LAser DEvelopment of Nanotools for quantum based THERapy
The cardiovascular diseases are among most serious health problems of modern human society. Despite various advanced therapeutic, pharmaceutic and surgical methods of their treatment, significant improvement of human health has no...
ver más
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Proyectos interesantes
RYC2021-034536-I
Nanomedicine strategies for diagnosis and treatment of vario...
236K€
Cerrado
MAT2016-75362-C3-1-R
NANO MATERIALES PARA EL ESTUDIO DE AFECCIONES CARDIO-VASCULA...
272K€
Cerrado
MAT2016-75362-C3-2-R
NANOMATERIALES PARA EL DIAGNOSTICO DE LESIONES CARDIOVASCULA...
91K€
Cerrado
RED2018-102469-T
RED DE NANOMEDICINA PARA EL DIAGNOSTICO Y TRATAMIENTO DE ENF...
15K€
Cerrado
MONOCLE
Emission Control of Rare Earth Nanoparticles
246K€
Cerrado
BARCODE DIAGNOSTICS
Next Generation Personalized Diagnostic Nanotechnologies for...
1M€
Cerrado
Información proyecto LADENTHER
Duración del proyecto: 32 meses
Fecha Inicio: 2020-04-07
Fecha Fin: 2022-12-31
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
The cardiovascular diseases are among most serious health problems of modern human society. Despite various advanced therapeutic, pharmaceutic and surgical methods of their treatment, significant improvement of human health has not been reached yet due to insufficient efficiency of these methods, side effects, soreness and long recovery. Hence, searching for novel approaches for both diagnostics and treatment of the diseases is of highest importance.
This proposal will explore a new approach based on combining latest achievements in laser- and nano-technologies. Contamination-free multi-component nanoparticles with novel properties (efficient light absorption at specific wavelength ranges, enhanced photoluminescence for detection, minimal cytotoxicity and biocompatibility, etc.) will be synthesized by ultrafast laser irradiation of materials in aqueous environment. They will be tested as nanotools for treating actions on biological objects (model systems provided by biologists) for dissolving thrombus and cholesterol and for fatigued muscles recovery. The nanoparticles will be injected to the model systems (simulating problematic blood vessels and overexpressed muscles) and activated by ultrafast lasers tunable in mid-IR spectral range to make laser action gentle but effective with a deep penetration to bio-tissues. Irradiation will be performed in single- and multicolor modes to inspect capabilities for nanoparticle activation. The results of nano-phototherapy will be analyzed with assessment of its efficiency. The detailed protocols of nano-phototherapy will be prepared to continue these studies with biologists in-vivo after the project implementation. Outcomes of this proposal will bring new knowledge on the prospects of non-invasive therapy of cardiovascular problems that will have a positive impact on both fundamental science and bio-medicine in the European area. Implementation of this research will enable me to become a recognized expert in the field.