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活人体弱精子症和正常精子代谢的 NMR 光谱分析。

NMR spectroscopy of live human asthenozoospermic and normozoospermic sperm metabolism.

机构信息

Imaging Sciences, Department of Immunity, Infection and Cardiovascular Disease, University of Sheffield, Royal Hallamshire Hospital, Sheffield, UK.

Department of Oncology and Metabolism, University of Sheffield, The Jessop Wing, Tree Root Walk, Sheffield, UK.

出版信息

Reprod Fertil. 2022 Mar 21;3(2):77-89. doi: 10.1530/RAF-21-0101. eCollection 2022 Apr 1.

Abstract

UNLABELLED

Sperm motility varies between ejaculates from different men and from individual men. We studied normozoospermic and asthenozoospermic ejaculates after density-gradient centrifugation washing (DCG, 80/40%) and compared high- (80%) and low (40%)-motility sperm populations within the same sample. Our objective was to identify differences in endogenous metabolomes and energy metabolism in relation to sperm motility. H-Nuclear Magnetic Resonance spectroscopy (NMR) measured the endogenous metabolome of live human sperm. Incubating sperm with C-labelled substrates detected energy metabolism by C-NMR. The study examined 850 ejaculates and diagnosed asthenozoospermia in 6.1%. DGC was used to wash 160 normozoospermic (N) and 52 asthenozoospermic (A) ejaculates to recover high-motility sperm from the pellet (80N/80A) and low motility from the interface (40N/40A). H-NMR spectra, 45(N) and 15(A), were binned and the integrals normalised by sperm concentration. Sperm from 126(N) and 36(A) ejaculates were incubated with either C-glucose, C-fructose or C-pyruvate. C-NMR lactate and bicarbonate integrals were normalised by motile or vital sperm concentrations. H-NMR spectra choline integrals from the 80A population were significantly lower than the 80N,   < 0.0001. C-substrate conversion to lactate was significantly higher for 40A sperm than 80A sperm when normalised by motile sperm concentration. Bicarbonate integrals were sporadically observed. Sperm from asthenozoospermic ejaculates had similar glycolytic requirements to normozoospermic ones, with larger differences observed between 40 and 80% sperm populations. Higher lactate levels produced by 40% sperm may indicate that impaired sperm motility is due to dysregulated energy metabolism. The alteration in choline metabolism provides opportunities to understand the aetiology of asthenozoospermia.

LAY SUMMARY

How well sperm swim (motility) varies between ejaculates from different men? Normal sperm motility is beneficial to conception and some men diagnosed with infertility have low sperm motility. Sperm metabolise molecules to produce the energy required for motility. We measured concentrations of molecules within sperm and metabolism of molecules given to sperm and related these to the proportion of motile sperm. The study examined 850 sperm samples and found low motility in 6.1%. Metabolism of molecules given to sperm was similar between low and normal motility sperm samples. However, when the most motile sperm were separated from the rest, they were more efficient in metabolising these molecules to achieve motility. Lower concentrations of a molecule called choline were found in low-motility sperm samples compared to normal samples. Choline is associated with cell membranes, energy metabolism and oxidative stress, which may give opportunities to understand the causes of low motility.

摘要

目的

研究经密度梯度离心洗涤(DCG,80/40%)后的正常精子和弱精子中的内源性代谢组和能量代谢,并比较同一样本中高(80%)和低(40%)活力精子群的差异。

方法

采用氢核磁共振波谱(NMR)测量活精子的内源性代谢组,用 13C-NMR 检测孵育后精子中 13C 标记底物的能量代谢。该研究共检查了 850 份精液,诊断出弱精子症占 6.1%。使用 DCG 从 160 份正常精子(N)和 52 份弱精子(A)中回收高活力精子(80N/80A)和低活力精子(40N/40A)。对 45(N)和 15(A)个 H-NMR 光谱进行了 bin 处理,并根据精子浓度对积分进行了归一化。用 13C-葡萄糖、13C-果糖或 13C-丙酮酸孵育 126(N)和 36(A)个精子中的 13C。用 13C-NMR 检测乳酸和碳酸氢盐积分,并根据有活力或有生命力的精子浓度进行归一化。80A 群体的 H-NMR 谱胆碱积分明显低于 80N,P<0.0001。当用有活力的精子浓度对 40A 精子进行归一化时,40A 精子转化为乳酸的能力明显高于 80A 精子。碳酸氢盐积分则偶尔观察到。弱精子中的糖酵解需求与正常精子相似,但在 40%和 80%精子群体之间观察到更大的差异。40%精子产生的乳酸水平较高可能表明精子活力降低是由于能量代谢失调所致。胆碱代谢的改变为理解弱精子症的病因提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b09/9066949/1a8eecc4184d/RAF-21-0101fig1.jpg

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