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VivoSim Labs Unveils New NAMkind™ Drug Toxicity Data at EUROTOX 2026, Demonstrating Predictive Superiority in Liver and Gastrointestinal Safety Across Small Molecules and ADCs

VivoSim reports EUROTOX data showing NAMkind’s long-duration human liver and gut models can dissect complex small‑molecule and ADC toxicities.

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VivoSim Labs (VIVS) presented new NAMkind™ liver and intestinal toxicity data at EUROTOX 2026, showing predictive performance across small molecules and antibody-drug conjugates (ADCs).

The 3D human liver platform maintained spheroid viability for up to 28 days and intestinal models preserved barrier function for about three weeks, enabling repeat-dose toxicity assessment. Studies ranked clinical safety risks for small-molecule sets, including thiazolidinediones and NSAIDs, and differentiated payload- versus linker-driven toxicities in ADCs. NAMkind™ testing identified trastuzumab deruxtecan as more hepatotoxic than trastuzumab emtansine and detected earlier GI barrier damage, with ileum tissue more sensitive to ADC-induced toxicity than colon.

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Positive

  • Liver platform supports up to 28-day spheroid viability for repeat-dose toxicity studies
  • Intestinal models maintain barrier integrity for about three weeks, enabling chronic exposure assessment
  • NAMkind™ ranked clinical safety risks for small-molecule reference sets, including thiazolidinediones and NSAIDs
  • Platform differentiated payload vs linker toxicities in ADCs, including higher hepatotoxicity for trastuzumab deruxtecan vs emtansine
  • Intestine model showed earlier TEER barrier deterioration and higher ADC toxicity sensitivity in ileum than colon

Negative

  • None.
Argus 15 min delay
-4.92% vs previous close $0.26 last price 190.0x rel. volume Open Argus
Details

Market reaction after EUROTOX clinical data: VIVS -4.92%

+9.0% Peak in 0 min
$0.25 $0.33 Day Range
$3.47M Market Cap

Following this news, VIVS has declined 4.92%, reflecting a moderate negative market reaction. Argus tracked a peak move of +9.0% during the session. Our momentum scanner has triggered 25 alerts so far, indicating elevated trading interest and price volatility. The stock is currently trading at $0.26. Trading volume is exceptionally heavy at 190.0x the average, suggesting significant selling pressure.

Data tracked by StockTitan Argus (15 min delayed). Upgrade to Gold for real-time data.

Market Context

The July 21 NAMkind commercial-sales announcement had a -10.87% 24-hour price reaction, while this E...
Analysis

The July 21 NAMkind commercial-sales announcement had a -10.87% 24-hour price reaction, while this EUROTOX release added platform evidence across ADCs and repeat-dose models; the prior reaction provides context, not a demonstrated response to the current release.

Key Figures

Liver spheroid viability duration: up to 28 days Intestinal barrier integrity duration: up to three weeks
Liver spheroid viability duration
up to 28 days
NAMkind Liver platform repeat-dose modeling
Intestinal barrier integrity duration
up to three weeks
NAMkind Intestine models

Historical Context

1 past event · Latest: Jul 21
1 event
  1. Jul 21

    NAMkind China sales

    24h Move
    -10.9%

    Initial paid China programs expanded NAMkind liver and GI commercial services

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Key Terms

adcs, transepithelial electrical resistance, new approach methodologies
3 terms
adcs medical
"including Antibody-Drug Conjugates (ADCs)"
Antibody-drug conjugates (ADCs) are targeted cancer medicines that combine an antibody, which seeks out specific markers on tumor cells, with a powerful drug payload that is released once the antibody binds its target. Think of them as a guided missile that delivers a toxic package directly to diseased cells to limit harm to healthy tissue. Investors watch ADC news closely because clinical trial results, manufacturing complexity and regulatory decisions can sharply change a biotech company’s value.
transepithelial electrical resistance technical
"transepithelial electrical resistance (TEER) identified mucosal barrier"
A laboratory measurement of how well a sheet of epithelial cells (the thin layers that line organs and surfaces) blocks the flow of ions, recorded as electrical resistance across that cell layer. Higher values mean the cell layer is tighter and less permeable, like better insulation or a stronger fence that prevents leaks. Investors see it reported in preclinical and drug-development studies because it is a common, quantifiable indicator of barrier integrity, drug effect, or toxicity for therapies and products that target or cross epithelial barriers.
new approach methodologies regulatory
"New Approach Methodologies (NAMs)"
New approach methodologies are modern ways to evaluate the safety and effects of chemicals, drugs, and products using lab-grown cells, computer models, and fast automated tests instead of traditional animal studies. They matter to investors because these methods can speed up development, lower testing costs, reduce regulatory risk, and create business opportunities for companies that provide or use them—think of replacing slow road tests with a faster, cheaper simulator.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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New data presented in Vienna highlights long-term repeat-dose modeling, mechanistic GI barrier profiling, and deconvolution of payload- and linker-dependent toxicities for complex modalities

