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  • Substrate stiffness influences phenotype and function of human antigen-presenting dendritic cells.

Substrate stiffness influences phenotype and function of human antigen-presenting dendritic cells.

Scientific reports (2017-12-14)
Svenja F B Mennens, Matteo Bolomini-Vittori, Jorieke Weiden, Ben Joosten, Alessandra Cambi, Koen van den Dries
摘要

Dendritic cells (DCs) are specialized immune cells that scan peripheral tissues for foreign material or aberrant cells and, upon recognition of such danger signals, travel to lymph nodes to activate T cells and evoke an immune response. For this, DCs travel large distances through the body, encountering a variety of microenvironments with different mechanical properties such as tissue stiffness. While immune-related pathological conditions such as fibrosis or cancer are associated with tissue stiffening, the role of tissue stiffness in regulating key functions of DCs has not been studied yet. Here, we investigated the effect of substrate stiffness on the phenotype and function of DCs by conditioning DCs on polyacrylamide substrates of 2, 12 and 50 kPa. Interestingly, we found that C-type lectin expression on immature DCs (iDCs) is regulated by substrate stiffness, resulting in differential antigen internalization. Furthermore, we show that substrate stiffness affects β

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Triton X-100, laboratory grade
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抗-纤连蛋白 兔抗, affinity isolated antibody, buffered aqueous solution