[an error occurred while processing this directive] [an error occurred while processing 1xbet online sports betting directive]
[an error occurred while processing 1xbet online sports betting directive]
  1. K-State Home
  2. Media Relations
  3. April news releases

Source: Vikas 1xbet online sports betting , 785-532-5519, vberry@k-state.edu
Images available. Contact media@k-state.edu or 785-532-6415
News release prepared by: Erinn Barcomb-Peterson, 785-532-6415, ebarcomb@k-state.edu

Monday, April 13, 2009

CONNECTING MATERIALS SCIENCE WITH BIOLOGY, K-STATE ENGINEERS CREATE DNA SENSORS THAT COULD IDENTIFY CANCER USING MATERIAL ONLY ONE ATOM THICK

MANHATTAN -- Kansas State University engineers think the possibilities are deep for a very thin material.

Vikas Berry, assistant professor of chemical engineering, is leading research combining biological materials with 1xbet online sports betting , a recently developed carbon material that is only a single atom thick.

Image of DNA tethered to graphene&1xbet online sports betting ;The biological interfacing of graphene is taking this material to the next level,&1xbet online sports betting ; Berry said. &1xbet online sports betting ;Discovered only four years ago, this material has already shown a large number of capabilities. K-Staters are the first to do bio-integrated research with graphene.&1xbet online sports betting ;

To study 1xbet online sports betting , researchers rely on an atomic force microscope to help them observe and manipulate these single atom thick carbon sheets.

&1xbet online sports betting ;It's a fascinating material to work with,&1xbet online sports betting ; Berry said. &1xbet online sports betting ;The most significant feature of graphene is that the electrons can travel without interruptions at speeds close to that of light at room temperature. Usually you have to go near zero Kelvin -- that's about 450 degrees below zero Fahrenheit -- to get electrons to move at ultra high speeds.&1xbet online sports betting ;

One of Berry's developments is a 1xbet online sports betting -based DNA sensor. When electrons flow on the 1xbet online sports betting , they change speed if they encounter DNA. The researchers notice this change by measuring the electrical conductivity. The work was published in Nano-Letters.

&1xbet online sports betting ;Most DNA sensors are optical, but this one is electrical,&1xbet online sports betting ; Berry said. &1xbet online sports betting ;We are currently collaborating with researchers from Harvard Medical School to sense cancer cells in blood.&1xbet online sports betting ;

Another area he is exploring is loading 1xbet online sports betting with antibodies and flowing bacteria across the surface.

&1xbet online sports betting ;Most researchers focus on pristine graphene, but we're making it dirty,&1xbet online sports betting ; he said.

Berry and Nihar Mohanty, a graduate student in chemical engineering, used a type of bacteria commonly found in rice and interfaced it with 1xbet online sports betting . They found that the 1xbet online sports betting with tethered antibodies will wrap itself around an individual bacterium, which remains alive for 12 hours.

Berry said that possible applications include a high-efficiency bacteria-operated battery, where by using geobater, a type of bacteria known to produce electrons, can be wrapped with 1xbet online sports betting to produce electricity. The research was presented at the annual American Physical Society conference in Pittsburgh and the American Institute for Chemical Engineers conference in Philadelphia.

&1xbet online sports betting ;Materials science is an incredible field with several exploitable quantum effects occurring at molecular scale, and biology is a remarkable field with a variety of specific biochemical mechanisms,&1xbet online sports betting ; Berry said. &1xbet online sports betting ;But for the most part the two fields are isolated. If you join these two fields, the possibilities are going to be immense. For example, one can think of a bacterium as a machine with molecular scale components and one can exploit the functioning of those components in a material device.&1xbet online sports betting ;

For his doctoral research, 1xbet online sports betting used bacteria to make a humidity sensor.

&1xbet online sports betting ;That was only possible through combining materials science with biological science,&1xbet online sports betting ; he said.

Another area of his current research is compressing and stretching molecular-junctions between nanoparticles. 1xbet online sports betting that his group has developed a molecular-spring device where they can compress and stretch molecules, which then act like springs, allowing researchers to study how they relax back. He said that this technology could be used to create molecular-timers in which the spring action from a decompressed molecule on a chip could trigger a circuit, for instance.

1xbet online sports betting for stretching the molecules, Kabeer Jasuja, a doctoral student in chemical engineering, came up with the idea to place the device on a centrifuge to stretch the molecules with centrifugal force.

The work was published in the journal Small.

1xbet online sports betting1xbet online sports betting 1xbet online sports betting 1xbet online sports betting
[an error occurred while processing 1xbet online sports betting directive]