Healing of skin wounds using a new cocoon scaffold loaded with platelet-rich or platelet-poor plasma
Jiawei Liu, Fei Lu, HongLei Chen, Rong Bao, Zhiquan Li, Bitao Lu, Kun Yu, Fangying Dai, Dayang Wu, Guangqian Lan
Journal:RSC Advances
IF:3.11
DOI:10.1039/C6RA27021B
PMID:
Published:2017-01-19
research field:细胞生物学生物医学工程呼吸生物学结构生物学再生医学材料科学
Abstract
The cocoons of the silkworm Bombyx mori are widely used as biofunctional materials. In the present study, cocoon composites (CCs) were treated with a solution consisting of calcium chloride, ethanol, and distilled water, resulting in partial dissolution, followed by freeze-drying, yielding cocoon scaffolds (CCSs). The CCSs were then immersed in autologous platelet-rich plasma (PRP) or platelet-poor plasma (PPP) obtained from rabbits and freeze-dried again, allowing us to harvest the other two composite materials (CCSs + PRP and CCSs + PPP). Analysis of the physical and biological properties of the materials demonstrated that the water absorption and retention capacities of CCSs had improved. After loading with PRP or PPP, both of the composite materials significantly promoted the growth of L929 cells, with CCSs + PRP showing slightly better results. Additionally, in vivo studies showed that both of the composite materials could enhance the process of wound healing, with the CCSs + PRP exhibiting the best results. Thus, our results suggested that these composites may have potential applications in the biomedical field.
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