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Alaunos Reports New Preclinical ALN1003 Data Showing Lower Liver Weight After Adjustment for Body Fat Percentage in 48-Day DIO Mouse Study

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Alaunos Therapeutics (Nasdaq:TCRT) reported new preclinical data from a 48-day diet-induced obesity mouse Study 1 of ALN1003, its oral small-molecule metabolic candidate.

ALN1003-treated animals showed significantly lower liver weight after adjustment for body fat percentage, with very low p-values, aligning with previously reported liver histology, liver-injury markers, HOMA-IR, and adipose endocrine biomarkers.

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Positive

  • ALN1003-treated mice showed significantly lower liver weight after body-fat adjustment (ANCOVA p=0.000005; HC3 p=0.000015)
  • Previously reported 43% reduction in absolute liver weight versus selected controls in DIO Study 1
  • Lower mean NAFLD Activity Score in selected liver samples (2.7 vs 5.0 controls)
  • Significantly lower liver-injury markers ALT, AST, and ALP in ALN1003-treated animals
  • Lower fasting insulin and HOMA-IR, remaining significant after body-fat adjustment (ANCOVA p=0.0006; HC3 p=0.0014)
  • Higher adiponectin and adiponectin-to-leptin ratio, with numerically lower leptin in ALN1003-treated mice

Negative

  • Study described as non-GLP, indicating data come from an early, non-Good Laboratory Practice setting
  • Liver pathology review characterized as a limited blinded pilot on selected liver samples
  • Company notes pathology findings do not establish MASLD resolution, fibrosis reversal, inflammation improvement, or clinical efficacy
  • All results are preclinical in a 48-day mouse DIO model, not human clinical data

News Market Reaction – TCRT

+13.94%
4 alerts
+13.94% Session close to close
+5.1% Peak Tracked
$60.32M Market Cap
0.8x Rel. Volume

In the Jun 29 session, TCRT gained 13.94%, reflecting a significant positive market reaction. Argus tracked a peak move of +5.1% during that session. Our momentum scanner triggered 4 alerts that day, indicating moderate trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

The stock surged +13.9% in the session following this news. A strong positive reaction aligns with p...
Analysis

The stock surged +13.9% in the session following this news. A strong positive reaction aligns with prior ALN1003 readouts that saw mostly favorable moves after preclinical news. However, substantial financing needs and mixed‑shelf capacity up to $50,000,000 leave dilution and capital‑raising risk as key overhangs.

Key Figures

Study duration: 48 days Liver weight ANCOVA p‑value: p=0.000005 Liver weight HC3 p‑value: p=0.000015 +4 more
7 metrics
Study duration 48 days Non‑GLP diet‑induced obesity mouse Study 1 of ALN1003
Liver weight ANCOVA p‑value p=0.000005 Liver weight adjusted for body fat percentage vs controls
Liver weight HC3 p‑value p=0.000015 Sensitivity analysis with heteroscedasticity‑robust HC3 standard errors
NAS scores 2.7 vs 5.0 Mean NAFLD Activity Scores in selected ALN1003 vs control liver samples
Liver weight reduction 43% Previously reported reduction in absolute liver weight in DIO Study 1
HOMA‑IR ANCOVA p‑value p=0.0006 HOMA‑IR after adjustment for percentage body fat
HOMA‑IR HC3 p‑value p=0.0014 HC3 robust sensitivity analysis for HOMA‑IR

Historical Context

4 past events · Latest: May 26 (Positive)
Pattern 4 events
Date Event Sentiment 24h Move Catalyst
May 26 Integrated ALN1003 data Positive +1.2% Integrated non‑GLP DIO mouse data showing broad metabolic improvement with ALN1003.
May 18 ALN1003 biomarker data Positive -0.4% Updated ALN1003 preclinical data on insulin‑resistance biomarkers and liver histology.
May 04 VBIO GC appointment Positive +3.2% Valion Bio appointed an experienced General Counsel to support regulatory and capital plans.
Mar 02 ALN1003 proof‑of‑concept Positive +4.1% Positive non‑GLP ALN1003 DIO mouse proof‑of‑concept with weight and liver‑health benefits.

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

Pattern Detected

Recent ALN1003 preclinical updates have generally coincided with modestly positive next‑day moves, with only one minor divergence.

