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使用原代囊性纤维化肠类器官的功能性 CFTR 测定法。

A functional CFTR assay using primary cystic fibrosis intestinal organoids.

机构信息

Department of Pediatric Pulmonology, Wilhelmina Children's Hospital, University Medical Center, Utrecht, The Netherlands.

出版信息

Nat Med. 2013 Jul;19(7):939-45. doi: 10.1038/nm.3201. Epub 2013 Jun 2.

Abstract

We recently established conditions allowing for long-term expansion of epithelial organoids from intestine, recapitulating essential features of the in vivo tissue architecture. Here we apply this technology to study primary intestinal organoids of people suffering from cystic fibrosis, a disease caused by mutations in CFTR, encoding cystic fibrosis transmembrane conductance regulator. Forskolin induces rapid swelling of organoids derived from healthy controls or wild-type mice, but this effect is strongly reduced in organoids of subjects with cystic fibrosis or in mice carrying the Cftr F508del mutation and is absent in Cftr-deficient organoids. This pattern is phenocopied by CFTR-specific inhibitors. Forskolin-induced swelling of in vitro-expanded human control and cystic fibrosis organoids corresponds quantitatively with forskolin-induced anion currents in freshly excised ex vivo rectal biopsies. Function of the CFTR F508del mutant protein is restored by incubation at low temperature, as well as by CFTR-restoring compounds. This relatively simple and robust assay will facilitate diagnosis, functional studies, drug development and personalized medicine approaches in cystic fibrosis.

摘要

我们最近建立了从肠道长期扩增上皮类器官的条件,重现了体内组织结构的重要特征。在此,我们将这项技术应用于研究患有囊性纤维化(CFTR 基因突变导致的一种疾病)患者的原发性肠道类器官。佛司可林可诱导来自健康对照或野生型小鼠的类器官迅速肿胀,但这种效应在囊性纤维化患者的类器官或携带 Cftr F508del 突变的小鼠的类器官中显著降低,在 Cftr 缺失的类器官中则不存在。CFTR 特异性抑制剂可模拟这种表型。佛司可林诱导体外扩增的人对照和囊性纤维化类器官肿胀的程度与新鲜离体直肠活检中佛司可林诱导的阴离子电流定量相关。CFTR F508del 突变蛋白的功能可通过在低温下孵育以及 CFTR 修复化合物来恢复。这种相对简单且稳健的检测方法将有助于囊性纤维化的诊断、功能研究、药物开发和个体化医疗方法。

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