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Nano-patterned hydrogel reduced inflammatory effects in subcutaneous tissue

机译:纳米图案水凝胶减少了皮下组织的炎症作用

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We present a nano-patterned poly-acrylamide (PAAm) hydrogel that can reduce inflammatory effects after subcutaneous implantation. Although hydrogel is considered as an excellent biomaterial for implants due to its biocompatibility, hydrogel still induces inflammation after implantation. To enhance biocompatibility for subcutaneous implantable sensors, we modified hydrogel surface with nano-patterns using simple molding process. To test the anti-inflammatory effect, we implanted the samples to rat's back. Since macrophages play an important role in the immune response and development of encapsulation after inflammation reaction, we counted macrophages neighboring the implanted nano-patterned hydrogels after 3 and 7 days and measured thickness of encapsulation after 21 days from implantation. We found that the sample with the line-and-space pattern of 600 nm in space successfully suppressed the inflammation reaction. Therefore, nano-patterned hydrogel is promising for long-term subcutaneous implantable sensors.
机译:我们提出了一种纳米图案的聚丙烯酰胺(PAAm)水凝胶,可以减少皮下植入后的炎症作用。尽管水凝胶由于其生物相容性而被认为是植入物的极佳生物材料,但水凝胶在植入后仍会引起炎症。为了增强皮下植入式传感器的生物相容性,我们使用简单的模制工艺用纳米图案修饰了水凝胶表面。为了测试抗炎作用,我们将样品植入大鼠的背部。由于巨噬细胞在炎症反应后的免疫反应和包囊的发展中起着重要作用,因此我们在3天和7天后对植入的纳米图案水凝胶附近的巨噬细胞进行计数,并在植入21天后测量包囊的厚度。我们发现,在空间中具有600nm的线和间隔图案的样品成功地抑制了炎症反应。因此,纳米图案水凝胶有望用于长期皮下植入式传感器。

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