Evans Holly C, Dinh Thu T N, Hardcastle Madison L, Gilmore Alicia A, Ugur Muhammet R, Hitit Mustafa, Jousan Frank Dean, Nicodemus Molly C, Memili Erdogan
Department of Animal and Dairy Sciences, Mississippi State University, Starkville, MS, United States.
Department of Animal Genetics, Kastamonu University, Kastamonu, Turkey.
Front Vet Sci. 2021 Apr 16;8:601794. doi: 10.3389/fvets.2021.601794. eCollection 2021.
Developing a deeper understanding of biological components of sperm is essential to improving cryopreservation techniques and reproductive technologies. To fully ascertain the functional determinants of fertility, lipidomic methods have come to the forefront. Lipidomics is the study of the lipid profile (lipidome) within a cell, tissue, or organism and provides a quantitative analysis of the lipid content in that sample. Sperm cells are composed of various lipids, each with their unique contribution to the overall function of the cell. Lipidomics has already been used to find new and exciting information regarding the fatty acid content of sperm cells from different species. While the applications of lipidomics are rapidly evolving, gaps in the knowledge base remain unresolved. Current limitations of lipidomics studies include the number of available samples to analyze and the total amount of cells within those samples needed to detect changes in the lipid profiles across different subjects. The information obtained through lipidomics research is essential to systems and cellular biology. This review provides a concise analysis of the most recent developments in lipidomic research. This scientific resource is important because these developments can be used to not only combat the reproductive challenges faced when using cryopreserved semen and artificial reproductive technologies in livestock such as cattle, but also other mammals, such as humans or endangered species.
深入了解精子的生物学成分对于改进冷冻保存技术和生殖技术至关重要。为了全面确定生育能力的功能决定因素,脂质组学方法已成为前沿手段。脂质组学是对细胞、组织或生物体中的脂质谱(脂质组)进行研究,并对该样本中的脂质含量进行定量分析。精子细胞由各种脂质组成,每种脂质对细胞的整体功能都有其独特贡献。脂质组学已被用于发现有关不同物种精子细胞脂肪酸含量的新的、令人兴奋的信息。虽然脂质组学的应用正在迅速发展,但知识库中的空白仍未得到解决。脂质组学研究目前的局限性包括可供分析的样本数量以及检测不同受试者脂质谱变化所需的那些样本中的细胞总量。通过脂质组学研究获得的信息对于系统生物学和细胞生物学至关重要。本综述对脂质组学研究的最新进展进行了简要分析。这种科学资源很重要,因为这些进展不仅可用于应对在牛等家畜中使用冷冻精液和人工生殖技术时面临的生殖挑战,也可用于应对其他哺乳动物,如人类或濒危物种所面临的生殖挑战。