SAN DIEGO, Sept. 16, 2026 (GLOBE NEWSWIRE) -- VivoSim Labs, Inc. (NASDAQ: VIVS) (“VivoSim” or the “Company”) unveils new clinical benchmark data at the 58th Congress of the European Societies of Toxicology (EUROTOX 2026) in Vienna, Austria, demonstrating the ability of its NAMkind™ 3D human liver and intestinal platforms to predict drug toxicity across small molecules and increasingly complex therapies, including Antibody-Drug Conjugates (ADCs).

The new data strengthens VivoSim's positioning in the growing market for human-relevant predictive toxicology and New Approach Methodologies (NAMs), as pharmaceutical companies increasingly look for better ways to identify safety risks before drug candidates enter expensive human clinical trials.

Drug-induced liver injury (DILI) and gastrointestinal (GI) toxicity remain leading causes of drug candidate attrition, while ADC therapies introduce additional safety challenges involving payload toxicity, linker behavior and off-target exposure. VivoSim's EUROTOX findings demonstrate how its long-duration, primary human cell-based models can help identify and differentiate these risks earlier in development, successfully ranking clinical safety risks for small-molecule reference sets such as thiazolidinediones and NSAIDs, while deconvoluting complex structural toxicities in advanced ADC modalities.

NAMkind™ Targets Liver and GI Toxicity Before the Clinic

VivoSim's NAMkind™ Liver platform supports up to 28-day liver spheroid viability, while its intestinal models maintain barrier integrity for up to three weeks, allowing researchers to evaluate repeat-dose effects that shorter-duration laboratory assays may not capture.

In studies being presented at EUROTOX, VivoSim's repeat-dose testing framework successfully ranked clinical safety risks across small-molecule reference compounds while also distinguishing payload- and linker-dependent toxicities in ADCs. The NAMkind™ Liver platform ranked trastuzumab deruxtecan as significantly more hepatotoxic than trastuzumab emtansine in the presented testing. In the NAMkind™ Intestine model, transepithelial electrical resistance (TEER) identified mucosal barrier deterioration before overt tissue cytotoxicity, with human ileum tissue demonstrating greater sensitivity to ADC-induced toxicity than colon tissue.

The findings carry particular weight as ADC development expands across oncology and other therapeutic areas, sharpening demand for technologies capable of determining where toxicity originates and which component of a complex drug is responsible.

Moving Beyond Detecting Toxicity

The broader commercial opportunity for VivoSim goes beyond simply detecting whether a drug candidate is toxic: it lies in helping pharmaceutical developers understand why toxicity occurs and whether it is likely to matter in humans.

“As global regulators like the FDA accelerate the transition away from traditional animal testing, biopharma leaders are seeking predictive human tools that eliminate translational surprises before clinical entry,” said Keith Murphy, Executive Chairman of VivoSim Labs. “Our latest data presented at EUROTOX demonstrate that the NAMkind™ platform doesn't just evaluate traditional small molecules with exceptional fidelity, it successfully deconvolutes the complex safety liabilities of next-generation modalities like ADCs. By identifying payload and linker toxicities early, we provide our commercial partners with the actionable intelligence needed to save years of development and millions in potential clinical failure.”

“Predicting organ-specific toxicity requires capturing the biology of chronic, repeat-dose exposure,” said Amar Sethi, M.D., Ph.D., Chief Scientific Officer of VivoSim Labs. “With our extended-culture platforms, we observe micro-architectural and functional degradation that traditional short-term assays may miss. Whether ranking clinical DILI risk across small-molecule analogs or pinpointing why trastuzumab deruxtecan exhibits distinct hepatic and ileal liabilities compared to emtansine, our multi-endpoint profiling gives biopharma teams human-relevant translational signatures to optimize compound selection and de-risk pipelines.”

