Discovery of variations in resistance to sulfadoxine across Africa
Researchers have discovered that malaria parasites in east and west Africa carry different resistance mutations, which suggests that the effectiveness of sulfadoxine as an antimalarial drug may vary across Africa. The findings have implications for the manner in which malaria control campaigns are carried out, and suggest that coordinating efforts between parts of Africa that share similar patterns of resistance is likely to be more effective than working in isolation in each country.
Plasmodium falciparum (P. falciparum) a mosquito-borne parasite that causes malaria, kills nearly one million people a year, mostly in sub-Saharan Africa. Until recently, treatment in Africa relied on chloroquine and sulfadoxine-pyrimethamine. Unfortunately, parasites have developed resistance to both these drugs by acquiring 'resistance mutations', genetic changes that prevent the drugs from killing them.
Scientists have discovered that the mutations that caused resistance to chloroquine and pyrimethamine originated in Asia and spread into Africa in the late 1970s and early 1980s respectively. These mutations are now common across Africa and it is no longer possible to determine how they spread across the continent. However, the mutations that cause resistance to sulfadoxine only began to emerge in the mid-1990s, and have not yet spread evenly across Africa.
A study published today in PloS Medicine, and led by Dr. Cally Roper of the London School of Hygiene & Tropical Medicine, used genetic methods to characterise how resistance to sulfadoxine has spread across Africa, with a view to determining its geographical origins in order to help improve measures aimed at controlling the spread of drug-resistant P. falciparum.
The team analysed blood samples collected from patients with malaria in various African countries, and searched the scientific literature for other similar studies. They discovered five major variant genetic sequences (three of which contain mutations that confer various degrees of resistance to sulfadoxine in laboratory tests) to be present in Africa, each with a unique geographical distribution. In particular, the data showed that malaria parasites in east and west Africa carry different resistance mutations.
The findings show that sulfadoxine-resistant parasites have emerged independently at multiple sites in Africa, and that the molecular basis for sulfadoxine resistance is different in east and west Africa. This latter result may have clinical implications because it suggests that the effectiveness of sulfadoxine as an antimalarial drug may vary across the continent. They also suggest that economic and transport infrastructures may have played a role in governing recent parasite dispersal across the continent through their influence on the volume of human migration.
Dr. Roper comments: 'Our findings suggest that the effectiveness of sulfadoxine as an antimalarial drug may vary across Africa. They also point to the need to co-ordinate malaria control campaigns across socioeconomically linked areas in Africa, rather than focusing solely on national territories, in order to more effectively reduce the malaria burden in the continent'
Source: London School of Hygiene & Tropical Medicine
Related
- Emergence of artemisinin-resistance on Thai-Myanmar border raises specter of untreatable malariaSun, 8 Apr 2012, 16:32:50 EDT
- Discovery provides new drug targets for malaria cureMon, 11 Jan 2010, 15:30:39 EST
- New lead on malaria treatmentMon, 18 May 2009, 13:16:08 EDT
- Scientists join forces to explain HIV spread in Central and East AfricaTue, 29 Sep 2009, 14:36:30 EDT
- Simple rapid diagnostic tests for malaria work wellWed, 6 Jul 2011, 3:34:27 EDT
Articles on the same topic
- Tracing resistance to the antimalarial drug sulfadoxine across AfricaTue, 14 Apr 2009, 6:29:56 EDT
Other sources
- Tracing resistance to the antimalarial drug sulfadoxine across Africafrom PhysorgTue, 14 Apr 2009, 7:14:08 EDT
- Discovery of variations in resistance to sulfadoxine across Africafrom Science CentricTue, 14 Apr 2009, 6:28:18 EDT
Latest Science Newsletter
Get the latest and most popular science news articles of the week in your Inbox! It's free!Learn more about
Check out our next project, Biology.Net
Popular science news articles
- Allosaurus fed more like a falcon than a crocodile, new study finds
- Protein study suggests drug side effects are inevitable
- Human-like opponents lead to more aggression in video game players, UConn study finds
- Origins of human culture linked to rapid climate change
- Do salamanders hold the solution to regeneration?
- Allosaurus fed more like a falcon than a crocodile, new study finds
- Invasive crazy ants are displacing fire ants in areas throughout southeastern US
- Beautiful 'flowers' self-assemble in a beaker
- Scientific insurgents say 'Journal Impact Factors' distort science
- GPS solution provides 3-minute tsunami alerts