DocumentCode
2614274
Title
An in silico Approach to Detect Efficient Malaria Drug Targets to Combat the Malaria Resistance Problem
Author
Fatumo, Segun ; Adebiyi, Ezekiel ; Schramm, Gunnar ; Eils, Roland ; König, Rainer
Author_Institution
Dept. of Comput. & Inf. Sci., Covenant Univ., Ota, Nigeria
fYear
2009
fDate
17-20 April 2009
Firstpage
576
Lastpage
580
Abstract
Resistance to malaria drugs is a major challenging problem in most parts of the world especially in the African continent where about ninety per cent of malaria cases occur. As a response to this alarming problem, the World Health Organisation (W.H.O) recommends that all countries experiencing resistance to conventional monotherapies, such as chloroquine, amodiaquine or sulfadoxine-pyrimethamine, should use combination therapies. Therefore there is a need to discover new drug targets that are able to target the malarial parasite at distinct pathways for an efficient malaria drug. In this paper, we presented a machine-learning tool which is able to identify novel drug targets from the metabolic network of Plasmodium falciparum. With our tool we identified among others 19 drug targets confirmed from literature which we analyzed further with a sophisticated gene expression analysis tool. Our data was clustered using common distance similarity measurements and hierarchical clustering to propose a profound combination of drug targets. Our result suggests that two or more enzymatic reactions from the list of our drug targets which span across about ten pathways (Table 2) could be combined to target at distinct time points in the parasite´s intraerythrocytic developmental cycle to detect efficient malaria drug target combinations.
Keywords
drug delivery systems; drugs; pest control; African continent; Plasmodium falciparum; World Health Organisation; amodiaquine; chloroquine; combination therapies; enzymatic reactions; gene expression analysis; hierarchical clustering; in silico approach; intraerythrocytic developmental cycle; machine-learning tool; malaria drug target detection; malaria resistance problem; malarial parasite; monotherapies; sulfadoxine-pyrimethamine; Africa; Biochemistry; Bioinformatics; Diseases; Drugs; Genomics; Immune system; Medical treatment; Organisms; Springs; Malaria; Resistance; drug targets; life cycle;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Information Technology - Spring Conference, 2009. IACSITSC '09. International Association of
Conference_Location
Singapore
Print_ISBN
978-0-7695-3653-8
Type
conf
DOI
10.1109/IACSIT-SC.2009.128
Filename
5169419
Link To Document