Preclinical development of a microRNA-based therapy for intervertebral disc degeneration

Ming-liang Ji(Zhongda Hospital Southeast University), Hua Jiang(Guangxi Medical University), Xuejun Zhang(Zhongda Hospital Southeast University), Peiliang Shi(Model Animal Research Center), Chao Li(Zhongda Hospital Southeast University), Hao Wu(Zhongda Hospital Southeast University), Xiaotao Wu(Zhongda Hospital Southeast University), Yuntao Wang(Zhongda Hospital Southeast University), Chen Wang(Zhongda Hospital Southeast University), Jun Lü(Zhongda Hospital Southeast University)
Nature Communications
November 22, 2018
Cited by 266Open Access
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Abstract

Understanding the molecular mechanisms regulating the maintenance and destruction of intervertebral disc may lead to the development of new therapies for intervertebral disc degeneration (IDD). Here we present evidence from miRNA microarray analyses of clinical data sets along with in vitro and in vivo experiments that miR-141 is a key regulator of IDD. Gain- and loss-of-function studies show that miR-141 drives IDD by inducing nucleus pulposus (NP) apoptosis. Furthermore, miR-141 KO in mice attenuated spontaneous and surgically induced IDD. Mechanistically, miR-141 promotes IDD development by targeting and depleting SIRT1, a negative regulator of NF-κB pathway. Therapeutically, upregulation or downregulation of miR-141 by nanoparticle delivery in IDD model aggravated or alleviated experimental IDD, respectively. Our findings reveal a novel mechanism by which miR-141, in part, promotes IDD progression by interacting with SIRT1/NF-κB pathway. Blockade of miR-141 in vivo may serve as a potential therapeutic approach in the treatment of IDD.


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