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Notch/RBP-J信号通路的抑制可诱导新生小鼠耳蜗中的毛细胞形成。

Inhibition of Notch/RBP-J signaling induces hair cell formation in neonate mouse cochleas.

作者信息

Yamamoto Norio, Tanigaki Kenji, Tsuji Masayuki, Yabe Daisuke, Ito Juichi, Honjo Tasuku

机构信息

Department of Medical Chemistry and Molecular Biology, Graduate School of Medicine, Kyoto University, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

J Mol Med (Berl). 2006 Jan;84(1):37-45. doi: 10.1007/s00109-005-0706-9. Epub 2005 Nov 8.

Abstract

Mammalian inner ear hair cells in cochleas are believed to be incapable of regeneration after birth, which hampers treatment of sensorineural hearing impairment mainly caused by hair cell loss. Sensory epithelia of cochleas are composed of hair cells and supporting cells, both of which originate from common progenitors. Notch/RBP-J signaling is an evolutionally conserved pathway involved in specification of various cell types in developmental stage and even in some of postnatal mammalian organs. The specification of hair cell fate from the progenitors is inhibited by Notch/RBP-J signaling in embryonic inner ears. However, its function in postnatal inner ears is unknown. We showed that inhibition of Notch/RBP-J signaling, by either conditional disruption of the Rbpsuh gene or treatment with a gamma-secretase inhibitor, could give rise to ectopic hair cells in the supporting cell region in organs of Corti from neonatal mouse cochleas where hair cells have not been considered to regenerate after birth. We also showed that down-regulation of Hes5 and up-regulation of Math1 were associated with ectopic hair cell induction. These results suggest that Notch/RBP-J signaling inhibits supporting cells from differentiation into hair cells even in postnatal days, implying that inhibitors of Notch/RBP-J signaling can be used to help regenerating hair cells after birth and thus serve for potential treatment of intractable sensorineural hearing impairment caused by hair cell loss without genetical manipulation.

摘要

人们认为,哺乳动物耳蜗中的内耳毛细胞在出生后无法再生,这阻碍了对主要由毛细胞损失引起的感音神经性听力障碍的治疗。耳蜗的感觉上皮由毛细胞和支持细胞组成,二者均起源于共同的祖细胞。Notch/RBP-J信号通路是一条在进化上保守的信号通路,参与发育阶段甚至一些出生后哺乳动物器官中各种细胞类型的特化。在胚胎内耳中,Notch/RBP-J信号通路会抑制祖细胞向毛细胞命运的特化。然而,其在出生后内耳中的功能尚不清楚。我们发现,通过有条件地破坏Rbpsuh基因或用γ-分泌酶抑制剂处理来抑制Notch/RBP-J信号通路,可在新生小鼠耳蜗的柯蒂器支持细胞区域产生异位毛细胞,而在此之前人们认为出生后该区域的毛细胞不会再生。我们还发现,Hes5的下调和Math1的上调与异位毛细胞的诱导有关。这些结果表明,即使在出生后,Notch/RBP-J信号通路也会抑制支持细胞向毛细胞分化,这意味着Notch/RBP-J信号通路抑制剂可用于促进出生后毛细胞的再生,从而为因毛细胞损失导致的难治性感音神经性听力障碍提供潜在的非基因治疗方法。

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