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Extraction of High Molecular Weight DNA from Microbial Mats
Published on: July 7, 2011
Photoactivated cell-killing involving a low molecular weight, donor-acceptor diphenylacetylene
David R Chisholm1, Rebecca Lamb2, Tommy Pallett2,3
1Department of Chemistry , Durham University , Science Laboratories , South Road , Durham DH1 3LE , UK .
Abstract:
Photoactivation of photosensitisers can be utilised to elicit the production of ROS, for potential therapeutic applications, including the destruction of diseased tissues and tumours. A novel class of photosensitiser, exemplified by DC324, has been designed possessing a modular, low molecular weight and 'drug-like' structure which is bioavailable and can be photoactivated by UV-A/405 nm or corresponding two-photon absorption of near-IR (800 nm) light, resulting in powerful cytotoxic activity, ostensibly through the production of ROS in a cellular environment. A variety of in vitro cellular assays confirmed ROS formation and in vivo cytotoxic activity was exemplified via irradiation and subsequent targeted destruction of specific areas of a zebrafish embryo.
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