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Insilico Medicine and Atossa Therapeutics Publish AI-Driven Study in Nature Scientific Reports Identifying (Z)-Endoxifen as a Potential Therapeutic Candidate for Glioblastoma

Key Takeaway: Insilico Medicine and Atossa Therapeutics have published a study in Nature Scientific Reports, exploring the potential of (Z)-endoxifen as a therapeutic candidate for glioblastoma multiforme. The research utilized AI-powered methods to analyze over 900 cancer indications, identifying GBM as a promising target. Laboratory results support endoxifen's efficacy in suppressing GBM cell proliferation and inducing apoptosis.
Price reaction · baseline $11.13 (2025-12-01 close) · hit pre-market · 1 other ATOS headline(s) in the window, move may be shared
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-5.6%
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day 3 · peak
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Market Sentiment Analysis

POSITIVE FACTORS

  • Identification of (Z)-endoxifen as a potential treatment for glioblastoma.
  • AI-driven analysis reveals strong therapeutic potential for endoxifen.
  • Collaboration highlights innovative approaches in drug repurposing.

BiopharmaWatch Analysis

From our catalyst data and publicly available data · not financial advice
Cash runway
~8 mo
Medium dilution risk
Lead asset
endoxifen
Phase 2 · Breast Neoplasms

Full Press Release Details

CAMBRIDGE, Mass.,Dec. 2, 2025/PRNewswire/ -- Insilico Medicine ("Insilico"), a global leader in AI-powered drug discovery, and Atossa Therapeutics ("Atossa") (Nasdaq:ATOS), a clinical-stage biopharmaceutical company developing novel treatments for breast cancer and other serious conditions, announce the publication of a joint study evaluating the potential of (Z)-endoxifen for glioblastoma multiforme (GBM). The peer-reviewed article, now published inNature's Scientific Reports, represents one of the most comprehensive AI-enabled analyses to date exploring whether endoxifen, an active metabolite of tamoxifen with known activity in endocrine-resistant breast cancer, may offer new therapeutic opportunities for one of the deadliest malignant brain tumors in adults. The study aimed to identify new oncology indications with high therapeutic potential for endoxifen, as monotherapy or in combination, by applying Insilico's AI-poweredPandaOmicsplatform across a wide range of cancer types based on its mechanisms of action. Through this systematic evaluation, GBM emerged as a top candidate for further investigation.
The publication highlights progress in understanding glioblastoma, an aggressive primary brain tumor with a five-year survival rate of roughly 4%. By applying multi-omics and AI-enabled methods—including transcriptomic integration, computational modeling, single-cell sequencing, survival analysis, and experimental validation—the study offers mechanistic insights that support further exploration of endoxifen's potential role in this setting.
(Z)-Endoxifen, already clinically active in hormone-resistant breast cancer and known to act through both estrogen-dependent and estrogen-independent mechanisms, has long been considered a promising molecule for broader oncology applications, but has not been systematically explored in GBM. Using PandaOmics, researchers evaluated more than 900 cancer indications with weighted transcriptomic signatures from endoxifen-treated datasets. PandaOmics combined differential expression, pathway enrichment, protein–protein interaction networks, mechanistic NLP, and disease unmet-need modeling, ultimately ranking GBM among one of the highest-opportunity indications.
AI-driven analyses identified more than 1,400 genes shared between GBM tumors and endoxifen-treated cells, revealing strong reversal of biological programs that drive tumor growth and treatment resistance. Endoxifen was predicted to counteract pathways associated with uncontrolled proliferation, inflammation, metabolic dysregulation, and aggressive tumor behavior. Single-cell sequencing further pinpointed key malignant-cell genes linked to poor survival and aggressive subtypes, all of which were downregulated by endoxifen.

"This collaboration with Insilico Medicine provides a whole new indication in which we might explore the utility of endoxifen, and potentially significant new opportunities to address an extremely underserved set of cancer patients," said Steven Quay, M.D., Ph.D., CEO of Atossa Therapeutics. "Most of our joint projects have focused on advancing women's health, but this study allowed us to extend our work into glioblastoma, a disease with an urgent and unmet need, and not unlike other highly ranked indications, including but not limited to Duchenne muscular dystrophy (DMD) and multiple gynecologic-related cancers for which (Z)-Endoxifen may have excellent therapeutic outcomes. The results of our collaboration with Insilico highlight how AI-enabled discovery can uncover entirely new opportunities for a well-characterized molecule like endoxifen."

Laboratory validation closely matched the computational predictions.In vitro, (Z)-endoxifen significantly suppressed GBM cell proliferation and induced apoptosis, demonstrating greater cytotoxic activity than high-dose temozolomide and showing enhanced effects in combination.In vivostudies confirmed that endoxifen was well tolerated across all doses. Together, the multi-omic analyses and experimental findings highlight endoxifen as a promising therapeutic candidate for GBM and showcase how AI-powered discovery can reveal new opportunities for drug repurposing and cancer treatment innovation.

"Atossa is deeply committed to scientific leadership in the prevention and treatment of high risk breast cancers, and Insilico is honored to collaborate with the company to advance genuine innovation and expand indications across different areas of oncology," said Alex Zhavoronkov, Ph.D., Founder and CEO of Insilico Medicine."This publication represents one of the early fruits of our joint research, and much of our collaborative work remains unpublished. We are hopeful that these efforts will ultimately translate into meaningful therapeutic programs."

Harnessing state-of-the-art AI and automation technologies, Insilico has significantly improved the efficiency of preclinical drug development. While traditional early-stage drug discovery typically requires 3 to 6 years, from 2021 to 2024 Insilico nominated 20 preclinical candidates, achieving an average turnaround - from project initiation to preclinical candidate (PCC) nomination - of just 12 to 18 months per program, with only 60 to 200 molecules synthesized and tested in each program.

About Insilico Medicine

Insilico Medicine, a leading and global AI-driven biotech company, utilizes its proprietary Pharma.AI platform and cutting-stage automated laboratory to accelerate drug discovery and advance innovations in life sciences research. By integrating AI and automation technologies and deep in-house drug discovery capabilities, Insilico is delivering innovative drug solutions for unmet needs including fibrosis, oncology, immunology, pain, and obesity and metabolic disorders. Additionally, Insilico extends the reach of Pharma.AI across diverse industries, such as advanced materials, agriculture, nutritional products and veterinary medicine.
For more information, please visitwww.insilico.com.

About Atossa Therapeutics

Atossa Therapeutics, Inc. (Nasdaq:ATOS) is a clinical-stage biopharmaceutical company developing innovative therapies for significant unmet needs in breast cancer. Atossa's strategy emphasizes disciplined capital allocation, focusing resources on programs and data packages that can enable future regulatory submissions and potential commercialization.
For more information, visitwww.atossatherapeutics.comand refer to Atossa's filings with the U.S. Securities and Exchange Commission (SEC).

Frequently Asked Questions

What is the focus of the study published by Insilico and Atossa?

The study focuses on evaluating (Z)-endoxifen as a potential treatment for glioblastoma multiforme.

How was the potential of endoxifen assessed?

The potential of endoxifen was assessed using AI-powered methods across over 900 cancer indications.

What were the findings related to endoxifen's effects on GBM?

Endoxifen significantly suppressed GBM cell proliferation and induced apoptosis in laboratory studies.

What technology did Insilico use for this research?

Insilico utilized its AI-powered PandaOmics platform for the comprehensive analysis.

What is the significance of this research for cancer treatment?

The research highlights new therapeutic opportunities for endoxifen in treating glioblastoma, an aggressive cancer.

Last updated: Dec 2, 2025