Strategies for the Development of Multimodal Therapies in Tumors of the Central Nervous System: Identification of New Molecular and Metabolic Targets Implicated in Survival and Chemoresistance Involving Endothelial and Cancer Stem Cells
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 400
- 试验地点
- 1
- 主要终点
- Investigation of molecular and metabolic signature of cancer stem cells to assess specific markers related to gliomagenesis and cancerogenesis.
研究概览
简要总结
Tumors of the central nervous system affect 21 people per 100,000 every year, a figure that refers to countries with advanced economies, with an increase in incidence over time. Experimental evidence suggests that cancer stem cells (CSCs) may play a key role in the malignancy of these tumors. In fact, due to the hypoxic tumor microenvironment, these cells are able to create compensatory pathways that confer stem-like, angiogenic and pro-tumoral functions. Furthermore, it has been demonstrated that brain tumor stem cells are radio- and chemo-resistant and therefore not treatable with the therapeutic protocols currently in use. To date, in fact, there are no definitive treatments for the eradication of brain tumors. In this scenario, sphingolips, a class of lipid deputized to several physiological functions, are also involved in tumor onset, progression, drug resistance, and aggressiveness. In hypoxic tumor microenvironment, CSCs present a modified rheostat in the metabolism of sphingolipid, in favor of Sphingosine-1-phosphate (S1P).
S1P is an intermediate of sphingolipid metabolism, formed from sphingosine through the action of sphingosine kinases (SK). Increasing evidence suggests that S1P acts as a tumor-promoting signal, predominantly in the extracellular environment, regulating important cellular properties correlated with tumor potential.
The project aims to identify new molecular and metabolic targets involved in the survival and chemo-resistance of tumor stem cells in relation to the tumor microenvironment.
详细描述
Tumors of the central nervous system affect 21 people per 100,000 every year, a figure that refers to countries with advanced economies, with an increase in incidence over time. Among tumors of the central nervous system, Glioblastoma (GBM) is the most frequent and aggressive malignant tumor with an average life expectancy of approximately 12 months and a survival of less than 5% in the following 5 years to the diagnosis. The growth and progression of GBM are dependent on a specialized subpopulation of tumor cells called "cancer stem cells" (CSCs). CSCs are chemo- and radio-resistant, are responsible for relapses and therefore should constitute an important target of therapeutic strategies, but the mechanisms underlying their biology are still poorly understood. Hypoxia, through the hypoxia-inducible factor (HIF) and sphingolipid pathway, plays a key role in the control of tumor growth and angiogenesis and represents, perhaps, the most effective adaptation mechanism of the tumor itself. Indeed, The hypoxic microenvironment of solid tumors gives them greater aggressiveness, an increase in the expression of proteins linked to angiogenesis, anaerobic energy metabolism and adaptation to oxidative stress which facilitates the onset and proliferation of CSCs.
This study supports the evidence that the hypoxic microenvironment regulates the state of CSCs, and therefore influencing the response to the current pharmacological treatments.
Although S1P can act as an intracellular second messenger, most of its effects are exerted as an extracellular mediator, through binding to specific G protein-coupled receptors, originally known as EDGs and now called S1P receptors (S1PRs). Our group has previously demonstrated that acquired modifications in the metabolism of sphingolipids, in particular in the regulation of S1P, are able to confer stem-like and chemo-resistance properties to CSCs in patients with GBM.
The project aims to identify new molecular and metabolic targets involved in the survival and chemo-resistance of tumor stem cells in relation to the tumor microenvironment.
Through the study of sphingolipid metabolism, new markers and inhibitors will be identified to be delivered to inhibit CSC proliferation and tumor progression.
研究设计
- 研究类型
- Observational
- 观察模型
- Other
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Patients with glioma diagnosed histologically confirmed (WHO) undergoing surgical resection;
- •hypomethylation or hypermethylation of MGMT assessed post-surgery for patients affected by GBM;
- •adult patients (≥18 years), both sexes;
- •Patients undergoing Stupp protocol including patients aged > 70 years performing the hypofractionated protocol and three weeks of chemotherapy;
- •Karnofsky Performance Status (KPS)> 60 assessed post-surgery;
- •freely given written informed consent prior to any activity related to the study. erine
排除标准
- •patients who do not sign the informed consent
结局指标
主要结局
Investigation of molecular and metabolic signature of cancer stem cells to assess specific markers related to gliomagenesis and cancerogenesis.
时间窗: Through study completion, an average of 3 years
Evaluation of prognostic and predictive role of molecular and metabolic markers of the tumor. Determination of gene and protein expression of a panel of markers related to stemness, angiogenesis/hypoxia, and sphingolipid signaling.
次要结局
- Cellular response to pharmacological treatments(Through study completion, an average of 3 years)
- Biomarker investigation(Through study completion, an average of 3 years)
