外泌体衍生的微小RNA miR-21和miR-135在牙髓干细胞中的表达受到差异调节

M. Hunsaker, Brandon Richards, Adelle Fuller, K. Kingsley, K. Howard
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摘要

牙髓干细胞(DPSCs)是一种间充质干细胞,具有分化为各种类型的细胞和组织的潜力。先前的研究表明,DPSCs可以很容易地从恒牙和乳牙(如智齿或第三磨牙)中获得和分离,尽管关于DPSCs生长、增殖表型和反应的调节机制和因素的信息较少。最近的研究表明,一种被称为microRNA的非编码RNA可以在许多类型的干细胞中调节这些特征,尽管关于microRNA如何调节DPSC表型仍然未知。由于缺乏相关知识,本研究的主要目的是评估microRNA表达并确定其与DPSC表型(如增殖或生长)的相关性。从现有库中提取6株DPSC分离株,并使用现有批准的方案进行培养。从每个DPSC分离物中提取外泌体和细胞外囊泡,其大小从50到250 nm不等。CD63和Bradford蛋白的Western blots检测证实了外泌体的分离。提取RNA,合成cDNA,进行qPCR,结果显示所有DPSC分离株均表达miR-124、miR-133和miR-224。然而,miR-21在快速和中间倍增时间(rDT, iDT)分离株中表达存在差异,miR-135仅在中间和缓慢(iDT, sDT) DPSC分离株中表达。这项研究提供了miRNA表达与特定DPSC生长表型之间关联的一些初步证据。需要进一步的研究来证实这些结果,并确定miR-21在快速生长的DPSCs中的表达和miR-135在生长较慢的DPSCs中的表达的相关机制
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expression of Exosome-Derived MicroRNAs miR-21 and miR-135 are Differentially Regulated Among Dental Pulp Stem Cells
: Dental Pulp Stem Cells (DPSCs) are a type of mesenchymal stem cell that has the potential to differentiate into various types of cells and tissue. Previous research has demonstrated that DPSCs can be easily accessed and isolated from both permanent and deciduous teeth, such as wisdom teeth or third molars, although there is less information available about the mechanisms and factors that regulate the growth and proliferative phenotypes and responses of DPSCs. Recent studies have revealed that a type of non-coding RNA known as microRNA can modulate these characteristics among many types of stem cells, although much is still unknown about how DPSC phenotypes may be regulated by microRNAs. Due to this lack of knowledge, the primary objective of this study was to evaluate microRNA expression and determine any correlations with DPSC phenotypes, such as proliferation or growth. Six DPSC isolates were retrieved from an existing repository and cultured using an existing approved protocol. Exosomes and extracellular vesicles were extracted from each DPSC isolate, which ranged in size from 50 to 250 nm. Exosome isolation was confirmed using Western blots for CD63 and Bradford protein assays. In addition, RNA was extracted, cDNA was synthesized, and qPCR was performed, which revealed that all DPSC isolates expressed miR-124, miR-133, and miR-224. However, differential expression of miR-21 among rapid and intermediate doubling time (rDT, iDT) isolates was observed, with expression of miR-135 found only among the intermediate and slow (iDT, sDT) DPSC isolates. This study provides some of the first evidence of associations between miRNA expression and specific DPSC growth phenotypes. Further studies will be needed to confirm these results and determine the mechanisms associated with the expression of miR-21 among rapidly growing DPSCs and miR-135 expression among more slowly growing DPSCs
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