HYPTEMPCELL · Local hyperthermia cancer treatment studies using a new temperature-imaging-hyperthermia-microscopy instrument
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2018-09-01 → 2020-11-01
- EU contribution
- €158,122
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Local hyperthermia cancer treatment studies using a new temperature-imaging-hyperthermia-microscopy instrument
One of the main challenges in current human health research concerns the treatment of cancer. Indeed, cancer remains one of the main causes of death in the developed countries, which has a significant cost both humanly and economically speaking. A large wide of treatments are actually in development, and several present good results and may be available in several hospitals in Europe. Among them, one treatment which proved as promising is magnetic cancer hyperthermia therapy. That consists in the injection of nanoparticles which are able to heat when submitted to an ac magnetic field, killing preferentially the cancer cells instead of the healthy cells due to a difference in temperature sensitivity. However, the main inconvenient of the technique arises from the concept itself. The heating power of the current nanoheaters is relatively low, which requires a massive and direct injection in the tumor. Moreover, the control of the temperature is ensured by inserting thermocouple i.e macroscopic thermometers directly in the tissues adjacent to the tumor, which is quite invasive. The idea of the current project to solve these inconveniences consists in designing a softer approach based on local intracellular heating. Concretely, that consists to consider this treatment not at the tumor scale but directly at cells’ scale. That implies to internalized the nanoheaters inside the cancer cells using appropriate targeting agents before to produce the heating, which may lead to their death. Moreover, the control of the temperature at such scale may be provided by a unique tool developed here. By using a molecular luminescent thermometer, we may be able to sense the local temperature directly in the cancer cells with high precision and fast response, and without being invasive. Consequently, the currents objectives of the project consists in 1) developing a system to image the temperature in 2D and to couple it to a magnetic induction system which can be apply to cell cultures under microscope observation, 2) to observe the diffusion of the heat produced by the nanoheaters into the cells and 3) to determine if such temperature increase is able to provoke cells death. All these objectives may permit to determinate the feasibility of a hyperthermia therapy based on local intracellular heating as new advanced cancer therapy.
Data: CORDIS, © European Union
Project objective
The scientific aim of the project is to explore a new concept of magnetic hyperthermia treatment for cancer that gets closer to the ideal non-invasiveness & no-secondary-effects kind of treatment to become a primary choice for cancer therapy. Instead of the typical approach of massive tumor heating, this project takes the alternative route of local intracellular heating inducing cell apoptosis. For this purpose, the project will develop a new instrument for temperature_imaging-magnetic_induction_heatingµscopy. The temperature imaging system is a complete novelty and it is based on the use of molecular luminescent temperature probes embedded in magnetic and non-magnetic nanoparticles. The probe’s emission microscope image is transformed into high-resolution temperature images. This will be used to model the heat transfer processes inside a cell. Then, the effect of local magnetic heating on cell apoptosis processes will be studied, and the potential of this technique in cancer therapy will be evaluated.The researcher will contribute to the hosting group with his previous experience on synthesis, characterization and physical properties of luminescent, plasmonic and magnetic nanoparticles, and he will benefit with a more application-oriented research experience in the biomedical field, and will develop skills in new scientific areas, especially high-resolution luminescence thermometry, that will help him to set his personal research interests and career. He will also get clinical experience from contact with hospital oncologists.The researcher will be included in an interdisciplinary group with international connections that will widen his knowledge and contacts scope of his scientific career. He will also gain experience in other transversal skills, as he will be directly involved in the managing the project, student supervision, networking, dissemination and communication activities.
Original text from CORDIS.
Participants
- AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS · MadridCoordinatorSpain
Links
Data: CORDIS, © European Union
