Preparation, characterization and antioxidative activity analysis of recombinant humanized collagen type III-loaded liposomes

M Mengxing Du C Chuanxiu Chen Y Yuxin Zhou Y Yixuan Song S Shan Wang (Ministry of Education Key Laboratory of Cluster Science, Frontiers Science Center for High Energy Material, School of Interdisciplinary Science, School of Chemistry and Chemical Engineering) S Shanshan Tang J Jia Yang (Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry) X Xia Yang (State Key Laboratory of High-Efficiency Production of Wheat-Maize Double Cropping, Agronomy College, Henan Agricultural University) E Enli Liu Y Yufeng Yu

Abstract

Abstract To improve the bioavailability and biological activity of recombinant type III humanized collagen (rhCol III), we optimized the preparation process of recombinant type III humanized collagen-loaded liposomes (rhCol III-LIPS) using the film dispersion and periplasmic extrusion methods, with the encapsulation rate as the response value. Then we analyzed the antioxidative activity of rhCol III-LIPS by determining the scavenging rate of free radicals. We investigated the protective effect of rhCol III-LIPS against H2O2-induced injuries in HaCaT cells by detecting cell vitality, contents of reactive oxygen species (ROS), malondialdehyde (MDA), and activities of antioxidases superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase dismutase (GSH-Px). The results showed, in condition of rhCol III-to-lipid ratio of 1:50, membrane-to-material ratio of 4:1, and ultrasound duration of 20 min, the encapsulation rate of the liposome reached 91.89%±0.59%. The free-radical scavenging rates for 1,1-diphenyl-2-picrohydrazine (DPPH), 2,2-l diazo-bisdiamine salt (ABTS), hydroxyl (OH−), and superoxide (O2−) anions are 87.11% ± 2.54%, 93.72% ± 2.87%, 86.45% ± 1.62%, 76.67% ± 1.56% respectively. The protective effect on oxidation-damaged cells of rhCol III-LIPS was higher than rhCol III or blank liposomes (B-LIPS). In summary, rhCol III-LIPS has good physical stability and in-vitro antioxidative activity, effectively alleviating H2O2-induced oxidative injuries in HaCaT cells. Our study provides a more stable and efficient strategy for the application of rhCol.

Article Details

Volume / Issue Vol. 15, Issue 1
Published July 24, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (10)

M

Mengxing Du

C

Chuanxiu Chen

Y

Yuxin Zhou

Y

Yixuan Song

S

Shan Wang

Ministry of Education Key Laboratory of Cluster Science, Frontiers Science Center for High Energy Material, School of Interdisciplinary Science, School of Chemistry and Chemical Engineering

S

Shanshan Tang

J

Jia Yang

Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry

X

Xia Yang

State Key Laboratory of High-Efficiency Production of Wheat-Maize Double Cropping, Agronomy College, Henan Agricultural University

E

Enli Liu

Y

Yufeng Yu