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Plasma-ACtivated hydroGEL: new frontiers solutions in cardiac regenerative medicine

Descripción del proyecto

Soluciones innovadoras en medicina cardíaca regenerativa

Las enfermedades cardiovasculares son la principal causa de muerte en la Unión Europea. Por este motivo, la investigación en medicina cardíaca regenerativa es importante para desarrollar tratamientos mínimamente invasivos para tratar lesiones cardiovasculares. Además, se necesitan modelos «in vitro» de los tejidos cardíacos humanos patológicos para imitar las condiciones oxidativas específicas de la enfermedad y, de este modo, comprender los mecanismos patológicos y desarrollar tratamientos nuevos de menor coste que cumplan con el principio de las tres «R» (reducción, refinamiento, y reemplazo). El proyecto PACGEL, financiado con fondos europeos, identificará la concentración mínima reactiva de especies por encima de la cual los efectos oxidativos prevalecen mediante pruebas «in vitro» con células cardíacas humanas relevantes. El equipo del proyecto desarrollará hidrogeles activados mediante chorros de plasma con potencial regenerador y diseñará modelos de tejidos bioimpresos en tres dimensiones que imiten las distintas etapas de las enfermedades cardíacas humanas.

Objetivo

Heart diseases represent the main leading cause of mortality in EU and other industrialized countries. The development of minimally-invasive therapies to treat cardiovascular injuries is the subject of intense investigation by the cardiac regenerative medicine community. Moreover, in vitro models of human cardiac pathological tissues mimicking disease-specific oxidative conditions are demanded for understanding pathological mechanisms at different disease stages, and for the development and preclinical validation of novel therapies, at reduced costs and in compliance with 3Rs (Reduction, Refinement, Replacement) principle.
PACGEL aims at the design of novel plasma jet-activated hydrogels based on biocompatible polymers, to be exploited as: (i) injectable stimulating systems to promote cardiac tissue regeneration and (ii) in vitro models of diseased cardiac tissue with tunable oxidative conditions. The biological effect will depend on the doses and types of reactive oxygen and nitrogen species encapsulated in the hydrogels, modulated by the plasma jet treatment parameters. The objectives are: (1) to identify the minimal reactive species concentration (threshold limit) above which oxidative effects prevail, by in vitro tests with relevant human cardiac cells; 2) to develop plasma jet-activated hydrogels with regenerative potential; 3) to design in vitro 3D bio-printed tissue models mimicking different stages of human cardiac diseases. My expertise in Plasma Medicine and Chemistry, the supervisor’s consolidated competence in biomaterials design, tissue engineering and cardiac regenerative medicine, my proof-of-concept preliminary results and the availability of all the needed facilities and training opportunities at the Host Institution will ensure the research progress.
Furthermore, PACGEL will address one major societal challenge such as the treatment of age-related cardiac diseases exploiting green technologies, thus achieving still a greater impact on society.

Coordinador

POLITECNICO DI TORINO
Aportación neta de la UEn
€ 172 750,08
Dirección
CORSO DUCA DEGLI ABRUZZI 24
10129 Torino
Italia

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Región
Nord-Ovest Piemonte Torino
Tipo de actividad
Higher or Secondary Education Establishments
Enlaces
Coste total
Sin datos