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树枝状核壳糖结构对来自不同人类供体的原代间充质干细胞和成骨细胞的影响。

Effects of dendritic core-shell glycoarchitectures on primary mesenchymal stem cells and osteoblasts obtained from different human donors.

作者信息

Lautenschläger Stefan, Striegler Christin, Dakischew Olga, Schütz Iris, Szalay Gabor, Schnettler Reinhard, Heiß Christian, Appelhans Dietmar, Lips Katrin S

机构信息

Laboratory for Experimental Trauma Surgery, Justus-Liebig-University Giessen, Schubertstr. 81, 35392, Giessen, Germany.

Leibniz-Institut für Polymerforschung Dresden e.V., Hohe Str. 6, 01069, Dresden, Germany.

出版信息

J Nanobiotechnology. 2015 Oct 8;13:65. doi: 10.1186/s12951-015-0128-y.

Abstract

The biological impact of novel nano-scaled drug delivery vehicles in highly topical therapies of bone diseases have to be investigated in vitro before starting in vivo trials. Highly desired features for these materials are a good cellular uptake, large transport capacity for drugs and a good bio-compatibility. Essentially the latter has to be addressed as first point on the agenda. We present a study on the biological interaction of maltose-modified poly(ethyleneimine) (PEI-Mal) on primary human mesenchymal stem cell, harvested from reaming debris (rdMSC) and osteoblasts obtained from four different male donors. PEI-Mal-nanoparticles with two different molecular weights of the PEI core (5000 g/mol for PEI-5k-Mal-B and 25,000 g/mol for PEI-25k-Mal-B) have been administered to both cell lines. As well dose as incubation-time dependent effects and interactions have been researched for concentrations between 1 μg/ml to 1 mg/ml and periods of 24 h up to 28 days. Studies conducted by different methods of microscopy as light microscopy, fluorescence microscopy, transmission-electron-microscopy and quantitative assays (LDH and DC-protein) indicate as well a good cellular uptake of the nanoparticles as a particle- and concentration-dependent impact on the cellular macro- and micro-structure of the rdMSC samples. In all experiments PEI-5k-Mal-B exhibits a superior biocompatibility compared to PEI-25k-Mal-B. At higher concentrations PEI-25k-Mal-B is toxic and induces a directly observable mitochondrial damage. The alkaline phosphatase assay (ALP), has been conducted to check on the possible influence of nanoparticles on the differentiation capabilities of rdMSC to osteoblasts. In addition the production of mineralized matrix has been shown by von-Kossa stained samples. No influence of the nanoparticles on the ALP per cell has been detected. Additionally, for all experiments, results are strongly influenced by a large donor-to-donor variability of the four different rdMSC samples. To summarize, while featuring a good cellular uptake, PEI-5k-Mal-B induces only minimal adverse effects and features clearly superior biocompatibility compared to the larger PEI-25k-Mal-B.

摘要

在开展体内试验之前,必须先在体外研究新型纳米级药物递送载体在骨疾病局部治疗中的生物学影响。这些材料非常理想的特性包括良好的细胞摄取能力、较大的药物运输能力以及良好的生物相容性。从本质上讲,后者必须作为首要议程事项加以解决。我们展示了一项关于麦芽糖修饰的聚(乙烯亚胺)(PEI-Mal)与从扩髓碎屑中获取的原代人骨髓间充质干细胞(rdMSC)以及从四名不同男性供体获得的成骨细胞之间生物学相互作用的研究。已将具有两种不同PEI核心分子量(PEI-5k-Mal-B的5000 g/mol和PEI-25k-Mal-B的25000 g/mol)的PEI-Mal纳米颗粒施用于这两种细胞系。针对1 μg/ml至1 mg/ml的浓度以及24小时至28天的时间段,研究了剂量以及孵育时间依赖性效应和相互作用。通过光学显微镜、荧光显微镜、透射电子显微镜等不同显微镜方法以及定量测定(LDH和DC-蛋白质)进行的研究表明,纳米颗粒具有良好的细胞摄取能力,并且对rdMSC样品的细胞宏观和微观结构具有颗粒和浓度依赖性影响。在所有实验中,与PEI-25k-Mal-B相比,PEI-5k-Mal-B表现出更好的生物相容性。在较高浓度下,PEI-25k-Mal-B具有毒性并会导致直接可观察到的线粒体损伤。已进行碱性磷酸酶测定(ALP)以检查纳米颗粒对rdMSC向成骨细胞分化能力的可能影响。此外,通过冯·科萨染色的样品显示了矿化基质的产生。未检测到纳米颗粒对每个细胞的ALP有影响。此外,对于所有实验,结果都受到四个不同rdMSC样品供体间巨大差异的强烈影响。总之,PEI-5k-Mal-B虽然具有良好的细胞摄取能力,但仅诱导最小的不良反应,并且与较大的PEI-25k-Mal-B相比,具有明显更好的生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac1/4597403/c792437b06fc/12951_2015_128_Fig1_HTML.jpg

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