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memser

[交流] Gold nanoparticles for controlled drug delivery

Using tiny gold particles and infrared light, MIT researchers have developed a drug-delivery system that allows multiple drugs to be released in a controlled fashion.

Such a system could one day be used to provide more control when battling diseases commonly treated with more than one drug, according to the researchers.

"With a lot of diseases, especially cancer and AIDS, you get a synergistic effect with more than one drug," said Kimberly Hamad-Schifferli, assistant professor of biological and mechanical engineering and senior author of a paper on the work that recently appeared in the journal ACS Nano.

Delivery devices already exist that can release two drugs, but the timing of the release must be built into the device — it cannot be controlled from outside the body. The new system is controlled externally and theoretically could deliver up to three or four drugs.

The new technique takes advantage of the fact that when gold nanoparticles are exposed to infrared light, they melt and release drug payloads attached to their surfaces.

Nanoparticles of different shapes respond to different infrared wavelengths, so "just by controlling the infrared wavelength, we can choose the release time" for each drug, said Andy Wijaya, graduate student in chemical engineering and lead author of the paper.

The team built two different shapes of nanoparticles, which they call "nanobones" and "nanocapsules." Nanobones melt at light wavelengths of 1,100 nanometers, and nanocapsules at 800 nanometers.

In the ACS Nano study, the researchers tested the particles with a payload of DNA. Each nanoparticle can carry hundreds of strands of DNA, and could also be engineered to transport other types of drugs.

In theory, up to four different-shaped particles could be developed, each releasing its payload at different wavelengths.

Provided by Massachusetts Institute of Technology


The top image shows a mixture of gold nanoparticles. The longer particles are called nanobones, and the smaller are nanocapsules. Bottom left: After the nanoparticles are hit with 800 nanometer wavelength infrared light, the nanocapsules melt and release their payload. Nanobones remain intact. Right: After the nanoparticles are hit with 1100 nanometer wavelength infrared light, the nanobones melt and release their payload. Nanocapsules remain intact. Image: Andy Wijaya

论文:
A. Wijaya, S. B. Schaffer, I. G. Pallares, K. Hamad-Schifferli, "Selective release of multiple DNA oligonucleotides from gold nanorods," ACS Nano, 2008, ASAP article.
wijaya-la08.pdf

[ Last edited by memser on 2009-1-4 at 16:06 ]
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refnew

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文献呢?
还是那种所谓记者写的?
2楼2009-01-04 12:25:52
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memser

我只提供这方面信息,如果你感兴趣的话,可以自己去查这方面的文献。
3楼2009-01-04 12:53:38
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refnew

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这方面文献几年前就很多了

看样子是记者随便写的了
4楼2009-01-04 13:59:12
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dawnlight

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小木虫小小版主

0.5

看起来好像不像多么旧的东东啊
姿曰:年轻会结束,在结束以前,把想做的事做完吧!
5楼2009-01-04 15:04:49
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memser

A. Wijaya, S. B. Schaffer, I. G. Pallares, K. Hamad-Schifferli, "Selective release of multiple DNA oligonucleotides from gold nanorods," ACS Nano, 2008, ASAP article.
PDF  HTML

下载---》》
wijaya-la08.pdf

[ Last edited by memser on 2009-1-4 at 16:05 ]
6楼2009-01-04 16:02:53
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