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A potential role of microvesicle-containing miR-223/142 in lung inflammation.微囊泡 miR-223/142 在肺部炎症中的潜在作用。
Thorax. 2019 Sep;74(9):865-874. doi: 10.1136/thoraxjnl-2018-212994. Epub 2019 Jul 22.
2
Caveolin-1 selectively regulates microRNA sorting into microvesicles after noxious stimuli.窖蛋白-1 在后有害刺激下选择性调节 microRNA 分拣到微泡中。
J Exp Med. 2019 Sep 2;216(9):2202-2220. doi: 10.1084/jem.20182313. Epub 2019 Jun 24.
3
Identification of biomarkers for amyotrophic lateral sclerosis by comprehensive analysis of exosomal mRNAs in human cerebrospinal fluid.通过对人脑脊液外泌体 mRNA 的综合分析鉴定肌萎缩侧索硬化症的生物标志物。
BMC Med Genomics. 2019 Jan 10;12(1):7. doi: 10.1186/s12920-019-0473-z.
4
Identification of miRNA-rich vesicles in bronchoalveolar lavage fluid: Insights into the function and heterogeneity of extracellular vesicles.鉴定支气管肺泡灌洗液中的 miRNA 丰富小泡:对外泌体功能和异质性的深入了解。
J Control Release. 2019 Jan 28;294:43-52. doi: 10.1016/j.jconrel.2018.12.008. Epub 2018 Dec 7.
5
Exosome-Mediated Small RNA Delivery: A Novel Therapeutic Approach for Inflammatory Lung Responses.外泌体介导的小 RNA 递呈:炎症性肺反应的一种新治疗方法。
Mol Ther. 2018 Sep 5;26(9):2119-2130. doi: 10.1016/j.ymthe.2018.06.007. Epub 2018 Jul 10.
6
Functional Evidence of Pulmonary Extracellular Vesicles in Infectious and Noninfectious Lung Inflammation.肺细胞外囊泡在感染性和非感染性肺部炎症中的功能证据。
J Immunol. 2018 Sep 1;201(5):1500-1509. doi: 10.4049/jimmunol.1800264. Epub 2018 Jul 11.
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Circulating microRNAs as potential cancer biomarkers: the advantage and disadvantage.循环 microRNAs 作为潜在的癌症生物标志物:优势和劣势。
Clin Epigenetics. 2018 Apr 23;10:59. doi: 10.1186/s13148-018-0492-1. eCollection 2018.
8
Absolute Quantification of Plasma MicroRNA Levels in Cynomolgus Monkeys, Using Quantitative Real-time Reverse Transcription PCR.使用定量实时逆转录PCR对食蟹猴血浆微小RNA水平进行绝对定量
J Vis Exp. 2018 Feb 12(132):56850. doi: 10.3791/56850.
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Amniotic fluid stem cell exosomes: Therapeutic perspective.羊水干细胞外泌体:治疗前景。
Biofactors. 2018 Mar;44(2):158-167. doi: 10.1002/biof.1407. Epub 2018 Jan 16.
10
Exosomes as new players in metabolic organ cross-talk.外泌体作为代谢器官对话的新角色。
Diabetes Obes Metab. 2017 Sep;19 Suppl 1:137-146. doi: 10.1111/dom.13027.

用于检测体内细胞外囊泡 microRNAs 的一步法 RT-qPCR:一种省时省钱的方法。

Single-step RT-qPCR for detection of extracellular vesicle microRNAs in vivo: a time- and cost-effective method.

机构信息

Division of Pulmonary and Critical Care Medicine, Department of Medicine, Boston University Medical Campus, Boston, Massachusetts.

Department of Biology and Chemistry, Changwon National University, Changwon, South Korea.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2020 Apr 1;318(4):L742-L749. doi: 10.1152/ajplung.00430.2019. Epub 2020 Feb 19.

DOI:10.1152/ajplung.00430.2019
PMID:32073880
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7191479/
Abstract

Emerging evidence suggests that extracellular vesicle (EV)-associated microRNAs (miRNAs) are a potential diagnostic tool for liquid biopsy in various human diseases. However, the experimental procedure for the detection of EV-associated miRNAs (EV-miRNAs) from body fluids is relatively complex and not cost-effective. Due to the limited amount of EVs and EV-RNAs, a column-based RNA purification, which is an expensive approach, is often used to detect EV-miRNAs via reverse transcription-quantitative real-time PCR (RT-qPCR). Here, we developed and validated a simple and cost-effective method (single-step RT-qPCR) in which we directly detect EV-miRNAs without RNA purification from the EVs. We validated this protocol using the EVs isolated from mouse broncho-alveolar lavage fluid (BALF) and serum. The obtained EVs were first lysed in the EV-lysis buffer, followed by RT-qPCR without isolation and purification of RNAs. We successfully detected the designated miRNAs from lysed EVs; 10 to 10 EVs were optimal to detect the EV-miRNAs using the single-step RT-qPCR. In our previously published work, using the conventional RT-qPCR method, we have reported that miR-142 and -223 are dramatically upregulated in both BALF and serum EVs after lung infection. Hence, we reassessed and confirmed the level of EV-miR-142/223 using the newly developed single-step RT-qPCR. Notably, inhibition of RNase activity in the lysed EVs remains crucial for the detection of EV-miRNAs. Moreover, repeated freeze-thaw cycling significantly interferes the EV-miRNA quantification. Collectively, the single-step RT-qPCR for the detection of EV-miRNAs in vivo will potentially provide a fast, accurate, and convenient way to quantify circulating and/or body fluid-derived EV-miRNAs. This method may potentially be applied to the diagnostic blood testing used in the medical centers or research laboratories.

摘要

越来越多的证据表明,细胞外囊泡 (EV)-相关 microRNAs (miRNAs) 是各种人类疾病液体活检的潜在诊断工具。然而,从体液中检测 EV 相关 miRNAs (EV-miRNAs) 的实验过程相对复杂,且成本效益不高。由于 EV 和 EV-RNAs 的含量有限,常采用基于柱的 RNA 纯化方法,这是一种昂贵的方法,通过逆转录-定量实时 PCR (RT-qPCR) 检测 EV-miRNAs。在此,我们开发并验证了一种简单且具有成本效益的方法 (一步法 RT-qPCR),该方法无需 RNA 纯化即可直接从 EV 中检测 EV-miRNAs。我们使用从小鼠支气管肺泡灌洗液 (BALF) 和血清中分离的 EV 验证了该方案。首先将获得的 EV 在 EV 裂解缓冲液中裂解,然后直接进行 RT-qPCR,无需分离和纯化 RNA。我们成功地从裂解的 EV 中检测到指定的 miRNAs;使用一步法 RT-qPCR,10 到 10 EV 是检测 EV-miRNAs 的最佳条件。在我们之前的研究工作中,使用常规 RT-qPCR 方法,我们已经报道 miR-142 和 -223 在肺部感染后 BALF 和血清 EV 中显著上调。因此,我们使用新开发的一步法 RT-qPCR 重新评估并确认了 EV-miR-142/223 的水平。值得注意的是,裂解 EV 中 RNase 活性的抑制对于 EV-miRNA 的检测至关重要。此外,反复冻融循环会显著干扰 EV-miRNA 的定量。总之,用于体内检测 EV-miRNAs 的一步法 RT-qPCR 可能为量化循环和/或体液来源的 EV-miRNAs 提供一种快速、准确、方便的方法。该方法可能适用于医学中心或研究实验室中的诊断性血液检测。