Shen Wei-Bin, Vaccaro Dennis E, Fishman Paul S, Groman Ernest V, Yarowsky Paul
University of Maryland School of Medicine, Department of Pharmacology, Baltimore, MD, 21201, USA.
BioPhysics Assay Laboratory, Worcester, MA, 01603, USA.
Contrast Media Mol Imaging. 2016 May;11(3):222-8. doi: 10.1002/cmmi.1684. Epub 2016 Jan 25.
This is the first report of the synthesis of a new nanoparticle, sans iron oxide rhodamine B (SIRB), an example of a new class of nanoparticles. SIRB is designed to provide all of the cell labeling properties of the ultrasmall superparamagnetic iron oxide (USPIO) nanoparticle Molday ION Rhodamine B (MIRB) without containing the iron oxide core. MIRB was developed to label cells and allow them to be tracked by MRI or to be manipulated by magnetic gradients. SIRB possesses a similar size, charge and cross-linked dextran coating as MIRB. Of great interest is understanding the biological and physiological changes in cells after they are labeled with a USPIO. Whether these effects are due to the iron oxide buried within the nanoparticle or to the surface coating surrounding the iron oxide core has not been considered previously. MIRB and SIRB represent an ideal pairing of nanoparticles to identify nanoparticle anatomy responsible for post-labeling cytotoxicity. Here we report the effects of SIRB labeling on the SH-SY5Y neuroblastoma cell line and primary human neuroprogenitor cells (hNPCs). These effects are contrasted with the effects of labeling SH-SY5Y cells and hNPCs with MIRB. We find that SIRB labeling, like MIRB labeling, (i) occurs without the use of transfection reagents, (ii) is packaged within lysosomes distributed within cell cytoplasm, (iii) is retained within cells with no loss of label after cell storage, and (iv) does not alter cellular viability or proliferation, and (v) SIRB labeled hNPCs differentiate normally into neurons or astrocytes. Copyright © 2016 John Wiley & Sons, Ltd.
这是关于一种新型纳米颗粒——无氧化铁罗丹明B(SIRB)合成的首次报道,它是一类新型纳米颗粒的实例。SIRB旨在具备超小超顺磁性氧化铁(USPIO)纳米颗粒莫尔戴离子罗丹明B(MIRB)的所有细胞标记特性,但不含氧化铁核心。MIRB被开发用于标记细胞,使其能够通过磁共振成像(MRI)进行追踪或通过磁梯度进行操控。SIRB与MIRB具有相似的尺寸、电荷和交联葡聚糖涂层。非常有趣的是了解细胞在用USPIO标记后的生物学和生理学变化。这些效应是由于纳米颗粒内部埋藏的氧化铁还是由于氧化铁核心周围的表面涂层所致,此前尚未得到考虑。MIRB和SIRB是一对理想的纳米颗粒组合,可用于确定负责标记后细胞毒性的纳米颗粒结构。在此,我们报道了SIRB标记对SH - SY5Y神经母细胞瘤细胞系和原代人神经祖细胞(hNPCs)的影响。将这些效应与用MIRB标记SH - SY5Y细胞和hNPCs的效应进行了对比。我们发现,SIRB标记与MIRB标记一样,(i)无需使用转染试剂即可发生,(ii)被包裹在分布于细胞质中的溶酶体内,(iii)在细胞储存后保留在细胞内且标记无损失,(iv)不改变细胞活力或增殖,并且(v)SIRB标记的hNPCs能正常分化为神经元或星形胶质细胞。版权所有© 2016约翰威立父子有限公司。