News

Targeting the Deadly Coils of Ebola

A new study found that Ebola virus is stabilized by electrostatic interactions, which could lead to new treatments

Written byUniversity of Texas at Austin
| 5 min read
Computer representation of the Ebola virus's nucleocapsid, which shields its RNA
Register for free to listen to this article
Listen with Speechify
0:00
5:00

In the midst of a global pandemic with COVID-19, it's hard to appreciate how lucky those outside of Africa have been to avoid the deadly Ebola virus disease. It incapacitates its victims soon after infection with massive vomiting or diarrhea, leading to death from fluid loss in about 50 percent of the afflicted. The Ebola virus transmits only through bodily fluids, marking a key difference from the COVID-19 virus and one that has helped contain Ebola's spread.

Ebola outbreaks continue to flare up in West Africa, although a vaccine developed in December 2019 and improvements in care and containment have helped keep Ebola in check. Supercomputer simulations by a University of Delaware team that included an undergraduate supported by the Extreme Science and Engineering Discovery Environment (XSEDE) Expert Mentoring Producing Opportunities for Work, Education, and Research (EMPOWER) program are adding to the mix and helping to crack the defenses of Ebola's coiled genetic material. This new research could help lead to breakthroughs in treatment and improved vaccines for Ebola and other deadly viral diseases such as COVID-19.

The Ebola virus uses electrostatic interactions to stabilize itself

"Our main findings are related to the stability of the Ebola nucleocapsid," said Juan R. Perilla, an assistant professor in the Department of Chemistry and Biochemistry at the University of Delaware. Perilla co-authored a study published in October 2020 in the AIP Journal of Chemistry Physics. It focused on the nucleocapsid, a protein shell that protects against the body's defenses the genetic material Ebola uses to replicate itself.

To continue reading this article, sign up for FREE
Today's Clinical Lab Logo
Membership is FREE and provides you with instant access to eNewsletters, digital publications, article archives, and more.
Unlock for FREE
Add Today's Clinical Lab as a preferred source on Google

Add Today's Clinical Lab as a preferred Google source to see more of our trusted coverage.

Related Topics