---
title: "Marvel Biosciences Reports Positive Preclinical Data Demonstrating MB-204 Reverses Behavioural and Cognitive Deficits in a Mouse Model of Fragile X | MBCOF Stock News"
type: "News"
locale: "en"
url: "https://longbridge.com/en/news/294937549.md"
description: "Marvel Biosciences reported positive preclinical data for its lead drug candidate MB-204 in a mouse model of Fragile X syndrome. The study, conducted via the FRAXA Drug Validation Initiative, showed that MB-204 significantly reversed behavioral and cognitive deficits, with durable carry-over effects after treatment cessation. This marks the third independent autism spectrum disorder model demonstrating MB-204's efficacy, strengthening the scientific foundation for advancing the drug toward clinical trials."
datetime: "2026-08-05T01:00:00.000Z"
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  - [en](https://longbridge.com/en/news/294937549.md)
  - [zh-HK](https://longbridge.com/zh-HK/news/294937549.md)
generator: "portal-rs"
---

# Marvel Biosciences Reports Positive Preclinical Data Demonstrating MB-204 Reverses Behavioural and Cognitive Deficits in a Mouse Model of Fragile X | MBCOF Stock News

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CALGARY, Alberta, Aug. 05, 2026 (GLOBE NEWSWIRE) -- **Marvel** **Biosciences** **Corp.** **(TSXV:** **MRVL** **|** **OTC:** **MBCOF**), and its wholly-owned subsidiary, Marvel Biotechnology Inc. **(collectively the “Company” or “Marvel”),** a drug discovery company developing novel therapeutics for autism spectrum disorder and related conditions, is pleased to announce positive results from its preclinical Fragile X study conducted through the FRAXA Drug Validation Initiative in collaboration with the FRAXA Research Foundation.

This announcement represents another significant milestone in the continued de-risking of Marvel Biosciences' lead drug candidate, MB-204. By demonstrating **statistically significant improvements in both behavioural and cognitive function in a Fragile X mouse model**, including durable carry-over effects after treatment ceased, MB-204 has now generated **compelling efficacy data across three independent preclinical models of autism spectrum disorder (ASD)**, including Rett syndrome (Mecp2), the Oprm1 model of ASD, and now Fragile X syndrome (Fmr1). Collectively, these results further strengthen the scientific foundation supporting MB-204's advancement toward clinical trials while expanding its potential commercial opportunity across multiple orphan neurological indications with significant unmet medical need.

Fragile X syndrome (FXS) is the most common inherited cause of intellectual disability and one of the most common single-gene causes of autism spectrum disorder. It is caused by mutations in the *FMR1* gene on the X chromosome. As males have only one X chromosome, they are typically more severely affected than females. Current epidemiological studies estimate that FXS occurs in approximately **1 in 7,000 males** and **1 in 11,000 females** in the general population and as such it qualifies as an orphan disease in both the United States and Europe.

The study was conducted through the FRAXA Drug Validation Initiative (FRAXA-DVI), an independent program that evaluates promising therapeutic candidates for Fragile X syndrome. The study evaluated MB-204, Marvel’s lead compound, in low- and high-dose treatment groups administered orally once daily in FMR1 knockout (KO) mice. FMR1 mice were treated for approximately two weeks and subjected to a standard battery of model-specific behavioural and cognitive tests, then retested two weeks after treatment ceased to study the carry-over effect of the drug. Overall, MB-204 restored **every behavioural and cognitive endpoint studied** **in Fragile X mice toward wild-type (normal) levels**, including improvements in novel object recognition (cognition), open-field test (locomotor activity), self-grooming (stereotypy), nesting (hippocampal dependent activity of daily living), hyphoneophagia (anxiety). Key highlights included:

After Two Weeks On Treatment:

-   MB-204 produced clear dose-dependent behavioural eﬀects in the Fmr1 knockout mouse on every endpoint, with the high-dose group showing the strongest and most consistent eﬃcacy.
-   Animals receiving the high-dose treatment generated response patterns statistically consistent with wildtype-like performance (WT) in open-field test activity, self-grooming, nesting and hyponeophagia (p<0.0001 vs KO vehicle), although nesting remained diﬀerent from WT.
-   The low-dose group produced significant but non-WT-like eﬀects in open field, self-grooming and hyponeophagia (p<0.0001, p<0.017 and p<0.0001 vs KO vehicle, respectively) but had no detectable eﬀect on nesting.
-   Both treatment groups restored novel-object discrimination (p<0.0001 for both doses), demonstrating significant improvement in recognition memory, a key measure of cognitive function.

