人乳样品中细胞和乳脂小球RNA的保存方法。

Zhengfei Li, Nicole Fischbein, Flora Jin, Sarah Nyquist, Kimberly O'Brien, Nadav Ahituv, Valerie Flaherman, Yarden Golan
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引用次数: 0

摘要

人类母乳中含有RNA的不同组分,包括乳细胞和乳脂球(MFG),使其成为研究哺乳生理学的宝贵资源。然而,由于RNA的快速降解,保持RNA的完整性,特别是在低资源或家庭采集环境中,是具有挑战性的。本研究旨在评估和优化BM细胞和mfg的RNA保存方法,包括在冷冻前使用RNAlater进行稳定的简化方案。从哺乳期参与者中收集人乳样本(n = 16),在冷冻前直接冷冻(标准做法)或与RNAlater (1:1, v/v)混合。从分离的乳细胞和MFG中提取RNA,并使用qPCR评估RNA的浓度、质量(RNA质量数rqn和28S/18S比)和基因表达(ACTB、LALBA、PRLR、PTPRC)。MFG组分始终比乳细胞产生更高的RNA浓度。与不含RNAlater的冷冻样品相比,含有RNAlater的样品显示出显著改善的RNA质量,特别是在MFG部分。基因表达在不同的保存方法中基本稳定,尽管rnalater处理的样品中免疫标记基因PTPRC减少,这表明免疫细胞RNA含量发生了变化。延迟添加RQN导致乳细胞组分中RQN值下降,强调需要迅速稳定。这些发现表明,RNAlater冷冻前稳定可以提高RNA的质量和产量,特别是来自mfg的RNA,并支持其用于乳细胞基因表达分析。这种方法为临床和现场研究提供了一种实用的、可扩展的RNA保存解决方案,包括远程和低资源环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods for Preserving Cellular and Milk Fat Globules RNA from Human Milk Samples.

Human breast milk contains RNA in various fractions, including milk cells and milk fat globules (MFG), making it a valuable resource for studying lactation physiology. However, preserving RNA integrity, especially in low-resource or at-home collection settings, is challenging due to rapid RNA degradation. This study aimed to evaluate and optimize RNA preservation methods for BM cells and MFGs, including a simplified protocol using RNAlater for stabilization prior to freezing. Human milk samples (n = 16) were collected from lactating participants and either frozen directly (standard practice) or mixed with RNAlater (1:1, v/v) before freezing. RNA was extracted from separated milk cell and MFG fractions and assessed for concentration, quality (RNA quality number-RQN and 28S/18S ratio), and gene expression ( ACTB , LALBA , PRLR , PTPRC ) using qPCR. MFG fractions consistently yielded higher RNA concentrations than milk cells. Samples preserved with RNAlater showed significantly improved RNA quality, particularly in the MFG fraction, compared to those frozen without RNAlater. Gene expression was largely stable across preservation methods, though the immune marker gene PTPRC was reduced in RNAlater-treated samples, suggesting shifts in immune cell RNA content. Delays in RNAlater addition led to declining RQN values in milk cell fractions, underscoring the need for prompt stabilization. These findings demonstrate that RNAlater pre-freezing stabilization enhances RNA quality and yield, especially from MFGs, and supports its use for lactocytes gene expression analysis. This approach provides a practical, scalable solution for RNA preservation in clinical and field research, including remote and low-resource settings.

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