• Blog
  • News
  • 90 years of HA
  • Career
  • Eng
    • Fra
    • CN
    • KR
  • About us

    About us

    • Company & Values
    • History
    • Executive leadership
    • Production department
    • CSR Commitments
    • International Presence
    • Latest Investments
    • Compliance
  • Biopolymers portfolio
  • Premium Services
  • Innovation & R&D
  • Excellence in Quality
  • Industrial Platform
  • Contact
Articles April 13, 2026

EcoVadis Platinum Level Achieved in 2026

We have renewed our EcoVadis assessment and achieved the Platinum level!

Read the article Close and continue
Home - Blog

Welcome to the HTL blog!

Excellence. Innovation. Performance. At HTL Biotechnology, we develop and manufacture pharmaceutical-grade biopolymers that shape medical innovation worldwide. Through this blog, we invite you to discover the world of biopolymers. Feel the difference with HTL Inside !

  • July 15, 2026

    Three Biomolecules Driving the Future of Skin Quality

    Skin quality has become one of the main focuses of modern aesthetic medicine. While traditional treatments have often aimed to correct visible signs of ageing, today’s regenerative approaches seek to improve the skin itself by supporting hydration, structure and tissue regeneration.

    Read more
  • June 25, 2026

    Expert spotlight : Hyaluronic Acid cross-linking: A key determinant of filler performance

    Hyaluronic acid (HA) has become the dominant biomaterial in injectable soft tissue augmentation, with millions of treatments performed annually worldwide. As a naturally occurring glycosaminoglycan composed of repeating disaccharide units of D-glucuronic acid and N-acetyl-D-glucosamine, native HA possesses exceptional biocompatibility, hygroscopicity, and viscoelastic properties. However, in its unmodified state, HA is rapidly degraded in vivo by endogenous hyaluronidases and reactive oxygen species, with a tissue half-life measured in hours to days. [1,2]

    To overcome this limitation and create materials suitable for lasting soft tissue correction, HA must be chemically cross-linked. This process transforms a fluid polysaccharide solution into a structured hydrogel with tuneable mechanical and biological properties. The chemistry of cross-linking is, in many respects, the defining step that determines how a dermal filler will perform in the hands of a clinician and in the tissues of a patient. [2,3]

    Read more
  • June 9, 2026

    HTL Biotechnology at IMCAS World Congress 2026: Advancing Regenerative Aesthetics Through Biopolymers

    On January 29, 2026, during IMCAS World Congress in Paris, HTL Biotechnology hosted its first scientific session dedicated to the future of regenerative and aesthetic medicine.

    Bringing together experts from industry and clinical practice, the session explored how advanced biopolymers are helping shift aesthetic medicine toward a more regenerative approach, focused on skin quality, tissue repair, and long-term biological function.

    Read more
  • May 15, 2026

    Ophthalmic Viscosurgical Devices and Hyaluronic Acid in Cataract Surgery

     

     

    Read more
  • March 27, 2026

    Dry Eye Disease (DED): HA at the Heart of Therapeutic Solutions

    Read more
  • March 19, 2026

    Understanding the Role of Salmon Origin in Polynucleotide Quality

    Polynucleotides (PN) play an increasingly important role in regenerative medicine and are now assessed against criteria such as biological quality, safety, traceability, and responsible sourcing. In this context, the origin of polynucleotides has become a structuring factor, influencing both the final product profile and the confidence of stakeholders across the medical value chain. Among the various available sources, polynucleotides derived from wild salmon stand out for a set of specific characteristics. 

    Read more
  • March 19, 2026

    Microneedles: A promising technology for the future of medicine

    Microneedles today represent a highly promising advancement in transdermal medicine and tissue drug delivery. At the interface between biomaterials, biotechnology, and pharmacology, they enable targeted and minimally invasive delivery of active compounds directly into the dermis and epidermis.

    Recent studies demonstrate their potential in regenerative aesthetics, wound healing, immunology and oncology, particularly in the treatment of melanoma.

    Read more
  • March 18, 2026

    Sterile Hyaluronic Acid: Powering HA-based Next Generation of Medical Innovation

    Read more
  • December 9, 2025

    HTL Biotechnology’s Premium Services : A Trusted Partner in Innovation

    Read more
  • December 9, 2025

    ISO 13485 certification renewal: Strengthening the Foundations of Quality Excellence

    Read more
  • November 12, 2025

    The Evolving Role of Hyaluronic Acid in Osteoarthritis and Rheumatology

    Osteoarthritis is a degenerative joint disorder, often leading to chronic pain and reduced mobility as cartilage deteriorates over time.

    Due to its viscoelastic properties, Hyaluronic acid (HA), a naturally occurring molecule in the body and a major component of the extracellular matrix, is an ideal candidate for addressing these degenerative processes of joint diseases. Recognized for its lubricating properties, HA is also shaping the management of osteoarthritis and rheumatologic diseases through its multi-faceted therapeutic potential.

    Read more
  • November 6, 2025

    Excellence in Quality: The Foundation of HTL Biotechnology’s Pharma-Grade Biopolymers

    Since 1992, HTL Biotechnology has pioneered hyaluronic acid (HA) production through bacterial fermentation, achieving unmatched purity and consistency for applications in ophthalmology, dermatology, and rheumatology. 

    Read more
Learn more
  • Company & Values
  • History
  • Biopolymers portfolio
  • Innovation & R&D
  • Production department
  • Career
Contact us

Find us on social media

Social Media Group Policy

  • Terms & Conditions of Sale
  • Legal Notice & GTC
  • Privacy Policy
  • Cookies Policy
  • Sitemap

© HTL, 2024. All rights reserved