This is an early phase study in patients with Tuberculosis (TB) to evaluate Fibroblast Activating Protein (FAP) activation as a marker of fibrosis. The Investigators propose to use FAP PET/CT to define the extent and location of FAP signals in lungs of TB patients early in TB treatment and after TB cure. These timepoints are chosen as they could be utilized to deliver treatments designed to prevent, predict, or treat Post-transplant Lymphoproliferative Disorder (PTLD). The overarching hypothesis is that greater FAP signals in lungs of adult TB patients are associated with greater imaging manifestations of PTLD after cure.
Most participants will be receiving care at the clinical practices of the University of Pennsylvania or through City of Philadelphia TB Control Program (named the Flick clinic). Patients may participate in this study if they are at least 21 years of age and will be approached about study participation regardless of race or ethnic background. The study anticipates enrolling up to 10 participants who meet eligibility requirements for this study. Accrual is estimated to occur over approximately 2 years. Investigators propose to use Fibroblast Activating Protein (FAP) PET/computed tomography (CT) to define the extent and location of FAP signals in lungs of TB patients at the time of TB treatment initiation and after TB cure. These timepoints are chosen as they could be utilized to deliver treatments designed to prevent, predict, or treat Post-transplant Lymphoproliferative Disorder (PTLD). The overarching hypothesis is that greater FAP signals in lungs of adult TB patients are associated with greater imaging manifestations of PTLD after cure. This is important, as radiographic findings in TB are associated with mortality. This longitudinal study will perform FAP PET/CT and high-resolution CT (HRCT) within 6 weeks of TB treatment initiation and again within 6 months after TB cure to evaluate the hypothesis that change in total pulmonary FAP signal during treatment is associated with change in a measure of total lung structural damage previously validated in TB. It is expected that patients with less decrease in FAP lung signals will have less improvement in lung structural damage despite curative TB treatment. After injection of \[F-18\]-FAPI-74, patients will undergo a vertex to mid-thigh scan, starting at approximately 30 minutes (± 5 min) post injection. PET/CT imaging sessions will include an injection of ≤ 8.0 mCi (expected range of doses is expected to be 6.0-8.0 mCi) of \[F-18\]-FAPI-74 intravenously. Data will be collected to evaluate uptake of \[F-18\]-FAPI-74 in the lung.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
10
Each patient will receive approximately 8 mCi of \[18F\]-FAPI-74 intravenously (approximate range for most studies is anticipated to be 6-8 mCi). This will be followed by a vertex to thigh static scan at 30 minutes ( ±5 min) post injection and a low dose CT for attenuation correction. Participants will also undergo high-resolution CT (HRCT) of the chest at baseline and follow-up timepoints, these scans may be done the same day or on different days.
Perelman School of Medicine, Nuclear Medicine
Philadelphia, Pennsylvania, United States
RECRUITINGDetermine the relationship between change in FAP PET signals in lungs during TB treatment and change in lung structural damage in adult patients treated for pulmonary TB.
Greater radiographic lung structural damage in TB, a hallmark of PTLD, is inversely associated with lung function and has repeatedly been associated with reduced survival in TB5, 21-23. This longitudinal study will perform FAP PET/CT and high-resolution CT (HRCT) within 6 weeks of TB treatment initiation and again within 6 months after TB cure to evaluate the hypothesis that change in total pulmonary FAP signal during treatment is associated with change in a measure of total lung structural damage previously validated in TB. It is expected that patients with less decrease in FAP lung signals will have less improvement in lung structural damage despite curative TB treatment.
Time frame: 6 months
Characterize the association between FAP PET signals in lungs early after TB diagnosis and persistent lung structural damage after cure.
Investigators will use the longitudinal data from Aim 1 to evaluate the hypothesis that higher levels of total FAP signal in the lungs early will be associated with higher overall levels of residual structural lung damage on HRCT after TB cure. It is expected that higher baseline FAP signal will be associated with worse residual structural lung damage.
Time frame: 6 months
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