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纳米点印迹:一种高通量格式下用于蛋白质鉴定和定量的替代技术。

Nano dot blot: An alternative technique for protein identification and quantification in a high throughput format.

机构信息

MexBio Research Innovations S. A de C.V., El Salto, Jalisco, Mexico.

Laboratory of Neurophysiology, Department of Cellular and Molecular Biology, CUCBA, University of Guadalajara, Guadalajara, Jalisco, Mexico.

出版信息

J Neurosci Methods. 2021 Jul 1;358:109194. doi: 10.1016/j.jneumeth.2021.109194. Epub 2021 Apr 24.

Abstract

BACKGROUND

Dot blot technique has been used in a similar way to western blotting, with the major difference being the lack of protein separation with electrophoresis. Protein samples are spotted over a membrane paper, the identification and quantification of a protein is achieved by immunodetection procedures such as colorimetry, fluorescence or chemiluminescence. This technique is widely accepted, but it uses large amounts of sample and antibodies to reveal the presence of the target protein. Significant milestones have been reached to achieve better results with the use of less sample and reagents; however, the ninety-six-well format is still in use.

NEW METHOD

In this work, we propose an innovation to this technique, reducing the amount of sample and antibodies to identify a specific protein when compared to the regular dot blot method. Procedure consists of using a sample volume of approximately 200 nanoliters deposited with a multineedle device developed by our group.

RESULTS

Five samples of standard protein or antigen can be spotted in a Cartesian format to identify and quantify the protein involved in physiological or pathological conditions. In addition, at least five replicates of sample or antigen are used to enable better statistics to calculate the concentration of every standard and the protein present in a sample.

CONCLUSIONS

Hundreds of samples can be deposited in a few minutes and analyzed in a single experimental session. To validate this method, which we called nano dot blot, six proteins involved in the inflammation process were tested in acute and chronic rat models of seizures.

摘要

背景

点印迹技术的应用方式与 Western 印迹相似,主要区别在于缺乏电泳的蛋白质分离。将蛋白质样品点样在膜纸上,通过免疫检测程序(如比色法、荧光法或化学发光法)来鉴定和定量蛋白质。该技术已被广泛接受,但它需要大量的样品和抗体来揭示目标蛋白质的存在。已经取得了重要的里程碑,以实现使用更少的样品和试剂获得更好的结果;然而,96 孔格式仍在使用中。

新方法

在这项工作中,我们提出了对该技术的创新,与常规点印迹方法相比,减少了用于鉴定特定蛋白质的样品和抗体的量。该方法包括使用我们小组开发的多针装置大约 200 纳升的样品体积进行沉积。

结果

可以以笛卡尔格式点样五个标准蛋白或抗原样品,以鉴定和定量参与生理或病理条件的蛋白质。此外,至少使用五个重复的样品或抗原,以进行更好的统计学计算,从而计算每个标准品和样品中存在的蛋白质的浓度。

结论

数百个样品可以在几分钟内沉积,并在单个实验会话中进行分析。为了验证我们称之为纳米点印迹的这种方法,我们在急性和慢性大鼠癫痫模型中测试了六个参与炎症过程的蛋白质。

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