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采用福尔马林和替代水性组织洗涤液的质谱成像技术检测甲壳类动物脑中的神经肽。

Complementary neuropeptide detection in crustacean brain by mass spectrometry imaging using formalin and alternative aqueous tissue washes.

机构信息

Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, WI, 53706, USA.

School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, WI, 53705, USA.

出版信息

Anal Bioanal Chem. 2021 Apr;413(10):2665-2673. doi: 10.1007/s00216-020-03073-x. Epub 2021 Jan 5.

Abstract

Neuropeptides are low abundance signaling molecules that modulate almost every physiological process, and dysregulation of neuropeptides is implicated in disease pathology. Mass spectrometry (MS) imaging is becoming increasingly useful for studying neuropeptides as new sample preparation methods for improving neuropeptide detection are developed. In particular, proper tissue washes prior to MS imaging have shown to be quick and effective strategies for increasing the number of detectable neuropeptides. Treating tissues with solvents could result in either gain or loss of detection of analytes, and characterization of these wash effects is important for studies targeting sub-classes of neuropeptides. In this communication, we apply aqueous tissue washes that contain sodium phosphate salts, including 10% neutral buffered formalin (NBF), on crustacean brain tissues. Our optimized method resulted in complementary identification of neuropeptides between washed and unwashed tissues, indicating that our wash protocol may be used to increase total neuropeptide identifications. Finally, we show that identical neuropeptides were detected between tissues treated with 10% NBF and an aqueous 1% w/v sodium phosphate solution (composition of 10% NBF without formaldehyde), suggesting that utilizing a salt solution wash affects neuropeptide detection and formaldehyde does not affect neuropeptide detection when our wash protocol is performed.

摘要

神经肽是低丰度的信号分子,调节几乎所有的生理过程,神经肽的失调与疾病病理有关。随着新的用于提高神经肽检测的样品制备方法的发展,质谱(MS)成像技术在研究神经肽方面变得越来越有用。特别是,在 MS 成像之前进行适当的组织清洗已被证明是增加可检测神经肽数量的快速有效的策略。用溶剂处理组织可能会导致分析物的检测增加或减少,因此,对这些清洗效果进行特征描述对于针对神经肽亚类的研究很重要。在本通讯中,我们应用含有磷酸钠盐的水性组织清洗液(包括 10%中性缓冲福尔马林(NBF))处理甲壳动物脑组织。我们优化的方法在清洗和未清洗组织之间产生了互补的神经肽鉴定,表明我们的清洗方案可用于增加总神经肽鉴定。最后,我们表明,用 10% NBF 和 1% w/v 磷酸盐水溶液(不含甲醛的 10% NBF 的组成)处理的组织中检测到相同的神经肽,这表明当我们执行清洗方案时,盐溶液清洗会影响神经肽的检测,而甲醛不会影响神经肽的检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdf5/8012219/a888026b9f9e/nihms-1649426-f0001.jpg

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