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Fluorescent Probe for Assessment of Renal Elimination

Fluorescent Probe for Assessment of Renal Elimination

Status
Not yet recruiting
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07643467
Acronym
FLARE
Enrollment
200
Registered
2026-06-11
Start date
2026-09-01
Completion date
2028-06-30
Last updated
2026-09-03

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

Conditions

Augmented Renal Clearance, Critical Illness

Brief summary

Accurate measures of kidney function is important for precision dosing of many medications. The current methods of determining kidney function largely hinge on the use of equations that use common laboratory values such as serum creatinine & static variables like age & weight. These are helpful for trending over time, but often are inaccurate during times of medical illness. Other more accurate methods of measuring kidney function include urine collection, although this is not commonly used because of various reasons that make the collection inconvenient or unreliable. The new transdermal glomerular filtration (tGFR) device permits accurate, real-time evaluation of kidney function. This novel method has not been rigorously compared with urine collection & other methods of determining kidney function in hospitalized patients. The goal of the study is to compare tGFR with other accepted methods of determining kidney function.

Detailed description

The majority of acutely ill patients exhibit changes in renal function due to inflammation, increased solute generation, and iatrogenic factors such as fluid resuscitation and vasopressors. The pharmacokinetics of renally eliminated medications (eg. levetiracetam, cefepime, vancomycin) are frequently affected by inflammatory processes despite normal estimations in creatinine clearance resulting in suboptimal serum drug concentrations and therapeutic failure. Despite the prevalence of fluctuations in renal function in acute illness, real-time assessment is limited to monitoring of serum biomarkers such as creatinine and cystatin C, as well as urine output, which typically lag behind important changes in function. Furthermore, use of creatinine clearance equations based on anthropomorphic data correlates poorly with actual renal function, potentially misleading clinicians as to the progression of disease and the need for dose adjustment of important medications in this vulnerable population. Limitations of current approaches for evaluating renal function in the acutely ill Estimation of GFR or creatinine clearance can be accomplished by numerous equations, the majority of which have been validated in non-critically ill adults, usually with a relatively high percent of patients with chronic kidney disease. These equations are often not accurate in patients with acutely worsening renal function. Likewise, while these equations are helpful for categorizing renal function and assessing appropriate medication dosing in otherwise healthy, ambulatory patients. Under-prediction of creatinine clearance values leads clinicians to consistently under-dose critical medications such as beta-lactam antibiotics, vancomycin, or antiseizure medications such as levetiracetam. Proactive measurement of creatinine clearance can provide a more accurate depiction of GFR but is fraught with complications. Iohexol serum concentrations correlate well with GFR, but requires intravenous administration of iohexol, which has a small risk of infusion reaction and hypersensitivity, and serial blood samples. Measured urine creatinine clearance is also feasible but inconvenient in most hospitalized patients. mClCr requires bladder catheterization for accurate urine volume, consistent storage on ice for the duration of collection (between 8 and 24 hours), and prompt delivery of the large volume container to the local laboratory for creatinine analysis. Each of these criteria introduce variability into the measurement and are often unnoticed or undocumented, introducing inaccuracy into the mClCr values. The lack of a real-time, accurate assessment of creatinine clearance in the acutely ill population is a gap in practice and represents a resolvable problem in the process of individualized and precision dosing of medications in this vulnerable and high-risk population. This study represents an important innovation in advancing the understanding of fluctuations in renal function during acute illness. The current study will validate the safety of transdermal GFR monitoring to provide real-time measurement of renal function in patients with stable renal function. Further, the reliability of transdermal GFR monitoring will be compared to current standards of renal function assessment. The results of this study will advance the field by validating the use of a real-time physiologic assessment of GFR rather than using labor intensive, invasive tests that may lag behind current renal function. Numerous important gaps remain with this new technology, including use primarily in the ambulatory, stable renal function populations. Thus, this study is potentially the first step in evaluating renal function across the acute care continuum.

Interventions

DRUGRelmapirazin

IV push of relmapirazin (Lumitrace) prior to use of the tGFR device

DRUGIohexol

Small IV push bolus of iohexol as a probe for renal function will be administered prior to use of the tGFR device.

DEVICEMedibeacon tGFR monitor

The tGFR monitor will be applied to the patient after relmapirazin bolus for measurement of GFR.

DIAGNOSTIC_TESTUrine creatinine clearance collection

8-hour urine creatinine clearance collection will be performed during the study period to compare to tGFR \& other renal function measures.

Sponsors

Aaron Cook
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* 18-65 years old * critically ill or acutely ill hospitalized patients admitted to the intensive care unit * Stable/normal renal function

Exclusion criteria

* Prisoners * Pregnant women * Laboratory evidence of unstable kidney function (KDIGO AKI stage 1-3--This includes subjects with Scr \> 1.5x baseline)

Design outcomes

Primary

MeasureTime frameDescription
Transdermal Glomerular Filtration Rate (tGFR) Monitoring Accuracy8 HoursAccuracy of transdermal glomerular filtration rate (GFR) monitoring compared with measured urine creatinine clearance.

Secondary

MeasureTime frameDescription
Relmapirazin Elimination Half-Life12 hoursElimination half-life of Relmapirazin calculated from serial serum concentration measurements obtained over 12 hours following intravenous administration.
Iohexol Elimination Half-Life12 hoursElimination half-life of Iohexol calculated from serial serum concentration measurements obtained over 12 hours following intravenous administration.

Countries

United States

Contacts

CONTACTAaron Cook, PharmD
amcook0@uky.edu18592578444
PRINCIPAL_INVESTIGATORAaron M Cook, PharmD

University of Kentucky College of Pharmacy, Department of Pharmacy Practice & Science

STUDY_DIRECTORJuan-Carlos Aycinena, MD

University of Kentucky College of Medicine, Department of Nephrology

Outcome results

None listed

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