细胞生物学
伤口愈合
间充质干细胞
干细胞
促炎细胞因子
巨噬细胞极化
细胞骨架
细胞
细胞分化
细胞培养
表型
生物
炎症
免疫学
基因
生物化学
遗传学
作者
Mohammad Majidi,S R Pakzad,Maryam Salimi,Abdolnaser Azadbakht,Saieh Hajighasemlou,Moein Amoupour,Zeinab Nokhbedehghan,Shahin Bonakdar,Koushan Sineh Sepehr,Narendra Pal Singh Chauhan,Mazaher Gholipourmalekabadi
摘要
Abstract Mesenchymal stem cells and macrophages (MQ) are two very important cells involved in the normal wound healing process. It is well understood that topological cues and mechanical factors can lead to different responses in stem cells and MQ by influencing their shape, cytoskeleton proliferation, migration, and differentiation, which play an essential role in the success or failure of biomaterial implantation and more importantly wound healing. On the other hand, the polarization of MQ from proinflammatory (M1) to prohealing (M2) phenotypes has a critical role in the acceleration of wound healing. In this study, the morphology of different MQ subtypes (M0, M1, and M2) was imprinted on a silicon surface (polydimethylsiloxane [PDMS]) to prepare a nano‐topography cell‐imprinted substrate with the ability to induce anti‐inflammatory effects on the mouse adipose‐derived stem cells (ADSCs) and RAW264.7 monocyte cell line (MO). The gene expression profiles and flow cytometry of MQ revealed that the cell shape microstructure promoted the MQ phenotypes according to the specific shape of each pattern. The ELISA results were in agreement with the gene expression profiles. The ADSCs on the patterned PDMS exhibited remarkably different shapes from no‐patterned PDMS. The MOs grown on M2 morphological patterns showed a significant increase in expression and section of anti‐inflammatory cytokine compared with M0 and M1 patterns. The ADSCs homing in niches heavily deformed the cytoskeletal, which is probably why the gene expression and phenotype unexpectedly changed. In conclusion, wound dressings with M2 cell morphology‐induced surfaces are suggested as excellent anti‐inflammatory and antiscarring dressings.
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