Vaccine protects against multiple fungal infections without hurting the gut

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by Leigh Hataway, University of Georgia

edited by Lisa Lock, reviewed by Andrew Zinin

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NXT-2 immunization elicits robust humoral responses in Japanese macaques. Credit: Microbiology Spectrum (2026). DOI: 10.1128/spectrum.01047-26

A vaccine created by University of Georgia researchers to battle multiple life-threatening fungal infections has successfully achieved protective immunity in preclinical animal models while maintaining the biodiversity of the gut microbiome, according to a new study published in Microbiology Spectrum.

This is the first study to evaluate a vaccine's effect on naturally occurring fungal and bacterial communities in the gut, known as the microbiome. The vaccine, called NXT-2, could be the first to protect against and potentially treat pathogenic fungal infections.

But not all fungi are bad. In fact, strains of Candida and Aspergillus can be found in healthy gut microbiomes. It's only when their growth goes unchecked that they can pose a threat.

The findings confirm that the vaccine provides protection against pathogenic fungi while not significantly altering resident fungal or bacterial populations in the gut.

"We have previously shown that the NXT-2 vaccine is very good at eliminating or controlling harmful fungal infections," said Karen Norris, corresponding author of the study and a professor in UGA's College of Veterinary Medicine. "It was important to determine whether that immune response would disrupt the balance of beneficial microbes in the gut.

"This study shows that there are no significant alterations following successful immunization with NXT-2."

Fungal infections kill millions and cost billions each year

The vaccine has already proven effective against the three most common fungal pathogens in four preclinical animal models. These three fungi are responsible for more than 80% of fatal fungal infections.

It's also shown efficacy against Candida auris, a type of yeast that spreads easily, particularly in health care settings, and can lead to severe illness or even death. C. auris is also often resistant to multiple antifungal medications, prompting the Centers for Disease Control and Prevention to label it an urgent public health threat.

Fungal infections kill millions each year and cost billions in health care expenses. They also double hospitalization costs, double the length of hospital stays and double the risk of death in hospitalized patients, according to a previous UGA study.

There are no effective vaccines to protect against fungal infections. Current treatments can't keep up as fungi become increasingly resistant to medication. Some antifungal drugs have been shown to alter populations of nonharmful fungi and bacteria in the gut.

Previously considered a threat largely reserved for immunocompromised people, pathogenic fungal infections are increasing among the general population.

People with diabetes, chronic obstructive pulmonary disease or co-infections such as the flu are all at higher risk of developing fungal infections, according to previous research from Norris, former UGA postdoctoral fellow Emily Rayens and the UGA College of Public Health's José Cordero in 2022.

New study is one of the few to focus on vaccine effects on gut microbiome

Studies on how vaccines affect the gut microbiome remain limited. But research suggesting that the microbiome plays a key role in the immune response to and efficacy of vaccination is growing.

The composition of the gut microbiome varies greatly from person to person. Even the same person can experience shifts in bacteria and fungi over time. This study is the first comprehensive analysis of both bacterial and fungal communities following antifungal vaccination.

"Preserving the balance of the organisms that comprise the gut microbiome is critical," Norris said. "And these results support the further advancement of the first broadly protective fungal vaccine."

The gut microbiome of nonhuman primates closely resembles that of humans, enabling the researchers to examine the effect of NXT-2 on natural levels of bacteria and fungi in the digestive tract. The study suggests that the vaccine's antibodies target pathogenic fungi in invasive infections while leaving innocuous fungal populations alone.

More information

Kwadwo O. Oworae et al, Evaluating the impact of immunization with the "pan-fungal" vaccine, NXT-2, on the gut mycobiome and microbiome in non-human primates (NHPs), Microbiology Spectrum (2026). DOI: 10.1128/spectrum.01047-26

Key medical concepts

Candida auris

Clinical categories

Infectious diseases Provided by University of Georgia Who's behind this story?

Lisa Lock

BA art history, MA material culture. Former museum editor, paramedic, and transplant coordinator. Editing for Science X since 2021. Full profile →

Andrew Zinin

Master's in physics with research experience. Long-time science news enthusiast. Plays key role in Science X's editorial success. Full profile →

Citation: Vaccine protects against multiple fungal infections without hurting the gut (2026, September 8) retrieved 8 September 2026 from https://medicalxpress.com/news/2026-09-vaccine-multiple-fungal-infections-gut.html This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.