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优化 siRNA 在原位 3D 肿瘤球体培养物中的递送。

Optimized delivery of siRNA into 3D tumor spheroid cultures in situ.

机构信息

School of Cellular and Molecular Medicine, University of Bristol, Biomedical Sciences Building, University Walk, Bristol, BS8 1TD, UK.

School of Life Sciences, University of Sussex, Falmer, Brighton, BN1 9QG, UK.

出版信息

Sci Rep. 2018 May 21;8(1):7952. doi: 10.1038/s41598-018-26253-3.

Abstract

3D tissue culture provides a physiologically relevant and genetically tractable system for studying normal and malignant human tissues. Despite this, gene-silencing studies using siRNA has proved difficult. In this study, we have identified a cause for why traditional siRNA transfection techniques are ineffective in eliciting gene silencing in situ within 3D cultures and proposed a simple method for significantly enhancing siRNA entry into spheroids/organoids. In 2D cell culture, the efficiency of gene silencing is significantly reduced when siRNA complexes are prepared in the presence of serum. Surprisingly, in both 3D tumour spheroids and primary murine organoids, the presence of serum during siRNA preparation rapidly promotes entry and internalization of Cy3-labelled siRNA in under 2 hours. Conversely, siRNA prepared in traditional low-serum transfection media fails to gain matrigel or spheroid/organoid entry. Direct measurement of CTNNB1 mRNA (encoding β-catenin) from transfected tumour spheroids confirmed a transient but significant knockdown of β-catenin when siRNA:liposome complexes were formed with serum, but not when prepared in the presence of reduced-serum media (Opti-MEM). Our studies suggest a simple modification to standard lipid-based transfection protocols facilitates rapid siRNA entry and transient gene repression, providing a platform for researchers to improve siRNA efficiency in established 3D cultures.

摘要

3D 组织培养为研究正常和恶性人体组织提供了一个生理相关且基因可操作的系统。尽管如此,使用 siRNA 的基因沉默研究证明是困难的。在这项研究中,我们确定了为什么传统的 siRNA 转染技术在体内 3D 培养物中不能有效引发基因沉默的原因,并提出了一种简单的方法来显著增强 siRNA 进入球体/类器官的能力。在 2D 细胞培养中,当 siRNA 复合物在血清存在下制备时,基因沉默的效率显著降低。令人惊讶的是,在 3D 肿瘤球体和原代小鼠类器官中,在 siRNA 制备过程中存在血清会在不到 2 小时内迅速促进 Cy3 标记的 siRNA 的进入和内化。相反,在传统的低血清转染培养基中制备的 siRNA 无法获得基质胶或球体/类器官的进入。从转染的肿瘤球体中直接测量 CTNNB1 mRNA(编码 β-连环蛋白),证实了当 siRNA:脂质体复合物与血清形成时,β-连环蛋白会短暂但显著下调,但当在低血清培养基(Opti-MEM)中制备时不会下调。我们的研究表明,对标准脂质基转染方案进行简单修改可以促进 siRNA 的快速进入和瞬时基因抑制,为研究人员在已建立的 3D 培养物中提高 siRNA 效率提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/343a/5962539/a775026153dc/41598_2018_26253_Fig1_HTML.jpg

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