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不同精子区域的拉曼微光谱分析:种属比较。

Raman micro-spectroscopy analysis of different sperm regions: a species comparison.

机构信息

Centre for Reproductive Medicine and Andrology, University of Münster, Domagkstrasse 11, 48149 Münster, Germany.

Biology of Reproduction and Stem Cell Group, Center for Neuroscience and Cell Biology (CNC), University of Coimbra, Rua Larga, Faculty of Medicine, Pólo I, 3004-504 Coimbra, Portugal.

出版信息

Mol Hum Reprod. 2018 Apr 1;24(4):185-202. doi: 10.1093/molehr/gax071.

Abstract

STUDY QUESTION

Is Raman micro-spectroscopy a valid approach to assess the biochemical hallmarks of sperm regions (head, midpiece and tail) in four different species?

SUMMARY ANSWER

Non-invasive Raman micro-spectroscopy provides spectral patterns enabling the biochemical characterization of the three sperm regions in the four species, revealing however high similarities for each region among species.

WHAT IS KNOWN ALREADY

Raman micro-spectroscopy has been described as an innovative method to assess sperm features having the potential to be used as a non-invasive selection tool. However, except for nuclear DNA, the identification and assignment of spectral bands in Raman-profiles to the different sperm regions is scarce and controversial.

STUDY DESIGN SIZE, DURATION: Raman spectra from head, midpiece and tail of four different species were obtained. Sperm samples were collected and smeared on microscope slides. Air dried samples were subjected to Raman analysis using previously standardized procedures.

PARTICIPANTS/MATERIALS, SETTING, METHODS: Sperm samples from (i) two donors attending the infertility clinic at the Centre of Reproductive Medicine and Andrology; (ii) two C57BL/6 -TgN (ACTbEGFP) 1Osb adult mice; (iii) two adult Cynomolgus monkeys (Macaca fascicularis) and (iv) two sea urchins (Arbacia punctulata) were used to characterize and compare their spectral profiles. Differences and similarities were confirmed by principal component analysis (PCA).

MAIN RESULTS AND THE ROLE OF CHANCE

Several novel region-specific peaks were identified. The three regions could be differentiated by distinctive Raman patterns irrespective of the species. However, regardless of the specie, their main spectral pattern remains mostly unchanged. These results were corroborated by the PCA analysis and suggest that the basic constituents of spermatozoa are biochemically similar among species.

LIMITATIONS REASONS FOR CAUTION

Further research should be performed in live sperm to validate the detected spectral bands and their use as markers of distinctive regions.

WIDER IMPLICATIONS OF THE FINDINGS

Raman peaks that have never been described in the sperm cell were detected. Particularly important are those that are unique to the midpiece as they might be a reference to the identification of sperm mitochondria, whose function is highly correlated with that of sperm. In the future, Raman micro-spectroscopy has the potential to be applied in assessment of male fertility.

LARGE SCALE DATA

N/A.

STUDY FUNDING AND COMPETING INTEREST(S): This work was supported by BMBF project 'Sperm Ident' (FKZ:13N13024) and the DAAD-CRUP bilateral exchange program (AI A06/16-57213087). S.A. is a recipient of a fellowship from the Portuguese foundation for science and technology (FCT-SFRH/BPD/110160/2015) and R.DC. is a recipient of a DAAD PhD stipend (91590556). There is no competing interest.

摘要

研究问题

拉曼微光谱技术是否可以有效地评估四种不同物种精子区域(头部、中段和尾部)的生化特征?

总结答案

非侵入性拉曼微光谱技术提供了光谱模式,使我们能够对四种物种的三个精子区域进行生化特征分析,然而,每个区域在物种之间存在高度相似性。

已知情况

拉曼微光谱技术已被描述为一种评估精子特征的创新方法,具有成为非侵入性选择工具的潜力。然而,除了核 DNA 之外,拉曼图谱中光谱带的识别和分配到不同的精子区域仍然很少且存在争议。

研究设计、规模、持续时间:获得了来自四种不同物种的头部、中段和尾部的拉曼光谱。收集精子样本并涂抹在显微镜载玻片上。空气干燥的样本使用先前标准化的程序进行拉曼分析。

参与者/材料、设置、方法:使用(i)两名在生殖医学和男科中心就诊的不育症患者的精子样本;(ii)两名 C57BL/6-TgN(ACTbEGFP)1Osb 成年小鼠的精子样本;(iii)两名成年食蟹猴(Macaca fascicularis)的精子样本和(iv)两名海胆(Arbacia punctulata)的精子样本来对其进行特征描述和比较。通过主成分分析(PCA)确认差异和相似之处。

主要结果和机遇的作用

鉴定出了几个新的区域特异性峰。无论物种如何,都可以通过独特的拉曼模式区分三个区域。然而,无论物种如何,其主要光谱模式基本保持不变。这些结果得到 PCA 分析的支持,并表明精子的基本成分在物种间具有相似的生化特性。

局限性和谨慎的原因

应在活精子中进行进一步研究,以验证检测到的光谱带及其作为独特区域标记的用途。

研究结果的更广泛意义

检测到以前在精子细胞中从未描述过的拉曼峰。中段特有的拉曼峰尤其重要,因为它们可能是鉴定精子线粒体的参考,精子线粒体的功能与精子的功能密切相关。在未来,拉曼微光谱技术有可能应用于男性生育能力的评估。

大规模数据

无。

研究资金和利益冲突

这项工作得到了德国联邦教育和研究部(BMBF)项目“Sperm Ident”(项目编号:13N13024)和德国学术交流中心(DAAD)-CRUP 双边交流计划(AI A06/16-57213087)的支持。S.A. 是葡萄牙科学技术基金会(FCT-SFRH/BPD/110160/2015)的奖学金获得者,R.DC. 是 DAAD 博士奖学金(91590556)的获得者。不存在利益冲突。

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