Cadherin 3(CDH3)-Targeted PET in Lung Malignant Tumors
Ориентир для пациента и семьи
Простыми словами
Автоматическая сводка по структурированным данным реестра. Она помогает сориентироваться, но не заменяет официальный протокол или оценку врача.
- Что изучают
- В протоколе указаны: PET/CT scans.
- Кому может быть актуально
- Состояния в реестре: Non-Small Cell Lung Cancer, Malignant Neoplasm, Pulmonary Nodules, PET/CT. Базовые параметры: от 18 лет · Все.
- Что важно проверить
- Возраст, диагноз и пол — только базовые ориентиры. Предыдущее лечение, анализы и другие обязательные условия указаны ниже в критериях участия.
- Где проводится
- Китай
- Следующий шаг
- Сохраните исследование, покажите его лечащему врачу и уточните актуальный статус у исследовательского центра. Расходы, документы и поездка →
Не всё понятно в терминах? Прочитайте наш гид для пациентов →
Официальное название
A Single-arm, Open-label, Single-center Clinical Study to Evaluate CDH3-targeted Positron Emission Tomography (PET) for Lung Malignant Tumors
Обзор
Lung malignant tumors are a significant health threat with high incidence and mortality rates, and molecular imaging is crucial for early diagnosis, staging, prognosis evaluation, and therapeutic efficacy assessment. 18F-FDG PET imaging is widely used, but has limitations. CDH3 is a promising target for tumor-targeted imaging, as it is only expressed in cancerous epithelial cells. A new PET probe, 68Ga-TOI-1, targeting CDH3 has been developed with better affinity and selectivity than previous probes. Preclinical data support its safety and metabolic stability, and future research will explore its diagnostic and staging value in different types of lung tumors, providing a new and precise evaluation method for lung malignant tumors.
Подробное описание
Cancer is a leading cause of high mortality rates worldwide and a significant barrier to increasing life expectancy. Among various cancer types, lung cancer is one of the most common malignant tumors globally. According to global cancer statistics, as of 2020, the global incidence rate of lung cancer was 11.4%, and the mortality rate was 18%. Lung cancer is a major cause of cancer-related deaths in China and worldwide, particularly non-small cell lung cancer (NSCLC), and its treatment strategies are continuously evolving. Immunotherapy and targeted neoadjuvant therapy can help eliminate micrometastases to reduce postoperative recurrence, lower tumor staging to improve the resectability of primary lesions, and enhance the long-term survival rate of lung cancer patients to some extent. However, for patients with resectable lung cancer, surgery remains the primary curative approach.
Given the significant individual variability in lung cancer treatment outcomes, the suboptimal efficacy of traditional PET in monitoring treatment response, and the lack of effective methods for distinguishing benign from malignant pulmonary nodules, there is a critical clinical need for innovative approaches. Leveraging key molecular imaging markers for preoperative assessment of treatment efficacy and assisting in the differentiation of benign and malignant pulmonary nodules is a crucial scientific direction for our research team.
In recent years, molecular imaging has been increasingly applied in cancer diagnosis and treatment, with PET molecular imaging emerging as a key tool for lung cancer management. By utilizing targeting moieties of molecular probes to precisely bind to tumor biomarkers, coupled with radiation emitted from radionuclides during decay, it is possible to achieve accurate lesion detection and non-invasive monitoring. This approach holds promise for overcoming longstanding challenges in conventional PET imaging for comprehensive lung cancer treatment, such as high false-positive rates.
High-dimensional multi-omics technologies integrate data from genomics, transcriptomics, proteomics, and other levels. By employing transcriptomics and proteomics, overexpressed proteins in lung cancer tissues can be identified at the tissue level, while spatial transcriptomics and single-cell transcriptomics can validate the cellular localization of target proteins. Multi-omics approaches enable systematic exploration of key molecular targets in lung cancer, providing a reliable pathway for precision target discovery. Utilizing a previously established large-scale Chinese multi-omics lung cancer cohort, combined with bioinformatics analysis and in vitro and in vivo molecular biology validation, the investigators identified CDH3 as a surface biomarker for non-small cell lung cancer.
Cadherin-3 (CDH3) is a glycoprotein whose abnormal high expression in non-small cell lung cancer is closely associated with poor prognosis, enhanced tumor proliferation and migration, and the formation of an immunosuppressive microenvironment. CDH3 has emerged as a promising novel therapeutic target for lung cancer. Currently, drug development targeting CDH3 primarily focuses on antibody-drug conjugates (ADCs). In a study involving five patients with advanced NSCLC harboring EGFR mutations, these drugs achieved an objective response rate as high as 80%. Through multi-omics imaging target screening, CDH3 was identified as a potential imaging target due to its specific high expression on the surface of lung cancer cells.
Supported by a key project from the National Natural Science Foundation of China, our team has previously developed a CDH3-targeted molecular probe, TOI-1, with independent intellectual property rights and has applied for a patent (published under publication number CN121426959A). This probe has demonstrated excellent sensitivity and specificity in preclinical animal models. the investigators are now collaborating with the Department of Nuclear Medicine at our hospital to conduct an exploratory clinical study on the 68Ga-TOI-1 PET molecular probe. 68Ga-TOI-1 PET/CT imaging is expected to help determine the benign or malignant nature of tumors and their extent of involvement, enable tumor localization and qualitative diagnosis, facilitate early diagnosis and restaging of recurrent tumors, and provide scientific evidence for disease staging, disease activity assessment, treatment planning, and prognosis evaluation.
