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Updated: Aug 16, 2026

Decellularized Apple-Derived Scaffolds for Bone Tissue Engineering In Vitro and In Vivo
Published on: February 23, 2024
[Experimental studies on preparation and property of scaffold material of bio-derived bone loading wo-1]
Jun Liang1, Zhiming Yang, Xiuqun Li
1Division of Stem Cell and Tissue Engineering, State Key Laboratory of Biotherapy,West China Hospital, Sichuan University, Chengdu Sichuan,610041, P. R. China
Objective:
To provide the chosen scaffold materials for experiment and application of tissue engineering and to detect the properties of the collagen bio-derived bone scaffold material loading WO-1.
Methods:
The pure bio-derived bone scaffold material, bio-derived bone scaffold material loading collagen, collagen bio-derived bone scaffold material loading WO-1 were made by use of allograft bone, and type-I collagen, and WO-1. The morphological features, constitute components and mechanical properties were examined by scanning electron microscopy, X- rays diffraction and mechanical assay.
Results:
The bio-derived bone scaffold material maintained natural network pore system; the bio-derived bone scaffold material loading collagen maintained natural network pore system, the surface of network pore system was coated by collagen membrane; the collagen bio-derived bone scaffold material loading WO-1 maintained natural network pore system, the surface of network pore system was coated by collagen membrane. The pore sizes of the 3 materials were 90-700 microm, 75-600 microm and 80-600 microm, respectively, and the porosities were 87.96%, 80.47%, 84.2%. There was no significant difference between them (P>0.05). The collagen bio-derived bone scaffold material loading WO-1 consisted of [HA,Ca10 (OH)2 (PO4)6. There was no significant difference in the mechanical strength of the three scaffold materials.
Conclusion:
The bio-derived bone scaffold material loading WO-1 is as good as bio-derived bone scaffold material and collagen bio-derived bone scaffold material, and it is an effective scaffold material for tissue engineering bone.

