从人体液中分离神经生长因子(NGF)唾液、血清和尿液:眼镜蛇毒液和眼镜蛇血清NGF的比较。

Journal of natural toxins Pub Date : 2000-11-01
B V Lipps
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摘要

一些研究者已经从不同动物的各种组织和器官中分离出神经生长因子(NGF)。目前还没有关于体液(如血清、唾液和尿液)中NGF的发表文献。与过去在血清中检测或分离NGF的失败尝试相反,本研究报告了从人血清、唾液和尿液中分离出NGF。进一步报道了眼镜蛇毒液和眼镜蛇血清中提取的NGFs的性质比较。用高压液相色谱法(HPLC)从血清、唾液和尿液中分离出NGF,并按照Lipps(1998)的描述进行鉴定。对鉴定出的NGF进行进一步纯化,研究其生物学和免疫学特性。与眼镜蛇毒液衍生的NGF相比,来自人体液和眼镜蛇血清的NGF对PC12细胞的生物活性微乎其微。从人血清、唾液和尿液中提取的NGFs分子量相同,均为36.0 kDa。然而,眼镜蛇血清和眼镜蛇毒液NGFs的分子量不同,分别为55.0 kDa和13.5 kDa。NGF水平与年龄有关,在不同条件下会有所不同。利用抗人神经生长因子,可以开发出针对神经系统疾病的诊断测试。这项调查还强调,在一般的临床诊断中,使用唾液和尿液代替侵入性采集血清。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolation of nerve growth factor (NGF) from human body fluids; saliva, serum and urine: comparison between cobra venom and cobra serum NGF.

Several investigators have isolated nerve growth factor (NGF) from various tissues and organs of different animals. There is no published documentation about NGF from body fluids, such as blood serum, saliva, and urine. Contrary to the unsuccessful attempts to detect or isolate NGF in serum in the past, this investigation reports the isolation of NGF from human serum, saliva, and urine. It further reports the comparison of properties between NGFs derived from cobra venom and cobra serum. NGF from serum, saliva, and urine was isolated by high pressure liquid chromatography (HPLC) and was identified as described by Lipps (1998). The identified fractions of NGF were further purified to study the biological and immunological properties. The biological activities of NGFs from human body fluids and cobra serum on PC12 cells were miniscule in comparison to the cobra venom derived NGF. The molecular weights of NGFs from human serum, saliva, and urine were identical, 36.0 kDa. However, the molecular weights of cobra serum and cobra venom NGFs were different, 55.0 kDa and 13.5 kDa, respectively. NGF level is age dependent and varies under different conditions. Using anti-human NGF, diagnostic tests can be developed for neurological disorders. This investigation also emphasizes the replacement of invasive blood collection for serum by use of saliva and urine for clinical diagnostic use in general.

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