Division of Animal Sciences, University of Missouri, Columbia MO, USA.
Department of Obstetrics, Gynecology and Women's Health, University of Missouri, Columbia MO, USA.
Biol Reprod. 2024 Jun 12;110(6):1135-1156. doi: 10.1093/biolre/ioae061.
Conventional, brightfield-microscopic semen analysis provides important baseline information about sperm quality of an individual; however, it falls short of identifying subtle subcellular and molecular defects in cohorts of "bad," defective human and animal spermatozoa with seemingly normal phenotypes. To bridge this gap, it is desirable to increase the precision of andrological evaluation in humans and livestock animals by pursuing advanced biomarker-based imaging methods. This review, spiced up with occasional classic movie references but seriously scholastic at the same time, focuses mainly on the biomarkers of altered male germ cell proteostasis resulting in post-testicular carryovers of proteins associated with ubiquitin-proteasome system. Also addressed are sperm redox homeostasis, epididymal sperm maturation, sperm-seminal plasma interactions, and sperm surface glycosylation. Zinc ion homeostasis-associated biomarkers and sperm-borne components, including the elements of neurodegenerative pathways such as Huntington and Alzheimer disease, are discussed. Such spectrum of biomarkers, imaged by highly specific vital fluorescent molecular probes, lectins, and antibodies, reveals both obvious and subtle defects of sperm chromatin, deoxyribonucleic acid, and accessory structures of the sperm head and tail. Introduction of next-generation image-based flow cytometry into research and clinical andrology will soon enable the incorporation of machine and deep learning algorithms with the end point of developing simple, label-free methods for clinical diagnostics and high-throughput phenotyping of spermatozoa in humans and economically important livestock animals.
传统的明场显微镜精液分析为个体的精子质量提供了重要的基础信息;然而,它无法识别具有看似正常表型的“不良”、有缺陷的人类和动物精子群体中的细微亚细胞和分子缺陷。为了弥补这一差距,人们希望通过追求先进的基于生物标志物的成像方法来提高人类和家畜的男科评估的精确性。这篇综述主要集中在改变男性生殖细胞蛋白稳态的生物标志物上,这些生物标志物导致与泛素-蛋白酶体系统相关的蛋白质在后睾丸中延续,同时偶尔也会引用经典电影作为点缀,但同时也非常学术化。还讨论了精子氧化还原稳态、附睾精子成熟、精子-精液相互作用和精子表面糖基化。锌离子稳态相关生物标志物和精子携带的成分,包括亨廷顿病和阿尔茨海默病等神经退行性疾病途径的元素,也在讨论之列。通过高度特异性的活细胞荧光分子探针、凝集素和抗体成像的这种生物标志物谱揭示了精子染色质、脱氧核糖核酸和精子头部和尾部附属结构的明显和细微缺陷。将基于下一代图像的流式细胞术引入研究和临床男科,将很快能够将机器和深度学习算法引入其中,最终开发出用于临床诊断和高通量表型分析的简单、无标签方法,用于人类和经济上重要的家畜的精子。