巨噬细胞极化
再生(生物学)
神经科学
巨噬细胞
材料科学
纳米技术
刺激
细胞生物学
生物
生物化学
体外
作者
Keya Ganguly,Rachmi Luthfikasari,Aayushi Randhawa,Sayan Deb Dutta,Tejal V. Patil,Raj Acharya,Ki‐Taek Lim
标识
DOI:10.1002/adhm.202400581
摘要
Abstract Macrophages play an essential role in immunotherapy and tissue regeneration owing to their remarkable plasticity and diverse functions. Recent bioengineering developments have focused on using external physical stimuli such as electric and magnetic fields, temperature, and compressive stress, among others, on micro/nanostructures to induce macrophage polarization, thereby increasing their therapeutic potential. However, it is difficult to find a concise review of the interaction between physical stimuli, advanced micro/nanostructures, and macrophage polarization. This review examines the present research on physical stimuli‐induced macrophage polarization on micro/nanoplatforms, emphasizing the synergistic role of fabricated structure and stimulation for advanced immunotherapy and tissue regeneration. A concise overview of the research advancements investigating the impact of physical stimuli, including electric fields, magnetic fields, compressive forces, fluid shear stress, photothermal stimuli, and multiple stimulations on the polarization of macrophages within complex engineered structures, is provided. The prospective implications of these strategies in regenerative medicine and immunotherapeutic approaches are highlighted. This review will aid in creating stimuli‐responsive platforms for immunomodulation and tissue regeneration.
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