advertisement
Science News
从研究organizations

Compound from medicinal herb kills brain-eating amoebae in lab studies

Date:
January 13, 2021
Source:
American Chemical Society
Summary:
Primary amoebic meningoencephalitis (PAM), a deadly disease caused by the 'brain-eating amoeba' Naegleria fowleri, is becoming more common in some areas of the world, and it has no effective treatment. Now, researchers have found that a compound isolated from the leaves of a traditional medicinal plant, Inula viscosa or 'false yellowhead,' kills the amoebae by causing them to commit cell suicide in lab studies, which could lead to new treatments.
Share:
advertisement

FULL STORY

Primary amoebic meningoencephalitis (PAM), a deadly disease caused by the "brain-eating amoeba"Naegleria fowleri, is becoming more common in some areas of the world, and it has no effective treatment. Now, researchers reporting inACS Chemical Neurosciencehave found that a compound isolated from the leaves of a traditional medicinal plant,Inula viscosaor "false yellowhead," kills the amoebae by causing them to commit cell suicide in lab studies, which could lead to new treatments.

PAM, characterized by headache, fever, vomiting, hallucinations and seizures, is almost always fatal within a couple of weeks of developing symptoms. Although the disease, which is usually contracted by swimming in contaminated freshwater, is rare, increasing cases have been reported recently in the U.S., the Philippines, southern Brazil and some Asian countries. Amphotericin B is the most common therapy given to those with the infection. It can killN. fowleriin the lab, but it isn't very effective when given to patients, likely because it cannot cross the blood-brain barrier. Ikrame Zeouk, José Piñero, Jacob Lorenzo-Morales and colleagues wanted to explore whether compounds isolated fromI. viscosa, a strong-smelling plant that has long been used for traditional medicine in the Mediterranean region, could effectively treat PAM.

The researchers first made an ethanol extract from the herb's leaves, finding that it could killN. fowleriamoebae. Then, they isolated and tested specific compounds from the extract. The most potent compound, inuloxin A, killed amoebae in the lab by disrupting membranes and causing mitochondrial changes, chromatin condensation and oxidative damage, ultimately forcing the parasites to undergo programmed cell death, or apoptosis. Although inuloxin A was much less potent than amphotericin B in the lab, the structure of the plant-derived compound suggests that it might be better able to cross the blood-brain barrier. More studies are needed to confirm this hypothesis, the researchers say.

The authors acknowledge funding from the European Regional Development Fund, the Spanish Ministry of Economic Affairs and Digital Transformation, the Spanish Ministry of Science, Innovation and Universities, the University of La Laguna and the Augustin de Betancourt Foundation.

advertisement

故事来源:

Materialsprovided byAmerican Chemical Society.Note: Content may be edited for style and length.


Journal Reference:

  1. Ikrame Zeouk, Ines Sifaoui, Aitor Rizo-Liendo, Iñigo Arberas-Jiménez, María Reyes-Batlle, Isabel L. Bazzocchi, Khadija Bekhti, José E. Piñero, Ignacio A. Jiménez, Jacob Lorenzo-Morales.Exploring the Anti-Infective Value of Inuloxin A Isolated from Inula viscosa against the Brain-Eating Amoeba (Naegleria fowleri) by Activation of Programmed Cell Death.ACS Chemical Neuroscience, 2020; 12 (1): 195 DOI:10.1021/acschemneuro.0c00685

Cite This Page:

American Chemical Society. "Compound from medicinal herb kills brain-eating amoebae in lab studies." ScienceDaily. ScienceDaily, 13 January 2021. /releases/2021/01/210113132411.htm>.
American Chemical Society. (2021, January 13). Compound from medicinal herb kills brain-eating amoebae in lab studies.ScienceDaily. Retrieved August 21, 2023 from www.koonmotors.com/releases/2021/01/210113132411.htm
American Chemical Society. "Compound from medicinal herb kills brain-eating amoebae in lab studies." ScienceDaily. www.koonmotors.com/releases/2021/01/210113132411.htm (accessed August 21, 2023).

Explore More
from ScienceDaily

RELATED STORIES