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The extracellular calcium-sensing receptor regulates human fetal lung development via CFTR

机译:细胞外钙敏感受体通过CFTR调节人胎儿肺的发育

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摘要

Optimal fetal lung growth requires anion-driven fluid secretion into the lumen of the developing organ. The fetus is hypercalcemic compared to the mother and here we show that in the developing human lung this hypercalcaemia acts on the extracellular calcium-sensing receptor, CaSR, to promote fluid-driven lung expansion through activation of the cystic fibrosis transmembrane conductance regulator, CFTR. Several chloride channels including TMEM16, bestrophin, CFTR, CLCN2 and CLCA1, are also expressed in the developing human fetal lung at gestational stages when CaSR expression is maximal. Measurements of Cl−-driven fluid secretion in organ explant cultures show that pharmacological CaSR activation by calcimimetics stimulates lung fluid secretion through CFTR, an effect which in humans, but not mice, was also mimicked by fetal hypercalcemic conditions, demonstrating that the physiological relevance of such a mechanism appears to be species-specific. Calcimimetics promote CFTR opening by activating adenylate cyclase and we show that Ca2+-stimulated type I adenylate cyclase is expressed in the developing human lung. Together, these observations suggest that physiological fetal hypercalcemia, acting on the CaSR, promotes human fetal lung development via cAMP-dependent opening of CFTR. Disturbances in this process would be expected to permanently impact lung structure and might predispose to certain postnatal respiratory diseases
机译:胎儿肺的最佳生长需要阴离子驱动的液体分泌到发育器官的内腔中。与母亲相比,胎儿是高钙血症的人,在这里我们表明,在人肺发育中,高钙血症作用于细胞外钙敏感受体CaSR,通过激活囊性纤维化跨膜电导调节剂CFTR来促进液体驱动的肺扩张。当CaSR表达达到最大时,在发育阶段的人胎肺中还表达了一些氯离子通道,包括TMEM16,Bestrophin,CFTR,CLCN2和CLCA1。器官外植体培养物中Cl-驱动的液体分泌的测量表明,拟钙剂的药理学CaSR激活可通过CFTR刺激肺液分泌,这种作用在人类(而非小鼠)中也被胎儿高钙血症的情况所模仿,表明该物质的生理相关性这种机制似乎是特定于物种的。拟钙剂通过激活腺苷酸环化酶来促进CFTR的开放,我们证明了Ca2 +刺激的I型腺苷酸环化酶在发育中的人肺中表达。总之,这些观察结果表明,作用于CaSR的生理性胎儿高钙血症通过依赖cAMP的CFTR开放促进了人类胎儿肺部发育。预计此过程中的干扰将永久影响肺部结构,并可能诱发某些产后呼吸系统疾病

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