Reprogramming to restore youthful epigenetics of senescent nucleus pulposus cells for mitigating intervertebral disc degeneration and alleviating low back pain

IF 14.3 1区 医学 Q1 CELL & TISSUE ENGINEERING
Wenzheng Ma, Wantao Wang, Lei Zhao, Jinghao Fan, Lei Liu, Lin Huang, Baogan Peng, Jianru Wang, Baoshan Xu, Hongmei Liu, Decheng Wu, Zhaomin Zheng
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Abstract

Aging is a pivotal risk factor for intervertebral disc degeneration (IVDD) and chronic low back pain (LBP). The restoration of aging nucleus pulposus cells (NPCs) to a youthful epigenetic state is crucial for IVDD treatment, but remains a formidable challenge. Here, we proposed a strategy to partially reprogram and reinstate youthful epigenetics of senescent NPCs by delivering a plasmid carrier that expressed pluripotency-associated genes (Oct4, Klf4 and Sox2) in Cavin2-modified exosomes (OKS@M-Exo) for treatment of IVDD and alleviating LBP. The functional OKS@M-Exo efficaciously alleviated senescence markers (p16INK4a, p21CIP1 and p53), reduced DNA damage and H4K20me3 expression, as well as restored proliferation ability and metabolic balance in senescent NPCs, as validated through in vitro experiments. In a rat model of IVDD, OKS@M-Exo maintained intervertebral disc height, nucleus pulposus hydration and tissue structure, effectively ameliorated IVDD via decreasing the senescence markers. Additionally, OKS@M-Exo reduced nociceptive behavior and downregulated nociception markers, indicating its efficiency in alleviating LBP. The transcriptome sequencing analysis also demonstrated that OKS@M-Exo could decrease the expression of age-related pathways and restore cell proliferation. Collectively, reprogramming by the OKS@M-Exo to restore youthful epigenetics of senescent NPCs may hold promise as a therapeutic platform to treat IVDD.

Abstract Image

重编程以恢复衰老髓核细胞的年轻表观遗传学,以减轻椎间盘退变和减轻腰痛
衰老是椎间盘退变(IVDD)和慢性腰痛(LBP)的关键危险因素。将老化的髓核细胞(NPCs)恢复到年轻的表观遗传状态是IVDD治疗的关键,但仍然是一个艰巨的挑战。在这里,我们提出了一种策略,通过在cavin2修饰的外泌体(OKS@M-Exo)中传递表达多能性相关基因(Oct4, Klf4和Sox2)的质粒载体,部分重编程和恢复衰老npc的年轻表观遗传学,以治疗IVDD和缓解LBP。体外实验证实,功能性OKS@M-Exo能有效缓解衰老NPCs的衰老标志物(p16INK4a、p21CIP1和p53),降低DNA损伤和H4K20me3表达,恢复细胞增殖能力和代谢平衡。在IVDD大鼠模型中,OKS@M-Exo维持了椎间盘高度、髓核水化和组织结构,通过降低衰老标志物有效改善了IVDD。此外,OKS@M-Exo减少了伤害性行为,下调了伤害性标志物,表明其缓解LBP的有效性。转录组测序分析也表明OKS@M-Exo可以降低年龄相关通路的表达,恢复细胞增殖。总的来说,通过OKS@M-Exo重新编程来恢复衰老npc的年轻表观遗传学可能有望成为治疗IVDD的治疗平台。
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来源期刊
Bone Research
Bone Research CELL & TISSUE ENGINEERING-
CiteScore
20.00
自引率
4.70%
发文量
289
审稿时长
20 weeks
期刊介绍: Established in 2013, Bone Research is a newly-founded English-language periodical that centers on the basic and clinical facets of bone biology, pathophysiology, and regeneration. It is dedicated to championing key findings emerging from both basic investigations and clinical research concerning bone-related topics. The journal's objective is to globally disseminate research in bone-related physiology, pathology, diseases, and treatment, contributing to the advancement of knowledge in this field.
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