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YD Bio Highlights Peer-Reviewed Publication on New Computational Framework for Keratoconus Research

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YD Bio (Nasdaq: YDES) highlighted a peer‑reviewed open‑access publication in Bioengineering (2026, Vol. 13, Article 853), co-authored with Taipei Medical University and Taipei Medical University Hospital. The study presents a fully reproducible, data-driven framework using public gene and protein databases to investigate keratoconus.

Researchers created a Cargo Prioritization Score (CPS) to rank candidate molecules for potential stem-cell-derived exosome–based regenerative therapies, identifying proteins including COL1A1, FN1, COL4A1, COL3A1, COL5A1, and MMP1. According to YD Bio, the work is an early computational step to guide future laboratory validation and does not assess therapeutic safety or efficacy.

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Negative

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Market Context

YD Bio’s recent news record included a -17.75% 24-hour move after its July 2 footprint update. Again...
Analysis

YD Bio’s recent news record included a -17.75% 24-hour move after its July 2 footprint update. Against that backdrop, this publication is hypothesis-generating; validation and regulatory requirements remain key risks to watch.

Key Figures

Publication date: Aug. 4, 2026 Journal volume: Volume 13 Article number: Article 853
3 metrics
Publication date Aug. 4, 2026 Bioengineering study announcement
Journal volume Volume 13 Bioengineering publication
Article number Article 853 Bioengineering publication

Historical Context

5 past events · Latest: Jul 28 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jul 28 Pilot collaboration Positive +0.4% Cross-border pilot launched for physician-ordered cancer testing access in British Columbia
Jul 23 Conference exhibition Positive -7.7% BIO Asia-Taiwan exhibition highlighted ophthalmology, diagnostics, and clinical services
Jul 02 Laboratory expansion Positive -17.8% Laboratory licenses expanded authorized operations to 46 states plus territories
Apr 30 Earnings report Negative -5.9% Full-year results showed an $8.31M net loss despite revenue growth
Mar 31 Telehealth launch Positive -4.9% Nationwide telehealth platform launched across 44 states and territories

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

Pattern Detected

YD Bio’s operational announcements were followed by negative 24-hour moves in three of four cases, while earnings news also aligned negatively.

Key Terms

keratoconus, exosomes, corneal cross-linking, DNA methylation
4 terms
keratoconus medical
"The study explores potential stem-cell-based regenerative targets for keratoconus."
Keratoconus is an eye condition in which the cornea, the clear front surface of the eye, thins and bulges into a cone-like shape, causing distorted and often worsening vision. For investors it matters because changes in prevalence, advances in treatments, new diagnostic tools, or regulatory decisions can shift demand and revenue for medical devices, drugs and vision-care services—think of a camera lens warping and blurring the picture, creating market opportunities for firms that can fix it.
exosomes medical
"stem-cell-derived exosomes (small particles that cells use to communicate)"
Exosomes are tiny particles released by cells that carry proteins, genetic material, and other molecules from one cell to another. They act like biological messengers, helping cells communicate and coordinate their activities. For investors, understanding exosomes is important because they are being explored as potential tools for disease diagnosis and treatment, which could influence healthcare markets and innovation.
corneal cross-linking medical
"Current treatments such as rigid contact lenses, corneal cross-linking, and surgery"
Corneal cross-linking is a medical procedure that uses a light-activated treatment to strengthen the clear front layer of the eye, halting or slowing progressive thinning and bulging. For investors, it matters because it represents a growing demand for specialized devices, clinic services and reimbursements; successful treatments can reduce long-term costs and create recurring revenue streams similar to a one-time retrofit that preserves an expensive system from failing.
DNA methylation technical
"advancing DNA methylation–based cancer detection technology"
A chemical tag added to DNA that acts like a sticky note on a recipe, changing whether a gene is read without altering the underlying genetic code. For investors, DNA methylation matters because these tags can serve as measurable biomarkers for disease diagnosis, risk prediction, and treatment response, and they can be targets for drugs or diagnostic tests—factors that influence clinical value, regulatory approval, and market potential.

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

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Published in Bioengineering, a collaborative study with Taipei Medical University researchers identifies key molecular candidates to help guide the development of regenerative therapies for corneal disease.

TAIPEI, Taiwan, Aug. 04, 2026 (GLOBE NEWSWIRE) -- YD Bio Limited (“YD Bio” or the “Company”) (Nasdaq: YDES), a biotechnology company advancing DNA methylation–based cancer detection technology and ophthalmologic innovations, today highlighted the publication of a new peer-reviewed study in the journal Bioengineering, published by Multidisciplinary Digital Publishing Institute. Co-authored by YD Bio scientists and physician-researchers from Taipei Medical University (“TMU”) and Taipei Medical University Hospital (“TMUH”), the study explores potential stem-cell-based regenerative targets for keratoconus.

Publication Highlights

  • Open Access: The peer-reviewed study is freely available in Bioengineering (2026, Vol. 13, Article 853; https://doi.org/10.3390/bioengineering13080853).
  • Transparent Approach: The study introduces a fully reproducible, data-driven framework that analyzes public gene and protein databases to evaluate corneal disease.
  • Prioritization: Researchers established the Cargo Prioritization Score (“CPS”) to nominate a ranked shortlist of promising molecular candidates for future therapeutic development.
  • Cross-Sector Collaboration: The research highlights a successful scientific partnership across industry, clinical medicine, and academia.

Addressing an Unmet Need in Corneal Health Through a Data-Driven Framework for Discovery

The study illustrates how YD Bio’s data-driven approach to molecular medicine can be successfully applied to ophthalmology using public data.

