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Clinical Application Study of PET/CT for Differential Diagnosis of Non-small Cell Lung Cancer

Clinical Application Study of PET/CT for Differential Diagnosis of Non-small Cell Lung Cancer

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07026110
Enrollment
100
Registered
2025-06-18
Start date
2024-12-23
Completion date
2026-10-31
Last updated
2025-06-18

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

Conditions

Lung Cancer, Lung Cancer Metastatic, Lung Diseases, Lung Inflammation, Lung Neoplasms

Keywords

Trophoblast cell surface antigen 2 (Trop2), Epithelial cell adhesion molecule(EpCAM), ImmunoPET, Lung tumor

Brief summary

This study aims to explore the efficacy of Trop2, EpCAM-specific PET/CT imaging for noninvasive visualization of Trop2 or EpCAM expression levels in non-small cell lung cancer; and to explore the differences between novel target-specific PET/CT examinations and conventional 18F-FDG PET/CT in the diagnosis and differential diagnosis of solid lung nodules.

Detailed description

A solid lung nodule was initially diagnosed as non-small cell lung cancer by chest CT. Patients with lung nodules subjected to 18F-FDG PET/CT with surgical resection/biopsy. Patients will also be included for routine follow-up, surveillance, and treatment efficacy evaluation.Enrolled patients will undergo whole-body immunoPET/CT scans 1-2 hours after tracer injection (0.05-0.1 mCi/kg). The uptake of imaging tracers in tumors and normal organs/tissues will be scored visually and quantitatively.Tumor uptake will be quantified by the maximum standard uptake value (SUVmax). The sensitivity, specificity, positive predictive value (PPV), negative predictive value (NPV), and accuracy will be calculated to assess the diagnostic efficacy. The correlation between lesion uptake and Trop2 and EpCAM expression level determined by immunohistochemistry staining will be further analyzed. The primary exploration endpoint will be the tracers' imaging feasibility and preliminary diagnostic value compared to conventional imaging approaches like 18F-FDG PET/CT.

Interventions

Enrolled patients will receive 0.05-0.1 mCi/kg of \[68Ga\]Ga-NOTA-T4. ImmunoPET/CT imaging will be acquired 1-2 hours after \[68Ga\]Ga-NOTA-T4 injection.

Enrolled patients will receive 0.05-0.1 mCi/kg of \[68Ga\]Ga-NOTA-RT4. ImmunoPET/CT imaging will be acquired 1-2 hours after \[68Ga\]Ga-NOTA-RT4 injection.

Enrolled patients will receive 0.05-0.1 mCi/kg of \[18F\]F-RESCA-T4. ImmunoPET/CT imaging will be acquired 1-2 hours after \[18F\]F-RESCA-T4 injection.

Enrolled patients will receive 0.05-0.1 mCi/kg of \[18F\]F-RESCA-RT4. ImmunoPET/CT imaging will be acquired 1-2 hours after \[18F\]F-RESCA-RT4 injection.

DRUG[18F]F-RESCA-EPCD6

Enrolled patients will receive 0.05-0.1 mCi/kg of \[18F\]F-RESCA-EPCD6. ImmunoPET/CT imaging will be acquired 1-2 hours after \[18F\]F-RESCA-EPCD6 injection.

DRUG[68Ga]Ga-NOTA-EPCD6

Enrolled patients will receive 0.05-0.1 mCi/kg of \[68Ga\]Ga-NOTA-EPCD6. ImmunoPET/CT imaging will be acquired 1-2 hours after \[68Ga\]Ga-NOTA-EPCD6 injection.

Sponsors

RenJi Hospital
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. Age 18-80 years; 2. Imaging studies suspecting non-small cell lung cancer; 3. Solid lung nodules (≥8 mm in diameter) diagnosed by chest ct, which are subject to 18F-FDG PET/CT and surgical resection/biopsy of lung nodules according to the NCCN guideline specifications for NSCLC in the 2024 edition; 4. Patients or family members agreed to participate in this clinical study and signed an informed consent form.

Exclusion criteria

1. Women during pregnancy and lactation; 2. Persons with a history of surgery and trauma that significantly affects metabolic distribution and anatomical structure; 3. Persons with severe other systemic diseases or known hypersensitivity to humanized monoclonal antibody products; 4. Patient is unable to cooperate in completing the PET/CT examination; 5. Patient has participated in other clinical studies within the past year that have resulted in radiation exposures in excess of an effective dose of 50 mSv, in addition to the radiation exposures anticipated from participation in this clinical study; 6. Patient should not participate in this clinical trial in the opinion of the investigator.

