Nanite News
Recent News |  Archives |  Tags |  About |  Newsletter |  Submit News |  Links |  Subscribe to NaniteNews.com RSS Feed Subscribe


More Articles
Tracking down the human 'odorprint'Tracking down the human 'odorprint'

Researchers help identify cows that gain more while eating lessResearchers help identify cows that gain more while eating less

What drives our genes? Researchers map the first complete human epigenomeWhat drives our genes? Researchers map the first complete human epigenome

Scientists discover largest orb-weaving spiderScientists discover largest orb-weaving spider

A 200,000-year-old cut of meatA 200,000-year-old cut of meat

Fill 'er up - with algaeFill 'er up - with algae

Scientists discover quantum fingerprints of chaosScientists discover quantum fingerprints of chaos

Communicating person to person through the power of thought aloneCommunicating person to person through the power of thought alone

Giant impact near India - not Mexico - may have doomed dinosaursGiant impact near India - not Mexico - may have doomed dinosaurs

How the Moon produces its own waterHow the Moon produces its own water

Juggling enhances connections in the brainJuggling enhances connections in the brain

Mantis shrimps could show us the way to a better DVDMantis shrimps could show us the way to a better DVD

Why sex with a partner is betterWhy sex with a partner is better

The book of life can now literally be written on paperThe book of life can now literally be written on paper

Production of gold nanorods without the use of cytotoxic additives (9/10/2008)

Tags:
nanorods, gold, medicine

Gold Nanorods
Gold Nanorods
For medical applications: production of gold nanorods without the use of cytotoxic additives

Gold nanoparticles are under consideration for a number of biomedical applications, such as tumor treatment. A German-American research team at Carnegie Mellon University in Pittsburgh, Hunter College in New York, and the RWTH Aachen has now developed a new method for the production of nanoscopic gold rods. In contrast to previous methods, they have achieved this without the use of cytotoxic additives. As they report in the journal Angewandte Chemie, the synthesis is not carried out in water, but in an ionic liquid, a "liquid salt".

Cancer cells are relatively temperature-sensitive. This is exploited in treatments involving overheating of parts of the cancer patient's body. One highly promising method is photoinduced hyperthermia, in which light energy is converted to heat. Gold nanoparticles absorb light very strongly in the near infrared, a spectral region that is barely absorbed by tissue. The absorbed light energy causes the gold particles to vibrate and is dissipated into the surrounding area as heat. The tiny gold particles can be functionalized so that the specifically bind to tumor cells. Thus, only cells that contain gold particles are killed off.

The problem? Ordinary spherical gold particles do not efficiently convert the light energy into heat; only rod-shaped particles will do. Unfortunately, the additives needed to crystallize the rod-shaped particles from aqueous solutions are cytotoxic.

The team headed by Michael R. Bockstaller is now pursuing a new strategy: instead of aqueous solution, they chose to use an ionic liquid as their medium of crystallization. Ionic liquids are "liquid salts", organic compounds that exist as oppositely charged ions, but in the liquid state. In this way, the researchers have been able to produce gold nanorods without the use of any cytotoxic additives.

In the first step, seed crystals are produced in the form of tiny spherical gold particles. These crystals are added to a "secondary growth solution" containing monovalent gold ions, silver ions, and the weak reducing agent ascorbic acid. The solvent is an imidazolium-based ionic liquid. In this medium, the crystals don't continue to grow into spheres; instead they form rods with the round crystallization nuclei as "heads". The mechanism is presumed to involve the various, energetically inequivalent surfaces of the crystal lattice: the aromatic, nitrogen-containing five-membered rings of the ionic liquid prefer to accumulate at the highly energetic facets of gold surfaces. They thus stabilize crystal shapes that have fewer low-energy facets than the normal spherical equilibrium form. This results in long rods.

Note: This story has been adapted from a news release issued by the Wiley InterScience

Post Comments:

Search

New Articles
Nano imagining takes turn for the better 2/6/2010

Nano for the senses 2/5/2010

Magnetic nanoparticles show promise for combating human cancer 2/4/2010

Summit examines vast applications of nanomedicine 2/3/2010

Engineers explore environmental concerns of nanotechnology 2/2/2010

How many argon atoms can fit on the surface of a carbon nanotube? 1/29/2010

Conference to discuss future of nanotechnology enabled sensors 1/23/2010

European collaboration makes breakthrough in developing super-material graphene 1/20/2010

New nanoparticles target cardiovascular disease 1/19/2010

Harnessing the divas of the nanoworld 1/16/2010

Game-changing nanodiamond discovery for MRI 1/15/2010

Paper strips can quickly detect toxin in drinking water 1/11/2010

UCLA's California NanoSystems Institute welcomes new start-up to incubator space 1/9/2010

Nanoscience goes 'big' 1/8/2010

'Nanodragster' races toward the future of molecular machines 1/7/2010


Archives
February 2010
January 2010
December 2009
November 2009
October 2009
September 2009
August 2009
July 2009
June 2009
May 2009
April 2009
March 2009
February 2009
January 2009
December 2008
November 2008
October 2008
September 2008
August 2008
July 2008
June 2008
May 2008
April 2008
March 2008
February 2008
January 2008
December 2007
November 2007
October 2007
September 2007
August 2007
July 2007
June 2007


Science Friends
Agricultural Science
Astronomy News
Biology News
Biomimicry Science
Cognitive Research
Chemistry News
Tissue Engineering
Cancer Research
Cybernetics Research
Forensics Report
Fossil News
Genetic Archaeology
Genetics News
Geology News
Physics News


  Archives |  Submit News |  Advertise With Us |  Contact Us |  Links
Use of this site constitutes acceptance of our Terms of Service and Privacy Policy. All contents © 2000 - 2011 Web Doodle, LLC. All rights reserved.