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首页> 外文期刊>International journal of mass spectrometry >High-resolution AP-SA/LUDT mass spectrometry imaging of Drosophila melanogaster
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High-resolution AP-SA/LUDT mass spectrometry imaging of Drosophila melanogaster

机译:高分辨率AP-SA / LUDT质谱成像果蝇黑色胶卷

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摘要

The pomace fly or fruit fly Drosophila melanogaster is known as a cost-effective model organism widely used to study neurological diseases and metabolite-related diseases. Among these metabolites, lipids play important roles in energy homeostasis, metabolism, membrane structure, and signaling. Although the Drosophila lipidome has been described in previous studies, there is only a little information on the localization and distribution of the various lipid classes and species in the fly. In this work, high-resolution atmospheric pressure scanning microprobe matrix -assisted laser desorption/ionization (AP-SMALDI) mass spectrometry imaging was performed in order to determine the spatially resolved distribution of metabolites of D. melanogaster, with a focus on the tissue-specific characteristic regional distributions of identified compounds from 20 pm thick cryosections of the fly. We identified and characterized the anatomical distribution of a total of 97 lipids, 62 of them identified as glycerophospholipids and sphingolipids and 35 of them as glycerolipids, in three biological replicates of the fly with a consistent anatomical distribution using 2,5-dihydroxybenzoic acid (DHB) as a matrix for soft ionization in positive-ion mode with a pixel size of 5-10 pm. Furthermore, we used para-nitroaniline as a matrix for both the positive-and negative-ion mode, enabling the identification of 89 deprotonated lipids in negative-ion mode. Among them, 48 have been identified in both positive-(protonated) and negative-ion (deprotonated) mode within the mass accuracy of 3 ppm. All ion images were separated according to their localization principally into head, posterior region and whole body of the fly. The spatial identity especially of Drosophila brain metabolites, including lipids, small metabolites and neuropeptides, will provide the possibility of studying neurodegenerative diseases. Therefore, we additionally mapped the distribution of neuropeptides in coronal Drosophila brain sections. Furthermore, several lipophilic male-and female-specific sex pheromones were identified, differentiated, and characterized according to their typical distribution pattern in mated and virgin flies. We report on an efficient method for the preparation of improved tissue sections after ethanol dehydration and 5% carboxymethylcellulose and gelatin embedding, capable of maintaining the tissue integrity of the whole fly, which was a challenge due to the hard cuticle and heterogeneous tissue types of this insect. Moreover, our instrumentation with a high spatial resolution, mass resolution and mass accuracy combined with on-tissue MS/MS imaging overcomes common limitations typically observed with low resolution mass spectrometric imaging, such as insufficient spatial resolution which cannot deliver precise and detailed information from the internal organ-specific tissues, and uncertainties of generated signals based on low mass accuracy and resolution. By using DHB, our approach allowed the identification of protonated, sodiated and potassiated lipid species within. a mass accuracy of 1 ppm and lipophilic pheromones within 3 ppm with a spatial resolution set up within 5-15 mu m at a high detection sensitivity of the instrumentation.
机译:Pomace飞或果蝇果蝇果蝇称为一种经济高效的模型生物,广泛用于研究神经疾病和代谢物相关疾病。在这些代谢物中,脂质在能量稳态,新陈代谢,膜结构和信号传导中起重要作用。虽然在先前的研究中已经描述了果蝇脂肪​​组,但是只有关于各种脂质类和种类的定位和分布的信息。在这项工作中,进行高分辨率大气压扫描微升光矩阵 - 进行激光解吸/电离(AP-Smaldi)质谱成像,以确定D. Melanogaster代谢物的空间分辨分布,重点关注组织 - 从20 PM厚的粘液中鉴定化合物的具体特征区域分布。我们鉴定并表征了总共97个脂质,其中62的解剖分布,其中62种鉴定为甘油磷脂和鞘脂,其中35种作为甘油脂,其次用2,5-二羟基苯甲酸(DHB)的一致解剖分布。(DHB )作为阳性离子模式中的软电离的基质,其像素尺寸为5-10μm。此外,我们使用帕拉 - 硝基苯胺作为正极和负离子模式的基质,使鉴定为89处于负离子模式的去质子化脂质。其中,在3ppm的质量准确度的正质量(质子化)和负离子(去质子化)模式中已经鉴定了48个。所有离子图像主要分离它们的本地化,主要是苍蝇的头部,后部区域和全身。特别是果蝇脑代谢物,包括脂质,小代谢物和神经肽的空间身份将提供研究神经变性疾病的可能性。因此,我们另外映射了冠状果蝇脑切片中神经肽的分布。此外,根据与配合和原始苍蝇的典型分布图案鉴定了几种亲脂性雄性和女性特异性性鉴定和表征。我们报告了在乙醇脱水和5%羧甲基纤维素和明胶嵌入后制备改进的组织切片的有效方法,能够保持整个飞的组织完整性,这是由于硬角膜和异构组织类型引起的挑战昆虫。此外,我们具有高空间分辨率,质量分辨率和质量准确性的仪器与组织MS / MS成像相结合地克服了通常观察到的常见限制,所述常见限制通常观察到低分辨率质谱成像,例如空间分辨率不足,其不能从中提供精确和详细信息内部器官特异性组织,基于低质量准确度和分辨率的产生信号的不确定性。通过使用DHB,我们的方法允许在内部鉴定质子化,链接和钾脂质物种。在3 ppm内的1ppm和亲脂性信息素的质量精度,其空间分辨率在5-15μm内设置在仪器的高检测灵敏度范围内。

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