直接操纵单个原子或分子,对它们进行排列组合以形成新的物质甚至制造具有一定功能的机器一直是人们追求的目标。单原子操纵已成为现实,目前的焦点移至单分子操纵。从物理学和生物学意义上来讲生物大分子的移动和操纵有着广阔的应用前景,而对分子操纵方法仍在探索之中,因此,用于操纵方法仍在探索之中。因此,用于操纵单个DNA大分子新方法的研烤哂惺种卮蠛蜕钤兜囊庖濉
{{i.achievement_title}}
数据更新时间:2023-05-31
An improved extraction method reveals varied DNA content in different parts of the shells of Pacific oysters
DNA storage: research landscape and future prospects
The effectiveness and safety of traditional Chinese herbal medicine for the treatment of male infertility associated with sperm DNA fragmentation
Modeling the relationship of diverse genomic signatures to gene expression levels with the regulation of long-range enhancer-promoter interactions
Amplification strategy for sensitive detection of methyltransferase activity based on surface plasma resonance techniques
单个DNA分子反应实时原位纳米检测表征新方法研究
基于纳米操纵的单个生物大分子原位合成方法研究
全内反射荧光显微术检测单个生物大分子
基于DNA纳米技术的生物大分子检测