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Li-Mg-Si bioceramics provide a dynamic immuno-modulatory and repair-supportive microenvironment for peripheral nerve regeneration

Bioact Mater.. 2023-05; 
Yiting Sun , Hongjian Zhang, Yu Zhang , Zheqi Liu , Dongming He , Wanlin Xu 4, Siyi Li , Chenping Zhang , Zhen Zhang
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Proteins, Expression, Isolation and Analysis Briefly, the different groups of cells were lysed in RIPA lysis buffer (Beyotime, China) and after being centrifuged, the cell lysates were separated by SDS-PAGE on 4–20% gels (GenScript, China) and transferred onto polyvinylidene difluoride membranes. Get A Quote

摘要

Biomaterials can modulate the local immune and repair-supportive microenvironments to promote peripheral nerve regeneration. Inorganic bioceramics have been widely used for regulating tissue regeneration and local immune response. However, little is known on whether inorganic bioceramics can have potential for enhancing peripheral nerve regeneration and what are the mechanisms underlying their actions. Here, the inorganic lithium-magnesium-silicon (Li-Mg-Si, LMS) bioceramics containing scaffolds are fabricated and characterized. The LMS-containing scaffolds had no cytotoxicity against rat Schwann cells (SCs), but promoted their migration and differentiation towards a remyelination state by up-regulating the exp... More

关键词

Bioceramics; Immuno-modulation microenvironment; Macrophage; Nerve guidance conduit; Peripheral nerve regeneration.
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