H2020Индивидуална стипендия2018–2020

ZIDOMS · Using Zebrafish as a novel tool to Improve the Diagnosis and Outcome of Marfan Syndrome

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2018-09-01 → 2020-08-31
Финансиране от ЕС
172 800 €
Участници
1
Схема
MSCA-IF-EF-RI

Линиите свързват координатора с партньорите.

Накратко на български

Зебрани рибки се използват за създаване на модел на синдрома на Марфан, за да се проучи как дефектите в гена FBN1 влияят на тялото. Това помага за по-точна диагноза и подобряване на лечението при пациенти с риск от разкъсване на аортата.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Using Zebrafish as a novel tool to Improve the Diagnosis and Outcome of Marfan Syndrome

Marfan syndrome (MFS) is a rare genetic disease, affecting an estimated 1:5,000 to 1:10,000 people. It is caused by defects in the FBN1 gene, which codes for the fibrillin-1 protein. This protein plays an important role in the structure and support of many different tissue types and organs throughout the body. Therefore, MFS can cause a range of symptoms affecting the skeleton, the eyes, and particularly the heart and blood vessels. MFS can lead to a widening of the aorta, the biggest artery in the body, as well as tearing and eventually catastrophic rupture of this blood vessel. To date, no cure exists for MFS, and patients can only be treated symptomatically by surgery or blood pressure-lowering medication. On the other hand, the consequences of a new sequence variant in the FBN1 gene which is identified during genetic testing cannot be predicted for each patient based on the currently available information. Changes in the FBN1 code might have no effects, could lead to mild or moderate symptoms, or might even cause a quick progression to life-threatening conditions. The lack of effective targeted therapy for MFS, as well as the uncertainty regarding the course of the disease places a heavy burden on the quality of life of MFS patients, and increases the costs for clinical management. In order to address these issues, there is a strong need for flexible models of MFS which can mirror the complexity of this disease. Mouse models already exist but they are limited by the number of conditions that can be tested efficiently. Zebrafish have been used more and more in preclinical research, since the effects of many different drugs or genetic manipulations can be tested rapidly in this model. The overall goal of this project is to generate a new zebrafish model for MFS, in order to boost the development of a more personalized approach to the management of the disease. More specifically, the main objectives of the project are to validate the new zebrafish MFS model, to develop an innovative system to test the effects of specific human FBN1 gene defects in the zebrafish model, and to use a novel approach to test a large number of pharmaceutical molecules in this model in order to discover new treatment options for MFS patients. Another important objective of this project is to foster the career development of the MSCA researcher. A major advantage of the interaction with the mentor, a clinician, is the strong link to the clinical aspects of MFS. This helps to clearly identify areas of research which have a strong relevance to patient care, and therefore have a great potential to realize maximal impact beyond the scope of the fundamental research project. At the end of the MSCA project we have been able to validate a new zebrafish model of MFS, and we have uncovered the specific roles of the different zebrafish fibrillin genes in the cardiovascular system.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Recent technological advances have brought the implementation of personal and precision medicine in the clinic within reach. In this project, we are proposing to use zebrafish as a novel, efficient tool to improve the clinical diagnosis and treatment of Marfan Syndrome (MFS), a rare genetic disorder with a wide spectrum of clinical features. Since there is no definitive cure for MFS, patients need lifelong supportive treatment to prevent morbidity and mortality related to cardiovascular complications. Together with the detection of a number of syndromic symptoms, positive diagnosis of MFS relies on the identification of a deleterious mutation in the fibrillin-1 (FBN1) gene. Nevertheless, genetic testing often leads to the discovery of FBN1 variants which are not unequivocally linked to disease development. Current practice relies on the evaluation of historical and predictive parameters to classify variants of unknown significance as potentially causal mutations, but no biological model exists to efficiently validate the genetic classifications.This project aims to make optimal use of the combination of the know-how of the researcher, Dr. Sips, in the field of cardiovascular physiology and animal models of disease, with the clinical expertise of the supervisor, Prof. De Backer, in the diagnosis and treatment of MFS patients. The goal is to develop a zebrafish-based model that will allow for the quick classification of unknown variants in the FBN1 gene to aid in the diagnosis of MFS. In addition, the model will allow an efficient screening of drug libraries to look for potential new therapies, which might make it possible to find patient-specific treatments.Taken together, this project aims to take advantage of the synergy between the researcher and the supervisor in order to develop a novel strategy for a personalized approach to medicine. MFS is studied as a proof-of-concept clinical challenge with unmet needs in diagnosis and treatment.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз