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New Therapies to Correct the Cystic Fibrosis Basic Defect

机译:纠正囊性纤维化的新疗法基本缺陷

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摘要

Rare diseases affect 400 million individuals worldwide and cause significant morbidity and mortality. Finding solutions for rare diseases can be very challenging for physicians and researchers. Cystic fibrosis (CF), a genetic, autosomal recessive, multisystemic, life-limiting disease does not escape this sad reality. Despite phenomenal progress in our understanding of this disease, treatment remains difficult. Until recently, therapies for CF individuals were focused on symptom management. The discovery of the cystic fibrosis transmembrane conductance regulator (CFTR) gene and its product, a protein present at the apical surface of epithelial cells regulating ion transport, allowed the scientific community to learn about the basic defect in CF and to study potential therapies targeting the dysfunctional protein. In the past few years, promising therapies with the goal to restore CFTR function became available and changed the lives of several CF patients. These medications, called CFTR modulators, aim to correct, potentialize, stabilize or amplify CFTR function. Furthermore, research is ongoing to develop other targeted therapies that could be more efficient and benefit a larger proportion of the CF community. The purpose of this review is to summarize our current knowledge of CF genetics and therapies restoring CFTR function, particularly CFTR modulators and gene therapy.
机译:罕见疾病影响全世界4亿人,并导致发病率和死亡率显着。寻找罕见疾病的解决方案可能对医生和研究人员来说非常具有挑战性。囊性纤维化(CF),遗传,常染色体隐性,多系统,寿命均值疾病不会逃避这种悲惨的现实。尽管我们对这种疾病的理解有现象,但治疗仍然困难。直到最近,CF个体的疗法都集中在症状管理上。发现囊性纤维化跨膜电导调节剂(CFTR)基因及其产物,其存在于上皮细胞的顶端表面上的蛋白质调节离子运输,允许科学界学习CF的基本缺陷,并研究瞄准潜在疗法功能障碍蛋白质。在过去的几年里,有前途的疗法与恢复CFTR功能的目标变得可用,改变了几种CF患者的生命。这些药物称为CFTR调节剂,旨在校正,潜在,稳定或扩增CFTR功能。此外,研究正在进行开发其他有针对性的疗法,这些疗法可能更有效,并且有利于较大比例的CF社区。本综述的目的是总结我们目前对CF遗传学和治疗的了解恢复CFTR功能,特别是CFTR调节剂和基因治疗。

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