Reset MapSt. Luois, WA United StatesThis core assists investigators in the Cancer Center with the generation of manipulated murine ES cells used to make sophisticated mouse models of human diseases, including cancer. These altered ES cells help us to understand how both individual genes and mutations work to cause cancer. The Murine Embryonic Stem Cell Core has been created to help you make mutations in mouse embryonic stem cells. The core has several missions including: development of state-of-the art reagents for the production of targeted mutations in embryonic stem cells, the creation of quality-controlled embryonic stem cell lines, and the teaching of methods for embryonic stem cell culture and manipulation. The core provides seven different embryonic stem cell lines for the WUMS research community. In addition, this core provides a teaching service, so that 'hands-on' production of targeted ES clones can be learned. Finally, the core will arrange additional services for your ES clones such as karyotyping, MAP testing, and blastocyst injections. By providing a comprehensive service, we hope to facilitate the production of gain-of-function and loss-of-function mouse models for our faculty.
Louis Street Washington, MO, 63090 United StatesThis core assists investigators in the Cancer Center with the generation of manipulated murine ES cells used to make sophisticated mouse models of human diseases, including cancer. These altered ES cells help us to understand how both individual genes and mutations work to cause cancer. The Murine Embryonic Stem Cell Core has been created to help you make mutations in mouse embryonic stem cells. The core has several missions including: development of state-of-the art reagents for the production of targeted mutations in embryonic stem cells, the creation of quality-controlled embryonic stem cell lines, and the teaching of methods for embryonic stem cell culture and manipulation. The core provides seven different embryonic stem cell lines for the WUMS research community. In addition, this core provides a teaching service, so that 'hands-on' production of targeted ES clones can be learned. Finally, the core will arrange additional services for your ES clones such as karyotyping, MAP testing, and blastocyst injections. By providing a comprehensive service, we hope to facilitate the production of gain-of-function and loss-of-function mouse models for our faculty.
The Contract Research Map is owned and maintained by Scientist.com. It was created to help researchers in the life sciences identify and connect with contract research organizations (CROs) based on geography. Updated nightly, this map features all of the available CROs within our network, so you can order services with a few clicks. Click on a specific country, scroll on the map itself or type into the search bar at the top—there are many ways to find the location and suppliers that you’re looking for. From Argentina to New Zealand, use this map to connect with a CRO near you.
We believe that every researcher across the world should be able to connect with the thousands of global CROs that exist and have the opportunity to work together. Like many industries,the life science supply chain has been disrupted over the last year. But there are many other circumstances such as international customs regulations or sensitive shipping times that create limitations around which countries are feasible to partner with. Sometimes, finding a CRO based in a country that best suits your research needs is imperative. We hope this contract research map allows you to find the right partner in the right place at the right time.
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