| Literature DB >> 28890929 |
Zongbin Liu1, Xin Han1, Qing Zhou2, Rui Chen3, Shelby Fruge4, Myeong Chan Jo1, Yuan Ma1, Ziyin Li2, Kenji Yokoi5, Lidong Qin1.
Abstract
Metastasis involves the phenotype transition of cancer cells to gain invasiveness, and the following migration at the tumor site. Here an integrated microfluidic chip to study this process is presented by combining on-chip delivery of siRNA for gene silencing and cell migration assay. The major advantage of the integrated chip is the simple input of cells and gene transfection materials, and the ultimate output of migration ability. The reverse-fishbone structure and 0.7× phosphate-buffered saline solution are the optimized parameters for improved delivery efficiency. Using the chip, it is validated that cofilin plays an essential role in regulating cancer cell migration. The integrated chip may provide a simple and effective platform for biologists to easily check the role of specific genes in metastasis.Entities:
Keywords: cancer cell migration; gene silencing; metastasis; microfluidics; siRNA
Year: 2017 PMID: 28890929 PMCID: PMC5589337 DOI: 10.1002/adbi.201700054
Source DB: PubMed Journal: Adv Biosyst ISSN: 2366-7478