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Circadian rHythms and theiR associatiON with myOPIA

Descripción del proyecto

Preferencia horaria del sueño y miopía

Los ritmos circadianos constituyen los cambios que experimenta un organismo a lo largo de un ciclo de veinticuatro horas e influyen en funciones importantes del cuerpo humano, como los patrones de sueño y la liberación de hormonas. Financiado por las Acciones Marie Skłodowska-Curie, el equipo del proyecto CHRONOPIA pretende investigar el papel de los ritmos circadianos en el desarrollo ocular. Los datos del biobanco estonio sugieren una relación entre los ritmos circadianos y la miopía, una enfermedad ocular en la que los objetos lejanos aparecen borrosos. Dada su creciente prevalencia en todo el mundo, los investigadores se proponen estudiar cómo influyen los ritmos circadianos en la capacidad del ojo para enfocar. Con modelos murinos y estudios del genoma completo, en el proyecto se identificarán las dianas para estrategias preventivas y terapéuticas innovadoras contra la miopía.

Objetivo

Myopia or short-sightedness is a refractive error caused by excessive eyeball elongation, resulting in distant objects appearing blurry. Its global prevalence is increasing rapidly and is estimated to affect half of the global population by 2050. Several recent studies have suggested a link between circadian rhythms and eye development. An analysis at the Estonian Biobank revealed a robust association between myopia and an individuals sleep timing preference, or chronotype. Individuals with late chronotype were more likely to have myopia, while early chronotype was associated with hyperopia. This project, CHRONOPIA, aims to uncover the underlying mechanisms and directionality of this relationship. It seeks to understand how circadian rhythms influence eye growth and how refractive errors, in turn, impact circadian rhythms. The effect of circadian rhythms on refractive development will be studied in mice by employing various circadian biology paradigms with simultaneous monitoring of refractive development. The impact of refractive errors on circadian rhythms will be evaluated using the mouse model of lens-induced myopia and hyperopia, circadian phenotyping techniques, retinal transcriptomics, and ex vivo assessment of retinal circadian rhythms. Finally, through genome-wide gene-based association studies, this project will analyse the molecular similarities between the mouse model of myopia and human myopia. This provides an opportunity to discover novel genes and pathways associated with human myopia and to determine how well the mouse model of the disease models human myopia on a molecular level. By elucidating the interactions between refractive errors and circadian rhythms, we aspire to contribute valuable insights into the molecular mechanisms that could guide the development of innovative preventive and therapeutic strategies to address the escalating myopia epidemic.

Coordinador

TARTU ULIKOOL
Aportación neta de la UEn
€ 278 435,04
Dirección
ULIKOOLI 18
51005 Tartu
Estonia

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Región
Eesti Eesti Lõuna-Eesti
Tipo de actividad
Higher or Secondary Education Establishments
Enlaces
Coste total
Sin datos

Socios (1)