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BIO-TECHNE ANNOUNCES SUBMISSION OF FDA DRUG MASTER FILE FOR EXCELLERATE GMP IPSC EXPANSION MEDIUM SUPPORTING STEM CELL THERAPY Bio-Techne Corporation (NASDAQ: TECH) today announced that it has filed a Drug Master File (DMF) with the U.S. Food and Drug Administration (FDA) for ...

Key Takeaway: Bio-Techne Corporation announced the submission of a Drug Master File (DMF) for its ExCellerate GMP iPSC Expansion Medium to the FDA. This medium supports regenerative medicine and stem cell therapies by ensuring consistency and reproducibility in stem cell manufacturing. The DMF provides essential details about manufacturing processes that developers can reference when filing Investigational New Drug applications. The product is designed to assist developers in creating therapies more efficiently.

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POSITIVE FACTORS

  • Submission of the FDA Drug Master File supports stem cell therapy development.
  • Optimized ExCellerate GMP medium enhances expansion and consistency.
  • Product complements a comprehensive range of existing regenerative medicine solutions.

Full Press Release Details

MINNEAPOLIS , Dec. 20, 2023 /PRNewswire/ -- Bio-Techne Corporation (NASDAQ: TECH ) today announced that it has filed a Drug Master File (DMF) with the U.S. Food and Drug Administration (FDA) for its ExCellerate™ GMP iPSC Expansion Medium, Animal Free ( CCM0036-GMP ), supporting the development and manufacture of regenerative medicine and stem cell therapies.
ExCellerate GMP iPSC Expansion Medium is optimized to support robust expansion and maintenance of stem cell culture for enhanced consistency and reproducibility throughout the stem cell manufacturing process. The recently released GMP medium complements Bio-Techne's industry leading regenerative medicine therapy workflow solutions, which includes the widest range of GMP cytokines and growth factors available on the market. The ready-to-use media is manufactured without the use of animal components and is available in preclinical and GMP grades to simplify transition from research to clinic.
The DMF submission provides the FDA with detailed information about the facilities and processes used in the manufacturing, processing, packaging, and storing of ExCellerate GMP iPSC Expansion Medium. Regenerative medicine and stem cell therapy developers who integrate the medium into their GMP cell manufacturing workflows can easily reference these important details when filing Investigational New Drug (IND) applications with the FDA.
"Minimizing variability is the keystone to success when developing stem cell-based therapies. Our ExCellerate iPSC expansion media offer consistent, scalable performance, enabling our customers to develop life changing therapies faster," said Will Geist , President of Bio-Techne's Protein Sciences Segment. "We are proud to provide our cell therapy customers with reliable workflow solutions and analytics tools for consistent and precise cell manufacturing. This recent DMF submission is yet another example of our commitment to support our customers with the highest-quality reagents and the documentation required for regulatory approval of their novel stem cell-based therapeutics."
About Bio-Techne Corporation (NASDAQ: TECH ) Contact: David Clair , Vice President, Investor Relations & Corporate Development [email protected] 612-656-4416
SOURCE Bio-Techne Corporation

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Frequently Asked Questions

What is the purpose of the Drug Master File filed by Bio-Techne?

The Drug Master File supports the development and manufacturing of regenerative medicine and stem cell therapies.

What does ExCellerate GMP iPSC Expansion Medium optimize?

It optimizes the expansion and maintenance of stem cell cultures for better consistency.

Is ExCellerate GMP medium animal-free?

Yes, it is manufactured without any animal components.

How does the DMF benefit developers of stem cell therapies?

It provides important details for filing Investigational New Drug applications with the FDA.

What is Bio-Techne's goal with ExCellerate media?

To enable faster development of life-changing therapies through consistent performance.

Last updated: Dec 20, 2023