concentration analysis. Since the catheters yielded a low volume of sample, none was available to test lactate concentration, thus, correlation of posaconazole profile to lactate concentration could not be analyzed for any of the participants.

Secondary

Correlation of Neuro-pharmacokinetic Profile of Posaconazole With Pyruvate Concentration

The concentration vs. time profile of posaconazole will be correlated with the concentration vs. time profile of pyruvate in the cerebrospinal fluid.

Time frame: Collected over a 24-hour period after surgery (biopsy or resection)

Population: The entirety of the cerebrospinal fluid collected from the microdialysis catheters was consumed during the posaconazole concentration analysis. Since the catheters yielded a low volume of sample, none was available to test pyruvate concentration, thus, correlation of posaconazole profile to pyruvate concentration could not be analyzed for any of the participants.

Secondary

Number of Participants Able to Tolerate Preoperative Steady-state Dosing of Posaconazole

Measured through the Grade and Frequency of adverse events, based on the CTCAE v5.0 criteria

Time frame: from Baseline to Visit 7 (14 days +/- 7 days post-op)

Population: Control participants did not take the study drug.

ArmMeasureValue (NUMBER)
PosaconazoleNumber of Participants Able to Tolerate Preoperative Steady-state Dosing of Posaconazole2 Participants Who Tolerated Dosing
Secondary

Posaconazole Effect on Angiogenesis in Tumor Tissue

Measured using a CD31 ELISA with a range of 31.2 pg/mL to 2000 pg/mL.

Time frame: Within 24 hours after biopsy or tumor resection

Population: The fourth control participant's samples were unavailable for analysis.

ArmMeasureValue (MEAN)Dispersion
PosaconazolePosaconazole Effect on Angiogenesis in Tumor Tissue2130 pg/mLStandard Deviation 1500
ControlPosaconazole Effect on Angiogenesis in Tumor Tissue2240 pg/mLStandard Deviation 499.8
Secondary

Posaconazole Effect on Cell Death in Tumor Tissue

Measured using a BCL-2 ELISA with a range of 0.156 ng/mL to 10 ng/mL.

Time frame: Within 24 hours after biopsy or tumor resection

Population: The fourth control participant's samples were unavailable for analysis.

ArmMeasureValue (MEAN)Dispersion
PosaconazolePosaconazole Effect on Cell Death in Tumor Tissue0.3078 ng/mLStandard Deviation 0.2418
ControlPosaconazole Effect on Cell Death in Tumor Tissue0.5363 ng/mLStandard Deviation 0.2908
Secondary

Posaconazole Effect on Hexokinase 2 Concentration Within Tumor Tissue

Measured using a hexokinase-2 ELISA with a range of 1.56 ng/mL - 100 ng/mL on tumor tissue.

Time frame: Within 24 hours after biopsy or tumor resection

Population: The fourth control participant's samples were unavailable for analysis.

ArmMeasureValue (MEAN)
PosaconazolePosaconazole Effect on Hexokinase 2 Concentration Within Tumor TissueNA ng/mg
ControlPosaconazole Effect on Hexokinase 2 Concentration Within Tumor TissueNA ng/mg
Secondary

Posaconazole Effect on Tumor Proliferation in Tumor Tissue

Measured using Ki-67 proliferation index with of a range of 0% proliferation (no proliferation) to 100% (high proliferation). Ki-67 is a marker found in actively dividing cells. A higher Ki-67 value may signify a more aggressive tumor. Ki-67 is routinely measured during pathology analysis of tumor samples.

Time frame: Within 24 hours after biopsy or tumor resection

ArmMeasureValue (MEAN)Dispersion
PosaconazolePosaconazole Effect on Tumor Proliferation in Tumor Tissue25 % cells actively dividingStandard Deviation 0.05
ControlPosaconazole Effect on Tumor Proliferation in Tumor Tissue39 % cells actively dividingStandard Deviation 0.134

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026