Skip to main content
You're viewing the free public version. Create a free account for full research and member tools. Join free
Research Abstract In Vitro Study

Caffeic acid inhibits replication of an Asian lineage Zika virus and attenuates virus-induced inflammatory responses.

0:00 / 0:00
0:00 / 0:00

Sign in to access this feature

Create a free account or sign in to use AI summaries, listen to articles, download PDFs, and save to your library.

141 views
Share:

Abstract

Zika virus (ZIKV), a mosquito-borne flavivirus, continues to pose a substantial public health threat, yet no approved antiviral treatment is available. In this study, we investigated the effects of caffeic acid (CA) on ZIKV replication, host-virus interactions, and disease manifestations. CA inhibited ZIKV infection in vitro with ECvalues of 0.60 μM in Vero E6 cells, 0.75 μM in Huh7 cells, and 1.69 μM in A549 cells, while exhibiting low cytotoxicity (CC > 50 μM). Mechanistic experiments revealed that CA curtailed viral RNA accumulation, decreased NS3 protein levels, and lowered the production of infectious progeny virus. In a ZIKV infection model using A129 mice, CA administration decreased viremia, improved survival, minimized weight loss, and attenuated neuropathological damage. Transcriptomic profiling of infected cells, supported by qPCR validation, highlighted that CA attenuates the ZIKV-induced dysregulation of host immune responses, particularly those associated with TNF signaling pathways. Notably, qPCR analysis of inflammatory genes, including TNFAIP3, CXCL8, and CXCL1, confirmed that CA mitigates both virus-induced and TNF-α-driven increases in these inflammatory markers in Huh7 cells. Taken together, these findings suggest that CA not only modulates viral replication but also dampens inflammatory responses linked to ZIKV pathogenesis, providing strong support for its further development as a potential antiviral agent.

Affiliation

Amna Shafqat

External References

PubMed ID:
41950870

Comments

Sign in or create a free account to join the conversation.

Sign in to comment

Be the first to comment.

More Research Abstracts

View All Abstracts
In Vitro Study

Pharmacological properties and the impact of caffeic acid-entrapped liposomes on triple-negative breast cancer cell lines exposed to doxorubicin.

Mar 27, 2026 Ioana-Lavinia Dejeu, Diana Olteanu, Simona Clichici, Ioana Baldea, Olga Soritău, Olimpia-Daniela Frenț, Nicole Alina Marian, Mariana Eugenia Mureșan, Paula Svera, Eleonora Marian, George Emanuiel Dejeu, Laura Grațiela Vicaș, Gabriela Adriana Filip

Antioxidants (Basel)

Trusted By Professionals and Teams:

The National Health Federation
Stand For Health Freedom
Global Healing Institute
Global Wellness Forum
MAHA Action
Myers Detox
Natural News
Mercola.com

Unlock Evidence-Based Health Research

Join 500,000+ members accessing 10,000+ natural health topics.

Subscribe to our informative Newsletter & Receive

Cancer Fighting Foods Ebook

Our newsletter serves 500,000 with essential news, research & healthy tips, daily.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of GreenMedInfo or its staff.