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荧光纳米金刚石作为体内蛋白质细胞间转运的探针。

Fluorescent nanodiamond as a probe for the intercellular transport of proteins in vivo.

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 10617, Taiwan, ROC.

出版信息

Biomaterials. 2013 Nov;34(33):8352-60. doi: 10.1016/j.biomaterials.2013.07.043. Epub 2013 Aug 1.

Abstract

This study investigates the intercellular transport of yolk lipoproteins in Caenorhabditis elegans by using fluorescence lifetime imaging microscopy (FLIM) and fluorescent nanodiamonds (FNDs) as photostable labels and tracers. The yolk lipoproteins in the nematode are similar to human serum low-density lipoproteins (LDLs), serving as an intercellular transporter of fat molecules and cholesterol. To study this fundamentally important process, FNDs were first coated with yolk lipoprotein complexes (YLCs) and then microinjected into the intestinal cells of the living organism. Real-time imaging over a time period of more than 50 min with FLIM revealed the process of YLC-FND secretion from the intestine to the pseudocoelomic space, followed by transporting into oocytes and subsequent accumulation in the multi-cellular embryos derived from the oocytes. Colocalization studies of the rme-2 adult hermaphrodites expressing green fluorescent protein (GFP)-tagged YLCs confirmed that the injected YLC-FNDs were taken up by oocytes through endocytosis mediated by the LDL receptor, RME-2, functioning as an YLC receptor. Our results demonstrate that FND is useful as a biomolecular nanocarrier without significantly altering the functionality of the cargos for intercellular transport, cell-specific targeting, and long-term imaging applications in vivo.

摘要

本研究利用荧光寿命成像显微镜(FLIM)和荧光纳米金刚石(FND)作为光稳定标记物和示踪剂,研究了秀丽隐杆线虫中卵黄脂蛋白的细胞间运输。线虫中的卵黄脂蛋白类似于人类血清中的低密度脂蛋白(LDL),作为脂肪分子和胆固醇的细胞间转运体。为了研究这个基本重要的过程,首先将 FND 用卵黄脂蛋白复合物(YLC)包被,然后微注射到活体的肠细胞中。用 FLIM 进行超过 50 分钟的实时成像,揭示了 YLC-FND 从肠分泌到假体腔空间的过程,随后转运到卵母细胞中,并在随后从卵母细胞中积累的多细胞胚胎中积累。用表达 GFP 标记的 YLC 的 rme-2 成虫雌雄同体进行的共定位研究证实,注射的 YLC-FND 通过 LDL 受体 RME-2 介导的内吞作用被卵母细胞摄取,RME-2 作为 YLC 受体发挥作用。我们的结果表明,FND 可作为生物分子纳米载体,在细胞间运输、细胞特异性靶向和体内长期成像应用中,对货物的功能没有明显改变。

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