- ICH GCP
- Реестр клинических исследований США
- Клиническое испытание NCT04944550
New Models for the Evaluation of Preclinical Treatment for Urothelial Carcinomas of the Upper Excretory Tract. (CICLOP)
Development of New Models for the Evaluation of Preclinical Treatment for Urothelial Carcinomas of the Upper Excretory Tract.
Upper Urinary Tract Urothelial Carcinomas are rare, aggressive tumors, accounting for 5 to 10% of all urothelial tumors. These include tumors which develop in the renal cavities (renal pelvis, calices) and ureteral tumors. Nephro-ureterectomy is the standard treatment but 80% of patients will have a relapse within 2 years. Only one trial has (Birtle et al. 2020), has shown the interest of postoperative chemotherapy. Neoadjuvant systemic treatment seems particularly interesting for a population which is going to undergo a nephronic loss and therefore reduction in kidney function which is likely to make patients ineligible for cisplatin. In favor of additional immunotherapy, it has been described that upper excretory tract tumors have a high immunogenic potential with a high rate of microsatellite instability.
From surgical samples of patient tumors obtained after nephroureterectomy or biopsy material collected before treatment, we are going to generate patient-derived cell lines and xenograft models in the mouse. A recent publication has demonstrated the feasibility of this approach by specifying that the capture rate of tumor cells is 50% for patient-derived xenografts and 25% for patient-derived cells (Coleman et al. 2020). As tumors harvested from biopsies do not grow in patient-derived xenografts,we plan to graft the biopsies onto chorioallantoic chicken embryo membranes, a model which has never been used for this indication and which is one of the original features of our approach. These three concomitant approaches will allow us to increase our chances of obtaining stable upper urinary tract urothelial carcinoma lines to be used for the screening and identification of new treatments or new combinations of molecules that would benefit patients with upper urinary tract urothelial carcinomas, knowing that very few studies dedicated to this type of cancer have been conducted or published due to the rarity of the disease and the lack of existing models published on the subject of these particular tumors.
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Обзор исследования
Статус
Тип исследования
Регистрация (Действительный)
Контакты и местонахождение
Места учебы
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Gard
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Nîmes, Gard, Франция, 30029
- Centre Hospitalier Universitaire de Nîmes
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Критерии участия
Критерии приемлемости
Возраст, подходящий для обучения
Принимает здоровых добровольцев
Метод выборки
Исследуемая популяция
Описание
Inclusion Criteria:
- Patients treated consecutively at the Urology Andrology Department of Nîmes University Hospital for high grade carcinoma of the pelvis or renal ureter with an indication for total nephroureterectomy decided during a multidisciplinary meeting.
- Patient with a diagnosis of high-grade urothelial carcinoma of the pelvis or renal ureter confirmed by histology (biopsy, biopsy of the ureteroscopic) or by cytology with the presence of :
- High-grade disease on ureteroscopic biopsy OR ;
- High grade disease on urinary cytology AND infiltrating appearance of the renal pelvic wall / ureter on the scanner (the presence of hydronephrosis will be considered as pervasive by definition) with a negative cytoscopy.
Exclusion Criteria:
- Any patient who has undergone previous systemic treatment.
Учебный план
Как устроено исследование?
Детали дизайна
Что измеряет исследование?
Первичные показатели результатов
Мера результата |
Мера Описание |
Временное ограничение |
|---|---|---|
|
Histological characteristics of patient-derived xenograft models after staining.
Временное ограничение: 1-6 months after harvesting
|
Microscopic observation of cells after staining with hematoxylin and eosin
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1-6 months after harvesting
|
|
Study of genomes of tumor specimens
Временное ограничение: 1-6 months after harvesting
|
Exome sequencing of DNA cells isolated from original patient tumor specimens.
|
1-6 months after harvesting
|
|
Alterations in the genomes of patient-derived xenograft tumor models
Временное ограничение: 1-6 months after harvesting
|
Exome sequencing of DNA cells isolated from patient-derived xenograft tumor models.
|
1-6 months after harvesting
|
|
Alterations in the genomes of patient-derived cell line models
Временное ограничение: 1-6 months after harvesting
|
Exome sequencing of DNA cells isolated from patient-derived cell line models.
|
1-6 months after harvesting
|
|
Study of the transcriptome of patient tumor specimens.
Временное ограничение: 1-6 months after harvesting
|
RNA-sequencing of cells isolated from patient tumor specimens.
|
1-6 months after harvesting
|
|
Transcriptome of the patient-derived xenograft tumor models.
Временное ограничение: 1-6 months after harvesting
|
RNA-sequencing of cells isolated from patient-derived xenograft tumor models.
|
1-6 months after harvesting
|
|
Transcriptome of the patient-derived cell line models.
