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Funded Projects › H2020

NanoTBTech · Nanoparticles-based 2D thermal bioimaging technologies

H2020Status: CLOSED1 September 201828 February 2022EU funding €2,999,483Call H2020-FETOPEN-2016-2017

Temperature measurements are crucial in countless technological developments, accounting for 80% of the sensor market throughout the world. The pitfalls of temperature readouts at the biomedical battleground are mostly represented by the currently achievable spatial resolution. To address key issues, such as intracellular temperature fluctuations and in vivo thermal transients, a technique able to go clearly below 1 μm is highly and urgently needed, as the traditional contact-based sensors and near infrared thermometers are not suitable for measurements at that tight spatial range. To overcome these limitations requires a non-contact thermometry approach granted with sub-micrometer resolution, also providing real-time high relative thermal sensitivity values.The goal of NanoTBTech is to develop a 2-D thermal bioimaging technology featuring sub-microscale resolution, based on nanothermometers and heater-thermometer nanostructures. We will design, synthetize, and bio-functionalize nontoxic luminescent nanostructures, operating essentially beyond 1000 nm, for in vivo nanothermometry and nanoheating. Furthermore, to monitor the temperature-dependent nanostructures’ luminescence we will develop a novel imaging system. The effective delivery of that major advance in 2-D thermal bioimaging will be implemented through two impactful biomedical showcases: highly spatially-modulated intracellular magnetic/optical hyperthermia and in vivo detection and tracking of cancer.In the long-term, we foresee our technology having a broad impact on non-invasive clinical imaging and theranostics. For instance, the accurate measurement of temperature gradients´ sources will be an invaluable tool for real-time control of thermal therapies, thus making them harmless for the patient. Multiple conceptual breakthroughs can be further envisaged from the proposed 2D-thermal imaging system, credibly spreading its impact towards non-biomedical technological areas.

Consortium · 11 organisations

coordinator

UNIVERSIDADE DE AVEIRO

PT · €508,060

participant

INSTYTUT NISKICH TEMPERATUR I BADAN STRUKTURALNYCH IM. WLODZIMIERZA TRZEBIATOWSKIEGO POLSKIEJ AKADEMII NAUK

PL · €277,375

participant

NANOIMMUNOTECH SL

ES · €205,478

participant

FUNDACION PARA LA INVESTIGACION BIOMEDICA DEL HOSPITAL UNIVERSITARIO RAMON Y CAJAL

ES · €450,250

participant

AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

ES · €354,433

participant

INSTITUT ZA NUKLEARNE NAUKE VINCA INSTITUT OD NACIONALNOG ZNACAJA ZA REPUBLIKU SRBIJU, UNIVERZITET U BEGRADU

RS · €258,750

participant

BIOSPACE LAB

FR · €243,738

participant

UNIVERSITEIT UTRECHT

NL · €234,375

thirdParty

UNIVERSIDAD AUTONOMA DE MADRID

ES

participant

CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS

FR · €467,025

thirdParty

SORBONNE UNIVERSITE

FR

Research fields

View the official record on CORDIS →

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