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Refrigerated Centrifuge

Company: Eppendorf
Catalog#: 5430R
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Extraction and Quantification of Sphingolipids from Hemiptera Insects by Ultra-Performance Liquid Chromatography Coupled to Tandem Mass Spectrometry
Author:
Date:
2021-02-20
[Abstract]  

Sphingolipids are major structural components of endomembranes and have also been described as an intracellular second messenger involved in various biological functions in all eukaryotes and a few prokaryotes. Ceramides (Cer), the central molecules of sphingolipids, have been depicted in cell growth arrest, cell differentiation, and apoptosis. With the development of lipidomics, the identification of ceramides has been analyzed in many species, mostly in model insects. However, there is still a lack of research in non-model organisms. Here we describe a relatively simple and sensitive method for the extraction, identification, and quantification of ceramides in Hemiptera Insects (brown planthooper), followed by Ultra-Performance Liquid Chromatography coupled to tandem mass spectrometry

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[摘要]  [摘要]鞘脂类是endomembranes的主要结构部件和已经也被描述为参与所有真核生物和原核生物几多种生物学功能的细胞内第二信使。 神经酰胺(CER),鞘脂的中心的分子,已经在细胞生长停滞,细胞分化被描述,和细胞凋亡。随着脂质组学的发展,已经在许多物种中对神经酰胺的鉴定进行了分析,其中大多数是模型昆虫。但是,仍然缺乏对非模型生物的研究。在这里,我们描述了用于提取中相对简单和灵敏的方法N,鉴定,并在半翅目昆虫的神经酰胺的定量(棕色planthooper ),随后用超高效液相色谱-串联质谱联用(UPLC-MS / MS)。C18被用作用于对三联四极液体MAS定量检测和分析的分离柱小号光谱仪。在该方案中,采用标准曲线方法以根据可选的检测条件确认更准确的神经酰胺定量。

[背景]鞘脂是膜脂质在活体生物的第二大组和细胞结构,代谢和调节的许多方面发挥了重要作用(拉希里和Futerman,2007)。起初,人们认为鞘脂是结构相关分子的复杂家族,但越来越多的研究表明鞘脂参与了许多细胞过程(Mao和Obeid ,2008 )。神经酰胺(CER)是必不可少的牵连生物活性脂质的各种细胞生物过程从细胞生长调控细胞死亡和衰老(Futerman和Hannun,2004 ; ...

Relative Quantification of NaV1.1 Protein in Mouse Brains Using a Meso Scale Discovery-Electrochemiluminescence (MSD-ECL) Method
Author:
Date:
2021-02-05
[Abstract]  

Densitometric analysis is often used to quantify NaV1.1 protein on immunoblots, although the sensitivity and dilution linearity of the method are usually poor. Here we present a protocol for quantification of NaV1.1 in mouse brain tissues using a Meso Scale Discovery-Electrochemiluminescence (MSD-ECL) method. MSD-ECL is based on ELISA (enzyme-linked immunosorbent assay) and uses electrochemiluminescence to produce measurable signals. Two different antibodies are used in this assay to capture and detect NaV1.1 respectively in brain tissue lysate. The specificity of the antibodies is confirmed by Scn1a gene knock-out tissue. The calibration curve standards used in this assay were generated with mouse liver lysate spiked with mouse brain lysate, instead of using a recombinant protein. We

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[摘要]  [摘要]尽管该方法的灵敏度和稀释度线性通常较差,但经常使用光密度分析法定量免疫印迹上的Na V 1.1蛋白。这里瓦特E存在的Na进行定量的协议V在使用小鼠脑组织1.1细观量表发现-电化学发光(MSD-ECL)方法。MSD-ECL基于ELISA(酶联免疫吸附测定),并使用电化学发光产生可测量的信号。此测定法中使用了两种不同的抗体来捕获和检测Na V 1.1分别在脑组织中溶解。Scn1a基因敲除组织证实了抗体的特异性。此测定法中使用的校准曲线标准品是用掺有小鼠脑裂解液的小鼠肝裂解液而不是重组蛋白生成的。我们证明该方法是合格的,可用于特异性,准确度和精密度定量的小鼠脑组织中的Na V 1.1 。


[背景]的Na V 1.1,也称为电压门控钠通道的α亚基,I型,是一种跨膜通过对编码蛋白SCN1A基因(Meisler等人,2010 )。功能性Na V 1.1的表达降低会导致Dravet综合征(DS),这是一种严重的早发性癫痫性脑病(Dravet等,2005)。Na V 1.1在生物样品中的表达已用作DS的非临床药理生物标记物,可以使用免疫印迹的光密度分析进行测量。密度测定法通常不如标准免疫测定法准确和灵敏。此外,由于蛋白质序列的同源性,某些Na V 1.1抗体可能会与其他电压门控钠通道(VGSC)发生交叉反应,包括Na V 1.2,Na V 1.3和Na ...

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