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利用功能性Fe2O3磁性纳米颗粒对脑缺血中活的凋亡细胞进行无创靶向递送及体内磁共振追踪方法

Noninvasive targeting delivery and in vivo magnetic resonance tracking method for live apoptotic cells in cerebral ischemia with functional Fe2O3 magnetic nanoparticles.

作者信息

Saito Atsushi, Mekawy Moataz M, Sumiyoshi Akira, Riera Jorge J, Shimizu Hiroaki, Kawashima Ryuta, Tominaga Teiji

机构信息

Department of Neurosurgery, Aomori Prefectural Central Hospital, 2-1-1 Higashitsukurimichi, Aomori, 030-8553, Japan.

Department of Neurosurgery, Graduate School of Medicine, Tohoku University, 2-1 Seiryo-machi, Aoba-ku, Sendai, Miyagi, 980-8575, Japan.

出版信息

J Nanobiotechnology. 2016 Mar 11;14:19. doi: 10.1186/s12951-016-0173-1.

Abstract

BACKGROUND

Apoptotic neuronal death is known as programmed cell death. Inhibition of this progression might contribute to a new treatment strategy. However, methods for in vivo detection of live apoptotic cells are in need to be developed and established.

CONTEXT AND PURPOSE

The purpose of this study is to develop a new method for in vivo brain imaging for live apoptotic lesions using magnetic resonance imaging (MRI). We focused on the specific accumulation of our recently developed functional magnetic nanoparticles (FMNPs) into apoptotic cells using a rat cerebral ischemia model. Sulphorhodamine B, fluorescent dye was linked to valylalanylaspartic acid fluoromethyl ketone as a pan-caspase inhibitor to form SR-FLIVO. SR-FLIVO was bound with FMNPs to develop SR-FLIVO-FMNP probe. Ischemic rat brains were scanned by 7T MRI before and after intravenous injection of SR-FLIVO-FMNP and the distribution was evaluated by subtraction images of T2* colored mapping. SR-FLIVO, intracellular FMNPs, and T2* reduction area were histologically analyzed. The distribution of SR-FLIVO-FMNP was evaluated by subtracting the T2* signal images and was significantly correlated with the histological findings by TUNEL staining.

RESULTS

Our experimental results revealed several findings where our newly developed probe SR-FLIVO-FMNP was intravenously administered into ischemic rats and FLIVO expression was tracked and found in apoptotic cells in rat brains after cerebral ischemia. A remarkable T2* reduction within the ischemic lesion was recorded using MRI based SR-FLIVO-FMNP probe as a contrasting agent due to the specific probe accumulation in apoptotic cells whereas, no observation of T2* reduction within the non-ischemic lesion due to no probe accumulation in non-apoptotic cells. Histological analysis based on the correlation between FLIVO and TUNEL staining showed that almost all FLIVO-positive cells were positive for TUNEL staining. These findings suggest the possibility for establishment of in vivo targeting delivery methods to live apoptotic cells based on conjugation of magnetic and fluorescent dual functional probes.

CONCLUSION

A newly developed probe SR-FLIVO-FMNP might be considered as a useful probe for in vivo apoptotic detection, and FMNPs might be a strong platform for noninvasive imaging and targeting delivery.

摘要

背景

凋亡性神经元死亡即程序性细胞死亡。抑制这一进程可能有助于形成新的治疗策略。然而,仍需开发和建立体内检测活凋亡细胞的方法。

研究背景与目的

本研究旨在开发一种利用磁共振成像(MRI)对活体凋亡性脑损伤进行体内成像的新方法。我们利用大鼠脑缺血模型,重点研究了我们最近开发的功能性磁性纳米颗粒(FMNP)在凋亡细胞中的特异性积累。将荧光染料磺罗丹明B与作为泛半胱天冬酶抑制剂的缬氨酰丙氨酰天冬氨酸氟甲基酮连接,形成SR-FLIVO。SR-FLIVO与FMNP结合,开发出SR-FLIVO-FMNP探针。在静脉注射SR-FLIVO-FMNP前后,用7T MRI对缺血大鼠脑进行扫描,并通过T2彩色映射的减法图像评估其分布。对SR-FLIVO、细胞内FMNP和T2减少区域进行组织学分析。通过减去T2*信号图像评估SR-FLIVO-FMNP的分布,其与TUNEL染色的组织学结果显著相关。

结果

我们的实验结果揭示了几个发现,即我们新开发的探针SR-FLIVO-FMNP静脉注射到缺血大鼠体内后,追踪到FLIVO表达,并在脑缺血后的大鼠脑凋亡细胞中发现。使用基于MRI的SR-FLIVO-FMNP探针作为造影剂,在缺血性病变内记录到显著的T2降低,这是由于探针在凋亡细胞中的特异性积累,而在非缺血性病变内未观察到T2降低,因为探针在非凋亡细胞中没有积累。基于FLIVO与TUNEL染色之间相关性的组织学分析表明,几乎所有FLIVO阳性细胞TUNEL染色均为阳性。这些发现表明,基于磁性和荧光双功能探针的结合,有可能建立针对活凋亡细胞的体内靶向递送方法。

结论

新开发的探针SR-FLIVO-FMNP可能被认为是一种用于体内凋亡检测的有用探针,而FMNP可能是用于无创成像和靶向递送的强大平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5be5/4788935/2127d91ec550/12951_2016_173_Fig3_HTML.jpg

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