Временное ограничение: 1-6 months after harvesting
|
RNA-sequencing of cells isolated from patient-derived cell line models.
|
1-6 months after harvesting
|
Вторичные показатели результатов
Мера результата |
Мера Описание |
Временное ограничение |
|---|---|---|
|
Sensitivity to Cisplatin: patient-derived cell line models
Временное ограничение: 6-8 months after harvesting
|
The MIC 50 test (Minimum Inhibitory Concentration required for cell growth to be inhibited by 50%) will be used in vitro to test the tumor cells' response to Cisplatin.
|
6-8 months after harvesting
|
|
Sensitivity to Carboplatin: patient-derived cell line models
Временное ограничение: 6-8 months after harvesting
|
The MIC 50 test (Minimum Inhibitory Concentration required for cell growth to be inhibited by 50%) will be used in vitro to test the tumor cells' response to Carboplatin.
|
6-8 months after harvesting
|
|
Sensitivity to Oxaliplatin: patient-derived cell line models
Временное ограничение: 6-8 months after harvesting
|
The MIC 50 test (Minimum Inhibitory Concentration required for cell growth to be inhibited by 50%) will be used in vitro to test the tumor cells' response to Oxaliplatin.
|
6-8 months after harvesting
|
|
Sensitivity to Gemcitabin: patient-derived cell line models
Временное ограничение: 6-8 months after harvesting
|
The MIC 50 test (Minimum Inhibitory Concentration required for cell growth to be inhibited by 50%) will be used in vitro to test the tumor cells' response to Gemcitabin.
|
6-8 months after harvesting
|
|
Tumor size in non-treated patient-derived xenograft models
Временное ограничение: 1-6 months after harvesting
|
The volume of tumors will be measured in mm3.
|
1-6 months after harvesting
|
|
Sensitivity to Cisplatin: tumor size in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Cisplatin in xenograft models, the volume of tumors will be measured in mm3 and compared with the volume of tumors in the non-treated control group.
|
6-8 months after harvesting
|
|
Sensitivity to Cisplatin: tumor growth rate in patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Cisplatin in xenograft models, the Tumor Growth Inhibition index, which is defined as (1 - (mean volume of treated tumors)/(mean volume of control tumors)) × 100% will be used.
|
6-8 months after harvesting
|
|
Sensitivity to Carboplatin: tumor size in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Carboplatin in xenograft models, the volume of tumors will be measured in mm3 and compared with the volume of tumors in the non-treated control group.
|
6-8 months after harvesting
|
|
Sensitivity to Carboplatin: tumor growth rate in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Carboplatin in xenograft models, the Tumor Growth Inhibition index, which is defined as (1 - (mean volume of treated tumors)/(mean volume of control tumors)) × 100% will be used.
|
6-8 months after harvesting
|
|
Sensitivity to Oxiplatin: tumor size in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Oxiplatin in xenograft models, the volume of tumors will be measured in mm and compared with the volume of tumors in the non-treated control group.
|
6-8 months after harvesting
|
|
Sensitivity to Oxiplatin: tumor growth rate in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Oxiplatin in xenograft models, the Tumor Growth Inhibition index, which is defined as (1 - (mean volume of treated tumors)/(mean volume of control tumors)) × 100% will be used.
|
6-8 months after harvesting
|
|
Sensitivity to Gemcitabine: tumor size in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Gemcitabine in xenograft models, the tumor volume will be measured in mm3 and compared with the volume of tumors in the non-treated control group.
|
6-8 months after harvesting
|
|
Sensitivity to Gemcitabin: tumor growth rate in treated patient-derived xenograft models
Временное ограничение: 6-8 months after harvesting
|
To test the tumor cells' response to Gemcitabin in xenograft models, the Tumor Growth Inhibition index, which is defined as (1 - (mean volume of treated tumors)/(mean volume of control tumors)) × 100% will be used.
|
6-8 months after harvesting
|
Другие показатели результатов
Мера результата |
Мера Описание |
Временное ограничение |
|---|---|---|
|
Patients' gender
Временное ограничение: Day 0
|
The sex of patients will be recorded at the inclusion as Male/Female/Transgender
|
Day 0
|
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Patients' age
Временное ограничение: Day 0
|
The age of patients will be recorded at the inclusion in years
|
Day 0
|
|
Primitive tumor site
Временное ограничение: Day 0
|
The site of the patient's primitive tumor will be recorded at the inclusion
|
Day 0
|
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Infiltrative tumor
Временное ограничение: Day 0
|
The tumor will be noted as infiltrative or not (YES/NO) at the inclusion.
|
Day 0
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Соавторы и исследователи
Следователи
- Главный следователь: Nadine HOUEDE, Pr., CHU de Nîmes
Публикации и полезные ссылки
Даты записи исследования
Изучение основных дат
Начало исследования (Действительный)
Первичное завершение (Действительный)
Завершение исследования (Действительный)
Даты регистрации исследования
Первый отправленный
Впервые представлено, что соответствует критериям контроля качества
Первый опубликованный (Действительный)
Обновления учебных записей
Последнее опубликованное обновление (Действительный)
Последнее отправленное обновление, отвечающее критериям контроля качества
Последняя проверка
Дополнительная информация
Термины, связанные с этим исследованием
Дополнительные соответствующие термины MeSH
Другие идентификационные номера исследования
- NIMAO/2020-2/NH01
Информация о лекарствах и устройствах, исследовательские документы
Изучает лекарственный продукт, регулируемый FDA США.
Изучает продукт устройства, регулируемый Управлением по санитарному надзору за качеством пищевых продуктов и медикаментов США.
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