FDA NAM Momentum Adds to the Opportunity

The EUROTOX presentation arrives as regulators, including the U.S. Food and Drug Administration (FDA), continue advancing frameworks for New Approach Methodologies and human-relevant alternatives to traditional animal testing.

That regulatory shift does not represent an endorsement of VivoSim specifically, but it creates a potentially favorable industry backdrop for validated technologies capable of generating predictive human safety information before clinical development.

The opportunity extends beyond detecting toxicity. If broader validation and pharmaceutical adoption follow, NAMkind™ and VitroSense™ could become part of the decision layer between drug discovery and human clinical trials, helping pharmaceutical companies determine which programs deserve additional time and development capital.

For VivoSim investors, the EUROTOX data mark a meaningful validation point in the developing commercial thesis behind NAMkind™ using 3D human biology and predictive toxicology to help pharmaceutical companies identify safety liabilities earlier, select stronger drug candidates and reduce costly failures later in development.

VivoSim's demonstrated ability to evaluate both traditional small molecules and increasingly important complex modalities such as ADCs positions its NAMkind™ platform to broaden its applications across pharmaceutical R&D.

About VivoSim Labs

VivoSim Labs, Inc. (“VivoSim” and the “Company”), is a pharmaceutical and biotechnology services company that is focused on providing testing of drugs and drug candidates in three-dimensional (“3D”) human tissue models of liver and intestine. The Company offers partners liver and intestinal toxicology insights using its new approach methodologies (“NAM”) models. The Company anticipates accelerated adoption of human tissue models following the U.S. Food and Drug Administration (“FDA”) Roadmap to refine animal testing requirements in favor of these non-animal NAM methods. VivoSim Labs operates from San Diego, CA. Visit www.vivosim.ai.

Forward-Looking Statements

Any statements contained in this press release that do not describe historical facts constitute forward-looking statements as that term is defined in the Private Securities Litigation Reform Act of 1995. Any forward-looking statements contained herein are based on current expectations but are subject to a number of risks and uncertainties. Forward-looking statements include statements regarding the Company’s cash on hand, revenue growth guidance and the Company’s progress in marketing contract research services using NAMs models to pharmaceutical companies. Such forward-looking statements are not guarantees of performance and actual actions or events could differ materially from those contained in such statements. These risks and uncertainties and other factors are identified and described in more detail in the Company’s filings with the SEC, including its Annual Report on Form 10-K filed with the SEC on July 14, 2026, as such risk factors are updated in its most recently filed Quarterly Report on Form 10-Q filed with the SEC on August 12, 2026. You should not place undue reliance on these forward-looking statements, which speak only as of the date that they were made. These cautionary statements should be considered with any written or oral forward-looking statements that the Company may issue in the future. Except as required by applicable law, including the securities laws of the United States, the Company does not intend to update any of the forward-looking statements to conform these statements to reflect actual results, later events, or circumstances or to reflect the occurrence of unanticipated events. 

Contact:
Investor Relations
info@vivosim.ai
VivoSim Labs, Inc.


FAQ

AI-generated questions and answers. How Rhea-AI works. Not financial advice.

What specific toxicities did NAMkind™ identify for the ADCs studied?

In the NAMkind™ Liver platform, trastuzumab deruxtecan was ranked as significantly more hepatotoxic than trastuzumab emtansine. In the NAMkind™ Intestine model, transepithelial electrical resistance (TEER) revealed mucosal barrier deterioration before overt cytotoxicity, and human ileum tissue showed greater sensitivity to ADC-induced toxicity than colon tissue.

How does NAMkind™ address chronic or repeat-dose drug toxicity?

NAMkind™ Liver supports up to 28-day liver spheroid viability and the intestinal models preserve barrier integrity for up to three weeks. These extended-culture systems allow assessment of chronic, repeat-dose exposure, capturing micro-architectural and functional degradation that, in the company’s view, traditional short-term assays may miss.

Which types of small-molecule compounds were used as clinical reference sets?

The studies used small-molecule reference sets that included thiazolidinediones and nonsteroidal anti-inflammatory drugs (NSAIDs). Within these sets, NAMkind™’s repeat-dose testing framework successfully ranked clinical safety risks.

How does the regulatory environment relate to VivoSim’s NAMkind™ platform?

Regulators, including the U.S. Food and Drug Administration, are advancing frameworks for New Approach Methodologies and human-relevant alternatives to traditional animal testing. The company states that this does not represent an endorsement of VivoSim specifically, but it may create a favorable backdrop for validated technologies that generate predictive human safety data before clinical development.

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