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Unraveling the Life Cycle of Metastatic Cells from Invasion to Outgrowth.

Location: Switzerland

Source: EU Funding & Tenders Portal

Project
Ongoing

Colorectal cancer (CRC) is the second leading cause of cancer-related mortality worldwide, accounting for nearly 10% of cancer-related deaths. The majority of CRC-related deaths result from metastatic dissemination, with the liver and lung being the most frequent distant sites of metastasis. Effective therapies to prevent metastatic CRC progression are lacking. This gap stems from our limited unde

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The project “Unraveling the Life Cycle of Metastatic Cells from Invasion to Outgrowth.” is an infrastructure initiative, located in Switzerland. Taiyo aggregates data on it from EU Funding & Tenders Portal.

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ongoing

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Description

Description

Colorectal cancer (CRC) is the second leading cause of cancer-related mortality worldwide, accounting for nearly 10% of cancer-related deaths. The majority of CRC-related deaths result from metastatic dissemination, with the liver and lung being the most frequent distant sites of metastasis. Effective therapies to prevent metastatic CRC progression are lacking. This gap stems from our limited understanding of the cancer-intrinsic and tumor microenvironmental factors that drive advancement through each intermediate step of the metastatic cascade. Here, we will use systems approaches to unravel the life cycle of metastatic cells, focusing on cancer cell plasticity and interactions with host tissues. First, we will use in vivo CRISPR screening to identify drivers of invasion, dissemination, seeding, and outgrowth. This approach will be complemented by single-cell multi-omics analyses to uncover the regulatory networks governing these processes. Next, we will explore the dynamics of the liver pre-metastatic niche using single-cell RNA sequencing, proximity labeling, and immunofluorescence to dissect its metastasis-promoting cellular networks and gradual reversal after primary tumor ablation. Finally, we will identify host factors that regulate metastatic extravasation and vessel co- option by functionally investigating the role of liver endothelial cells throughout metastatic progression. This will be achieved through a combination of in vivo interaction screening, in vitro models, and comparison to spatial transcriptomic datasets from patient samples. By integrating these complementary approaches, our study aims to provide a comprehensive understanding of the key drivers and modulators of metastatic CRC. These insights could pave the way for the development of novel therapeutic strategies aimed at preventing or limiting metastatic disease progression in CRC patients.

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High

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100%

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