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用于MRI细胞追踪的间充质干细胞制备及无转染的菲洛托醇标记

Mesenchymal Stem Cell Preparation and Transfection-free Ferumoxytol Labeling for MRI Cell Tracking.

作者信息

Liu Li, Ho Chien

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, Pennsylvania.

Present address: National Institute of Neurological Disorders and Stroke, National Institute of Health, Bethesda, Maryland.

出版信息

Curr Protoc Stem Cell Biol. 2017 Nov 15;43:2B.7.1-2B.7.14. doi: 10.1002/cpsc.38.


DOI:10.1002/cpsc.38
PMID:29140566
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5699515/
Abstract

Mesenchymal stem cells (MSCs) are multipotent cells and are the most widely studied cell type for stem cell therapies. In vivo cell tracking of MSCs labeled with an FDA-approved superparamagnetic iron-oxide (SPIO) particle by magnetic resonance imaging (MRI) provides essential information, e.g., MSC engraftment, survival, and fate, thus improving cell therapy accuracy. However, current methodology for labeling MSCs with Ferumoxytol (Feraheme ), the only FDA-approved SPIO particle, needs transfection agents. This unit describes a new "bio-mimicry" protocol to prepare more native MSCs by using more "in vivo environment" of MSCs, so that the phagocytic activity of cultured MSCs is restored and expanded MSCs can be labeled with Ferumoxytol, without the need for transfection agents and/or electroporation. Moreover, MSCs re-size to a more native size, reducing from 32.0 to 19.5 μm. The MSCs prepared from this protocol retain more native properties and would be useful for biomedical applications and MSC-tracking studies by MRI. © 2017 by John Wiley & Sons, Inc.

摘要

间充质干细胞(MSCs)是多能细胞,是干细胞治疗中研究最广泛的细胞类型。通过磁共振成像(MRI)对用美国食品药品监督管理局(FDA)批准的超顺磁性氧化铁(SPIO)颗粒标记的MSCs进行体内细胞追踪,可提供重要信息,例如MSCs的植入、存活和命运,从而提高细胞治疗的准确性。然而,目前用唯一获得FDA批准的SPIO颗粒—— ferumoxytol(Feraheme)标记MSCs的方法需要转染试剂。本单元描述了一种新的“生物模拟”方案,通过利用更多MSCs的“体内环境”来制备更天然的MSCs,从而恢复培养的MSCs的吞噬活性,并且无需转染试剂和/或电穿孔即可用ferumoxytol标记扩增的MSCs。此外,MSCs会重新调整大小至更天然的尺寸,从32.0微米减小到19.5微米。通过该方案制备的MSCs保留了更多天然特性,可用于生物医学应用和通过MRI进行的MSCs追踪研究。© 2017约翰威立国际出版公司。

相似文献

[1]
Mesenchymal Stem Cell Preparation and Transfection-free Ferumoxytol Labeling for MRI Cell Tracking.

Curr Protoc Stem Cell Biol. 2017-11-15

[2]
A New Method for Preparing Mesenchymal Stem Cells and Labeling with Ferumoxytol for Cell Tracking by MRI.

Sci Rep. 2016-5-18

[3]
Magnetic Resonance Imaging of Ferumoxytol-Labeled Human Mesenchymal Stem Cells in the Mouse Brain.

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[4]
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[7]
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[10]
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引用本文的文献

[1]
Repurposing ferumoxytol: Diagnostic and therapeutic applications of an FDA-approved nanoparticle.

Theranostics. 2022

[2]
Adipose-Derived Mesenchymal Stem Cells From a Hypoxic Culture Improve Neuronal Differentiation and Nerve Repair.

Front Cell Dev Biol. 2021-4-30

[3]
Induction of mesenchymal stem cell‑like transformation in rat primary glial cells using hypoxia, mild hypothermia and growth factors.

Mol Med Rep. 2021-2

[4]
Stem Cell Tracing Through MR Molecular Imaging.

Tissue Eng Regen Med. 2018-1-16

本文引用的文献

[1]
A New Method for Preparing Mesenchymal Stem Cells and Labeling with Ferumoxytol for Cell Tracking by MRI.

Sci Rep. 2016-5-18

[2]
Macrophage phagocytosis alters the MRI signal of ferumoxytol-labeled mesenchymal stromal cells in cartilage defects.

Sci Rep. 2016-5-13

[3]
Clinical Trials With Mesenchymal Stem Cells: An Update.

Cell Transplant. 2016

[4]
Interleukin-25 Mediates Transcriptional Control of PD-L1 via STAT3 in Multipotent Human Mesenchymal Stromal Cells (hMSCs) to Suppress Th17 Responses.

Stem Cell Reports. 2015-8-28

[5]
Use of mesenchymal stem cells for therapy of cardiac disease.

Circ Res. 2015-4-10

[6]
Concise review: optimizing expansion of bone marrow mesenchymal stem/stromal cells for clinical applications.

Stem Cells Transl Med. 2015-4

[7]
Establishing criteria for human mesenchymal stem cell potency.

Stem Cells. 2015-6

[8]
"Mesenchymal" stem cells.

Annu Rev Cell Dev Biol. 2014-8-18

[9]
Emerging applications for ferumoxytol as a contrast agent in MRI.

J Magn Reson Imaging. 2015-4

[10]
Stem cell imaging: from bench to bedside.

Cell Stem Cell. 2014-4-3

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