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1.
China Journal of Chinese Materia Medica ; (24): 2868-2875, 2023.
Article Dans Chinois | WPRIM | ID: wpr-981421

Résumé

With the advances in medicine, people have deeply understood the complex pathogenesis of diseases. Revealing the mechanism of action and therapeutic effect of drugs from an overall perspective has become the top priority of drug design. However, the traditional drug design methods cannot meet the current needs. In recent years, with the rapid development of systems biology, a variety of new technologies including metabolomics, genomics, and proteomics have been used in drug research and development. As a bridge between traditional pharmaceutical theory and modern science, computer-aided drug design(CADD) can shorten the drug development cycle and improve the success rate of drug design. The application of systems biology and CADD provides a methodological basis and direction for revealing the mechanism and action of drugs from an overall perspective. This paper introduces the research and application of systems biology in CADD from different perspectives and proposes the development direction, providing reference for promoting the application.


Sujets)
Humains , Biologie des systèmes , Conception de médicament , Développement de médicament , Génomique , Médecine
2.
Mem. Inst. Oswaldo Cruz ; 110(6): 814-816, Sept. 2015. tab, graf
Article Dans Anglais | LILACS | ID: lil-763088

Résumé

Currently, there is a trend of an increasing number of Plasmodium vivaxmalaria cases in China that are imported across its Southeast Asia border, especially in the China-Myanmar border area (CMB). To date, little is known about the genetic diversity of P. vivaxin this region. In this paper, we report the first genome sequencing of a P. vivaxisolate (CMB-1) from a vivax malaria patient in CMB. The sequencing data were aligned onto 96.43% of the P. vivaxSalvador I reference strain (Sal I) genome with 7.84-fold coverage as well as onto 98.32% of 14 Sal I chromosomes. Using the de novoassembly approach, we generated 8,541 scaffolds and assembled a total of 27.1 Mb of sequence into CMB-1 scaffolds. Furthermore, we identified all 295 known virgenes, which is the largest subtelomeric multigene family in malaria parasites. These results provide an important foundation for further research onP. vivaxpopulation genetics.


Sujets)
ADN des protozoaires/analyse , Génome de protozoaire , Plasmodium vivax/génétique , Analyse de séquence d'ADN , Chine/épidémiologie , Paludisme/épidémiologie , Myanmar/épidémiologie , Plasmodium vivax/isolement et purification
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