Key Terms

ancova, heteroscedasticity-robust hc3 standard errors, homa-ir, masld, +1 more
5 terms
ancova technical
"after adjustment for body fat percentage in a standard ANCOVA analysis (p=0.000005)"
Analysis of covariance (ANCOVA) is a statistical method that compares outcomes across groups while adjusting for one or more other factors that could skew results, like baseline health or initial measurements. Think of it as comparing runners’ finish times after accounting for different starting points; for investors, ANCOVA matters because it helps determine whether reported effects in clinical trials or business studies are real or simply due to preexisting differences, which influences valuation and regulatory confidence.
heteroscedasticity-robust hc3 standard errors technical
"confirmed using heteroscedasticity-robust HC3 standard errors as a sensitivity analysis"
A statistical adjustment used when running regressions that makes the reported uncertainty (standard errors) reliable even if the variability of the data differs across observations. Think of it as correcting for uneven measurement noise—like reweighing results when some scales are less consistent—so hypothesis tests and confidence intervals about relationships (e.g., earnings vs. stock returns) are not misleading. Investors rely on these corrected errors to judge how trustworthy reported statistical links are.
homa-ir medical
"lower HOMA-IR, an insulin-resistance-related biomarker, and favorable adipose endocrine signaling"
HOMA-IR is a calculated score that estimates how resistant a person’s cells are to insulin, using routine fasting blood glucose and insulin measurements. Investors track changes in HOMA-IR in clinical data because it acts like a simple gauge of metabolic effect: improvements suggest a therapy could meaningfully treat or prevent diabetes-related conditions, which informs commercial potential, regulatory outlook and market valuation.
masld medical
"These limited pilot pathology findings do not establish MASLD resolution, fibrosis reversal"
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a chronic condition where excess fat builds up in the liver due to underlying metabolic problems like insulin resistance, obesity, or high blood lipids. Think of the liver like a kitchen filter getting clogged with grease; over time that buildup can reduce function and lead to inflammation or scarring, which matters to investors because it signals a large, growing market for diagnostics, treatments, and related medical services.
non-glp technical
"from its previously reported non-Good Laboratory Practice (non-GLP) diet-induced obesity"
Non-GLP describes laboratory studies or tests conducted without following formal government-quality and documentation standards called Good Laboratory Practice. For investors, non-GLP results can still show early promise—think of a rough prototype or internal check—but they carry more uncertainty and usually won’t be accepted by regulators as definitive evidence, so they require confirmatory, GLP-compliant work before being relied on for approvals or major financial decisions.

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  • This statistical finding supports a lower liver-weight signal after adjustment for body fat percentage, suggesting the finding was not fully explained by measured body fat in this model
  • Liver-weight findings are directionally consistent with previously disclosed data on lower liver injury enzymes, lower NAFLD Activity Scores (NAS), lower HOMA-IR, an insulin-resistance-related biomarker, and favorable adipose endocrine signaling

FORT LAUDERDALE, Fla., June 29, 2026 (GLOBE NEWSWIRE) -- Alaunos Therapeutics, Inc. (Nasdaq: TCRT), an early-stage biotechnology company developing novel therapeutics, today announced a new preclinical statistical analysis of liver weight adjusted for body fat percentage from its previously reported non-Good Laboratory Practice (non-GLP) diet-induced obesity (DIO; high fat diet) mouse Study 1 of ALN1003, the Company’s investigational oral, non-hormonal, non-incretin small-molecule metabolic candidate.

As depicted in the figure below, in the 48-day DIO Study 1, ALN1003-treated animals had lower liver weight than controls after adjustment for body fat percentage in a standard ANCOVA analysis (p=0.000005), with the same conclusion confirmed using heteroscedasticity-robust HC3 standard errors as a sensitivity analysis (p=0.000015). This statistical finding indicates that the lower liver weight associated with ALN1003 treatment was not fully explained by measured body fat percentage in this model. While this analysis does not establish the specific mechanism, it provides supportive evidence for further controlled preclinical evaluation of ALN1003’s liver-related effects.