Design outcomes

Primary

MeasureTime frameDescription
Biodistribution-Standardized uptake value (SUV) of normal tissues and organs.1 day from injection of the tracersMeasurement of the overall biodistribution of the above tracers in normal tissues and organs (bladder (after voiding), background (pelvic fat), blood, brain, salivary and lacrimal glands, lung, liver, spleen, pancreas, small intestine, and kidneys). To calculate the SUV, circular regions of interest were drawn around the area of focally increased uptake in the transaxial slices and automatically fitted to a three-dimensional volume of interest.
SUV of tumors1 day from injection of the tracersThe SUV of the above tracers in the primary and/or metastatic lesions of the included subjects. To calculate the SUV, circular regions of interest were drawn around the area of focally increased uptake in the transaxial slices and automatically fitted to a three-dimensional volume of interest.
Radiation dosimetry of tissues/organs1 day from injection of the tracersMeasurement of absorbed radiation doses (Gy/MBq) to tissues/organs. The following tissues were included: adrenals, brain, breasts, gallbladder, small intestine, upper and lower large intestine, stomach, heart contents, heart muscle, kidney, liver, lung, muscle, ovaries, pancreas, red marrow, trabecular and cortical bone, spleen, testes, thymus, thyroid, urinary bladder, and uterus. Dynamic imaging within one hour will be performed for this purpose.
Radiation dosimetry of tumors1 day from injection of the tracersMeasurement of absorbed radiation doses (Gy/MBq) to tumors. Dynamic imaging within one hour will be performed for this purpose.
Radiation dosimetry of whole-body1 day from injection of the tracersWhole-body activity was measured using a large volume of interest (VOI) covering the entire subject.
Diagnostic sensitivity30 daysSensitivity = (True Positives) / (True Positives + False Negatives). The diagnostic value of Trop2 and EpCAM immunoPET/CT will be compared with that of conventional imaging approaches, including 18F-FDG PET/CT, CT, and MRI.
Diagnostic specificity30 daysSpecificity = (True Negatives) / (True Negatives + False Positives). The diagnostic value of Trop2 and EpCAM immunoPET/CT will be compared with that of conventional imaging approaches, including 18F-FDG PET/CT, CT, and MRI.
Accuracy30 daysAccuracy = (True Positives + True Negatives) / (Total Tests). The diagnostic value of Trop2 and EpCAM immunoPET/CT will be compared with that of conventional imaging approaches, including 18F-FDG PET/CT, CT, and MRI.
Positive Predictive Value (PPV)30 daysPPV = (True Positives) / (True Positives + False Positives). The diagnostic value of Trop2 and EpCAM immunoPET/CT will be compared with that of conventional imaging approaches, including 18F-FDG PET/CT, CT, and MRI.
Negative Predictive Value (NPV)30 daysNPV = (True Negatives) / (True Negatives + False Negatives). The diagnostic value of Trop2 and EpCAM immunoPET/CT will be compared with that of conventional imaging approaches, including 18F-FDG PET/CT, CT, and MRI.

Secondary

MeasureTime frameDescription
ImmunoPET/CT in altering initial staging for patients with lung tumors3-6 monthsAssess the role of Trop2 and EpCAM immunoPET/CT in initial staging in terms of the number of metastases.
ImmunoPET/CT for postoperative surveillance for patients with lung tumors3-6 monthsAssess the role of Trop2 and EpCAMimmunoPET/CT in surveillance in terms of the number of metastases, Trop2 and EpCAM-derived tumor volume (Trop2 and EpCAM-TV), and total lesion Trop2 uptake (Trop2 and EpCAM-TLU).
ImmunoPET/CT for restaging for patients with lung tumors3-6 monthsAssess the role of Trop2 and EpCAM immunoPET/CT in restaging in terms of the number of metastases, Trop2 and EpCAM-TV, and Trop2 and EpCAM-TLU.
ImmunoPET/CT in evaluating treatment responses1-2yearsWe will also investigate the role of Trop2 and immunoPET/CT in predicting and evaluating the treatment efficacy in patients with lung tumors. The treatment regimens involve chemotherapy, molecularly targeted therapies, immunotherapies (e.g. PD-1/PD-L1 inhibitors), and cell therapies.
ImmunoPET/CT in identifying inflammation and tumors in the lungs1 day from injection of the tracersWe will also investigate the role of Trop2 and immunoPET/CT in identifying the benign and malignant nature of pulmonary lesions and hilar and mediastinal lymph nodes

Countries

China

Contacts

Primary ContactWeijun Wei
wwei@shsmu.edu.cn15000083153

Outcome results

None listed

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