Toxicogenomics: Japanese Initiative
Toxicogenomics: Japanese Initiative
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毒理基因组学:日本倡议
DOI:
10.1002/3527603719.ch26
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发表时间:
2005
期刊:
影响因子:
--
通讯作者:
T. Nagao
中科院分区:
文献类型:
--
作者:
T. Urushidani;T. Nagao
The human genome project, which started in 1990, was a great milestone in the history of science that revealed the entire genetic blueprint of the human being [1]. Simultaneously, it is said that it activated the economy of the USA and saved it from economic crisis. People outside the USA missed their chance to join the game earlier, when it was unrecognized that the gene itself would become a business opportunity. The Japanese government started its ‘millennium plan’in 2000 to support and promote gene research, especially as related to five serious diseases–dementia, cancer, hypertension, diabetes, and allergy. However, it was somewhat too late. In addition to support by the government, participation of private capital is indispensable for the development of scientific research. Although attention has only recently been directed to business based on genome science, presently, the movement of investors is slow and investment is not well focused. There was optimism at the beginning of the human genome project that development of remedies would immediately be possible when genomic information related to a certain disease was revealed. Today, however, everybody realizes that that was an illusion. However, every time a disease-related gene is identified or assigned, the news is always released with a comment that a medication for the disease will soon appear. This is a great misunderstanding. Even in the days when the human genome was barely sequenced, a large number of diseases caused by genes had already been identified. For example, in 1989 the causal gene of cystic fibrosis was found to be CFTR [2], and this fact in itself brought about no change in the therapy of this disease, and of course, cystic fibrosis is still incurable today. Similarly, it could be said that the analysis of familial Alzheimer’s disease did not contribute to the clinical development of donepedil at all. However, it is not true that elucidation of the human genome contributes little to drug development. On the contrary, it is a powerful and efficient tool for producing a candidate compound in combination with high-throughput chemical synthesis and screening systems, once a target molecule is decided upon. This is why drug manufacturers around the world compete for the use of genome information. Will this strategy really accelerate drug discovery?