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声带星状细胞的转分化及全反式视黄醇诱导的失活

Transdifferentiation of vocal-fold stellate cells and all-trans retinol-induced deactivation.

作者信息

Fuja Tannin J, Probst-Fuja Megan N, Titze Ingo R

机构信息

National Center for Voice and Speech, Department of Speech Pathology and Audiology, University of Iowa, 330 Wendell Johnson Speech and Hearing Center, IA 52242, Iowa City, USA.

出版信息

Cell Tissue Res. 2005 Dec;322(3):417-24. doi: 10.1007/s00441-005-0028-9. Epub 2005 Jul 27.

Abstract

The maculae flavae of the human vocal folds include dense extracellular matrices and compacted cells with a stellate morphology. These vocal-fold stellate cells are thought to participate in the metabolism of extracellular matrices essential in maintaining vocal-fold viscoelasticity required for phonation. We have isolated and cultured these new cells and have tested the hypothesis that they maintain a distinct cellular and biochemical phenotype. We have compared proliferation rates, changes on immunophenotype, and intracellular lipid and vitamin A storage. Vocal-fold stellate cells undergo culture-induced transdifferentiation to a myofibroblast-like phenotype with an altered phenotype resembling, but not identical to, activated hepatic and pancreatic stellate cells. Our results reveal that these cells are capable of responding to exogenous all-trans retinol in culture. Exposure to this synthetic co-factor causes deactivation characterized by decreased proliferation, loss of the activated stellate cell marker, alpha-smooth muscle actin, and restoration of intracellular lipid and vitamin A metabolite storage. These data establish a new and distinct cellular target for future investigations of the viscoelastic properties of the vocal-fold mucosa during normal phonation, aging, vocal-fold scarring, laryngeal fibrosis, and myofibroblastoma.

摘要

人类声带的黄色斑包括致密的细胞外基质和形态呈星状的紧密排列的细胞。这些声带星状细胞被认为参与细胞外基质的代谢,而细胞外基质对于维持发声所需的声带粘弹性至关重要。我们已经分离并培养了这些新细胞,并验证了它们维持独特细胞和生化表型的假说。我们比较了增殖率、免疫表型的变化以及细胞内脂质和维生素A的储存情况。声带星状细胞在培养过程中会发生诱导性转分化,转变为肌成纤维细胞样表型,其改变后的表型类似于但并不等同于活化的肝星状细胞和胰腺星状细胞。我们的结果表明,这些细胞在培养中能够对外源性全反式视黄醇作出反应。暴露于这种合成辅因子会导致细胞失活,其特征为增殖减少、活化星状细胞标志物α-平滑肌肌动蛋白的丧失以及细胞内脂质和维生素A代谢产物储存的恢复。这些数据为未来研究正常发声、衰老、声带瘢痕形成、喉纤维化和成肌纤维细胞瘤期间声带黏膜粘弹性特性确立了一个新的独特细胞靶点。

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