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 Animal Study

Extracellular vesicle from Chlorella vulgaris alleviates hepatic fibrosis in a mouse model of metabolic dysfunction-associated steatotic liver disease.

Extracellular Vesicle fromAlleviates Hepatic Fibrosis in a Mouse Model of Metabolic Dysfunction-Associated Steatotic Liver Disease Through Modulation of Inflammatory Signaling.

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.

121 views
Share:

Abstract

Metabolic-dysfunction-associated steatotic liver disease (MASLD) is a major chronic liver disorder that progresses through inflammation and fibrosis to cirrhosis, yet no effective pharmacological therapy is available. Extracellular vesicles (EVs), which are key mediators of intercellular communication, have recently been reported to exert preventative and therapeutic effects in disease models. This study evaluated the oral efficacy of EVs derived from the microalga(CEVs) in an MASLD mouse model. Male C57BL/6J mice were assigned to a control group (normal diet), an MASLD group (choline- and methionine-deficient high-fat diet; CDHF), or CEV group (CDHF + CEVs). Twelve-week CEV administration did not alter the CDHF-induced reduction in circulating lipid levels or produce an increase in hepatic lipid content. However, CEV treatment significantly suppressed CDHF-induced fibrosis with collagen accumulation and reduced the mRNA expression of fibrosis-related genes, including,,, and. CEVs also significantly downregulated the expression of macrophage-derived inflammatory mediators-,,and-and reduced lobular inflammatory foci. These findings suggest that CEVs attenuate hepatic fibrosis by modulating early inflammation associated with steatosis and inhibiting hepatic stellate cell activation. This study supports the potential of CEVs as a novel oral intervention for slowing MASLD progression.

Affiliation

Hinata Harada

External References

PubMed ID:
42123321

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

Anticancer and antimicrobial activity of Chlorella vulgaris BA02 algae extract.

Jan 13, 2026 Agata Jabłońska-Trypuć, Urszula Wydro, Elżbieta Wołejko, Paweł Kondzior, Maja Leszczyńska, Carmen Estevan Martínez, Özge KarakaşMetin, Marzena Ewa Smolewska, Rafał Krętowski, Marzanna Cechowska-Pasko, Adam Cudowski

Molecules

In Vitro Study

A purified novel protein obtained from Chlorella vulgaris against Toxoplasma gondii.

Jan 9, 2026 Karlla Mayara Nunes de Sousa, Michele Aita Chaves, Maria Rafaele Oliveira Bezerra da Silva, Rinaldo Aparecido Mota, Renata Pimentel Bandeira de Melo, Romero Marcos Pedrosa Brandão Costa, Raquel Pedrosa Bezerra, Adauto Barbosa Neto, Lícya Samara da Silva Xavier, Isabelle Freire Tabosa Viana, Roberto Dias Lins Neto, Silvana de Fátima Ferreira da Silva, Daniela de Araújo Viana Marques

Curr Top Med Chem

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.