In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10
Endophytic bacteria, such as Streptomyces, have the potential to act as a source for novel bioactive molecules with medicinal properties. The present study was aimed at assessing the antimalarial activity of crude extract isolated from various strains of actinobacteria living endophytically in some...
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The Microbiological Society of Korea
2015
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my.iium.irep.488012016-05-31T06:51:01Z http://irep.iium.edu.my/48801/ In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 Baba, Mohd Shukri Mohamad Zin, Noraziah Abu Hassan, Zainal Abidin Latip, Jalifah Pethick, Florence Hunter, Iain S. Edrada-Ebel, RuAngelie Herron, Paul R. QR Microbiology Endophytic bacteria, such as Streptomyces, have the potential to act as a source for novel bioactive molecules with medicinal properties. The present study was aimed at assessing the antimalarial activity of crude extract isolated from various strains of actinobacteria living endophytically in some Malaysian medicinal plants. Using the four day suppression test method on male ICR strain mice, compounds produced from three strains of Streptomyces (SUK8, SUK10, and SUK27) were tested in vivo against Plasmodium berghei PZZ1/100 in an antimalarial screen using crude extracts at four different concentrations. One of these extracts, isolated from Streptomyces SUK10 obtained from the bark of Shorea ovalis tree, showed inhibition of the test organism and was further tested against P. berghei-infected mice for antimalarial activity at different concentrations. There was a positive relationship between the survival of the infected mouse group treated with 50 μg/kg body weight (bw) of ethyl acetate-SUK10 crude extract and the ability to inhibit the parasites growth. The parasite inhibition percentage for this group showed that 50% of the mice survived for more than 90 days after infection with the parasite. The nucleotide sequence and phylogenetic tree suggested that Streptomyces SUK10 may constitute a new species within the Streptomyces genus. As part of the drug discovery process, these promising finding may contribute to the medicinal and pharmaceutical field for malarial treatment. The Microbiological Society of Korea 2015-12 Article REM application/pdf en http://irep.iium.edu.my/48801/1/Journal_No._5.pdf application/pdf en http://irep.iium.edu.my/48801/2/10.1007%252Fs12275-015-5076-6 Baba, Mohd Shukri and Mohamad Zin, Noraziah and Abu Hassan, Zainal Abidin and Latip, Jalifah and Pethick, Florence and Hunter, Iain S. and Edrada-Ebel, RuAngelie and Herron, Paul R. (2015) In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10. Journal of Microbiology, 53 (12). pp. 847-855. ISSN 1225-8873 DOI 10.1007/s12275-015-5076-6 |
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QR Microbiology Baba, Mohd Shukri Mohamad Zin, Noraziah Abu Hassan, Zainal Abidin Latip, Jalifah Pethick, Florence Hunter, Iain S. Edrada-Ebel, RuAngelie Herron, Paul R. In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
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Endophytic bacteria, such as Streptomyces, have the potential to act as a source for novel bioactive molecules with medicinal properties. The present study was aimed at assessing the antimalarial activity of crude extract isolated from various strains of actinobacteria living endophytically in some Malaysian medicinal plants. Using the four day suppression test method on male ICR strain mice, compounds produced from three strains of Streptomyces (SUK8, SUK10, and SUK27) were tested in vivo against Plasmodium berghei PZZ1/100 in an antimalarial screen using crude extracts at four different concentrations. One of these extracts, isolated from Streptomyces SUK10 obtained from the bark of Shorea ovalis tree, showed inhibition of the test organism and was further tested against P. berghei-infected mice for antimalarial activity at different concentrations. There was a positive relationship between the survival of the infected mouse group treated with 50 μg/kg body weight (bw) of ethyl acetate-SUK10 crude extract and the ability to inhibit the parasites growth. The parasite inhibition percentage for this group showed that 50% of the mice survived for more than 90 days after infection with the parasite. The nucleotide sequence and phylogenetic tree suggested that Streptomyces SUK10 may constitute a new species within the Streptomyces genus. As part of the drug discovery process, these promising finding may contribute to the medicinal and pharmaceutical field for malarial treatment.
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format |
Article |
author |
Baba, Mohd Shukri Mohamad Zin, Noraziah Abu Hassan, Zainal Abidin Latip, Jalifah Pethick, Florence Hunter, Iain S. Edrada-Ebel, RuAngelie Herron, Paul R. |
author_facet |
Baba, Mohd Shukri Mohamad Zin, Noraziah Abu Hassan, Zainal Abidin Latip, Jalifah Pethick, Florence Hunter, Iain S. Edrada-Ebel, RuAngelie Herron, Paul R. |
author_sort |
Baba, Mohd Shukri |
title |
In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
title_short |
In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
title_full |
In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
title_fullStr |
In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
title_full_unstemmed |
In-vivo antimalarial activity of the endophytic actinobacterium, Streptomyces SUK 10 |
title_sort |
in-vivo antimalarial activity of the endophytic actinobacterium, streptomyces suk 10 |
publisher |
The Microbiological Society of Korea |
publishDate |
2015 |
url |
http://irep.iium.edu.my/48801/1/Journal_No._5.pdf http://irep.iium.edu.my/48801/2/10.1007%252Fs12275-015-5076-6 http://irep.iium.edu.my/48801/ |
_version_ |
1643613427540688896 |