logo

Understanding intestinal intercellular communication using Light Induced Synchronized Protein Secretion

Sector: Electric Vehicles (EVs) • Location: Germany

Source: EU Funding & Tenders Portal

Project
Ongoing

Intercellular communication between epithelial intestinal stem cells (ISCs) and their niche Paneth cells is essential for intestinal homeostasis. It deteriorates with age promoting disease onset such as inflammation and cancer. Thus, understanding age-associated alterations in stem-niche cell communication is crucial for developing interventions to optimize tissue function in later years. To commu

Project Information FAQ

Project Information

4 Q
The project “Understanding intestinal intercellular communication using Light Induced Synchronized Protein Secretion” is an infrastructure initiative in the Electric Vehicles (EVs) sector, located in Germany. Taiyo aggregates data on it from EU Funding & Tenders Portal.

Want to explore the full details? View the full report

Participants

Sponsoring Agency

Obfuscated Data

Company

Obfuscated Data

Status

Original status

ongoing

Taiyo status

Obfuscated Data

Taiyo last update

00-00-0000

Available timestamps

00-00-0000

Available timestamp type

Obfuscated Data

Contact

Contact name

Obfuscated Data

Phone

0000000000

Email

ObfuscatedData@email.com

Address

Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data

Description

Description

Intercellular communication between epithelial intestinal stem cells (ISCs) and their niche Paneth cells is essential for intestinal homeostasis. It deteriorates with age promoting disease onset such as inflammation and cancer. Thus, understanding age-associated alterations in stem-niche cell communication is crucial for developing interventions to optimize tissue function in later years. To communicate, Paneth cells secrete ligands instructing proliferation and differentiation of ISCs. ISCs receive these ligands via the respective receptors on their plasma membrane. While the signaling pathways of their communication are comprehensively described, the secretory membrane transport from the inside of the cell towards the cell surface of the ligands and receptors are only poorly understood. This project will identify how ISCs and their niche cells direct the secretory transport of receptor and ligand proteins for efficient intercellular communication at the cell surface and how directed secretion functions as an intestinal homeostasis regulator. First, I will establish a novel optogenetic tool in intestinal organoids enabling spatiotemporal resolved tracing of synchronized signal secretion in ISCs and niche Paneth cells using live imaging. Second, I will reroute directed secretory transport by addition of GPI-anchors, targeted signaling motif and gene removal. In combination with transcriptomics, I will study the effects of disturbed secretion on intestinal homeostasis. Third, I will unveil alterations in directed secretory transport with age and age-related dysfunctions. The proposed project will elucidate how directed secretory transport between ISCs and their neighboring niche cells determines stem cell function for tissue homeostasis. Overall, it holds the potential to uncover age-related changes in directed signal secretion, opening new avenues for treatments improving age-associated intestinal dysfunction.

Original sub-sector

Obfuscated

Original Currency

USD

Original budget

000000000000000

Procurement method

Obfuscated Data

Budget

000000000000000

Location

Region

Obfuscated

Country

Obfuscated

State

Obfuscated Data

County

Obfuscated

Location

Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data

Source

Source reliability

High

Data quality score

100%

Source

Obfuscated Data

URL

obfuscated_data,obfuscateddata.com

More Details

Project Type

Obfuscated Data

Article Published Date

Obfuscated Data