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Effect of an exo-polysaccharide from the culture broth of Hericium erinaceus on enhancement of growth and differentiation of rat adrenal nerve cells

机译:猴头菇培养液中外多糖对大鼠肾上腺神经细胞生长和分化的影响

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摘要

It was found that an exo-biopolymer (M.W. 1,000,000, molar ratio of 1.5:1.7:1.2:0.6:0.9, glucose:galactose:xylose:mannose:fructose, purity 99%) purified from the liquid culture broth of Hericium erinaceus mycelium enhanced the growth of rat adrenal nerve cells. The polymer also improved the extension of the neurites of PC12 cell. Its efficacy was found to be higher than those from known nerve growth factors such as Nerve Growth Factor (NGF) and Brain-Derived Nerve Factor (BDNF). The effect of two standards has not been observed above 0.1 (mg l−1) of supplementation; however, the polymer did show the effect of cell growth and neurite extension at up to 1.0 (mg l−1) of addition. While the polymer improved both cell growth and neurite extension, NGF and BDNF did only outgrowth of the neurites. Maximum cell density and length of the neurites were observed as 1.5×105 (viable cells ml−1) and 230 μm, respectively in adding 0.8 (mg l−1) of the biopolymer for 8 days cultivation. The control growth was observed only as 1.2×105 (viable cell ml−1) of maximum cell density and 140 μm of maximum length, respectively. It was also confirmed that the polymer reacted with the nerve cells within 30 min after adding the sample, compared to 80 min in adding two other growth factors. Number of neurite-bearing cells remained relatively steady in adding the polymer even when the cell growth started to be decreased. It was interesting that the polymer effectively delayed apoptosis of PC12 cells by dramatically reducing the ratio of apoptotic cells to 20% from 50% of the control.
机译:发现从猴头菌菌丝菌丝体的液体培养液中纯化的外生物聚合物(MW 1,000,000,摩尔比为1.5:1.7:1.2:0.6:0.9,葡萄糖:半乳糖:木糖:甘露糖:果糖,纯度99%)得到增强。大鼠肾上腺神经细胞的生长。该聚合物还改善了PC12细胞神经突的延伸。发现其功效高于已知神经生长因子(例如神经生长因子(NGF)和脑源性神经因子(BDNF))的功效。补充量超过0.1(mg l -1 )时,还没有观察到两种标准品的作用。然而,该聚合物在添加量高达1.0(mg l -1 )时确实显示出细胞生长和神经突延伸的效果。尽管该聚合物既能促进细胞生长,又能促进神经突的延伸,但NGF和BDNF的生长却仅次于神经突。加入0.8(mg l )后,最大细胞密度和神经突长度分别为1.5×10 5 (活细胞ml -1 )和230μm。 -1 )生物聚合物培养8天。对照的生长仅观察到最大细胞密度为1.2×10 5 (活细胞ml -1 ),最大细胞密度为140μm。还证实了聚合物在添加样品后30分钟内与神经细胞发生了反应,而添加其他两种生长因子则为80分钟。即使当细胞生长开始减少时,带有神经突的细胞的数量在添加聚合物中也保持相对稳定。有趣的是,该聚合物通过将凋亡细胞的比例从对照的50%显着降低到20%,有效地延迟了PC12细胞的凋亡。

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