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Bioinspired Nanoparticulate Medical Glues for Minimally Invasive Tissue Repair

机译:Bioinspired纳米颗粒医用胶用于微创组织修复

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摘要

Delivery of tissue glues through small-bore needles or trocars is critical for sealing holes, affixing medical devices, or attaching tissues together during minimally invasive surgeries. Inspired by the granule-packaged glue delivery system of sandcastle worms, a nanoparticulate formulation of a viscous hydrophobic light-activated adhesive based on poly(glycerol sebacate)-acrylate is developed. Negatively charged alginate is used to stabilize the nanoparticulate surface to significantly reduce its viscosity and to maximize injectability through small-bore needles. The nanoparticulate glues can be concentrated to ≈30 w/v% dispersions in water that remain localized following injection. With the trigger of a positively charged polymer (e.g., protamine), the nanoparticulate glues can quickly assemble into a viscous glue that exhibits rheological, mechanical, and adhesive properties resembling the native poly(glycerol sebacate)-acrylate based glues. This platform should be useful to enable the delivery of viscous glues to augment or replace sutures and staples during minimally invasive procedures.
机译:通过小口径针头或套管针输送组织胶对于在微创手术中密封孔,固定医疗设备或将组织连接在一起至关重要。受到沙堡蠕虫的颗粒包装胶水输送系统的启发,开发了基于聚癸二酸甘油酯-丙烯酸酯的粘性疏水性光活化胶粘剂的纳米颗粒配方。带负电荷的藻酸盐用于稳定纳米颗粒表面,以显着降低其粘度并使通过小口径针头的可注射性最大化。可以将纳米颗粒胶水浓缩至水中约30 w / v%的分散度,这些分散度在注入后仍保持局部。通过带正电荷的聚合物(例如鱼精蛋白)的触发,纳米颗粒胶可以迅速组装成粘性胶,其表现出类似于天然的聚癸二酸甘油酯-丙烯酸酯基胶的流变,机械和粘合性能。该平台应有助于在微创手术过程中输送粘性胶水,以增加或替换缝线和订书钉。

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