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使用超快速物理变形将 mRNA 转染入人原代淋巴细胞和造血干细胞及祖细胞的微流控技术。

Microfluidic transfection of mRNA into human primary lymphocytes and hematopoietic stem and progenitor cells using ultra-fast physical deformations.

机构信息

CellFE, Inc., Suite 110, 980 Atlantic Ave, Alameda, CA, 94501, USA.

出版信息

Sci Rep. 2021 Nov 1;11(1):21407. doi: 10.1038/s41598-021-00893-4.

Abstract

Messenger RNA (mRNA) delivery provides gene therapy with the potential to achieve transient therapeutic efficacy without risk of insertional mutagenesis. Amongst other applications, mRNA can be employed as a platform to deliver gene editing molecules, to achieve protein expression as an alternative to enzyme replacement therapies, and to express chimeric antigen receptors (CARs) on immune cells for the treatment of cancer. We designed a novel microfluidic device that allows for efficient mRNA delivery via volume exchange for convective transfection (VECT). In the device, cells flow through a ridged channel that enforces a series of ultra-fast and large intensity deformations able to transiently open pores and induce convective transport of mRNA into the cell. Here, we describe efficient delivery of mRNA into T cells, natural killer (NK) cells and hematopoietic stem and progenitor cells (HSPCs), three human primary cell types widely used for ex vivo gene therapy applications. Results demonstrate that the device can operate at a wide range of cell and payload concentrations and that ultra-fast compressions do not have a negative impact on T cell function, making this a novel and competitive platform for the development of ex vivo mRNA-based gene therapies and other cell products engineered with mRNA.

摘要

信使 RNA(mRNA)递送为基因治疗提供了一种可能性,即有可能实现短暂的治疗效果,而不会有插入突变的风险。在其他应用中,mRNA 可以作为一个平台来递送基因编辑分子,以实现蛋白质表达作为酶替代疗法的替代,以及在免疫细胞上表达嵌合抗原受体(CARs),用于治疗癌症。我们设计了一种新型微流控装置,该装置可通过体积交换进行高效的 mRNA 传递,从而实现对流转染(VECT)。在该装置中,细胞流经一个有脊的通道,该通道强制进行一系列超快和高强度的变形,能够瞬时打开孔并诱导 mRNA 向细胞内的对流输送。在这里,我们描述了该装置能够高效地将 mRNA 递送至 T 细胞、自然杀伤(NK)细胞和造血干细胞和祖细胞(HSPCs)这三种广泛用于体外基因治疗应用的人类原代细胞。结果表明,该装置可以在广泛的细胞和有效载荷浓度下运行,并且超快压缩对 T 细胞功能没有负面影响,这使其成为一种新颖且具有竞争力的平台,可用于开发体外基于 mRNA 的基因治疗和其他用 mRNA 工程改造的细胞产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4180/8560772/d5f01173de2e/41598_2021_893_Fig1_HTML.jpg

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