人精子在睾丸生殖细胞肿瘤患者体内的生物能量学研究。

IF 3.6 2区 医学 Q2 DEVELOPMENTAL BIOLOGY
Ondrej Simonik, Barbora Bryndova, Vishma Pratap Sur, Lukas Ded, Zuzana Cockova, Ales Benda, Maryam Qasemi, Petr Pecina, Alena Pecinova, Daniela Spevakova, Tomas Hradec, Pavel Skrobanek, Zuzana Ezrova, Zuzana Kratka, Radomir Kren, Michal Jeseta, Ludmila Boublikova, Libor Zamecnik, Tomas Büchler, Jiri Neuzil, Pavla Postlerova, Katerina Komrskova
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引用次数: 0

摘要

在睾丸生殖细胞肿瘤(TGCT)患者中,在抗癌治疗前精子冷冻保存是主要的生育保存方法。然而,它与解冻后精子恢复率低有关。由于精子是一种高能量的细胞,它由糖酵解和氧化磷酸化(OXPHOS)提供,线粒体功能障碍可直接导致精子异常。在这项研究中,我们使用细胞外通量分析仪(XF Analyzer)和双光子荧光寿命成像(2P-FLIM)两种最先进的方法,研究了TGCT患者冷冻保存精子的生物能量模式,并与正常精子样本进行了比较,以评估OXPHOS和糖酵解对能量供应的贡献。使用XF分析仪开发了一种新的OXPHOS(氧气消耗率:OCR)和糖酵解(细胞外酸化率:ECAR)联合测量方案,以及一种独特的基于人工智能的定制方法,用于半自动处理2P-FLIM图像。我们的研究提供了优化的低hepes修饰的人输卵管液体培养基(mHTF),用于在分析前和分析阶段处理精子,以保持精子的生理参数和最佳的OCR,相当于OXPHOS。以修改后的OCR和ECAR曲线及其衍生参数为代表的生物能量途径的恶化表明低温保存的负面影响。对于正常精子和TGCT患者的样本来说都是如此,与糖酵解活性受损的水平相比,TGCT患者的呼吸链损伤更严重。低温保存和病理学的影响得到了2P-FLIM分析的支持,显示结合的NADH比未结合的NAD(P)H显著减少,这反映了TGCT患者样本中代谢活性降低。我们的研究为TGCT对精子生物能量学的影响提供了新的见解,并提供了一个可用于评估人类精子代谢活动的验证方案,这可以为进一步的研究和临床男科提供有价值的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioenergetics of human spermatozoa in patients with testicular germ cell tumours.

In patients with testicular germ cell tumours (TGCT), sperm cryopreservation prior to anti-cancer treatment represents the main fertility preservation approach. However, it is associated with a low sperm recovery rate after thawing. Since sperm is a high-energy demanding cell, which is supplied by glycolysis and oxidative phosphorylation (OXPHOS), mitochondrial dysfunctionality can directly result in sperm anomalies. In this study, we investigated the bioenergetic pattern of cryopreserved sperm of TGCT patients in comparison with normozoospermic samples using two state-of-the-art methods: the Extracellular Flux Analyzer (XF Analyzer) and two-photon fluorescence lifetime imaging microscopy (2P-FLIM), in order to assess the contributions of OXPHOS and glycolysis to energy provision. A novel protocol for the combined measurement of OXPHOS (oxygen consumption rate: OCR) and glycolysis (extracellular acidification rate: ECAR) using the XF Analyzer was developed together with a unique customized AI-based approach for semiautomated processing of 2P-FLIM images. Our study delivers optimized low-HEPES modified human tubal fluid media (mHTF) for sperm handling during pre-analytical and analytical phases, to maintain sperm physiological parameters and optimal OCR, equivalent to OXPHOS. The negative effect of cryopreservation was signified by the deterioration of both bioenergetic pathways represented by modified OCR and ECAR curves and the derived parameters. This was true for normozoospermic as well as samples from TGCT patients, which showed even stronger damage within the respiratory chain compared to the level of glycolytic activity impairment. The impact of cryopreservation and pathology are supported by 2P-FLIM analysis, showing a significant decrease in bound NADH in contrast to unbound NAD(P)H, which reflects decreased metabolic activity in samples from TGCT patients. Our study provides novel insights into the impact of TGCT on sperm bioenergetics and delivers a verified protocol to be used for the assessment of human sperm metabolic activity, which can be a valuable tool for further research and clinical andrology.

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来源期刊
Molecular human reproduction
Molecular human reproduction 生物-发育生物学
CiteScore
8.30
自引率
0.00%
发文量
37
审稿时长
6-12 weeks
期刊介绍: MHR publishes original research reports, commentaries and reviews on topics in the basic science of reproduction, including: reproductive tract physiology and pathology; gonad function and gametogenesis; fertilization; embryo development; implantation; and pregnancy and parturition. Irrespective of the study subject, research papers should have a mechanistic aspect.
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