Вмешательства
- Диагностический тест PET/CT scans
PET Dynamic Data: The tracer is administered based on the patient's body weight at approximately 0.06-0.12 mCi/kg. PET scanning is initiated simultaneously with tracer injection, followed by a flush with 10 ml of normal saline. The image acquisition matrix is 192 × 192. Reconstruction is performed using the OSEM algorithm with 4 iterations and 20 subsets, incorporating time-of-flight attenuation correction, scatter correction, and random correction. The total duration of PET dynamic data acquisi
Первичные конечные точки
- The diagnostic sensitivity and specificity of 68Ga-TOI-1 PET/CT in the staging of lung malignant tumors. [Срок оценки: up to 6 weeks]
Вторичные конечные точки (4)
- Maximum Standardized Uptake Value [SUVmax] of Primary and Metastatic Lesions on 68Ga-TOI-1 PET/CT vs. 18F-FDG PET/CT [Срок оценки: up to 6 weeks]
- Mean Standardized Uptake Value [SUVmean] of Primary and Metastatic Lesions on 68Ga-TOI-1 PET/CT vs. 18F-FDG PET/CT [Срок оценки: up to 6 weeks]
- Correlation between 68Ga-TOI-1 SUVmax and CDH3 H-score in Tumor Tissue [Срок оценки: up to 6 weeks]
- Correlation between 68Ga-TOI-1 SUVmean and CDH3 H-score in Tumor Tissue [Срок оценки: up to 6 weeks]
Критерии участия
Критерии включения
- Age ≥ 18 years, male or female, with an ECOG performance status of 0 or 1;
- Availability of complete clinical and imaging data;
- Life expectancy ≥ 12 weeks;
- Hematology, liver and kidney function meeting the following criteria: Hematology: WBC ≥ 4.0 × 10⁹/L or neutrophils ≥ 1.5 × 10⁹/L, PLT ≥ 100 × 10⁹/L, Hb ≥ 90 g/L; PT or APTT ≤ 1.5 × ULN; Liver and kidney function: T-Bil ≤ 1.5 × ULN, ALT/AST ≤ 2.5 × ULN, ALP ≤ 2.5 × ULN; BUN ≤ 1.5 × ULN, SCr ≤ 1.5 × ULN;
- Patients who have not received radiotherapy or chemotherapy and are eligible for surgical resection or biopsy to obtain a pathological diagnosis, or those highly suspected of having malignant pulmonary nodules according to clinical diagnostic criteria;
- Pathologically confirmed lung cancer via biopsy before neoadjuvant therapy; life expectancy ≥ 12 weeks;
- Ability to provide adequate tumor tissue for testing and research.
Критерии исключения
- Women who are planning pregnancy, pregnant, or breastfeeding;
- History of other malignant tumors or prior receipt of other anti-tumor therapies;
- Poor or missing PET scan image quality of the probe that fails to meet analysis standards;
- Presence of claustrophobia or other mental illnesses;
- Any other conditions deemed by the investigators as inappropriate for participation in this study.
Критерии приведены из реестра в оригинале (на английском). Окончательную оценку соответствия проводит исследовательский центр.
Здоровые добровольцы: Нет
Дизайн исследования
- Модель наблюдения
- Когортное
Центры проведения
Китай · 1 центр
- Peking University People's Hospital — Пекин
Публикации
- Sarkaria IS, Martin LW, Rice DC, Blackmon SH, Slade HB, Singhal S; ELUCIDATE Study Group. Pafolacianine for intraoperative molecular imaging of cancer in the lung: The ELUCIDATE trial. J Thorac Cardiovasc Surg. 2023 Dec;166(6):e468-e478. doi: 10.1016/j.jtcvs.2023.02.025. Epub 2023 Mar 3. PMID 37019717
- Kennedy GT, Azari FS, Bernstein E, Marfatia I, Din A, Kucharczuk JC, Low PS, Singhal S. Targeted Intraoperative Molecular Imaging for Localizing Nonpalpable Tumors and Quantifying Resection Margin Distances. JAMA Surg. 2021 Nov 1;156(11):1043-1050. doi: 10.1001/jamasurg.2021.3757. PMID 34431971
- Gangadharan S, Sarkaria IN, Rice D, Murthy S, Braun J, Kucharczuk J, Predina J, Singhal S. Multiinstitutional Phase 2 Clinical Trial of Intraoperative Molecular Imaging of Lung Cancer. Ann Thorac Surg. 2021 Oct;112(4):1150-1159. doi: 10.1016/j.athoracsur.2020.09.037. Epub 2020 Nov 19. PMID 33221195
- Chen K, Yang F, Shen H, Wang C, Li X, Chervova O, Wu S, Qiu F, Peng D, Zhu X, Chuai S, Beck S, Kanu N, Carbone D, Zhang Z, Wang J. Individualized tumor-informed circulating tumor DNA analysis for postoperative monitoring of non-small cell lung cancer. Cancer Cell. 2023 Oct 9;41(10):1749-1762.e6. doi: 10.1016/j.ccell.2023.08.010. Epub 2023 Sep 7. PMID 37683638
- Sung H, Ferlay J, Siegel RL, Laversanne M, Soerjomataram I, Jemal A, Bray F. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries. CA Cancer J Clin. 2021 May;71(3):209-249. doi: 10.3322/caac.21660. Epub 2021 Feb 4. PMID 33538338
Идентификаторы
NCT: NCT07487883 · 92259303