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Nrf2/Keap1信号级联在力学生物学和骨骼健康中的作用。

The role of the Nrf2/Keap1 signaling cascade in mechanobiology and bone health.

作者信息

Priddy Carlie, Li Jiliang

机构信息

Department of Biology, Indiana University - Purdue University Indianapolis, Indianapolis, IN, USA.

出版信息

Bone Rep. 2021 Nov 22;15:101149. doi: 10.1016/j.bonr.2021.101149. eCollection 2021 Dec.

Abstract

In conjunction with advancements in modern medicine, bone health is becoming an increasingly prevalent concern among a global population with an ever-growing life expectancy. Countless factors contribute to declining bone strength, and age exacerbates nearly all of them. The detrimental effects of bone loss have a profound impact on quality of life. As such, there is a great need for full exploration of potential therapeutic targets that may provide antiaging benefits and increase the life and strength of bone tissues. The Keap1-Nrf2 pathway is a promising avenue of this research. The cytoprotective and antioxidant functions of this pathway have been shown to mitigate the deleterious effects of oxidative stress on bone tissues, but the exact cellular and molecular mechanisms by which this occurs are not yet fully understood. Presently, refined animal and loading models are allowing exploration into the effect of the Keap1-Nrf2 pathway in a tissue-specific or even cell-specific manner. In addition, Nrf2 activators currently undergoing clinical trials can be utilized to investigate the particular cellular mechanisms at work in this cytoprotective cascade. Although the timing and dosing of treatment with Nrf2 activators need to be further investigated, these activators have great potential to be used clinically to prevent and treat osteoporosis.

摘要

随着现代医学的进步,在全球预期寿命不断增长的人群中,骨骼健康正日益成为一个普遍关注的问题。导致骨强度下降的因素众多,而年龄几乎会加剧所有这些因素的影响。骨质流失的有害影响对生活质量有着深远影响。因此,迫切需要全面探索可能具有抗衰老益处并延长骨组织寿命和增强骨强度的潜在治疗靶点。Keap1-Nrf2信号通路是这项研究中一条很有前景的途径。该信号通路的细胞保护和抗氧化功能已被证明可减轻氧化应激对骨组织的有害影响,但其具体发生的细胞和分子机制尚未完全明确。目前,精细的动物和加载模型使得能够以组织特异性甚至细胞特异性的方式探究Keap1-Nrf2信号通路的作用。此外,目前正在进行临床试验的Nrf2激活剂可用于研究这一细胞保护级联反应中起作用的特定细胞机制。尽管Nrf2激活剂治疗的时机和剂量需要进一步研究,但这些激活剂在临床上预防和治疗骨质疏松症具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e3/8626578/42e3fb4d0821/gr1.jpg

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