This phase I trial tests the safety, side effects, best dose and how well FPS-ZM1 works for controlling post operative cerebral edema in patients with glioblastoma. FPS-ZM1 works by blocking the pathway that controls inflammation. Dexamethasone is in a class of medications called corticosteroids. It is used to reduce inflammation and lower the body's immune response to help lessen the side effects of chemotherapy drugs. Giving FPS-ZM1 with or without dexamethasone may be safe and/or effective in controlling post operative cerebral edema in patients with glioblastoma.
PRIMARY OBJECTIVE: I. Determine the maximum feasible dose (MFD) of RAGE antagonist FPS-ZM1 (FPS-ZM1) administered peri-operatively to participants with newly diagnosed or recurrent glioblastoma. SECONDARY OBJECTIVES: I. Assess the ability of FPS-ZM1 to control participants' symptoms of post-operative cerebral edema when administered as monotherapy. II. Describe the systemic pharmacokinetics and central nervous system (CNS) penetration of FPS-ZM1 based on concentrations of FPS-ZM1 in peripheral blood, cerebrospinal fluid (CSF), brain tumor tissue and resection cavity fluid (when obtainable). III. Characterize cytokine concentrations over time in brain interstitial fluid, peripheral blood and resection cavity fluid (when obtainable) by dose level. IV. Assess for evidence of RAGE inhibition in tumor tissue, CSF, brain interstitial fluid, resection cavity fluid (when obtainable) and peripheral blood by dose level. V. Qualitatively and quantitatively assess changes in volume of cerebral edema on pre-operative brain magnetic resonance imaging (MRIs) and brain MRIs performed on post-operative Days 2 and 14 across dose levels. OUTLINE: This is a dose-escalation study of FPS-ZM1 in combination with fixed-dose dexamethasone. Patients are assigned to 1 of 2 arms. ARM I (DOSE LEVELS 1-3): Starting 2 days prior to surgery, patients receive FPS-ZM1 orally (PO) daily (QD) until post operative day 11, and dexamethasone intravenously (IV) or PO QD taper until post operative day 14, in the absence of disease progression or unacceptable toxicity. On day of surgery patients undergo standard of care resection and, if possible, undergo placement of a temporary peritumoral microdialysis catheter and intracavity drain for collection of dialysate and intracavity fluid. Patients undergo urine sample collection during screening, lumbar puncture with CSF collection and computed tomography (CT) scan on study and brain MRI, and blood sample collection throughout the study. ARM II (DOSE LEVEL 4): Starting 2 days prior to surgery, patients receive FPS-ZM1 PO QD and, if needed for physiologic replacement, a smaller dose of dexamethasone IV or PO QD until post operative day 11, in the absence of disease progression or unacceptable toxicity. On day of surgery patients undergo standard of care resection and, if possible, undergo placement of a temporary peritumoral microdialysis catheter and intracavity drain for collection of dialysate and intracavity fluid. Patients undergo urine sample collection during screening, lumbar puncture with CSF collection and CT scan on study and brain MRI, and blood sample collection throughout the study. After completion of study treatment, patients are followed up at day 30.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
24
Undergo blood, dialysate, intracavity fluid, and urine sample collection
Undergo CT scan
Given IV or PO
Undergo placement of a temporary peritumoral microdialysis catheter
Undergo intracavity drain placement
Undergo MRI
Given PO
Undergo resection surgery
City of Hope Medical Center
Duarte, California, United States
RAGE Antagonist FPS-ZM1 (FPS-ZM1) related adverse events
Assessed per Common Terminology Criteria for Adverse Events (CTCAE) version 6.0.
Time frame: Up to 30 days post surgery
Dose limiting toxicity rate
Assessed per CTCAE version 6.0.
Time frame: Up to 30 days post surgery
Doses of dexamethasone taken post-operatively by study participants on dose Level 4
Time frame: Up to 30 days post surgery
FPS-ZM1 concentrations in enhancing tumor tissue
Time frame: Up to 30 days post surgery
FPS-ZM1 concentrations in non-enhancing tumor tissue
Time frame: Up to 30 days post surgery
FPS-ZM1 concentrations in cerebrospinal fluid (CSF)
Time frame: Up to 30 days post surgery
FPS-ZM1 concentrations in resection cavity fluid
Time frame: Up to 30 days post surgery
Cytokine concentrations in brain interstitium
Time frame: Up to 30 days post surgery
Cytokine concentrations in peripheral blood
Time frame: Up to 30 days post surgery
Cytokine concentrations in resection cavity fluid
Time frame: Up to 30 days post surgery
Concentrations of RAGE ligands in brain extracellular fluid
Time frame: Up to 30 days post surgery
Concentrations of RAGE ligands in CSF
Time frame: Up to 30 days post surgery
Concentrations of RAGE ligands in resection cavity fluid
Time frame: Up to 30 days post surgery
Concentrations of RAGE ligands in peripheral blood
Time frame: Up to 30 days post surgery
Expression of activating markers on tumor infiltrating lymphocytes
Time frame: Up to 30 days post surgery
Expression of activating markers on myeloid cells
Time frame: Up to 30 days post surgery
Expression of activating markers on lymphocytes in resection cavity fluid
Time frame: Up to 30 days post surgery
Expression of activating markers on myeloid cells in resection cavity fluid
Time frame: Up to 30 days post surgery
Expression of activating markers on lymphocytes in peripheral blood
Time frame: Up to 30 days
Expression of activating markers on myeloid cells in peripheral blood
Time frame: Up to 30 days post surgery
T1 enhancing tumor volume from segmented T1-weighted magnetic resonance imaging (MRI)
Time frame: Up to 30 days post surgery
Mean intratumoral perfusion from dynamic contrast enhanced (DCE)-MRI
Time frame: Up to 30 days post surgery
Interstitial fluid flow from DCE-MRI
Time frame: Up to 30 days post surgery
T2-FLAIR enhancing edema from segmented T2-FLAIR MRI
Time frame: Up to 30 days post surgery
Mean intratumoral blood volume from relative cerebral blood volume as calculated from DSC-MRI
Time frame: Up to 30 days post surgery
Mean intratumoral tissue density as measured by the apparent diffusion coefficient derived from diffusion-weighted MRI
Time frame: Up to 30 days post surgery
Mean intratumoral lactate and glutatione concentration as measured by multiplexed MR spectroscopy
Time frame: Up to 30 days post surgery
FPS-ZM1 plasma pharmacokinetics: Maximum Observed Plasma Concentration (Cmax)
Time frame: Up to 30 days post surgery
FPS-ZM1 plasma pharmacokinetics: Area Under the Plasma Concentration-Time Curve (AUC)
Time frame: Up to 30 days post surgery
FPS-ZM1 plasma pharmacokinetics: Terminal Elimination Half-Life (t½)
Time frame: Up to 30 days post surgery
FPS-ZM1 plasma pharmacokinetics: Clearance (CL)
Time frame: Up to 30 days post surgery
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