Comparative evaluation of ACetic - MEthanol high salt dissociation approach for single-cell transcriptomics of frozen human tissues.

IF 4.6 2区 生物学 Q2 CELL BIOLOGY
Frontiers in Cell and Developmental Biology Pub Date : 2025-01-07 eCollection Date: 2024-01-01 DOI:10.3389/fcell.2024.1469955
Marina Utkina, Anastasia Shcherbakova, Ruslan Deviatiiarov, Alina Ryabova, Marina Loguinova, Valentin Trofimov, Anna Kuznetsova, Mikhail Petropavlovskiy, Rustam Salimkhanov, Denis Maksimov, Eugene Albert, Alexandra Golubeva, Walaa Asaad, Lilia Urusova, Ekaterina Bondarenko, Anastasia Lapshina, Alexandra Shutova, Dmitry Beltsevich, Oleg Gusev, Larisa Dzeranova, Galina Melnichenko, Ildar Minniakhmetov, Ivan Dedov, Natalya Mokrysheva, Sergey Popov
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引用次数: 0

Abstract

Current dissociation methods for solid tissues in scRNA-seq studies do not guarantee intact single-cell isolation, especially for sensitive and complex human endocrine tissues. Most studies rely on enzymatic dissociation of fresh samples or nuclei isolation from frozen samples. Dissociating whole intact cells from fresh-frozen samples, commonly collected by biobanks, remains a challenge. Here, we utilized the acetic-methanol dissociation approach (ACME) to capture transcriptional profiles of individual cells from fresh-frozen tissue samples. This method combines acetic acid-based dissociation and methanol-based fixation. In our study, we optimized this approach for human endocrine tissue samples for the first time. We incorporated a high-salt washing buffer instead of the standard PBS to stabilize RNA and prevent RNases reactivation during rehydration. We have designated this optimized protocol as ACME HS (ACetic acid-MEthanol High Salt). This technique aims to preserve cell morphology and RNA integrity, minimizing transcriptome changes and providing a more accurate representation of mature mRNA. We compared the ability of enzymatic, ACME HS, and nuclei isolation methods to preserve major cell types, gene expression, and standard quality parameters across 41 tissue samples. Our results demonstrated that ACME HS effectively dissociates and fixes cells, preserving cell morphology and high RNA integrity. This makes ACME HS a valuable alternative for scRNA-seq protocols involving challenging tissues where obtaining a live cell suspension is difficult or disruptive.

醋酸-甲醇高盐解离法对冷冻人体组织单细胞转录组学的比较评价。
在scRNA-seq研究中,目前的固体组织解离方法并不能保证完整的单细胞分离,特别是对于敏感和复杂的人类内分泌组织。大多数研究依赖于新鲜样品的酶解或冷冻样品的细胞核分离。从通常由生物银行收集的新鲜冷冻样本中分离完整的细胞仍然是一个挑战。在这里,我们利用醋酸-甲醇解离方法(ACME)从新鲜冷冻组织样本中捕获单个细胞的转录谱。该方法将醋酸基解离和甲醇基固定相结合。在我们的研究中,我们首次针对人体内分泌组织样本优化了这种方法。我们加入了高盐洗涤缓冲液而不是标准PBS来稳定RNA并防止rnase在补液过程中再激活。我们将该优化方案命名为ACME HS(乙酸-甲醇高盐)。该技术旨在保持细胞形态和RNA的完整性,最大限度地减少转录组的变化,并提供更准确的成熟mRNA的表示。我们比较了酶、ACME HS和核分离方法在41个组织样本中保存主要细胞类型、基因表达和标准质量参数的能力。我们的研究结果表明,ACME HS有效地分离和固定细胞,保持细胞形态和高RNA完整性。这使得ACME HS成为scRNA-seq协议的一个有价值的替代方案,该协议涉及难以获得活细胞悬浮液或破坏性的挑战性组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Cell and Developmental Biology
Frontiers in Cell and Developmental Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
9.70
自引率
3.60%
发文量
2531
审稿时长
12 weeks
期刊介绍: Frontiers in Cell and Developmental Biology is a broad-scope, interdisciplinary open-access journal, focusing on the fundamental processes of life, led by Prof Amanda Fisher and supported by a geographically diverse, high-quality editorial board. The journal welcomes submissions on a wide spectrum of cell and developmental biology, covering intracellular and extracellular dynamics, with sections focusing on signaling, adhesion, migration, cell death and survival and membrane trafficking. Additionally, the journal offers sections dedicated to the cutting edge of fundamental and translational research in molecular medicine and stem cell biology. With a collaborative, rigorous and transparent peer-review, the journal produces the highest scientific quality in both fundamental and applied research, and advanced article level metrics measure the real-time impact and influence of each publication.
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