Keratoconus is a common corneal disorder and a leading cause of corneal transplantation in young adults. Current treatments such as rigid contact lenses, corneal cross-linking, and surgery can help manage physical symptoms, but do not treat the underlying molecular causes of the disease. This leaves an unmet need for regenerative therapies. In addition, while stem-cell-derived exosomes (small particles that cells use to communicate) have emerged as a promising cell-free treatment modality, the specific active molecules these exosomes need to carry to be effective have remained largely undefined.

To address this knowledge gap, the research team analyzed publicly available genetic data on keratoconus. By identifying specific genes linked to tissue structure and immune responses, they developed CPS as a computational framework to shortlist candidate molecules. The resulting shortlist includes proteins such as COL1A1, FN1, COL4A1, COL3A1, COL5A1, and MMP1.

The authors emphasized that the computational study was designed to generate hypotheses and to help guide and prioritize future laboratory testing. The study does not evaluate any therapeutic products, nor does it purport to establish clinical safety or efficacy. Furthermore, the study identifies current data gaps to help focus future experimental validation. Any advancement of the candidate molecules toward preclinical or clinical development are subject to further research, rigorous validation, and applicable regulatory requirements.

Collaborative Milestones

The publication spans academia, clinical medicine, and industry, featuring co-authors from TMU and a corresponding author from the Department of Ophthalmology at TMUH. YD Bio’s Founder, Chairman, and Chief Executive Officer, Dr. Ethan Shen, also contributed as a co-author.

“We are pleased to support rigorous, reproducible research alongside clinician-scientists at Taipei Medical University and its affiliated hospital,” said Dr. Ethan Shen, Founder, Chairman, and Chief Executive Officer of YD Bio. “This peer-reviewed publication reflects our commitment to building an evidence-based foundation for our exosome and precision-medicine research. It represents an early, computational step whose candidate findings are intended to guide future laboratory validation.”

About YD Bio Limited

YD Bio is a U.S.-anchored public biotechnology company building an integrated healthcare platform spanning regulated molecular diagnostics, clinical services, precision medicine, and life science commercialization. The Company operates DNA methylation–based oncology testing programs in the United States under a laboratory-developed test strategy and supports pharmaceutical and biotechnology partners through compliant life science distribution and clinical trial supply chain services. In addition, the Company maintains regulated ocular health commercialization operations and a consumer health distribution platform in Asia. For more information, visit ir.ydesgroup.com and follow the Company on Facebook, X, Threads, Instagram, and LinkedIn.

Forward-Looking Statements

This press release contains forward-looking statements within the meaning of Section 27A of the Securities Act of 1933, as amended, and Section 21E of the Securities Exchange Act of 1934, as amended, which are intended to be covered by the safe harbor provisions created by the U.S. Private Securities Litigation Reform Act of 1995, including statements regarding the significance of published research and the Company’s approach to molecular medicine and research strategy. Forward-looking statements are not guarantees of future performance and can be identified by words such as “aim,” “intend,” “seek,” “explore,” “designed to,” “expects,” “anticipates,” “plans,” “may,” “could,” “will” and other similar expressions. Actual results may differ materially from those expressed or implied by such forward-looking statements due to a variety of factors, including the outcome of future experimental and preclinical work; the Company’s ability to advance its research and development programs; regulatory developments; and other risks and uncertainties described in YD Bio’s filings with the U.S. Securities and Exchange Commission (the “SEC”). The Company cautions investors not to place undue reliance on these forward-looking statements, which speak only as of the date hereof. The Company undertakes no obligation to update any forward-looking statements, except as required by law, and encourages investors to review the risk factors in its Annual Report on Form 20-F and other SEC filings.

For investor and media inquiries, please contact:
YD Bio Limited
Investor Relations
Email: investor@ydesgroup.com

WFS Investor Relations Inc.
Email: services@wealthfsllc.com
Phone: +1 628 283 9214


FAQ

What did YD Bio (YDES) announce on August 4, 2026 about keratoconus research?

YD Bio announced a peer-reviewed publication in Bioengineering presenting a computational framework for keratoconus research. According to YD Bio, the study uses public genetic and protein data to rank candidate molecules for potential regenerative therapies and guide future laboratory validation.

What is the Cargo Prioritization Score (CPS) introduced by YD Bio's keratoconus study?

The Cargo Prioritization Score (CPS) is a computational ranking system for candidate molecules linked to keratoconus. According to YD Bio, CPS analyzes public gene and protein databases to shortlist proteins that may inform future stem-cell-derived exosome–based regenerative therapy research for corneal disease.

Does YD Bio's new keratoconus publication in Bioengineering report any clinical trial results for YDES?

No, the publication does not report clinical trial results or evaluate therapeutic products. According to YD Bio, the study is an early, hypothesis-generating computational analysis designed to prioritize molecular candidates and highlight data gaps for future preclinical and clinical research.

Which molecular candidates for keratoconus does YD Bio's CPS framework highlight?

The CPS framework highlights proteins such as COL1A1, FN1, COL4A1, COL3A1, COL5A1, and MMP1. According to YD Bio, these molecules emerge from public keratoconus genetic data as prioritized candidates for further laboratory testing in potential regenerative and exosome-based therapeutic approaches.

How does YD Bio collaborate with Taipei Medical University on keratoconus research for YDES?

YD Bio scientists co-authored the study with researchers from Taipei Medical University and Taipei Medical University Hospital. According to YD Bio, this cross-sector collaboration connects industry, clinical medicine, and academia to develop a reproducible, data-driven framework for identifying regenerative targets in keratoconus.

Is YD Bio's keratoconus study in Bioengineering open access and where can investors find it?

Yes, the keratoconus study is open access in Bioengineering 2026, Vol. 13, Article 853. According to YD Bio, readers can access it via the journal using DOI 10.3390/bioengineering13080853 to review the full computational framework and candidate molecule shortlist.