| Literature DB >> 20844784 |
Chao Han1, Qiufang Zhang, Rui Ma, Lan Xie, Tian Qiu, Lei Wang, Keith Mitchelson, Jundong Wang, Guoliang Huang, Jie Qiao, Jing Cheng.
Abstract
In vitro fertilization (IVF) therapy is an important treatment for human infertility. However, the methods for clinical IVF have only changed slightly over decades: culture medium is held in oil-covered drops in Petri dishes and manipulation occurs by manual pipetting. Here we report a novel microwell-structured microfluidic device that integrates single oocyte trapping, fertilization and subsequent embryo culture. A microwell array was used to capture and hold individual oocytes during the flow-through process of oocyte and sperm loading, medium substitution and debris cleaning. Different microwell depths were compared by computational modeling and flow washing experiments for their effectiveness in oocyte trapping and debris removal. Fertilization was achieved in the microfluidic devices with similar fertilization rates to standard oil-covered drops in Petri dishes. Embryos could be cultured to blastocyst stages in our devices with developmental status individually monitored and tracked. The results suggest that the microfluidic device may bring several advantages to IVF practices by simplifying oocyte handling and manipulation, allowing rapid and convenient medium changing, and enabling automated tracking of any single embryo development.Entities:
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Year: 2010 PMID: 20844784 DOI: 10.1039/c005296e
Source DB: PubMed Journal: Lab Chip ISSN: 1473-0189 Impact factor: 6.799