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生物共轭金纳米颗粒根据质膜状态穿透精子。

Bioconjugated Gold Nanoparticles Penetrate Into Spermatozoa Depending on Plasma Membrane Status.

作者信息

Barchanski Annette, Taylor Ulrike, Sajti Csaba L, Gamrad Lisa, Kues Wilfried A, Rath Detlef, Barcikowski Stephan

出版信息

J Biomed Nanotechnol. 2015 Sep;11(9):1597-607. doi: 10.1166/jbn.2015.2094.

Abstract

Spermatozoa are not only essential for animal reproduction they also represent important tools for the manipulation of animal genetics. For instance, the genetic labeling and analysis of spermatozoa could provide a prospective complementation of pre-fertilization diagnosis and could help to prevent the inheritance of defective alleles during artificial insemination or to select beneficial traits in livestock. Spermatozoa feature extremely specialized membrane organization and restricted transport mechanisms making the labeling of genetically interesting DNA-sequences, e.g., with gold nanoparticles, a particular challenge. Here, we present a systematic study on the size-related internalization of ligand-free, monovalent and bivalent polydisperse gold nanoparticles, depending on spermatozoa membrane status. While monovalent conjugates were coupled solely to either negatively-charged oligonucleotides or positively-charged cell-penetrating peptides, bivalent conjugates were functionalized with both molecules simultaneously. The results clearly indicate that the cell membrane of acrosome-intact, bovine spermatozoa was neither permeable to ligand-free or oligonucleotide-conjugated nanoparticles, nor responsive to the mechanisms of cell-penetrating peptides. Interestingly, after acrosome reaction, which comprises major changes in sperm membrane composition, fluidity and charge, high numbers of monovalent and bivalent nanoparticles were found in the postequatorial segment, depicting a close and complex correlation between particle internalization and membrane organization. Additionally, depending on the applied peptide and for nanoparticle sizes < 10 nm even a successive nuclear penetration was observed, making the bivalent conjugates promising for future genetic delivery and sorting issues.

摘要

精子不仅对动物繁殖至关重要,也是操纵动物遗传学的重要工具。例如,精子的基因标记和分析可为受精前诊断提供前瞻性补充,有助于防止人工授精过程中缺陷等位基因的遗传,或在牲畜中选择有益性状。精子具有极其特殊的膜组织和受限的运输机制,这使得用金纳米颗粒等对具有遗传意义的DNA序列进行标记成为一项特殊挑战。在此,我们针对无配体、单价和二价多分散金纳米颗粒与精子膜状态相关的内化作用进行了系统研究。单价缀合物仅与带负电荷的寡核苷酸或带正电荷的细胞穿透肽偶联,而二价缀合物则同时用这两种分子进行功能化修饰。结果清楚地表明,顶体完整的牛精子细胞膜对无配体或寡核苷酸缀合的纳米颗粒均不渗透,对细胞穿透肽的机制也无反应。有趣的是,在顶体反应(包括精子膜组成、流动性和电荷的主要变化)之后,在后赤道段发现了大量单价和二价纳米颗粒,这表明颗粒内化与膜组织之间存在密切而复杂的相关性。此外,根据所应用的肽以及纳米颗粒尺寸小于10 nm的情况,甚至观察到了连续的核穿透现象,这使得二价缀合物在未来的基因传递和分选问题上具有前景。

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