Supportive Liver-Related Analyses

This body-fat-adjusted liver-weight finding is directionally consistent with previously disclosed findings from DIO Study 1, including selected liver histology, liver marker, HOMA-IR, and adipose endocrine biomarker results:

  • Liver histology and liver markers: The body-fat-adjusted liver-weight finding is directionally consistent with a previously reported blinded pilot pathology review of selected liver samples. In that review, ALN1003-treated animals showed qualitative findings consistent with lower hepatic steatosis and lower mean NAS scores in samples selected (2.7 compared with 5.0 for selected controls), alongside a 43% reduction in absolute liver weight and significantly lower liver-injury markers (ALT, AST, and ALP). These limited pilot pathology findings do not establish MASLD resolution, fibrosis reversal, inflammation improvement, or clinical efficacy.
  • Insulin-resistance-related biomarkers: Alaunos previously disclosed that ALN1003-treated animals had lower fasting insulin and lower HOMA-IR, a calculated fasting glucose/insulin index commonly used as an insulin-resistance-related biomarker. The HOMA-IR finding remained statistically significant after adjustment for percentage body fat (ANCOVA p=0.0006; HC3 robust sensitivity p=0.0014). This body-fat-adjusted liver-weight finding aligns with the broader findings of lower fasting insulin and lower HOMA-IR previously disclosed.
  • Adipose endocrine biomarkers: Alaunos previously disclosed numerically lower leptin, significantly higher adiponectin, and a significantly higher adiponectin-to-leptin ratio in DIO Study 1. The finding that liver weights are lower even when controlling for body fat percentage is directionally consistent with these favorable adipose endocrine biomarker changes. These findings support further evaluation of ALN1003’s effects on adipose endocrine signaling and liver-related measures.

Scatterplot of Body Fat % versus Liver Weight in DIO Study 1

“This analysis adds an important supportive piece to the ALN1003 preclinical dataset,” said Holger Weis, CEO of Alaunos. “In the 48-day DIO mouse study, ALN1003-treated animals showed lower liver weight after adjustment for body fat percentage, which is directionally consistent with our previously reported liver marker, selected histology, HOMA-IR, and adipose endocrine biomarker findings. These findings support continued development of ALN1003 and further controlled studies to evaluate formulation, exposure-response, tolerability, and MASH-relevant liver biology.”

About ALN1003

ALN1003 is an investigational oral metabolic therapeutic being evaluated for potential relevance to multiple components of metabolic dysfunction, including insulin resistance, adipose tissue signaling, and hepatic lipid metabolism. Preclinical studies to date suggest potential relevance across metabolic syndrome and related conditions, including obesity, metabolic dysfunction-associated steatotic liver disease (MASLD), and insulin resistance.

Alaunos has published a non-confidential investor presentation, Obesity and Metabolic Disorders Program — Results of Studies of ALN1003 in Diet-Induced Obese Mouse Model (May 2026), containing the previously disclosed integrated data summaries, statistical analyses, representative liver histology images, and study conclusions referenced above. The presentation is available on the Investors section of the Company's website at www.alaunos.com.

About Alaunos Therapeutics

Alaunos Therapeutics is a biotechnology company focused on developing novel therapeutics. The Company’s obesity and metabolic disorders program is advancing ALN1003, an oral small-molecule candidate being evaluated as a potential differentiated, non-hormonal, non-incretin approach for obesity- and metabolic-disease-relevant biology.

Cash Position and Important Limitations

As previously disclosed, as of March 31, 2026, the Company had cash and cash equivalents of approximately $0.354 million. The Company intends to pursue additional financing to support continued operations and advancement of its preclinical obesity and metabolic disorders program.

These findings are based on non-GLP preclinical studies and should be interpreted with appropriate caution. Limitations include limited sample sizes; histological analysis limited to a sample of available livers; single-timepoint biomarker assessments; known constraints of HOMA-IR interpretation in rodent models; qualitative/semi-quantitative pathology scoring; the post hoc nature of the body-fat-adjusted liver-weight analysis and nominal p-values; liver weight as an indirect liver-related measure rather than a direct quantification of hepatic lipid content. ALN1003 has not been evaluated in human clinical trials, and its safety and efficacy in humans have not been established. Findings from mouse studies may not translate to human disease.

Cautionary Note Regarding Forward-Looking Statements

This press release contains forward-looking statements. Forward-looking statements are statements that are not historical facts, and in some cases can be identified by terms such as "may," "will," "could," "expects," "plans," "anticipates," "believes" or other words or terms of similar meaning. These statements include, but are not limited to, statements regarding Alaunos Therapeutics, Inc.'s ("Alaunos" or "the Company") business and strategic plans, the timing of the Company's research and development programs, including potential data read-out dates as well as any potential patent filings for the Company's obesity and metabolic disorders program, statements regarding the interpretation of liver-weight/body-fat-adjusted analyses, liver-related effects, HOMA-IR, adipose endocrine biomarkers, future controlled studies, MASH-relevant liver biology, financing, and the availability or content of investor materials.

