Innovative Therapeutic Treatments to Inhibit Perineural Invasion in Pancreatic Adenocarcinoma
试验速览
- 阶段
- 不适用
- 状态
- 尚未招募
- 入组人数
- 50
- 主要终点
- Prepare and validate nanoparticles releasing FGFBP1 inhibitors
研究概览
简要总结
The overall goal of this project is to develop new therapeutic approaches to limit Perineural invasion (PNI) in pancreatic ductal adenocarcinoma (PDAC). PNI, has its higher incidence in PDAC, in which it is a recognized risk factor of poor survival. Considering the clinical relevance of PNI and its role in PDAC, it is urgent to identify molecular PNI signatures to develop new therapeutic strategies. We have recently identified a molecule that is activated in pancreatic cancer cells and initiate PNI. In this project we will hamper the signaling of this molecule in vitro, in human and murine organoids cocultured with myelinated Schwann cells neuronal cocultures, and in vivo in a mouse model faithfully reproducing human PNI. Thus, we will enroll patients undergoing surgical resection for PDAC, and a small piece of the resected tissue, performed for normal clinical practice after pathology evaluation, will be used to develop organoids.
This project is designed as an observational multicentric, transversal study. San Raffaele Hospital (OSR) is the only center enrolling patients.
The main goal of this Aim is to validate the effectiveness of NP-loaded hydrogel-based developed by CNR Nanotec Lecce, in vitro in organoids, which represent a suitable system to study PDAC.
详细描述
STUDY DESIGN The overarching goal of this project is to develop new therapeutic approaches to limit PNI formation and therefore PDAC formation and metastasis. PNI, has its higher incidence in PDAC, in which it is a recognized risk factor of poor survival. Considering the clinical relevance of PNI and its role in PDAC, it is urgent to identify molecular PNI signatures to develop new therapeutic strategies. We have recently identified a molecule (FGFBP1) that is activated in pancreatic cancer cells and initiate PNI.
This project is designed as an observational multicentric, cross-sectional study. OSR is the only center enrolling patients. OSR will send organoids derived from biological samples of enrolled patients to the participating center UO 3 (ASL3 Lecce) that will perform proteomic analyses to determine the level of expression of FGFBP1 inhibitor loaded in Nanoparticles hydrogels. Thus, the effectiveness of NP-loaded hydrogel carrying FGFBP1 inhibitors will be generated, and validated by CNR Nanotec Lecce (Aim 1, UO 2), whose biochemical release will be tested by mass spectrometry by UO 3 ASL3 Lecce; their biological effectiveness will be validated on myelinated Schwann cells neuronal cocultures seeded with human organoids carrying NP-loaded hydrogels (Aim 2 - OSR), and in vivo in TPAC mice, a recently developed animal model of PDAC, whose pancreas will be injected with NP-loaded hydrogels (Aim 3 - OSR).
Study duration Duration of enrollment: 18 months Duration of total follow-up: no follow-up needed for enrolled patients Duration of total study period: 24 months
STUDY POPULATION Study Participants Adult patients undergoing surgical pancreatic resection, as per clinical practice, with clinically and radiologically confirmed diagnosis of ductal adenocarcinoma. All patients will be enrolled at the OSR Pancreatic and Transplant Surgery Unit.
Inclusion Criteria
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Cross Sectional
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Age >18 years (also fertile patients ca be included)
- •Surgical resection for suspected PDAC, as per clinical practice. We will use this material both for controls and for the case samples.
排除标准
- •Patients < 18 years of age
- •Patients who are not able to sign an informed consent
- •Patients with suspected PDAC non confirmed at pathological report
结局指标
主要结局
Prepare and validate nanoparticles releasing FGFBP1 inhibitors
时间窗: 8 months to assess hydrogels' safety and release of FGFBP1 inhibitors in NP-loaded hydrogels 12 months to complete the task
Readout of these analyses will be the safety of developed hydrogels and effective release of FGFBP1 inhibitors.
次要结局
- Treat peripheral myelinated cocultures with nanoparticles-loaded hydrogels targeting FGFBP1 signaling(Extent of myelin degeneration 3, 7-, 10-, 15- and 21-days post seeding human and mouse derived organoids mous)
研究者
Massimo Falconi
Head of Pancreatic Surgery
IRCCS San Raffaele