After Two Weeks Off Treatment (Carry-Over Effect):

-   The high-dose treatment group retained significant eﬀects relative to KO vehicle in open field (p=0.003) and self-grooming (p=0.0015), although these responses were attenuated and no longer WT-like.
-   The high-dose group also retained significant novel-object discrimination when tested with a completely diﬀerent object set (p=0.0052), supporting a persistent recognition-memory eﬀect rather than simple memory for the original objects.
-   Overall, results support robust on-treatment eﬃcacy and a measurable, though reduced, post-washout eﬀect in the high-dose treatment group, while the low-dose treatment was insufficient to produce a durable post-treatment benefit.

*“This is now the third ASD model and second independent group that has demonstrated the potential of MB-204 to restore behavioural and cognitive function to near normal levels in mice regardless of the genetic cause of the neurodevelopmental disorder”* commented **Dr. Mark Williams, CSO of Marvel Biosciences**. *“We also confirmed a carry-over effect in a second model, suggesting MB-204 has a very attractive target product profile. We are very grateful to FRAXA for this collaboration and look forward to advancing MB-204 to the clinic”.*

This latest preclinical success in Fragile X syndrome marks the third autism-related model in which MB-204 has demonstrated the ability to restore behavioural and cognitive function toward normal levels, providing further validation of the drug's mechanism of action and strengthening the Company’s core investment thesis. Combined with previously reported positive results in the Rett syndrome (Mecp2) and Oprm1 ASD models, these findings continue to build a compelling preclinical package supporting the advancement of MB-204 toward clinical trials. The Company has also completed preclinical evaluation of MB-204 in a Shank3 model of Phelan-McDermitt syndrome and is awaiting final statistical analysis of the results. Marvel expects to report those results in a future announcement.

**About** **Marvel** **Biosciences** **Corp.**

Marvel Biosciences Corp. through its wholly-owned subsidiary Marvel Biotechnology Inc., is a Calgary-based biotechnology company developing new treatments for neurological diseases and neurodevelopmental disorders. Our lead drug candidate, MB-204, is a novel fluorinated derivative version of Istradefylline, an approved Parkinson’s drug and the only adenosine A2A receptor blocker currently on the market. Research shows that blocking the A2A receptor may help treat conditions such as autism, depression, and Alzheimer’s disease. Marvel is also exploring MB-204’s potential in rare disorders like Rett syndrome and Fragile X syndrome, aiming to bring new options to patients with few effective treatments.

**Contact Information: Marvel** **Biosciences** **Corp.**

J. Roderick (Rod) Matheson, Chief Executive Officer  
Email: rod@marvelbiosciences.com  
Dr. Mark Williams, President and Chief Science Officer  
Email: mark@marvelbiosciences.com  
Tel: 403 770 2469

Website: www.marvelbiotechnology.com **|** Twitter/X **|** LinkedIn

*Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is deﬁned in the policies* *of the TSXV) accepts responsibility for the adequacy or accuracy of this press release. All information contained in this news release with respect to the Company and its subsidiary,(collectively, the "Parties")* *were* *supplied* *by Marvel,* *respectively,* *for* *inclusion* *herein* *and* *each* *parties'* *directors* *and* *oﬃcers* *have* *relied* *on* *each* *other for* *any information* *concerning* *such* *Party.*

*This* *news* *release* *may* *contain* *forward-looking* *statements* *and* *other* *statements* *that* *are* *not* *historical facts. Forward-looking statements are often identiﬁed by terms such as "will", "may", "should", "anticipate", "expects"* *and* *similar* *expressions.* *All* *statements* *other* *than* *statements* *of* *historical* *fact,* *included* *in* *this* *release, including,* *without* *limitation,* *statements* *regarding* *the* *future* *plans* *and* *objectives* *of* *the* *Company* *are* *forward-looking statements that involve risks and uncertainties. There can be no assurance that such statements will prove to be accurate and actual results* *and future events could diﬀer materially from those anticipated* *in* *such statements.* *Important* *factors* *that* *could* *cause* *actual* *results* *to* *diﬀer* *materially* *from the* *expectations* *of the Company and include other risks detailed from time to time in the ﬁlings made by the Company under securities regulations.*

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