Baiyunshan Hanfang, leveraging the strengths of two major platforms—the National Engineering Research Center and the Guangdong Provincial Key Laboratory of Medicinal Lipids—has now launched a lipid-based raw material matrix featuring “liposome encapsulation technology.” This matrix is suitable for a wide range of applications, including functional skincare products, dietary supplements, and functional food and beverage formulations, providing highly absorbable and stable raw material solutions for anti-aging serums, liver-supporting health supplements, sports nutrition products, and more.


The core of “liposome encapsulation technology” lies in using phospholipids that are structurally similar to human cell membranes to construct nanoscale bilayer vesicles, which protect natural active ingredients and enhance their absorption. Baiyunshan Hanfang’s liposome encapsulation technology can precisely control vesicle particle size, significantly improving absorption efficiency—this is its key advantage over conventional encapsulation methods.
This technology’s core strengths lie in three aspects: first, it provides robust protection for active ingredients, preventing degradation during processing, storage, and transport within the body, resulting in a much higher retention rate of activity compared to traditional dosage forms; second, its biomimetic penetration enables efficient transdermal and transmembrane delivery, markedly enhancing the bioavailability of natural components; third, it offers targeted delivery, working synergistically with the nourishing properties of phospholipids to fully unleash the efficacy of the ingredients. Notably, the Guangdong Provincial Key Laboratory of Medicinal Lipids has provided crucial support for the practical application of this technology through research on raw and auxiliary materials, process optimization, and studies of transmembrane mechanisms.

In the future, Baiyunshan Hanfang will continue to build on these two platforms to deepen technological innovation, expand application boundaries, and contribute to the high-quality development of the precision health industry.

