<div><p>The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biology. Microfluidics present an attractive solution for minimizing use of costly reagents, enabling multiplexed reactions, and automating protocols by integrating multiple protocol steps. However, microfluidics fabrication and operation can be expensive and requires expertise, limiting access to the technology. With advances in commodity digital fabrication tools, it is now possible to directly print fluidic devices and supporting hardware. 3D printed micro- and millifluidic devices are inexpensive, easy to make and quick to produce. We demonstrate Golden Gate DNA assembly in 3D-printed fluidics with reaction volumes as small as 490 nL,...
De novo gene and genome synthesis enables the design of any sequence without the requirement of a pr...
The ability to synthesize custom de novo DNA constructs rapidly, accurately and inexpensively is hig...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biol...
The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biol...
New microbes are being engineered that contain the genetic circuitry, metabolic pathways, and other ...
New microbes are being engineered that contain the genetic circuitry, metabolic pathways, and other ...
<p>DNA assembly was tested in three fluidic device designs: (A) the Form 1+ Co-Laminar Mixer, (B) th...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
DNA Synthesis is a critical component in many biological and medical applications. Unfortunately, th...
Heuer C, Preuss J-A, Habib T, Enders A, Bahnemann J. 3D printing in biotechnology-An insight into mi...
3D printing has recently emerged as an intriguing method for producing microfluidic devices due to i...
The term “Lab-on-a-Chip,” is synonymous with describing microfluidic devices with biomedical applica...
Microfluidic applications have expanded greatly over the past decade. For the most part, however, ea...
Microfluidics are valuable devices in the biomedical field because of their remarkable ability to ma...
De novo gene and genome synthesis enables the design of any sequence without the requirement of a pr...
The ability to synthesize custom de novo DNA constructs rapidly, accurately and inexpensively is hig...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biol...
The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biol...
New microbes are being engineered that contain the genetic circuitry, metabolic pathways, and other ...
New microbes are being engineered that contain the genetic circuitry, metabolic pathways, and other ...
<p>DNA assembly was tested in three fluidic device designs: (A) the Form 1+ Co-Laminar Mixer, (B) th...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
DNA Synthesis is a critical component in many biological and medical applications. Unfortunately, th...
Heuer C, Preuss J-A, Habib T, Enders A, Bahnemann J. 3D printing in biotechnology-An insight into mi...
3D printing has recently emerged as an intriguing method for producing microfluidic devices due to i...
The term “Lab-on-a-Chip,” is synonymous with describing microfluidic devices with biomedical applica...
Microfluidic applications have expanded greatly over the past decade. For the most part, however, ea...
Microfluidics are valuable devices in the biomedical field because of their remarkable ability to ma...
De novo gene and genome synthesis enables the design of any sequence without the requirement of a pr...
The ability to synthesize custom de novo DNA constructs rapidly, accurately and inexpensively is hig...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...