microRNA在骨质疏松症成骨细胞、破骨细胞及其前体分化和功能调控中的作用。

IF 3.6 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Bulat I Yalaev, Elena I Kaletnik, Yulia S Karpova, Zhanna E Belaya, Ildar R Minniakhmetov, Natalia G Mokrysheva, Rita I Khusainova
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引用次数: 0

摘要

骨质疏松症是一种复杂的疾病,受多种因素影响,包括遗传和表观遗传影响。虽然已经确定了骨质疏松症的DNA标记,但它们并不能完全解释这种疾病的遗传基础。表观遗传因素,如小microRNAs (miRNAs),可能为理解骨质疏松症的分子机制提供了缺失的一环。mirna是一类非编码rna,在基因表达的表观遗传调控中发挥作用。众所周知,它们参与了各种生物过程,包括骨形成和重塑。mirna的差异表达与骨质疏松症相关的骨密度的病理性降低有关。研究表明,异常的miRNA表达模式导致成骨细胞活性降低,破骨细胞活性增加。进一步研究mirna在骨质疏松症中的作用可能有助于更好地了解这种疾病并确定潜在的治疗靶点。基于这些假设,正常和骨质疏松状态下成骨细胞、破骨细胞及其前体miRNA表达模式的研究是一个快速发展的科学研究领域。虽然这项研究的结果仍然不完整,有时甚至是矛盾的,但它们需要额外的科学分析来更好地理解所涉及的复杂机制。本文旨在综述正常和病理条件下成骨细胞和破骨细胞特异性表达mirna的研究现状。我们还将讨论这些mirna作为骨质疏松症诊断和骨质疏松症治疗靶点的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of microRNA in the Regulation of Differentiation and the Functionality of Osteoblasts, Osteoclasts, and Their Precursors in Osteoporosis.

Osteoporosis is a complex disease that is affected by a variety of factors, including genetic and epigenetic influences. While DNA markers for osteoporosis have been identified, they do not fully explain the hereditary basis of the disease. Epigenetic factors, such as small microRNAs (miRNAs), may provide a missing link in understanding the molecular mechanisms underlying osteoporosis. miRNAs are a class of non-coding RNAs that play a role in the epigenetic regulation of gene expression. They are known to be involved in various biological processes, including bone formation and remodelling. Differential expression of miRNAs has been linked to the pathological decrease in bone mineral density associated with osteoporosis. It has been shown that an abnormal miRNA expression pattern leads to a decrease in osteoblast activity and an increase in osteoclast activity. Further research into the role of miRNAs in osteoporosis may help to better understand this disease and identify potential therapeutic targets for treatment. Based on these assumptions, the study of miRNA expression patterns in osteoblasts, osteoclasts, and their precursors under normal and osteoporotic conditions is a rapidly growing field of scientific research. Although the results of this research are still incomplete and sometimes contradictory, they require additional scientific analysis to better understand the complex mechanisms involved. The purpose of this paper is to review the current research on miRNAs specifically expressed in osteoblasts and osteoclasts under both normal and pathological conditions. We will also discuss the potential applications of these miRNAs as biomarkers for osteoporosis diagnosis and as targets for osteoporosis treatment.

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来源期刊
Non-Coding RNA
Non-Coding RNA Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
6.70
自引率
4.70%
发文量
74
审稿时长
10 weeks
期刊介绍: Functional studies dealing with identification, structure-function relationships or biological activity of: small regulatory RNAs (miRNAs, siRNAs and piRNAs) associated with the RNA interference pathway small nuclear RNAs, small nucleolar and tRNAs derived small RNAs other types of small RNAs, such as those associated with splice junctions and transcription start sites long non-coding RNAs, including antisense RNAs, long ''intergenic'' RNAs, intronic RNAs and ''enhancer'' RNAs other classes of RNAs such as vault RNAs, scaRNAs, circular RNAs, 7SL RNAs, telomeric and centromeric RNAs regulatory functions of mRNAs and UTR-derived RNAs catalytic and allosteric (riboswitch) RNAs viral, transposon and repeat-derived RNAs bacterial regulatory RNAs, including CRISPR RNAS Analysis of RNA processing, RNA binding proteins, RNA signaling and RNA interaction pathways: DICER AGO, PIWI and PIWI-like proteins other classes of RNA binding and RNA transport proteins RNA interactions with chromatin-modifying complexes RNA interactions with DNA and other RNAs the role of RNA in the formation and function of specialized subnuclear organelles and other aspects of cell biology intercellular and intergenerational RNA signaling RNA processing structure-function relationships in RNA complexes RNA analyses, informatics, tools and technologies: transcriptomic analyses and technologies development of tools and technologies for RNA biology and therapeutics Translational studies involving long and short non-coding RNAs: identification of biomarkers development of new therapies involving microRNAs and other ncRNAs clinical studies involving microRNAs and other ncRNAs.
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