ak加速器免费试用-快连加速器app

Department of Biomedical Engineering, Whiting School of Engineering, Johns Hopkins University

High-Throughput Biology Center, Institute of Basic Biological Sciences, Johns Hopkins School of Medicine

ios免费vp

We study the relationship between genotype, the DNA sequence that encodes life’s information, and phenotype, a living system’s observable properties. Applications are to human disease, primarily complex genetic disorders and cancer, and to designed synthetic systems. The Human Genome Project, which provided a reference sequence of the 3 billion DNA letters that are the instructions for human life, also identified heritable genetic variants that influence disease risk. Mutations that arise in individual cells similarly can lead to cancer and other diseases. We develop new computational methods and joint wet-lab approaches to define how inborn genetic variants and acquired mutations lead to disease, with the goal of developing new therapies.

Image: Organoids generated from human breast tumors are displayed in false color. These organoids are groups of 300-500 cells from fresh tissue that were grown in three-dimensional culture by our collaborators in the Ewald lab to generate phenotypes relevant to invasive breast cancer. We are developing methods that identify the genes that drive breast cancer invasion, dissemination, and metastatic outgrowth in the hopes of developing new therapeutic strategies for metastatic breast cancer and other cancers.

iPhone能用的vp
In Archive
    ios免费vp
lets加速器加速器极光  lanter 破解版  哔咔梯子黑洞加速器  v2ray节点购买网站  免费国外网站加速器安卓  ios用啥梯子  上韩国网站梯子  tecnología