logo

Metabolic control of immune cell function during fungal infection

Sector: Government • Location: Portugal

Source: EU Funding & Tenders Portal

Project
Ended

The high mortality rates and healthcare costs associated with severe fungal infections highlight the urgent need to unveil their pathogenetic mechanisms and develop more effective diagnosis and treatment measures. Innate immunity has a key role in host response to fungal infection, by mediating fungal recognition and elimination, and modulating adaptive immune responses. The long pentraxin PTX3 is

Project Information FAQ

Project Information

4 Q
The project “Metabolic control of immune cell function during fungal infection” is an infrastructure initiative in the Government sector, located in Portugal. 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

ended

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

The high mortality rates and healthcare costs associated with severe fungal infections highlight the urgent need to unveil their pathogenetic mechanisms and develop more effective diagnosis and treatment measures. Innate immunity has a key role in host response to fungal infection, by mediating fungal recognition and elimination, and modulating adaptive immune responses. The long pentraxin PTX3 is a soluble pattern recognition receptor that is involved in the recognition and opsonisation of Aspergillus fumigatus. Metabolism is a central regulator of immune cell function. Phagocytosis of A. fumigatus conidia elicits enhanced glycolysis in macrophages and is essential for optimal antifungal effector functions. Preliminary data from the host lab indicate that PTX3 deficiency, by compromising the metabolic reprogramming of macrophages, impairs phagocytosis, but also their conidiacidal capacity upon infection. Nevertheless, little is known about the mechanistic bases linking the functional activity of PTX3 and immune cell metabolism in the pathogenesis of fungal infection. In METAFUN, we propose to (i) define the molecular and cellular mechanisms whereby PTX3 regulates immune cell metabolism, (ii) dissect the spatiotemporal contribution of PTX3 to intracellular mechanisms of fungal clearance, and (iii) evaluate the contribution of PTX3 to fungicidal mechanisms in a human disease-relevant context using lung-on-a-chip systems. This original and interdisciplinary project will reveal previously unanticipated functions of PTX3 in antifungal immunity and will lay the foundations for the identification of new diagnostic and therapeutic targets for fungal disease.

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