These forward-looking statements are based on current expectations and assumptions that are subject to risks and uncertainties, which could cause actual results to differ materially. Important factors that could cause actual results to differ materially include, but are not limited to: changes in the Company's operating plans that may impact its cash expenditures; uncertainties built into research and development such as preclinical mouse data not translating to human trials, or challenges in scaling up formulations, including the risk that early non-GLP study results may not be replicated in confirmatory studies or pose safety concerns in IND-enabling studies; delays or failures in future studies; whether Alaunos' product candidates will advance further in the clinical trial process, including getting approval by the U.S. Food and Drug Administration (FDA) or other foreign health authority to conduct clinical trials and whether and when, if at all, they will receive final approval from the FDA or equivalent foreign regulatory agencies and for which uses; challenges to the strength and enforceability of Alaunos' intellectual property rights (such as patent disputes); competition from other pharmaceutical and biotechnology companies (including in the crowded obesity treatment market); funding shortages or market changes affecting our cash needs; tolerability issues from drug administration; the inherent uncertainties in drug development, including potential failures optimizing formulations, mechanistic studies, or large-animal pharmacokinetics that could delay IND-enabling activities; manufacturing and supply chain disruptions related to CMC work; and other factors discussed in our latest Form 10-Q and Form 10-K filed with the Securities and Exchange Commission (SEC). Forward-looking statements may also be protected if they are immaterial.

We caution you not to place undue reliance on these forward-looking statements, which speak only as of the date of this press release. Except as required by law, Alaunos undertakes no obligation to update these statements to reflect events that occur or circumstances that exist after the date hereof.

Investor / Media Contact

ir@alaunos.com

A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/65e51451-5817-42eb-8946-c1a4e458d96a


FAQ

What did Alaunos (TCRT) report about ALN1003 liver weight in the 48-day DIO mouse study?

Alaunos reported ALN1003-treated mice had lower liver weight after adjustment for body fat percentage. According to Alaunos, standard ANCOVA showed p=0.000005, with HC3 heteroscedasticity-robust sensitivity analysis confirming the result at p=0.000015 in the 48-day DIO Study 1.

How do the new ALN1003 liver-weight data relate to earlier liver histology findings for TCRT?

The new liver-weight analysis is directionally consistent with earlier liver histology and marker results. According to Alaunos, prior blinded pilot pathology showed lower hepatic steatosis, lower mean NAS scores (2.7 vs 5.0), and significantly lower liver-injury enzymes ALT, AST, and ALP in ALN1003-treated animals.

What insulin-resistance biomarker effects did ALN1003 show in Alaunos (TCRT) DIO Study 1?

ALN1003 was associated with lower fasting insulin and lower HOMA-IR in DIO Study 1. According to Alaunos, HOMA-IR remained statistically significant after adjusting for percentage body fat (ANCOVA p=0.0006; HC3 robust sensitivity p=0.0014), supporting insulin-resistance-related biomarker improvements.

What adipose endocrine biomarker changes were observed with ALN1003 in Alaunos TCRT preclinical data?

ALN1003-treated mice showed numerically lower leptin and significantly higher adiponectin and adiponectin-to-leptin ratio. According to Alaunos, the body-fat-adjusted lower liver weight is directionally consistent with these favorable adipose endocrine biomarker changes and supports further evaluation of adipose endocrine signaling.

Do the ALN1003 preclinical liver findings for Alaunos (TCRT) prove MASLD or MASH efficacy?

The preclinical data do not establish MASLD or MASH clinical efficacy. According to Alaunos, the limited pilot pathology findings do not demonstrate MASLD resolution, fibrosis reversal, inflammation improvement, or clinical benefit, but instead support further controlled preclinical evaluation of liver-related effects.

What is the significance of ALN1003 being tested in a non-GLP DIO mouse study for Alaunos (TCRT)?

ALN1003 data come from a previously reported non-GLP diet-induced obesity mouse Study 1. According to Alaunos, these early-stage, non-Good Laboratory Practice results provide supportive evidence for continued development and additional controlled studies, but are not a substitute for formal GLP or human clinical trials.