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Home > Experts > Professor of Dermatology | Chief Physician & National Biomaterials Safety Evaluation Expert

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Professor of Dermatology | Chief Physician & National Biomaterials Safety Evaluation Expert

Professional Summary:

Prof. Li Ming focuses on the clinical safety and pharmacokinetics evaluation of dermatological drugs, Class III medical devices, and biomedical materials. He studies the rheological stability of injectable Hyaluronic Acid dermal fillers under extreme temperatures and humidity. His clinical data and rheological kinetics research provide crucial academic support. This work helped multiple international macromolecule materials gain regulatory approval and clinical standards in the Chinese market.

 

Current Positions

  • Senior Committee Member | Chinese Society of Dermatology (CSD)
  • Regulatory Consultant | Center for Medical Device Evaluation, National Medical Products Administration (NMPA)

 

Academic and Professional Highlights:

  • Academic Contributions: He led multiple national research projects. He successfully built an evaluation model for the thermal degradation and rheological changes of cross-linked HA during complex transport. Leading multinational aesthetic biopharmaceutical companies now use his quality control parameters as core technical standards.
  • Research Interests: He studies the in vivo degradation mechanisms and biocompatibility of soft tissue fillers. He also researches the physical stability of biological macromolecules in skin microenvironments.

 

Expert Reviews:

“As a researcher in safety evaluation, I focus deeply on the physical stability of biomaterials. The AIMA HA series shows excellent rheological design. Its cross-linked network and extrusion force stay highly consistent even after complex environmental testing. For clinicians, this means a precise and smooth feeling during injection. More importantly, it lowers the risk of delayed nodules or immune responses caused by uneven materials. This product reaches top international standards in both safety and rheological performance.”

No:78203